Auxiliary conveying device for double-layer cloth back beam roller of textile machinery
Technical Field
The invention belongs to the field of textiles, and particularly relates to an auxiliary conveying device for a double-layer cloth back beam roller of a textile machine.
Background
The back beam roller of the textile machine is positioned in the equipment and is mainly used for assisting in conveying and furling cloth, wherein the cloth of the auxiliary conveying device of the back beam roller of the double-layer cloth of the textile machine is bonded by two layers, the bottom layer is an air-impermeable layer, the surface of the cloth is woven by a grid shape, and when the equipment runs in the time with much high-temperature mosquitoes in summer, the temperature in the equipment can be increased.
Based on the findings of the inventor, the existing back beam roller device of the textile machine mainly has the following defects, such as:
1. when equipment is in operation, the back beam roller can generate heat under the condition of high temperature and contact with the air-impermeable layer attached to the clothes, water drops are easily generated due to temperature difference, and the water is difficult to evaporate due to the fact that the bottom layer is air-impermeable, so that the cloth can be influenced when the bottom layer is always positioned inside.
2. When mosquitoes fly into the fabric in summer, the mosquitoes are easily entangled by the grid layer on the surface of the running fabric, and the fabric is difficult to break away, if the mosquitoes are not timely disposed, the mosquitoes and the mosquitoes are wound into the fabric, so that the appearance of the fabric in the later period is influenced.
Therefore, an auxiliary conveying device for a double-layer cloth back beam roller of a textile machine needs to be provided.
Disclosure of Invention
In order to solve above-mentioned technique when equipment is in the operation, the back beam cylinder can be under the condition of high temperature, the heat that produces contacts with the ventilative layer of pasting the clothes mutually, the temperature phase difference produces the drop of water more easily, because the bottom is ventilative difficult to fall its moisture content evaporation, be in inside always and have influence to the cloth, there is the mosquito to fly into in summer, entangle by the cloth surface net layer of operation more easily, be difficult to struggle to take off, if not in time handle it, will roll up together with the mosquito and enter, the problem of the outward appearance in cloth later stage has been influenced.
The invention relates to an auxiliary conveying device for a double-layer cloth back beam roller of a textile machine, which is achieved by the following specific technical means:
the structure of the device comprises a back beam roller device, a deinsectization rotating cylinder, a supporting frame, an operation box, a bottom supporting seat and a front beam roller.
The utility model discloses a rotary drum of deinsectization, including back beam roller device, rotatory section of thick bamboo of deinsectization below is located to the back beam roller device, the rotatory section of thick bamboo of deinsectization welds with the control box surface mutually, support frame and bottom sprag seat structure as an organic whole, the front beam gyro wheel welds with the control box surface mutually.
The back beam roller device comprises a water dripping laminating extension rod, a spongy body, a standby extension rod, an extension supporting plate, a movable fixing groove, an elastic pushing column, an elastic return plate, a central spindle and a reinforcing buckle layer, wherein the water dripping laminating extension rod is positioned between the spongy bodies, the spongy body is installed on the outer surface of the standby extension rod, the standby extension rod is welded with the extension supporting plate, the standby extension rod is embedded into an inner groove of the movable fixing groove and is movably connected, the elastic pushing column is installed on the outer surface of the standby extension rod, the elastic return plate abuts against the outer surface of the elastic pushing column and is movably connected, and the reinforcing buckle layer is sleeved on the outer ring of the central spindle and is positioned on the same axis.
As a further improvement of the insect killing rotary drum, the insect killing rotary drum comprises an extrusion groove, a compression rod, a compression block, an insect clamping rod, a limiting drum, a stressed extrusion rod, a rotating shaft, an arc support rod and a fixed push block, wherein the stressed extrusion rod is welded with the compression rod, the stressed extrusion rod penetrates through the extrusion groove and is movably connected with the extrusion groove, the insect clamping rod is hinged with the compression block, the compression rod is installed inside the limiting drum, the arc support rod is installed between the rotating shaft and the fixed push block, the fixed push block is of an arc structure, and ten stressed extrusion rods are arranged.
As a further improvement of the present invention, the drip attaching extension rod includes a water absorbing strip, a rubber layer, a drip head mechanism, a main support rod, a fixing buckle, and a fiber strip, the water absorbing strip is installed inside the main support rod, the rubber layer is attached to an outer surface of the fiber strip, the drip head mechanism is installed on the outer surface of the main support rod, the fixing buckle is welded to the main support rod, the drip head mechanism is made of stainless steel, and the surface has a certain smoothness.
As a further improvement of the invention, the water absorption strip comprises an absorption film, an absorption groove, a soft strip, a limiting groove and a pull-back block, the left end of the pull-back block is connected with the right end of the absorption film, the absorption film is positioned in the absorption groove, the limiting groove is embedded in the soft strip, and the absorption film is made of a soft airtight material.
