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CN111398527A - Shampoo foaming amount detection device - Google Patents

Shampoo foaming amount detection device Download PDF

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Publication number
CN111398527A
CN111398527A CN202010250307.2A CN202010250307A CN111398527A CN 111398527 A CN111398527 A CN 111398527A CN 202010250307 A CN202010250307 A CN 202010250307A CN 111398527 A CN111398527 A CN 111398527A
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China
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foaming
cabin
shampoo
driving wheel
detection mechanism
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CN202010250307.2A
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Chinese (zh)
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王燕涛
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Individual
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • G01N33/0078Testing material properties on manufactured objects

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Abstract

The invention relates to shampoo, in particular to a device for detecting foaming amount of shampoo. The invention aims to provide a device for detecting the foaming amount of shampoo. A shampoo foaming amount detection device comprises a left support frame, a waste liquid collection cabin, a first valve, a right support frame, a control display screen, a conveying mechanism, a shampoo-water separation mechanism and a hair thinning and foaming detection mechanism; the bottom of the conveying mechanism is connected with the dense foaming detection mechanism, and the bottom of the dense foaming detection mechanism is connected with the waste liquid collection cabin. The invention achieves the effects that the bagged shampoo is automatically opened and separated, and is automatically stirred to foam, so that the foaming condition of the shampoo when the shampoo is used on hairs with different lengths and different density degrees is simulated.

Description

Shampoo foaming amount detection device
Technical Field
The invention relates to shampoo, in particular to a device for detecting foaming amount of shampoo.
Background
Shampoo, also known as shampoo, shampoo or cream shampoo, is one of the most widely used hair washing products and hair cosmetics, and is used for washing off human body secreted oil, sweat stain, cells exfoliated from the scalp, foreign dust, microorganisms, residues of styling products, bad smell and the like which are attached to the scalp and hair, and keeping the scalp and hair clean and beautiful.
The shampoo is divided into bottles, bags and the like according to different packages, the bagged shampoo has certain portability, so that the bagged shampoo has great advantages in travel, the lengths and the density degrees of different human hairs are different, the quantity of foams generated by the shampoo with the same quantity and the same kind in the using process is different, and a device capable of simulating and detecting the foaming quantity of the shampoo on the hairs with different lengths and density degrees is absent in the prior art.
Disclosure of Invention
The invention aims to overcome the defect that a device capable of simulating and detecting the foaming amount of shampoo on hair with different lengths and densities is absent in the prior art, and the technical problem to be solved by the invention is to provide the device for detecting the foaming amount of the shampoo.
The invention is achieved by the following specific technical means:
a shampoo foaming amount detection device comprises a left support frame, a waste liquid collection cabin, a first valve, a right support frame, a control display screen, a conveying mechanism, a shampoo-water separation mechanism, a hair thinning and foaming detection mechanism, a hair density and foaming detection mechanism and a first support plate; the bottom end in the left support frame is connected with the waste liquid collecting cabin through a bolt by a nut; a first valve is arranged at the bottom of the waste liquid collecting cabin; the right part of the bottom end of the waste liquid collecting cabin is connected with a right supporting frame through a bolt by a nut; a control display screen is arranged in the middle of the right end of the right support frame; the inner top of the right supporting frame is connected with the conveying mechanism; the left part of the conveying mechanism is connected with the shampoo-water separation mechanism, the left part of the shampoo-water separation mechanism is connected with the left support frame, and the right top part of the shampoo-water separation mechanism is connected with the right support frame; the bottom of the conveying mechanism is connected with a dense foaming detection mechanism, and the middle bottom of the dense foaming detection mechanism is connected with a waste liquid collection cabin; the bottom of the shampoo-water separation mechanism is connected with the sparse foaming detection mechanism, the bottom of the sparse foaming detection mechanism is connected with the waste liquid collection cabin, the top of the sparse foaming detection mechanism is connected with the conveying mechanism, and the right top of the sparse foaming detection mechanism is connected with the dense foaming detection mechanism; dredge and send out foaming detection mechanism rear end middle part and be provided with first backup pad to first backup pad left end is connected with the left part support frame, and first backup pad right-hand member is connected with the right part support frame moreover, and first backup pad front end right part is connected with dense foaming detection mechanism moreover.
Furthermore, the conveying mechanism comprises a motor, a first driving wheel, a second supporting plate, a second driving wheel, a first bevel gear, a second bevel gear, a third supporting plate, a fourth supporting plate, a first hose, a first discharge hole, a mixing cabin, a water inlet, a first feed inlet, a first supporting frame, a second discharge hole, a third discharge hole, a fourth discharge hole, a second hose, a third hose and a fourth hose; the middle part of the front end of the motor is rotationally connected with the first driving wheel; the bottom end of the motor is connected with the second supporting plate through a nut by a bolt; the lower part of the bottom end of the first driving wheel is in transmission connection with a second driving wheel through a belt; the middle part of the front end of the second transmission wheel is rotationally connected with the first bevel gear; the middle part of the rear end of the second transmission wheel is connected with a third supporting plate; the bottom of the front end of the first bevel gear is meshed with the second bevel gear; the middle part of the bottom end of the second bevel gear is connected with a fourth supporting plate; the left part of the fourth supporting plate is connected with the first hose; the top of the first hose is connected with the first discharge hole; the top of the first discharge port is connected with the mixing cabin; a water inlet is formed in the left top of the mixing cabin; a first feeding hole is formed in the right top of the mixing cabin; a first support frame is arranged at the left end of the mixing cabin; a second discharge hole is formed in the middle left part of the bottom end of the mixing cabin; a third discharge hole is formed in the middle right part of the bottom end of the mixing cabin; a fourth discharge hole is formed in the right part of the bottom end of the mixing cabin; the bottom of the second discharge hole is connected with a second hose; the bottom of the third discharge hole is connected with a third hose; the bottom of the fourth discharge hole is connected with a fourth hose; the left side of the first driving wheel is connected with the shampoo-water separation mechanism; the right end of the second supporting plate is connected with the right supporting frame; the right end of the third supporting plate is connected with the dense foaming detection mechanism; the right end of the fourth supporting plate is connected with the right supporting frame; the left end of the fourth supporting plate is connected with the shampoo-water separation mechanism; the middle right part of the bottom end of the fourth supporting plate is connected with the dense foaming detection mechanism; the bottom of the first hose is connected with the hair thinning and foaming detection mechanism; the left end of the first support frame is connected with the shampoo-water separation mechanism; the bottom of the second hose is connected with the hair thinning and foaming detection mechanism; the bottom of the third hose is connected with a dense foaming detection mechanism; the bottom of the fourth hose is connected with a dense foaming detection mechanism.
