Disclosure of Invention
In order to overcome the defects that the glutinous rice needs to be knocked and mashed by hands holding a mashing tool back and forth, the time is long, the labor is hard, and the hand pain of a person causes low working efficiency, the invention has the technical problems that: the utility model provides a can replace artifical strike glutinous rice and pound to pieces, strike former when more laborsaving, and work efficiency is high glutinous rice cake preparation.
The technical implementation scheme of the invention is as follows: the utility model provides a strike former during glutinous rice cake preparation, includes base, leading truck, places a section of thick bamboo, gear motor, first gear, second gear, strikes the subassembly and gets the material subassembly, the rigid coupling of base one side symmetry formula has the leading truck, strikes the unit mount between two leading trucks, gets the material unit mount in base one side, places a rotary type and locates on getting the material subassembly, the fixed suit of second gear is in placing the outer one side circumference of a section of thick bamboo, and gear motor installs on getting the material subassembly, and the fixed suit of first gear is in gear motor's output shaft tip, first gear and second gear meshing.
The knocking component comprises a supporting rod, a handle, a clamping rod, a cylinder and a knocking rod, the supporting rod is slidably arranged between the inner sides of two guide frames, the outer two sides of the supporting rod are spaced at intervals with grooves, the clamping rod is slidably arranged in the inner sides of the guide frames in a penetrating mode, the clamping rod is matched with the grooves of the supporting rod, the cylinder is fixedly arranged in the middle of one side of the supporting rod in a penetrating mode, the knocking rod is fixedly connected to the end portion of a telescopic rod of the cylinder, and the handle is fixedly connected to the outer two sides of the supporting rod.
Get material subassembly including support frame, slider, first spring and link, the rigid coupling of support frame symmetry formula is in base one side, and placing in the support frame inboard of slider slidingtype, slider one side is opened slottedly, and the cross-under of link rotary type is between two slider middle parts, and link inboard circumference is connected with placing a section of thick bamboo outside circumference rotary type, and one side and gear motor one side fixed connection in the link, and first spring coupling is between slider one side and support frame inboard.
Preferably, the material guide device further comprises a material guide assembly, wherein the material guide assembly comprises a first connecting rod, a material guide plate, an L-shaped connecting rod and a scraper, the first connecting rod is symmetrically fixedly connected to the periphery of one side outside the connecting frame, the scraper is fixedly connected to the tail end of the first connecting rod, the scraper is in contact fit with the inner wall of the placing barrel, the L-shaped connecting rod is fixedly connected to the end part of the supporting frame, the material guide plate is fixedly connected between the inner ends of the two L-shaped connecting rods, and the material guide plate is slidably sleeved on the knocking rod.
Preferably, the auxiliary rotary blanking device further comprises an auxiliary rotary blanking assembly, the auxiliary rotary blanking assembly comprises a pull rod, a second connecting rod, a third gear and a rack, the pull rod is fixedly sleeved on the shaft end portions of the two sides of the connecting frame, the second connecting rod is fixedly connected to one side of the pull rod, the tail end of the second connecting rod is fixedly connected with the outer side of the connecting frame, the third gear is fixedly sleeved on the circumferential direction of one side of the shaft of the two sides of the connecting frame, the rack is fixedly connected to one side of the supporting frame, and the rack is meshed with the third gear.
Preferably, the device also comprises a limiting component, the limiting component comprises a wedge-shaped fixture block, a third connecting rod, a second spring, a limiting rod, an L-shaped guide plate, a third spring, a pedal and a pull wire, the L-shaped guide plate is fixedly connected to one side of the support frame, the limiting rod is slidably connected between one side of the L-shaped guide plate and one side of the support frame, the third spring is wound between the circumferential direction of one side of the limiting rod and the outer side of the L-shaped guide plate, the pull wire is fixedly connected to one end of the limiting rod, the pedal is rotatably connected to one side of the base, two ends of the pedal are respectively fixedly connected with the tail ends of the two pull wires, the third connecting rods are fixedly connected to one side of the support frame at intervals, every two third connecting rods are in one group, the wedge-shaped fixture block is slidably sleeved between each group of the third connecting rods, one end of the wedge-shaped fixture block penetrates one side of the support frame to be matched with a groove of the sliding block, the wedge-shaped fixture block is slidably sleeved on the limiting rod to be matched with the limiting rod, the second spring is symmetrically connected between the inner side of the wedge-shaped fixture block and the outer side of the support frame, the second spring is sleeved on the third connecting rod.