As a further improvement of the invention, the water dropper mechanism comprises four water dropper heads, sliding-assistant seams, water dropper heads and a stabilizing body, wherein the water dropper heads are welded at the bottom end of the stabilizing body and are arranged between the sliding-assistant seams.
As a further improvement of the invention, the water dropper comprises a sliding head, a rubber interlayer, a gravity center bead, a water sliding body, an auxiliary shaft, a balance groove and a friction sponge layer, wherein the top end of the sliding head is connected with the bottom end of the rubber interlayer, the balance groove penetrates through the inside of the water sliding body, the friction sponge layer is attached to the inner wall of the balance groove, the gravity center bead is arranged in an inner groove of the balance groove, the water sliding body is connected with the auxiliary shaft, the gravity center bead is of a spherical structure, and the balance groove is of an arc structure.
As a further improvement of the invention, the elastic return plate comprises an extension fixing block, a soft shell, an elastic limiting block, an elastic plate and a support layer, wherein the extension fixing block and the elastic plate are of an integrated structure, the elastic plate is installed inside the soft shell, the elastic limiting block is embedded inside the elastic plate, the support layer is located inside the soft shell, the support layer is made of rubber materials, and the elastic limiting block is of a triangular structure.
Compared with the prior art, the invention has the following beneficial effects:
1. when the internal equipment generates heat through friction, the roller for winding the cloth is contacted with the inner layer of the cloth to form a plurality of water drops, the water drops can slide into the outer surface of the water dropper through the main support rod, the water sliders assist the water drops to slide onto the sliding heads, the water drops can slide into the water suction grooves through the water drop heads, the water suction membranes in the water suction grooves can be adsorbed with the other water suction membrane through water suction force, the water suction membranes above the soft strips can also be adsorbed together when the water drops are more and more, when the main support rod moves inwards, the fixing buckles release the standby extension rods, the sponge bodies abut against the inner part of the air-impermeable layer, the rest water is absorbed and supported, and the standby rods can timely extend out and adsorb water mist when the water mist occurs.
2. When the mosquito is twined in the net surface, the crowded pole of atress will rotate, when it rotates fixed ejector pad department, its compression pole receives the extrusion for press from both sides worm pole atress and move toward interior clamp, if when the surface has the mosquito, will be pressed from both sides in the lump, when moving away fixed ejector pad, releases the mosquito, drops to in placing the check, opens again and press from both sides worm pole, waits for next operation, can be when equipment moves, carries out the surface to it simultaneously and presss from both sides and get.
Drawings
Fig. 1 is a schematic structural view of an auxiliary conveying device of a double-layer cloth back beam roller of a textile machine.
Fig. 2 is a right-view internal structural schematic diagram of a back beam drum device according to the present invention.
FIG. 3 is a schematic diagram of the right view of the inner structure of the deinsectization rotary drum of the present invention.
Fig. 4 is a schematic front view of an internal structure of a drip-fit extension rod according to the present invention.
Fig. 5 is a schematic front view of the internal structure of a water absorbent strip of the present invention.
Fig. 6 is a front view of the inner structure of a water drop head according to the present invention.
Fig. 7 is a front view of the inner structure of a water drop head according to the present invention.
Fig. 8 is a schematic front view of an internal structure of an elastic return plate according to the present invention.
In the figure: a rear beam roller device-1, a deinsectization rotating cylinder-2, a support frame-3, an operation box-4, a bottom support seat-5, a front beam roller-6, a water dropping joint extension rod-11, a sponge body-12, a standby extension rod-13, an extension supporting plate-14, a movable fixed groove-15, an elastic pushing column-16, an elastic return plate-17, a central main shaft-18, a reinforcing buckle layer-19, an extrusion groove-21, a compression rod-22, a compression block-23, a pest clamping rod-24, a limit cylinder-25, a stress extrusion rod-26, a rotating shaft-27, an arc supporting rod-28, a fixed pushing block-29, a water absorption strip-111, a rubber layer-112, a water drop head structure-113, a main supporting rod-114, a fixed buckle-115, a whisker strip-116, a water drop structure-113, a main supporting rod-, The water absorption film-1111, the water absorption groove-1112, the soft strip-1113, the limiting groove-1114, the pull-back block-1115, the water drop head-1131, the sliding assisting seam-1132, the water drop head-1133, the stabilizing body-1134, the sliding falling head-11331, the rubber interlayer-11332, the gravity center bead-11333, the water sliding body-11334, the auxiliary shaft-11335, the balancing groove-11336, the friction sponge layer-11337, the extension fixing block-171, the soft shell-172, the limit bullet block-173, the bullet plate-174 and the support layer-175.
Detailed Description
The invention is further described below with reference to the accompanying drawings:
example (b):
as shown in figures 1 to 8:
the invention provides a double-layer cloth back beam roller auxiliary conveying device of a textile machine, which structurally comprises a back beam roller device 1, an insect killing rotary drum 2, a support frame 3, an operation box 4, a bottom support seat 5 and a front beam roller 6.