Furthermore, the shampoo and water separation mechanism comprises a first conveyor belt, a third driving wheel, a second support frame, a fourth driving wheel, a third support frame, a fifth driving wheel, a sixth driving wheel, a seventh driving wheel, a first round roller, a rubber sleeve, an eighth driving wheel, a second round roller, a blade, a C-shaped waste bin, a second valve, an M-shaped stop block, a shampoo temporary storage bin, a connecting block, a second feeding hole, a baffle, a first water pipe, a filter plug, a water pump, a fifth support plate, a second water pipe and a fan-shaped expanding disc; the left part of the front end of the first conveyor belt is rotationally connected with a third driving wheel; the middle left part of the front end of the first conveyor belt is connected with the second support frame; the middle right part of the front end of the first conveyor belt is connected with a third support frame; the right side of the third driving wheel is in transmission connection with a fourth driving wheel through a belt, and the middle part of the rear end of the fourth driving wheel is connected with the first conveyor belt; the right side of the fourth driving wheel is in transmission connection with a fifth driving wheel through a belt, and the middle part of the rear end of the fifth driving wheel is connected with the first conveyor belt; the lower part of the bottom end of the fourth driving wheel is in transmission connection with a sixth driving wheel through a belt; the middle part of the rear end of the sixth driving wheel is connected with the C-shaped waste bin; the left lower part of the sixth driving wheel is in driving connection with the seventh driving wheel through a belt; the middle part of the rear end of the seventh transmission wheel is rotationally connected with the first round roller; the left side of the seventh driving wheel is in transmission connection with the eighth driving wheel through a belt; the outer surface of the first round roller is provided with a rubber sleeve; the middle part of the rear end of the eighth driving wheel is rotationally connected with the second round roller; a blade is arranged at the left bottom of the second round roller; a second valve is arranged at the right bottom of the C-shaped waste bin; the top of the left end of the C-shaped waste bin is welded with the M-shaped stop block; the bottom of the left end of the C-shaped waste bin is welded with the temporary shampoo storage bin; the left part of the top end of the temporary storage cabin of the shampoo is welded with the connecting block; a second feeding hole is formed in the top of the temporary storage cabin of the shampoo; a baffle is arranged at the right part in the temporary storage cabin of the shampoo; a first water pipe is arranged at the middle top of the baffle; a filter plug is arranged at the left bottom of the first water pipe; the right top of the first water pipe is connected with a water pump; the bottom end of the water pump is connected with the fifth supporting plate, and the right end of the fifth supporting plate is connected with the temporary shampoo storage cabin; a second water pipe is arranged at the left part of the bottom end of the water pump, and the middle bottom part of the outer surface of the second water pipe is connected with the temporary shampoo storage cabin; the bottom of the second water pipe is connected with the fan-shaped expansion disc; the top end of the second support frame is connected with the left support frame; the top end of the third support frame is connected with the right support frame; the right side of the fifth transmission wheel is connected with the first transmission wheel through a belt; the first support frames in the middle of the right end of the C-shaped waste bin are connected; the bottom of the right end of the C-shaped waste bin is connected with a fourth supporting plate; the left end of the temporary storage cabin of the shampoo is connected with the left support frame; the left end of the connecting block is connected with the left supporting frame; the bottom of the fan-shaped expansion disc is connected with a thinning and foaming detection mechanism.
Furthermore, the dredging foaming detection mechanism comprises an equalizing compartment, a fifth discharge hole, a first feeder, a first foaming compartment, a ninth transmission wheel, a first rotary disc, a short dredging stirring bar, a first water valve, a sixth discharge hole, a tenth transmission wheel, a second rotary disc, a long dredging stirring bar, a second foaming compartment, a second water valve and a second feeder; a fifth discharge hole is formed in the left part of the bottom end of the equalizing chamber; a sixth discharge hole is formed in the middle left part of the bottom end of the equalizing chamber; a first feeder is arranged below the bottom end of the fifth discharge hole; the bottom of the first feeder is connected with the first foaming cabin; a ninth driving wheel is arranged above the middle part of the top end of the first foaming cabin; a first water valve is arranged at the right bottom of the first foaming cabin; the middle part of the bottom end of the ninth driving wheel is rotationally connected with the first turntable; the right side of the ninth transmission wheel is in transmission connection with a tenth transmission wheel through a belt; the bottom end of the first rotating disc is rotationally connected with the short dredging stirring bar; the middle part of the bottom end of the tenth driving wheel is rotationally connected with the second turntable; the bottom end of the second turntable is rotationally connected with the long and thin stirring bar; a second foaming cabin is arranged below the bottom end of the long and sparse stirring bar; a second water valve is arranged at the left bottom of the second foaming cabin; a second feeder is arranged at the left top of the second foaming cabin; the middle left part of the top end of the equalizing compartment is connected with the fan-shaped expanding disc; the left top of the first foaming cabin is connected with a first hose; the middle part of the rear end of the first foaming cabin is connected with a first supporting plate; the bottom of the first water valve is connected with the waste liquid collecting cabin; the right side of the tenth driving wheel is connected with a dense foaming detection mechanism; the right top of the second foaming cabin is connected with a second hose; the middle part of the rear end of the second foaming cabin is connected with the first supporting plate; the bottom of the second water valve is connected with the waste liquid collecting cabin.
Furthermore, the dense foaming detection mechanism comprises an eleventh driving wheel, a third rotating disc, a long dense stirring strip, a third foaming chamber, a third feeder, a seventh discharge port, a third water valve, a twelfth driving wheel, a fourth rotating disc, a short dense stirring strip, a fourth foaming chamber, a fourth feeder, an eighth discharge port and a fourth water valve; the middle part of the bottom end of the eleventh transmission wheel is rotationally connected with the third turntable; the lower part of the bottom end of the eleventh transmission wheel is connected with a third foaming cabin; the left side of the eleventh transmission wheel is in transmission connection with the twelfth transmission wheel through a belt; the bottom end of the third rotary table is rotationally connected with the long and dense stirring strip; a third feeder is arranged at the left top of the third foaming cabin; a third water valve is arranged at the left bottom of the third foaming cabin; a seventh discharge hole is formed above the top end of the third feeder; the middle part of the bottom end of the twelfth driving wheel is rotationally connected with the fourth turntable; the bottom end of the fourth rotating disc is rotationally connected with the short dense stirring strip; a fourth foaming cabin is arranged below the bottom end of the short dense stirring bar; a fourth feeder is arranged at the right top of the fourth foaming cabin; a fourth water valve is arranged at the right bottom of the fourth foaming cabin; an eighth discharge hole is formed above the top end of the fourth feeder; the middle part of the top end of the eleventh transmission wheel is connected with the second bevel gear; the right top of the third foaming cabin is connected with a fourth hose; the middle part of the rear end of the third foaming cabin is connected with the first supporting plate; the top end of the seventh discharge hole is connected with the equalizing cabin; the bottom of the third water valve is connected with the waste liquid collecting cabin; the left side of the twelfth driving wheel is connected with a tenth driving wheel; the left top of the fourth foaming cabin is connected with a third hose; the middle part of the rear end of the fourth foaming cabin is connected with the first supporting plate; the top end of the eighth discharge hole is connected with the equalizing cabin; the bottom of the fourth water valve is connected with the waste liquid collecting cabin.