Preferably, still including the subassembly that oils, the subassembly that oils is including support, oil storage bottle, oil storage pipe, the lantern ring, fourth connecting rod, first shifting block, second shifting block and fixed block, the support rigid coupling is in the outer one side of link span, and oil storage bottle rigid coupling is in support one side, and oil storage pipe rigid coupling is in oil storage bottle one side and intercommunication, and the oil outlet pipe tail end is close to in placing a section of thick bamboo, and the lantern ring is fixed to be placed in support one side, and cross-under of fourth connecting rod slidingtype is between lantern ring middle part and support one side, and the suit of second shifting block slidingtype is on the fourth connecting rod, and second shifting block and oil storage bottle cooperation, first shifting block interval rigid coupling in fourth connecting rod one side circumference, and the fixed block rigid coupling is in placing a section of thick bamboo circumference one side, fixed block and first shifting block cooperation.
Preferably, the shape of the scraper is circular ring.
Compared with the prior art, the invention has the following advantages:
1. through pouring into the glutinous rice that will evaporate ripe and placing a section of thick bamboo in, start gear motor and drive first gear revolve, first gear revolve drives through the second gear and places a section of thick bamboo and rotate, places a section of thick bamboo and rotates and drive glutinous rice and rotate, and the restart strikes the subassembly, strikes the subassembly function and smashes glutinous rice to pieces, so, need not the manual glutinous rice of people and smashes to pieces, and is more laborsaving, and work efficiency is high.
2. Through the effect of guide subassembly, can will glue and scrape down placing a section of thick bamboo inner wall's glutinous rice, and can also scrape down knocking the glutinous rice that glues on the pole, so, can avoid knocking to be stained with glutinous rice and influence follow-up use, and can avoid placing a section of thick bamboo inner wall and be stained with glutinous rice and can not compare and smash to pieces.
3. Through the effect of restriction subassembly, can be fixed placing a section of thick bamboo, so, need not operating personnel and pulling the pull rod always and make to place a section of thick bamboo fixed labour saving and time saving.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic view of a first partially cut-away perspective structure of the present invention.
Fig. 3 is a second partially sectional perspective view of the present invention.
Fig. 4 is a schematic view of a third partially sectional perspective structure of the present invention.
Fig. 5 is an enlarged perspective view of the present invention a.
Fig. 6 is a partial perspective view of the present invention.
Fig. 7 is an enlarged perspective view of the present invention B.
The meaning of the reference symbols in the figures: 1. a base, 2, a guide frame, 3, a placing cylinder, 31, a speed reducing motor, 32, a first gear, 33, a second gear, 4, a knocking component, 41, a support rod, 42, a handle, 43, a clamping rod, 44, a cylinder, 45, a knocking rod, 5, a material taking component, 51, a support frame, 52, a sliding block, 53, a first spring, 54, a connecting frame, 6, a material guiding component, 61, a first connecting rod, 62, a material guiding plate, 63, an L-shaped connecting rod, 64, a scraping plate, 7, an auxiliary rotary blanking component, 71, a pull rod, 72, a second connecting rod, 73, a third gear, 74, a rack, 8, a limiting component, 81, a wedge-shaped clamping block, 82, a third connecting rod, 83, a second spring, 84, a limiting rod, 85, an L-shaped guide plate, 86, a third spring, 87, a pedal, 88, a pull wire, 9, an oiling component, 91, a support, 92, an oil storage bottle, 93, an oil outlet pipe, 94, a lantern ring, 95. a fourth connecting rod 96, a first shifting block 97, a second shifting block 98 and a fixed block.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example (b): a knocking forming device for glutinous rice cake production.