Furthermore, the blades are provided with ten groups, and the ten groups of blades are equidistantly distributed on the outer surface of the second round roller by taking the center point of the second round roller as the center of a circle.
Furthermore, the size of the gap between the bottom of the rubber sleeve and the top of the temporary shampoo storage cabin is one to two millimeters.
Furthermore, a protrusion is arranged at the right top of the temporary shampoo storage cabin.
Furthermore, the top parts of the first feeder, the second feeder, the third feeder and the fourth feeder are respectively provided with a disc expanding.
Compared with the prior art, the invention has the following beneficial effects:
in order to solve the problem that a device capable of simulating and detecting the foaming amount of the shampoo on the hair with different lengths and density degrees is lacked in the prior art, a conveying mechanism, a shampoo-water separation mechanism, a foam density detection mechanism and a foam density detection mechanism are designed, when in use, the shampoo is separated from the bag by the shampoo separation mechanism, and the shampoo, the water and the hair oil are sent into the hair thinning and foaming detection mechanism and the hair dense and foaming detection mechanism by matching with the conveying mechanism, and then the hair thinning and foaming detection mechanism and the hair dense and foaming detection mechanism are subjected to foaming treatment, the amount of the shampoo for foaming the hair with different lengths and different density degrees is judged according to the amount of the foam, so that the aims of automatically opening the bag of the bagged shampoo, separating the shampoo, automatically stirring for foaming, therefore, the effect of the foaming condition of the shampoo when the shampoo is used on the hair with different lengths and different density degrees is simulated.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the conveying mechanism of the present invention;
FIG. 3 is a schematic structural view of a shampoo separating mechanism according to the present invention;
FIG. 4 is a schematic structural view of the thinning and foaming detection mechanism of the present invention;
FIG. 5 is a schematic structural diagram of a dense foaming detection mechanism according to the present invention;
FIG. 6 is an enlarged view of region X of the present invention.
The labels in the figures are: 1-a left support frame, 2-a waste liquid collecting cabin, 3-a first valve, 4-a right support frame, 5-a control display screen, 6-a conveying mechanism, 7-a shampoo separating mechanism, 8-a loose foam detecting mechanism, 9-a dense foam detecting mechanism, 10-a first support plate, 601-a motor, 602-a first driving wheel, 603-a second support plate, 604-a second driving wheel, 605-a first bevel gear, 606-a second bevel gear, 607-a third support plate, 608-a fourth support plate, 609-a first hose, 6010-a first discharge port, 6011-a mixing cabin, 6012-a water inlet, 6013-a first feed port, 6014-a first support frame, 6015-a second discharge port, 6016-a third discharge port, 6017-fourth discharge port, 6018-second hose, 6019-third hose, 6020-fourth hose, 701-first conveyor belt, 702-third drive wheel, 703-second support frame, 704-fourth drive wheel, 705-third support frame, 706-fifth drive wheel, 707-sixth drive wheel, 708-seventh drive wheel, 709-first round roller, 7010-rubber sleeve, 7011-eighth drive wheel, 7012-second round roller, 7013-blade, 7014-C type waste material cabin, 7015-second valve, 7016-M type block for shampoo, 7017-temporary storage cabin, 7018-connecting block, 7019-second feed port, 7020-baffle, 7021-first water pipe, 7022-filter plug, 7023-water pump, 7024-fifth support plate, 7025-second water pipe, 7026-sector expanding disc, 801-uniform compartment, 802-fifth discharge port, 803-first feeder, 804-first foaming compartment, 805-ninth driving wheel, 806-first rotating disc, 807-short sparse stirring bar, 808-first water valve, 809-sixth discharge port, 8010-tenth driving wheel, 8011-second rotating disc, 8012-long sparse stirring bar, 8013-second foaming compartment, 8014-second water valve, 8015-second feeder, 901-eleventh driving wheel, 902-third rotating disc, 903-long dense stirring bar, 904-third foaming compartment, 905-third feeder, 906-seventh discharge port, 907-third water valve, 908-twelfth driving wheel, 909-fourth rotating disc, 9010-short dense stirring bar, 9011-a fourth foaming chamber, 9012-a fourth feeder, 9013-an eighth discharge hole, 9014-a fourth water valve.
Detailed Description
The invention is further described below with reference to the figures and examples.
Examples
A shampoo foaming amount detection device is shown in figures 1-6 and comprises a left support frame 1, a waste liquid collection cabin 2, a first valve 3, a right support frame 4, a control display screen 5, a conveying mechanism 6, a shampoo-water separation mechanism 7, a hair thinning and foaming detection mechanism 8, a hair dense and foaming detection mechanism 9 and a first support plate 10; the inner bottom end of the left support frame 1 is connected with the waste liquid collecting cabin 2 through a bolt by a nut; a first valve 3 is arranged at the bottom of the waste liquid collecting cabin 2; the right part of the bottom end of the waste liquid collecting cabin 2 is connected with a right supporting frame 4 through a bolt by a nut; a control display screen 5 is arranged in the middle of the right end of the right supporting frame 4; the top of the right support frame 4 is connected with a conveying mechanism 6; the left part of the conveying mechanism 6 is connected with the shampoo separation mechanism 7, the left part of the shampoo separation mechanism 7 is connected with the left support frame 1, and the right top part of the shampoo separation mechanism 7 is connected with the right support frame 4; the bottom of the conveying mechanism 6 is connected with a dense foaming detection mechanism 9, and the middle bottom of the dense foaming detection mechanism 9 is connected with the waste liquid collection cabin 2; the bottom of the shampoo separation mechanism 7 is connected with the hair thinning and foaming detection mechanism 8, the bottom of the hair thinning and foaming detection mechanism 8 is connected with the waste liquid collecting cabin 2, the top of the hair thinning and foaming detection mechanism 8 is connected with the conveying mechanism 6, and the right top of the hair thinning and foaming detection mechanism 8 is connected with the hair density and foaming detection mechanism 9; sparse foaming detection mechanism 8 rear end middle part is provided with first backup pad 10 to first backup pad 10 left end is connected with left part support frame 1, and first backup pad 10 right-hand member is connected with right part support frame 4 in addition, and first backup pad 10 front end right part is connected with dense foaming detection mechanism 9 in addition.
The working principle is as follows: when the device is used, the device is horizontally placed at a place to be used, a power supply and a water source are switched on, the bagged shampoo to be detected is prepared, the control display screen 5 is switched on to control the operation of the device, the bagged shampoo is put into the device, the shampoo is separated from the bag by the shampoo-water separating mechanism 7, and the shampoo, the water and the hair oil are sent into the hair thinning and foaming detecting mechanism 8 and the hair dense and foaming detecting mechanism 9 by matching with the conveying mechanism 6, then the foaming treatment is carried out on the loose foaming detection mechanism 8 and the dense foaming detection mechanism 9, the amount of the shampoo for foaming the hair with different lengths and different density degrees is judged according to the amount of the foam, so that the aims of automatically opening the bag of the bagged shampoo, separating the shampoo, automatically stirring for foaming, therefore, the effect of the foaming condition of the shampoo when the shampoo is used on the hair with different lengths and different density degrees is simulated.
The conveying mechanism 6 comprises a motor 601, a first driving wheel 602, a second supporting plate 603, a second driving wheel 604, a first bevel gear 605, a second bevel gear 606, a third supporting plate 607, a fourth supporting plate 608, a first hose 609, a first discharge hole 6010, a mixing cabin 6011, a water inlet 6012, a first feed hole 6013, a first supporting frame 6014, a second discharge hole 6015, a third discharge hole 6016, a fourth discharge hole 6017, a second hose 6018, a third hose 6019 and a fourth hose 6020; the middle part of the front end of the motor 601 is rotatably connected with the first driving wheel 602; the bottom end of the motor 601 is connected with the second supporting plate 603 through a nut; the lower part of the bottom end of the first driving wheel 602 is in driving connection with a second driving wheel 604 through a belt; the middle part of the front end of the second transmission wheel 604 is rotationally connected with a first bevel gear 605; the middle part of the rear end of the second transmission wheel 604 is connected with a third supporting plate 607; the bottom of the front end of the first bevel gear 605 is meshed with the second bevel gear 606; the middle part of the bottom end of the second bevel gear 606 is connected with a fourth supporting plate 608; the left part of the fourth supporting plate 608 is connected with a first hose 609; the top of the first hose 609 is connected with a first discharge hole 6010; the top of the first discharge hole 6010 is connected with a mixing cabin 6011; a water inlet 6012 is formed in the left top of the mixing cabin 6011; a first feeding hole 6013 is formed in the right top of the mixing cabin 6011; a first support frame 6014 is arranged at the left end of the mixing cabin 6011; a second discharge hole 6015 is formed in the middle left part of the bottom end of the mixing cabin 6011; a third discharge hole 6016 is formed in the middle right part of the bottom end of the mixing cabin 6011; a fourth discharge hole 6017 is formed in the right part of the bottom end of the mixing chamber 6011; the bottom of the second discharge hole 6015 is connected with a second hose 6018; the bottom of the third discharge hole 6016 is connected with a third hose 6019; the bottom of the fourth discharge hole 6017 is connected with a fourth hose 6020; the left side of the first driving wheel 602 is connected with the shampoo-water separation mechanism 7; the right end of the second supporting plate 603 is connected with the right supporting frame 4; the right end of the third supporting plate 607 is connected with the dense foaming detection mechanism 9; the right end of the fourth supporting plate 608 is connected with the right supporting frame 4; the left end of the fourth supporting plate 608 is connected with the shampoo separating mechanism 7; the middle right part of the bottom end of the fourth supporting plate 608 is connected with the dense foaming detection mechanism 9; the bottom of the first hose 609 is connected with the hair thinning and foaming detection mechanism 8; the left end of the first support 6014 is connected with the shampoo-water separation mechanism 7; the bottom of the second hose 6018 is connected with the dredging foaming detection mechanism 8; the bottom of the third hose 6019 is connected with a dense foaming detection mechanism 9; the bottom of the fourth hose 6020 is connected to the dense foaming detection mechanism 9.
Firstly, water is injected into a mixing cabin 6011 through a water inlet 6012, hair oil is injected into the mixing cabin 6011 through a first feed inlet 6013, and then an oil-water mixture is obtained, so as to simulate oil on a human head, when the device operates, a motor 601 rotates anticlockwise, the motor 601 drives a first driving wheel 602 in the middle of the front end to rotate, the first driving wheel 602 drives a fifth driving wheel 706 on the left side of the first driving wheel to rotate through a belt, so as to provide power for a hair-oil-water separation mechanism 7, meanwhile, the first driving wheel 602 drives a second driving wheel 604 below the bottom end of the first driving wheel to rotate through the belt, so that the second driving wheel 604 drives a first bevel gear 605 in the middle of the front end to rotate, the first bevel gear 605 drives a second bevel gear 606 at the bottom end of the first bevel gear to rotate, the second bevel gear 606 drives an eleventh driving wheel 901 in the middle of the bottom end of the second driving wheel to rotate, so as to provide power for a dense-hair-foam detection mechanism, a certain amount of oil-water mixture is injected into the first foaming chamber 804 through the first hose 609 and the first discharge hole 6010, an equal amount of oil-water mixture is injected into the second foaming chamber 8013 through the second discharge hole 6015 and the second hose 6018, an equal amount of oil-water mixture is injected into the fourth foaming chamber 9011 through the third discharge hole 6016 and the third hose 6019, and an equal amount of oil-water mixture is injected into the third foaming chamber 904 through the fourth discharge hole 6017 and the fourth hose 6020, so that power is provided for the hair-wash-water separation mechanism 7 and the dense-hair-foam detection mechanism 9, and an equal amount of oil-water mixture is injected into the sparse-hair-foam detection mechanism 8 and the dense-hair-foam detection mechanism 9.
The shampoo-water separation mechanism 7 comprises a first conveyor belt 701, a third transmission wheel 702, a second support frame 703, a fourth transmission wheel 704, a third support frame 705, a fifth transmission wheel 706, a sixth transmission wheel 707, a seventh transmission wheel 708, a first round roller 709, a rubber sleeve 7010, an eighth transmission wheel 7011, a second round roller 7012, a blade 7013, a C-shaped waste bin 7014, a second valve 7015, an M-shaped stop block 7016, a temporary shampoo storage bin 7017, a connecting block 7018, a second feed port 7019, a baffle 7020, a first water pipe 7021, a filter plug 7022, a water pump 7023, a fifth support plate 7024, a second water pipe 7025 and a fan-shaped expansion disc 7026; the left part of the front end of the first conveyor belt 701 is rotatably connected with a third driving wheel 702; the middle left part of the front end of the first conveyor belt 701 is connected with a second support frame 703; the middle right part of the front end of the first conveyor belt 701 is connected with a third supporting frame 705; the right side of the third driving wheel 702 is in driving connection with a fourth driving wheel 704 through a belt, and the middle of the rear end of the fourth driving wheel 704 is connected with the first conveyor belt 701; the right side of the fourth driving wheel 704 is in driving connection with a fifth driving wheel 706 through a belt, and the middle part of the rear end of the fifth driving wheel 706 is connected with a first conveyor belt 701; the lower part of the bottom end of the fourth driving wheel 704 is in transmission connection with a sixth driving wheel 707 through a belt; the middle part of the rear end of the sixth driving wheel 707 is connected with a C-shaped waste material cabin 7014; the lower left side of the sixth driving wheel 707 is in transmission connection with a seventh driving wheel 708 through a belt; the middle part of the rear end of the seventh transmission wheel 708 is rotationally connected with the first round roller 709; the left side of the seventh driving wheel 708 is in driving connection with an eighth driving wheel 7011 through a belt; the outer surface of the first round roller 709 is provided with a rubber sleeve 7010; the middle part of the rear end of the eighth driving wheel 7011 is rotationally connected with the second round roller 7012; the left bottom of the second round roller 7012 is provided with a blade 7013; a second valve 7015 is arranged at the right bottom of the C-shaped waste cabin 7014; the top of the left end of the C-shaped scrap cabin 7014 is welded with an M-shaped stop block 7016; the bottom of the left end of the C-shaped waste cabin 7014 is welded with the temporary shampoo storage cabin 7017; the left part of the top end of the temporary storage cabin 7017 of the shampoo is welded with the connecting block 7018; a second feeding hole 7019 is formed in the top of the temporary shampoo storage cabin 7017; a baffle 7020 is arranged at the right part in the temporary shampoo storage cabin 7017; the middle top of the baffle 7020 is provided with a first water pipe 7021; a filter plug 7022 is arranged at the left bottom of the first water pipe 7021; the right top of the first water pipe 7021 is connected with a water pump 7023; the bottom end of the water pump 7023 is connected with a fifth support plate 7024, and the right end of the fifth support plate 7024 is connected with a temporary shampoo storage cabin 7017; a second water pipe 7025 is arranged at the left part of the bottom end of the water pump 7023, and the middle bottom part of the outer surface of the second water pipe 7025 is connected with a temporary shampoo storage cabin 7017; the bottom of the second water pipe 7025 is connected with a fan-shaped expanding disc 7026; the top end of the second support frame 703 is connected with the left support frame 1; the top end of the third supporting frame 705 is connected with the right supporting frame 4; the right side of the fifth driving wheel 706 is connected with the first driving wheel 602 through a belt; the first support frame 6014 in the middle of the right end of the C-shaped waste cabin 7014 is connected; the bottom of the right end of the C-shaped waste cabin 7014 is connected with a fourth supporting plate 608; the left end of the temporary shampoo storage cabin 7017 is connected with the left support frame 1; the left end of the connecting block 7018 is connected with the left support frame 1; the bottom of the fan-shaped expansion disc 7026 is connected with the thinning and foaming detection mechanism 8.