Referring to fig. 1, fig. 2 and fig. 6 show, including base 1, leading truck 2, place a section of thick bamboo 3, gear motor 31, first gear 32, second gear 33, strike subassembly 4 and get material subassembly 5, base 1 top left and right sides middle part all rigid coupling has leading truck 2, be equipped with between the leading truck 2 of the left and right sides and strike subassembly 4, base 1 top is equipped with gets material subassembly 5, it is equipped with and places a section of thick bamboo 3 to get material subassembly 5 the last rotation type, it is equipped with second gear 33 to place 3 outside lower part circumference of a section of thick bamboo fixed suiting, it has gear motor 31 to get the last rigid coupling of material subassembly 5, gear motor 31's output shaft tip rigid coupling has first gear 32, first gear 32 and the meshing of second gear 33.
The knocking component 4 comprises a supporting rod 41, a handle 42, a clamping rod 43, a cylinder 44 and a knocking rod 45, the supporting rod 41 is placed between the inner sides of the left and right side guide frames 2 in a sliding mode, the lower portions of the left and right side surfaces outside the supporting rod 41 are provided with grooves, the cylinder 44 is fixedly connected in the middle of the top of the supporting rod 41 in a penetrating mode, the knocking rod 45 is fixedly connected to the end portion of a telescopic rod of the cylinder 44, the handle 42 is fixedly connected to the middle portions of the left and right side surfaces outside the supporting rod 41, the clamping rod 43 is connected in a sliding mode in the inner side of the upper portion of the guide frame 2 in a penetrating mode, and the clamping rod 43 is matched with the grooves of the supporting rod 41.
The material taking assembly 5 comprises a support frame 51, a sliding block 52, a first spring 53 and a connecting frame 54, the support frame 51 is fixedly connected between the left side and the right side of the top of the base 1, the sliding block 52 is placed in the support frame 51 in an inner sliding mode, the front side surface of the sliding block 52 is provided with a groove, the connecting frame 54 is rotatably connected between the middle parts of the sliding blocks 52 on the left side and the right side in a penetrating mode, the inner side circumference of the connecting frame 54 is rotatably connected with the upper part of the outer side circumference of the placing barrel 3, the bottom of the connecting frame 54 is fixedly connected with the bottom of the speed reducing motor 31, and the first spring 53 is connected between the bottom of the sliding block 52 and the bottom of the support frame 51.
Firstly, an operator puts steamed glutinous rice into the placing barrel 3, the speed reducing motor 31 is started, the speed reducing motor 31 rotates to drive the first gear 32 to rotate, the first gear 32 rotates to drive the second gear 33 to rotate, the second gear 33 rotates to drive the placing barrel 3 to rotate, the placing barrel 3 rotates to drive the glutinous rice to rotate, the position of the knocking component 4 is adjusted according to the amount of the glutinous rice, when the knocking component 4 is adjusted to a proper position, the knocking component 4 stops being adjusted, the knocking component 4 is started, the knocking component 4 moves up and down to knock the glutinous rice in rotation, and the glutinous rice is smashed into glutinous rice cakes. After the glutinous rice cake is made, the knocking component 4 is closed, the speed reduction motor 31 is closed again, the placing cylinder 3 stops driving the glutinous rice cake to rotate, the material taking component 5 drives the placing cylinder 3 to move downwards to a proper position, the lower part of the placing cylinder 3 swings upwards in a pulling mode, the lower part of the placing cylinder 3 swings upwards to enable the upper part to swing downwards, the placing cylinder 3 stops pulling the placing cylinder 3 when being in an inclined state, and the glutinous rice cake in the placing cylinder 3 can be taken out for subsequent treatment. When the glutinous rice cake is completely taken out, the upper part of the placing cylinder 3 is pulled to swing upwards for resetting, the lower part of the placing cylinder 3 swings downwards for resetting, the placing cylinder 3 is loosened, and the material taking component 5 drives the placing cylinder 3 to move upwards for resetting.