Firstly, a ten-pack bagged shampoo is put in the middle of the top end of a first conveyor belt 701 from the space between a left support frame 1 and a right support frame 4, at this time, a first driving wheel 602 drives a fifth driving wheel 706 on the left side of the first driving wheel to rotate anticlockwise through a belt, further a fifth driving wheel 706 drives a fourth driving wheel 704 on the left side of the fifth driving wheel through a belt, and the fourth driving wheel 704 drives a third driving wheel 702 on the left side of the fourth driving wheel to rotate through a belt, so that the third driving wheel 702, the fourth driving wheel 704 and the fifth driving wheel 706 drive a synchronous belt on the outer surface of the first conveyor belt 701 in the middle of the rear end of the first driving wheel to rotate, further the first conveyor belt 701 drives the bagged shampoo in the middle of the top end of the first driving wheel to move to the left, further to move to the right below a second round roller 7012 under the action of gravity through the space on the left side of an M-shaped stopper 7016, the sixth driving wheel 707 drives the seventh driving wheel 708 at the lower left to rotate through a belt, the seventh driving wheel 708 drives the eighth driving wheel 7011 at the left through a belt, the eighth driving wheel 7011 drives the second round roller 7012 at the middle rear end to rotate counterclockwise, the second round roller 7012 drives the blade 7013 at the bottom left to rotate, so that the blade 7013 opens a mouth on the bagged shampoo when rotating, and simultaneously drives the bagged shampoo to move rightward, and moves to the position below the rubber sleeve 7010, at this time, the seventh driving wheel 708 drives the first round roller 709 at the middle rear end to rotate counterclockwise, and further the first round roller 709 drives the rubber sleeve 7010 at the outer surface thereof to rotate counterclockwise, and drives the shampoo in the bagged shampoo to move rightward while squeezing out, the squeezed shampoo flows into the temporary shampoo storage tank 7017 through the second feeding port 7019, the packaging bag continuously moves rightward and falls into a cabin formed by the C-shaped waste tank 7014 and the temporary shampoo storage tank 7017, the packaging bags are taken out through the second valve 7015, when shampoo needs to be injected into the hair thinning and foaming detection mechanism 8 and the hair thickening and foaming detection mechanism 9, under the action of the water pump 7023, the shampoo enters the first water pipe 7021 through the filter plug 7022, passes through the second water pipe 7025 and the fan-shaped expansion disc 7026, and finally enters the hair thinning and foaming detection mechanism 8 and the hair thickening and foaming detection mechanism 9, and the mechanism realizes automatic separation of the shampoo in the bagged shampoo and adds the same amount of shampoo into the hair thinning and foaming detection mechanism 8 and the hair thickening and foaming detection mechanism 9.
The dredging foaming detection mechanism 8 comprises an equalizing compartment 801, a fifth discharge hole 802, a first feeder 803, a first foaming compartment 804, a ninth driving wheel 805, a first rotating disc 806, a short dredging stirring bar 807, a first water valve 808, a sixth discharge hole 809, a tenth driving wheel 8010, a second rotating disc 8011, a long dredging stirring bar 8012, a second foaming compartment 8013, a second water valve 8014 and a second feeder 8015; a fifth discharge hole 802 is formed in the left part of the bottom end of the equalizing compartment 801; a sixth discharge hole 809 is formed in the middle left part of the bottom end of the equalizing compartment 801; a first feeder 803 is arranged below the bottom end of the fifth discharge hole 802; the bottom of the first feeder 803 is connected with the first foaming chamber 804; a ninth driving wheel 805 is arranged above the middle part of the top end of the first foaming chamber 804; a first water valve 808 is arranged at the right bottom of the first foaming chamber 804; the middle part of the bottom end of the ninth driving wheel 805 is rotatably connected with a first turntable 806; the right side of the ninth driving wheel 805 is in driving connection with a tenth driving wheel 8010 through a belt; the bottom end of the first rotating disc 806 is rotationally connected with a short dredging stirring bar 807; the middle part of the bottom end of the tenth driving wheel 8010 is rotatably connected with the second turntable 8011; the bottom end of the second rotating disc 8011 is rotatably connected with the long and sparse stirring bar 8012; a second foaming chamber 8013 is arranged below the bottom end of the long and sparse stirring bar 8012; a second water valve 8014 is arranged at the left bottom of the second foaming chamber 8013; a second feeder 8015 is arranged at the left top of the second foaming chamber 8013; the middle left part of the top end of the equalizing compartment 801 is connected with a sector expansion disc 7026; the left top of the first foaming cabin 804 is connected with a first hose 609; the middle part of the rear end of the first foaming cabin 804 is connected with a first supporting plate 10; the bottom of the first water valve 808 is connected with the waste liquid collecting cabin 2; the right side of the tenth driving wheel 8010 is connected with a dense foaming detection mechanism 9; the right top of the second foaming chamber 8013 is connected with a second hose 6018; the middle part of the rear end of the second foaming chamber 8013 is connected with the first supporting plate 10; the bottom of the second water valve 8014 is connected with the waste liquid collecting chamber 2.