Firstly holding the handle 42, pulling the handle 42 to move up and down, moving the handle 42 up and down to drive the support rod 41 to move up and down, moving the support rod 41 up and down to drive the cylinder 44 to move up and down, moving the cylinder 44 up and down to drive the knocking rod 45 to move up and down, when the knocking rod 45 moves up and down to a position suitable for knocking glutinous rice, stopping pulling the handle 42, stopping moving the knocking rod 45, pulling the clamping rod 43 to move inwards to be clamped in the groove of the support rod 41, fixing the support rod 41 by matching the clamping rod 43 with the guide frame 2, starting the cylinder 44, extending the telescopic rod of the cylinder 44 to drive the knocking rod 45 to move up and down, moving the knocking rod 45 up and down to knock the glutinous rice, and mashing the glutinous rice. When the glutinous rice is made into glutinous rice cake, the cylinder 44 is closed, and the knocking rod 45 stops moving up and down.
When glutinous rice is made into glutinous rice cakes, the placing cylinder 3 is pulled to move downwards, the placing cylinder 3 moves downwards to drive the connecting frame 54 to move downwards, the connecting frame 54 moves downwards to drive the sliding block 52 to move downwards, the first spring 53 is compressed, when the placing cylinder 3 moves downwards to a proper position, the placing cylinder 3 stops being pulled to move downwards, the lower part of the placing cylinder 3 is pulled to swing upwards, the lower part of the placing cylinder 3 swings upwards to swing downwards, the upper part of the placing cylinder 3 swings downwards, the placing cylinder 3 is in an inclined state, the placing cylinder 3 stops being pulled, can take out the glutinous rice cake from placing a section of thick bamboo 3 in, the glutinous rice cake is whole to be taken out the back, and the pulling is placed section of thick bamboo 3 upper portion and is upwards swung and reset, just also makes and places a section of thick bamboo 3 lower part and swing downwards and reset, loosens again and places a section of thick bamboo 3, because of the effect of first spring 53, slider 52 rebound resets and drives link 54 rebound and resets, and link 54 rebound resets and drives and place a section of thick bamboo 3 rebound and reset.
Referring to fig. 1, 3 and 4, the material guiding device further includes a material guiding assembly 6, the material guiding assembly 6 includes a first connecting rod 61, a material guiding plate 62, an L-shaped connecting rod 63 and a scraping plate 64, the first connecting rod 61 is fixedly connected to the middle of the left side and the right side of the outer top of the connecting frame 54, the material guiding plate 62 is fixedly connected to the top end of the first connecting rod 61, the lower portion of the material guiding plate 62 is located in the placing cylinder 3 and is in contact fit with the inner wall of the placing cylinder, the L-shaped connecting rod 63 is fixedly connected to the middle of the top of the supporting frame 51, the scraping plate 64 is fixedly connected between the inner ends of the L-shaped connecting rods 63 on the left side and the right side, and the lower portion of the knocking rod 45 is located in the circle center position of the scraping plate 64 and is in sliding fit with the scraping plate.
The automatic feeding device is characterized by further comprising an auxiliary rotary feeding assembly 7, wherein the auxiliary rotary feeding assembly 7 comprises a pull rod 71, a second connecting rod 72, a third gear 73 and a rack 74, the pull rod 71 is fixedly sleeved at the left end and the right end of a shaft of the connecting frame 54, the second connecting rod 72 is fixedly connected to the bottom of the pull rod 71, the inner end of the second connecting rod 72 is fixedly connected with the outer side face of the connecting frame 54, the rack 74 is fixedly connected to the rear side of the upper portion of the outer side face of the supporting frame 51 at the left side and the right side, the third gear 73 is fixedly sleeved on the shaft at the left side and the right side of the connecting frame 54, and the third gear 73 is meshed with the rack 74.
When placing a section of thick bamboo 3 and driving glutinous rice and rotate, the stock guide 62 can will glue and scrape down the glutinous rice that places a section of thick bamboo 3 inner wall and make it remove to the centre, strikes pole 45 and reciprocates and then smashes glutinous rice to pieces and form glutinous rice cake, and strikes the in-process that pole 45 reciprocated, and scraper blade 64 will glue and strike off the glutinous rice that strikes, strikes off the glutinous rice that drops and is smashed to pieces in placing a section of thick bamboo 3. Therefore, the influence of sticky rice on the knocking rod 45 on subsequent use can be avoided, and the phenomenon that sticky rice on the inner wall of the placing barrel 3 cannot be smashed can be avoided.
When glutinous rice is made into glutinous rice cakes, the pull rod 71 can be pulled to swing downwards, the pull rod 71 swings downwards to drive the connecting frame 54 to rotate reversely, the connecting frame 54 rotates reversely to drive the third gear 73 to rotate reversely, the third gear 73 rotates reversely to move downwards through the rack 74, the third gear 73 moves downwards to drive the connecting frame 54 to move downwards, the connecting frame 54 moves downwards to drive the placing cylinder 3 to move downwards, the pull rod 71 swings downwards to drive the connecting frame 54 to rotate reversely through the second connecting rod 72, the connecting frame 54 rotates reversely to drive the placing cylinder 3 to rotate reversely, when the placing cylinder 3 rotates reversely to be in an inclined state, the pull rod 71 is stopped to be pulled, the glutinous rice cakes in the placing cylinder 3 can be taken out for subsequent treatment, the pull rod 71 is loosened, the slide block 52 moves upwards to drive the connecting frame 54 to move upwards to reset under the action of the first spring 53, the connecting frame 54 resets to drive the third gear 73 to move upwards, the third gear 73 rotates forwards through the gear, the placing cylinder 3 is rotated forward and reset, and the pull rod 71 swings upward and resets. So, need not operating personnel earlier to pull and place a section of thick bamboo 3 downstream, pull again and place a section of thick bamboo 3 reversal, it is more convenient to operate.
Referring to fig. 1, 4, 5, 6 and 7, the device further includes a limiting assembly 8, the limiting assembly 8 includes a wedge-shaped fixture block 81, a third connecting rod 82, a second spring 83, a limiting rod 84, an L-shaped guide plate 85, a third spring 86, a pedal 87 and a pull wire 88, the L-shaped guide plate 85 is fixedly connected to the lower portion of the front side of the supporting frame 51, the limiting rod 84 is slidably connected between the L-shaped guide plate 85 and the front side of the supporting frame 51 in a penetrating manner, the third spring 86 is wound between the lower portion of the limiting rod 84 and the outer top portion of the L-shaped guide plate 85, the pull wire 88 is fixedly connected to the bottom end of the limiting rod 84, two wedge-shaped fixture blocks 81 are slidably connected to the upper portion of the front side of the supporting frame 51, the wedge-shaped fixture blocks 81 are fitted to the grooves of the sliding blocks 52, the wedge-shaped fixture blocks 81 are slidably sleeved on the limiting rod 84 and fitted thereto, four third connecting rods 82 are fixedly connected to the upper portion of the front side of the supporting frame 51, every two third connecting rods 82 form a group, each group of third connecting rods 82 penetrates through the wedge-shaped fixture block 81 to be in sliding fit with the wedge-shaped fixture block 81, second springs 83 are connected between the left side and the right side of the inner front side surface of the wedge-shaped fixture block 81 and the front side surface of the support frame 51, the second springs 83 are sleeved on the third connecting rods 82, a pedal 87 is rotatably connected to the front side of the top of the base 1, and two ends of the rear portion of the pedal 87 are fixedly connected with the tail ends of pull wires 88 on the left side and the right side respectively.
The oiling device also comprises an oiling component 9, the oiling component 9 comprises a support 91, an oil storage bottle 92, an oil outlet pipe 93, a lantern ring 94, a fourth connecting rod 95, a first shifting block 96, a second shifting block 97 and a fixed block 98, the support 91 is fixedly connected to the outer top of the connecting frame 54, the lantern ring 94 is fixedly connected to the upper portion of the rear side of the support 91 in an embedded manner, the fourth connecting rod 95 is rotatably connected between the lantern ring 94 and the front side of the upper portion of the support 91 in a penetrating manner, the first shifting block 96 is fixedly connected to the front portion of the fourth connecting rod 95 at even circumferential intervals, the second shifting block 97 is sleeved in the middle portion of the fourth connecting rod 95 in a circumferential sliding manner, the second shifting block 97 is positioned in the support 91, the oil storage bottle 92 is fixedly connected between the left side and the right side of the top of the support 91, the oil outlet pipe 93 is fixedly connected to the lower portion of the front side of the oil storage bottle 92 and communicated with the oil outlet pipe 93, the tail end of the oil outlet pipe 93 is positioned above the placement barrel 3, the lower portion of the oil storage bottle 92 is matched with the second shifting block 97, the circumferential side of the top of the placement barrel 3 is fixedly connected with the fixed block 98, the fixed block 98 is engaged with the first toggle 96.