After being separated from the shampoo-water separation mechanism 7, the shampoo enters the equalizing chamber 801 through the fan-shaped expanding disc 7026, passes through the equalizing chamber 801 and is injected into the first foaming chamber 804 through the fifth discharge port 802 and the first feeder 803, then the shampoos are mixed with the oil-water mixture injected by the conveying mechanism 6 through the first hose 609, meanwhile, the equalizing chamber 801 is injected into the second foaming chamber 8013 through the sixth discharge port 809 and the second feeder 8015, similarly, the shampoos are mixed with the oil-water mixture injected by the conveying mechanism 6 through the second hose 6018, at this time, the twelfth driving wheel 908 drives the tenth driving wheel 8010 on the left side thereof to rotate through the belt, the tenth driving wheel 8010 drives the ninth driving wheel 805 on the left side thereof to rotate through the belt, the ninth driving wheel 805 drives the first rotating disc 806 on the middle part of the bottom end thereof to rotate, the first rotating disc 806 drives the short and sparse stirring bar 807 at the bottom end to rotate, the short and sparse stirring bar 807 stirs the mixture of the shampoo and the oil and water in the first foaming chamber 804, so as to simulate short hair, the amount of foam which can be generated when people with small hair use the shampoo, meanwhile, the tenth driving wheel 8010 drives the second rotating disc 8011 at the middle of the bottom end to rotate, the second rotating disc 8011 drives the long and sparse stirring bar 8012 at the bottom end to rotate, the long and sparse stirring bar 8012 stirs the mixture of the shampoo and the oil and water in the second foaming chamber 8013, so as to simulate long hair, the amount of foam which can be generated when people with small hair use the shampoo is simulated, and then the amount of foam which can be generated when the shampoo is used daily on people with small hair and different lengths is judged by observing the amount of foam generated in the first foaming chamber 804 and the second foaming chamber 8013, the mechanism can detect the foaming amount of the shampoo on the hair with less hair and different lengths.
The dense foaming detection mechanism 9 comprises an eleventh driving wheel 901, a third rotating disc 902, a long dense stirring bar 903, a third foaming chamber 904, a third feeder 905, a seventh discharge port 906, a third water valve 907, a twelfth driving wheel 908, a fourth rotating disc 909, a short dense stirring bar 9010, a fourth foaming chamber 9011, a fourth feeder 9012, an eighth discharge port 9013 and a fourth water valve 9014; the middle part of the bottom end of the eleventh driving wheel 901 is rotatably connected with the third turntable 902; the lower part of the bottom end of the eleventh driving wheel 901 is connected with a third foaming chamber 904; the left side of an eleventh driving wheel 901 is in driving connection with a twelfth driving wheel 908 through a belt; the bottom end of the third rotating disc 902 is rotatably connected with a long and dense stirring bar 903; a third feeder 905 is arranged at the left top of the third foaming cabin 904; a third water valve 907 is arranged at the left bottom of the third foaming chamber 904; a seventh discharge hole 906 is formed above the top end of the third feeder 905; the middle part of the bottom end of the twelfth driving wheel 908 is rotatably connected with the fourth rotary table 909; the bottom end of the fourth rotary table 909 is rotatably connected with the short dense stirring bar 9010; a fourth foaming chamber 9011 is arranged below the bottom end of the short dense stirring bar 9010; a fourth feeder 9012 is arranged at the right top of the fourth foaming chamber 9011; a fourth water valve 9014 is arranged at the right bottom of the fourth foaming chamber 9011; an eighth discharge hole 9013 is formed above the top end of the fourth feeder 9012; the middle part of the top end of the eleventh transmission wheel 901 is connected with the second bevel gear 606; the right top of the third foaming chamber 904 is connected with a fourth hose 6020; the middle part of the rear end of the third foaming chamber 904 is connected with the first supporting plate 10; the top end of the seventh discharge hole 906 is connected with the equalizing cabin 801; the bottom of the third water valve 907 is connected with the waste liquid collecting cabin 2; the left side of the twelfth driving wheel 908 is connected with a tenth driving wheel 8010; the left top of the fourth foaming chamber 9011 is connected with a third hose 6019; the middle part of the rear end of the fourth foaming chamber 9011 is connected with the first supporting plate 10; the top end of the eighth discharge hole 9013 is connected with the equalizing chamber 801; the bottom of the fourth water valve 9014 is connected with the waste liquid collecting cabin 2.
When the thinning and foaming detection mechanism 8 works, firstly, the equalizing chamber 801 injects an equal amount of shampoo into the fourth foaming chamber 9011 through the fourth feeder 9012 and the eighth discharge port 9013, then mixes the shampoo with an oil-water mixture injected into the fourth foaming chamber 9011 through the third hose 6019, simultaneously injects an equal amount of shampoo into the third foaming chamber 904 through the third feeder 905 and the seventh discharge port 906, and then mixes the shampoo with an oil-water mixture injected into the third foaming chamber 904 through the fourth hose 6020, at this time, the second bevel gear 606 drives the eleventh driving wheel 901 in the middle of the bottom end to rotate, and then the eleventh driving wheel 901 drives the twelfth driving wheel 908 on the left side thereof to rotate through the leather, the twelfth driving wheel 908 on the left side thereof drives the tenth driving wheel 8010 on the left side thereof to rotate through the belt, power is provided for the thinning and foaming detection mechanism 8, and simultaneously the twelfth driving wheel 908 drives the fourth turntable 909 in the middle of the bottom end to rotate, the fourth rotating disc 909 drives the short dense stirring bar 9010 at the bottom end to rotate, the short dense stirring bar 9010 stirs the mixture of the shampoo and the oil-water in the fourth foaming chamber 9011, so as to simulate short hair, the quantity of foam which can be generated when people with large hair amount use the shampoo, meanwhile, the eleventh driving wheel 901 drives the third rotating disc 902 in the middle of the bottom end to rotate, the third rotating disc 902 drives the long dense stirring bar 903 at the bottom end to rotate, the long dense stirring bar 903 stirs the mixture of the shampoo and the oil-water in the third foaming chamber 904, so as to simulate long hair, the quantity of foam which can be generated when people with large hair amount use the shampoo is simulated, and then the quantity of foam generated in the third foaming chamber 904 and the fourth foaming chamber 9011 is observed, so as to judge the quantity of foam which can be generated on people with large hair and different hair lengths in daily use of the shampoo, the mechanism can detect the foaming amount of the shampoo on the hair with more hair and different lengths.
Wherein, the blades 7013 are provided with ten groups in total, and are equidistantly distributed on the outer surface of the second circular roller 7012 with the center point of the second circular roller 7012 as the center of a circle, so that a bag of bagged shampoo can be cut every thirty-six degrees of rotation of the second circular roller 7012.
Wherein, the gap between the bottom of the rubber sleeve 7010 and the top of the shampoo temporary storage cabin 7017 is one to two millimeters, so that the rubber sleeve 7010 can completely extrude the shampoo in the bagged shampoo.
Wherein, the right top of the temporary shampoo storage tank 7017 has a protrusion, so that the shampoo cannot flow into the tank formed by the C-shaped waste tank 7014 and the temporary shampoo storage tank 7017.