When glutinous rice is made into glutinous rice cakes, the pedal 87 is stepped to swing downwards, the pedal 87 swings downwards to drive the pull wire 88 to move downwards, the pull wire 88 moves downwards to drive the limiting rod 84 to move downwards, the third spring 86 is compressed, the limiting rod 84 moves downwards to drive the wedge-shaped fixture block 81 to move forwards, the second spring 83 is stretched, the wedge-shaped fixture block 81 moves forwards to be separated from the groove of the sliding block 52, can spur pull rod 71 downswing, it is the tilt state also just to place a section of thick bamboo 3 reversal, and then slider 52 downshifting corresponds with below wedge fixture block 81, loosen footboard 87, because of the effect of third spring 86, gag lever post 84 upstroke drives footboard 87 upswing through acting as go-between 88 and resets, gag lever post 84 upstroke is not spacing to wedge fixture block 81, because of the effect of second spring 83, wedge fixture block 81 moves the inslot that inserts slider 52 backward and fixes it, operating personnel will place the glutinous rice cake in the section of thick bamboo 3 and take out the processing. After placing the glutinous rice cake in a section of thick bamboo 3 and all taking out, step on footboard 87 once more and swing down and drive gag lever post 84 downstream through acting as go-between 88, just also drive the groove of wedge fixture block 81 outwards removal and slider 52 and break away from, because of the effect of first spring 53, slider 52 rebound resets and drives link 54 rebound and resets, it also resets to place a section of thick bamboo 3 and rebound, loosen footboard 87, because of the effect of third spring 86, gag lever post 84 rebound resets, and because of the effect of second spring 83, wedge fixture block 81 rebound resets. Therefore, the placing barrel 3 is fixed without the need of pulling the pull rod 71 all the time by an operator, and time and labor are saved.
Firstly, pour a proper amount of edible oil into oil storage bottle 92, and then place a section of thick bamboo 3 and rotate, it still drives fixed block 98 and rotates to place a section of thick bamboo 3, when fixed block 98 rotates and contacts with first shifting block 96, fixed block 98 drives first shifting block 96 and rotates, first shifting block 96 rotates and drives fourth connecting rod 95 and rotates, fourth connecting rod 95 rotates and drives second shifting block 97 and rotates, when fixed block 98 continues to rotate and breaks away from with first shifting block 96, first shifting block 96 stall, second shifting block 97 just also stalls, so relapse, when second shifting block 97 rotates and contacts with oil storage bottle 92 bottom, second shifting block 97 makes the edible oil in the oil storage bottle 92 flow into oil outlet pipe 93, the edible oil in the oil outlet pipe 93 drops to place a section of thick bamboo 3 in with glutinous rice mixedly together, when second shifting block 97 rotates and breaks away from with oil storage bottle 92 bottom, edible oil stops discharging. When edible oil does not need to be discharged, the fourth connecting rod 95 is pulled to move backwards, the fourth connecting rod 95 moves backwards to drive the first shifting block 96 to move backwards, the first shifting block 96 moves backwards to a proper position, the fourth connecting rod 95 stops being pulled, the fixing block 98 rotates and cannot be in contact with the first shifting block 96, and similarly, when the edible oil needs to be discharged, the fourth connecting rod 95 is pushed to drive the first shifting block 96 to move backwards to reset. Thus, sticky rice can be prevented from being stuck on the inner wall of the placing cylinder 3 and being difficult to be mashed.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.