The tops of the first feeder 803, the second feeder 8015, the third feeder 905 and the fourth feeder 9012 are respectively provided with a disc expanding device, so that shampoo is prevented from falling to other places.
The technical solutions of the present invention or similar technical solutions designed by those skilled in the art based on the teachings of the technical solutions of the present invention are all within the scope of the present invention to achieve the above technical effects.

Claims (9)

1. A shampoo foaming amount detection device comprises a left support frame, a waste liquid collection cabin, a first valve, a right support frame and a control display screen, and is characterized by further comprising a conveying mechanism, a shampoo-water separation mechanism, a hair thinning and foaming detection mechanism, a hair density and foaming detection mechanism and a first support plate; the bottom end in the left support frame is connected with the waste liquid collecting cabin through a bolt by a nut; a first valve is arranged at the bottom of the waste liquid collecting cabin; the right part of the bottom end of the waste liquid collecting cabin is connected with a right supporting frame through a bolt by a nut; a control display screen is arranged in the middle of the right end of the right support frame; the inner top of the right supporting frame is connected with the conveying mechanism; the left part of the conveying mechanism is connected with the shampoo-water separation mechanism, the left part of the shampoo-water separation mechanism is connected with the left support frame, and the right top part of the shampoo-water separation mechanism is connected with the right support frame; the bottom of the conveying mechanism is connected with a dense foaming detection mechanism, and the middle bottom of the dense foaming detection mechanism is connected with a waste liquid collection cabin; the bottom of the shampoo-water separation mechanism is connected with the sparse foaming detection mechanism, the bottom of the sparse foaming detection mechanism is connected with the waste liquid collection cabin, the top of the sparse foaming detection mechanism is connected with the conveying mechanism, and the right top of the sparse foaming detection mechanism is connected with the dense foaming detection mechanism; dredge and send out foaming detection mechanism rear end middle part and be provided with first backup pad to first backup pad left end is connected with the left part support frame, and first backup pad right-hand member is connected with the right part support frame moreover, and first backup pad front end right part is connected with dense foaming detection mechanism moreover.
2. The shampoo foaming amount detection device as claimed in claim 1, wherein the conveying mechanism comprises a motor, a first transmission wheel, a second support plate, a second transmission wheel, a first bevel gear, a second bevel gear, a third support plate, a fourth support plate, a first hose, a first discharge port, a mixing chamber, a water inlet, a first feed port, a first support frame, a second discharge port, a third discharge port, a fourth discharge port, a second hose, a third hose and a fourth hose; the middle part of the front end of the motor is rotationally connected with the first driving wheel; the bottom end of the motor is connected with the second supporting plate through a nut by a bolt; the lower part of the bottom end of the first driving wheel is in transmission connection with a second driving wheel through a belt; the middle part of the front end of the second transmission wheel is rotationally connected with the first bevel gear; the middle part of the rear end of the second transmission wheel is connected with a third supporting plate; the bottom of the front end of the first bevel gear is meshed with the second bevel gear; the middle part of the bottom end of the second bevel gear is connected with a fourth supporting plate; the left part of the fourth supporting plate is connected with the first hose; the top of the first hose is connected with the first discharge hole; the top of the first discharge port is connected with the mixing cabin; a water inlet is formed in the left top of the mixing cabin; a first feeding hole is formed in the right top of the mixing cabin; a first support frame is arranged at the left end of the mixing cabin; a second discharge hole is formed in the middle left part of the bottom end of the mixing cabin; a third discharge hole is formed in the middle right part of the bottom end of the mixing cabin; a fourth discharge hole is formed in the right part of the bottom end of the mixing cabin; the bottom of the second discharge hole is connected with a second hose; the bottom of the third discharge hole is connected with a third hose; the bottom of the fourth discharge hole is connected with a fourth hose; the left side of the first driving wheel is connected with the shampoo-water separation mechanism; the right end of the second supporting plate is connected with the right supporting frame; the right end of the third supporting plate is connected with the dense foaming detection mechanism; the right end of the fourth supporting plate is connected with the right supporting frame; the left end of the fourth supporting plate is connected with the shampoo-water separation mechanism; the middle right part of the bottom end of the fourth supporting plate is connected with the dense foaming detection mechanism; the bottom of the first hose is connected with the hair thinning and foaming detection mechanism; the left end of the first support frame is connected with the shampoo-water separation mechanism; the bottom of the second hose is connected with the hair thinning and foaming detection mechanism; the bottom of the third hose is connected with a dense foaming detection mechanism; the bottom of the fourth hose is connected with a dense foaming detection mechanism.
3. The shampoo foaming amount detection device according to claim 2, wherein the shampoo separating mechanism comprises a first conveyor belt, a third transmission wheel, a second support frame, a fourth transmission wheel, a third support frame, a fifth transmission wheel, a sixth transmission wheel, a seventh transmission wheel, a first round roller, a rubber sleeve, an eighth transmission wheel, a second round roller, a blade, a C-shaped waste bin, a second valve, an M-shaped block, a shampoo temporary storage bin, a connecting block, a second feed inlet, a baffle, a first water pipe, a filter plug, a water pump, a fifth support plate, a second water pipe and a fan-shaped expanding disc; the left part of the front end of the first conveyor belt is rotationally connected with a third driving wheel; the middle left part of the front end of the first conveyor belt is connected with the second support frame; the middle right part of the front end of the first conveyor belt is connected with a third support frame; the right side of the third driving wheel is in transmission connection with a fourth driving wheel through a belt, and the middle part of the rear end of the fourth driving wheel is connected with the first conveyor belt; the right side of the fourth driving wheel is in transmission connection with a fifth driving wheel through a belt, and the middle part of the rear end of the fifth driving wheel is connected with the first conveyor belt; the lower part of the bottom end of the fourth driving wheel is in transmission connection with a sixth driving wheel through a belt; the middle part of the rear end of the sixth driving wheel is connected with the C-shaped waste bin; the left lower part of the sixth driving wheel is in driving connection with the seventh driving wheel through a belt; the middle part of the rear end of the seventh transmission wheel is rotationally connected with the first round roller; the left side of the seventh driving wheel is in transmission connection with the eighth driving wheel through a belt; the outer surface of the first round roller is provided with a rubber sleeve; the middle part of the rear end of the eighth driving wheel is rotationally connected with the second round roller; a blade is arranged at the left bottom of the second round roller; a second valve is arranged at the right bottom of the C-shaped waste bin; the top of the left end of the C-shaped waste bin is welded with the M-shaped stop block; the bottom of the left end of the C-shaped waste bin is welded with the temporary shampoo storage bin; the left part of the top end of the temporary storage cabin of the shampoo is welded with the connecting block; a second feeding hole is formed in the top of the temporary storage cabin of the shampoo; a baffle is arranged at the right part in the temporary storage cabin of the shampoo; a first water pipe is arranged at the middle top of the baffle; a filter plug is arranged at the left bottom of the first water pipe; the right top of the first water pipe is connected with a water pump; the bottom end of the water pump is connected with the fifth supporting plate, and the right end of the fifth supporting plate is connected with the temporary shampoo storage cabin; a second water pipe is arranged at the left part of the bottom end of the water pump, and the middle bottom part of the outer surface of the second water pipe is connected with the temporary shampoo storage cabin; the bottom of the second water pipe is connected with the fan-shaped expansion disc; the top end of the second support frame is connected with the left support frame; the top end of the third support frame is connected with the right support frame; the right side of the fifth transmission wheel is connected with the first transmission wheel through a belt; the first support frames in the middle of the right end of the C-shaped waste bin are connected; the bottom of the right end of the C-shaped waste bin is connected with a fourth supporting plate; the left end of the temporary storage cabin of the shampoo is connected with the left support frame; the left end of the connecting block is connected with the left supporting frame; the bottom of the fan-shaped expansion disc is connected with a thinning and foaming detection mechanism.
4. The shampoo foaming amount detection device according to claim 3, wherein the hair thinning and foaming detection mechanism comprises a uniform distribution chamber, a fifth discharge port, a first feeder, a first foaming chamber, a ninth transmission wheel, a first rotary disc, a short hair stirring bar, a first water valve, a sixth discharge port, a tenth transmission wheel, a second rotary disc, a long hair stirring bar, a second foaming chamber, a second water valve and a second feeder; a fifth discharge hole is formed in the left part of the bottom end of the equalizing chamber; a sixth discharge hole is formed in the middle left part of the bottom end of the equalizing chamber; a first feeder is arranged below the bottom end of the fifth discharge hole; the bottom of the first feeder is connected with the first foaming cabin; a ninth driving wheel is arranged above the middle part of the top end of the first foaming cabin; a first water valve is arranged at the right bottom of the first foaming cabin; the middle part of the bottom end of the ninth driving wheel is rotationally connected with the first turntable; the right side of the ninth transmission wheel is in transmission connection with a tenth transmission wheel through a belt; the bottom end of the first rotating disc is rotationally connected with the short dredging stirring bar; the middle part of the bottom end of the tenth driving wheel is rotationally connected with the second turntable; the bottom end of the second turntable is rotationally connected with the long and thin stirring bar; a second foaming cabin is arranged below the bottom end of the long and sparse stirring bar; a second water valve is arranged at the left bottom of the second foaming cabin; a second feeder is arranged at the left top of the second foaming cabin; the middle left part of the top end of the equalizing compartment is connected with the fan-shaped expanding disc; the left top of the first foaming cabin is connected with a first hose; the middle part of the rear end of the first foaming cabin is connected with a first supporting plate; the bottom of the first water valve is connected with the waste liquid collecting cabin; the right side of the tenth driving wheel is connected with a dense foaming detection mechanism; the right top of the second foaming cabin is connected with a second hose; the middle part of the rear end of the second foaming cabin is connected with the first supporting plate; the bottom of the second water valve is connected with the waste liquid collecting cabin.
5. The shampoo foaming amount detection device according to claim 4, wherein the dense foaming detection mechanism comprises an eleventh transmission wheel, a third rotary table, a long dense stirring bar, a third foaming chamber, a third feeder, a seventh discharge port, a third water valve, a twelfth transmission wheel, a fourth rotary table, a short dense stirring bar, a fourth foaming chamber, a fourth feeder, an eighth discharge port and a fourth water valve; the middle part of the bottom end of the eleventh transmission wheel is rotationally connected with the third turntable; the lower part of the bottom end of the eleventh transmission wheel is connected with a third foaming cabin; the left side of the eleventh transmission wheel is in transmission connection with the twelfth transmission wheel through a belt; the bottom end of the third rotary table is rotationally connected with the long and dense stirring strip; a third feeder is arranged at the left top of the third foaming cabin; a third water valve is arranged at the left bottom of the third foaming cabin; a seventh discharge hole is formed above the top end of the third feeder; the middle part of the bottom end of the twelfth driving wheel is rotationally connected with the fourth turntable; the bottom end of the fourth rotating disc is rotationally connected with the short dense stirring strip; a fourth foaming cabin is arranged below the bottom end of the short dense stirring bar; a fourth feeder is arranged at the right top of the fourth foaming cabin; a fourth water valve is arranged at the right bottom of the fourth foaming cabin; an eighth discharge hole is formed above the top end of the fourth feeder; the middle part of the top end of the eleventh transmission wheel is connected with the second bevel gear; the right top of the third foaming cabin is connected with a fourth hose; the middle part of the rear end of the third foaming cabin is connected with the first supporting plate; the top end of the seventh discharge hole is connected with the equalizing cabin; the bottom of the third water valve is connected with the waste liquid collecting cabin; the left side of the twelfth driving wheel is connected with a tenth driving wheel; the left top of the fourth foaming cabin is connected with a third hose; the middle part of the rear end of the fourth foaming cabin is connected with the first supporting plate; the top end of the eighth discharge hole is connected with the equalizing cabin; the bottom of the fourth water valve is connected with the waste liquid collecting cabin.
6. The shampoo foaming amount detection device as claimed in claim 5, wherein the blades are provided with ten groups, and are equidistantly distributed on the outer surface of the second circular roller by taking the center point of the second circular roller as a center.
7. The device for detecting the foaming amount of the shampoo as claimed in claim 6, wherein the size of the gap between the bottom of the rubber sleeve and the top of the temporary storage compartment for the shampoo is one to two millimeters.
8. The device for detecting the amount of foaming shampoo as claimed in claim 7, wherein a protrusion is formed on the right top of the temporary storage compartment for shampoo.
9. The apparatus for measuring shampoo foaming amount according to claim 8, wherein a tray is provided on top of each of the first feeder, the second feeder, the third feeder and the fourth feeder.
CN202010250307.2A 2020-04-01 2020-04-01 Shampoo foaming amount detection device Withdrawn CN111398527A (en)

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CN202010250307.2A CN111398527A (en) 2020-04-01 2020-04-01 Shampoo foaming amount detection device

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CN108867775A (en) * 2018-07-18 2018-11-23 苏州宝芝林家居有限公司 A kind of foam maker for sanitary ware
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US6155351A (en) * 1995-05-24 2000-12-05 Intelagard, Inc. Foam based product solution delivery apparatus
CN201803998U (en) * 2010-06-21 2011-04-20 中国石油天然气股份有限公司 Foam performance evaluation device
CN202049149U (en) * 2011-03-08 2011-11-23 福州萍晴日用化妆品有限公司 Bubble detecting device
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CN204708219U (en) * 2015-06-23 2015-10-21 冯琳 A kind of clean hair device
CN206161614U (en) * 2016-09-14 2017-05-10 肖进新 Foam performance testing arrangement
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CN207730647U (en) * 2017-12-27 2018-08-14 广西和桂集团有限公司 A kind of infrared ray brbble test device
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Publication number Priority date Publication date Assignee Title
CN112847934A (en) * 2021-01-08 2021-05-28 南丰县乾泰再生资源回收利用有限公司 Cleaning and impurity removing equipment for recycling waste polyester

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Application publication date: 20200710