Back beam cylinder device 1 locates 2 below rotatory section of thick bamboos of deinsectization, rotatory section of thick bamboo 2 of deinsectization welds with 4 surfaces of control box mutually, support frame 3 and bottom sprag seat 5 structure as an organic whole, front beam gyro wheel 6 welds with 4 surfaces of control box mutually.
The back beam roller device 1 comprises a water dripping attaching extending rod 11, a spongy body 12, a standby extending rod 13, an extending supporting plate 14, a movable fixing groove 15, an elastic pushing column 16, an elastic returning plate 17, a central spindle 18 and a reinforcing buckle layer 19, wherein the water dripping attaching extending rod 11 is located between the spongy bodies 12, the spongy body 12 is installed on the outer surface of the standby extending rod 13, the standby extending rod 13 is welded with the extending supporting plate 14, the standby extending rod 13 is embedded into an inner groove of the movable fixing groove 15 and is movably connected with the inner groove, the elastic pushing column 16 is installed on the outer surface of the standby extending rod 13, the elastic returning plate 17 abuts against the outer surface of the elastic pushing column 16 and is movably connected with the outer groove, and the reinforcing buckle layer 19 is sleeved on the outer ring of the central spindle 18 and is located on the same axis.
Wherein, the deinsectization rotary cylinder 2 comprises an extrusion groove 21, a compression rod 22, a compression block 23, a pest clamping rod 24, a limit cylinder 25, a stressed extrusion rod 26, a rotating shaft 27, an arc supporting rod 28 and a fixed pushing block 29, the stressed extrusion rod 26 is welded with the compression rod 22, the stressed extrusion rod 26 penetrates through the extrusion groove 21 and is movably connected with the compression block 23, the pest clamping rod 24 is hinged with the compression block 23, the compression rod 22 is arranged in the limit cylinder 25, the arc supporting rod 28 is arranged between the rotating shaft 27 and the fixed pushing block 29, the fixed pushing block 29 is of an arc structure, ten stressed extrusion rods 26 are provided, the rotating shaft 27 can rotate together when the device operates and rotates, the fixed pushing block 29 is always fixed at a lower position, when the stressed extrusion rod 26 moves to a certain position, the stressed extrusion rod 24 is pushed outwards by the force of the fixed pushing block 29, and the pest clamping rod 24 can be stressed above the operating device to clamp and clamp the pests above the operating device, when the clamp is clamped to a certain position, the clamp is released to wait for the operation of the next round.
The water dropping attaching extension rod 11 comprises a water absorbing strip 111, a rubber layer 112, a water dropping head mechanism 113, a main supporting rod 114, a fixing buckle 115 and a fiber strand 116, wherein the water absorbing strip 111 is installed inside the main supporting rod 114, the rubber layer 112 is attached to the outer surface of the fiber strand 116, the water dropping head mechanism 113 is installed on the outer surface of the main supporting rod 114, the fixing buckle 115 is welded with the main supporting rod 114, the water dropping head mechanism 113 is made of stainless steel, the surface of the water dropping head mechanism 113 has certain smoothness, the outer surface of the main supporting rod 114 can assist water to smoothly flow, the water dropping head mechanism 113 can assist water to form water drops to flow downwards, the rubber layer 112 can be buffered when the fiber strand 116 is stressed and extruded, the water absorbing strip 111 is more durable, and the water absorbing strip 111 can be adsorbed together with the corresponding water absorbing strip 111.
Wherein, the water absorption strip 111 includes inhales membrane 1111, water absorption groove 1112, soft strip 1113, spacing groove 1114, pulls back piece 1115, it is connected with inhales membrane 1111 right-hand member to pull back piece 1115 left end, it is located inside the water absorption groove 1112 to inhale the membrane 1111, spacing groove 1114 is embedded inside soft strip 1113, it is the ventilative material software to inhale membrane 1111, when having water to put into in the water absorption groove 1112, it inhales membrane 1111 and can be together bloated outward through the suction of water together, supplementary it is attached together with other inhaling membrane 1111 mutually, it pulls back piece 1115 in order to restrict its distance of bulging that inhales membrane 1111 when removing in spacing groove 1114.
Wherein, the water dropper mechanism 113 includes drop head 1131, helps smooth seam 1132, water dropper 1133, the stability body 1134, drop head 1131 welds in stability body 1134 bottom, drop head 1133 installs and helps between smooth seam 1132, drop head 1133 is equipped with four, the drop of water on drop head 1133 down the landing fast through its shape, the drop of water that falls on drop head 1131 can be through the shape of its bottom, accurate quick whereabouts, and drop head 1131 is inside in helping smooth seam 1132 in order to place water to hide.
The water dropper 1133 includes a sliding head 11331, a rubber partition 11332, a center of gravity bead 11333, a water slider 11334, an auxiliary shaft 11335, a balance groove 11336, and a friction sponge layer 11337, wherein the top end of the sliding head 11331 is connected to the bottom end of the rubber partition 11332, the balance groove 11336 penetrates through the water slider 11334, the friction sponge layer 11337 is attached to the inner wall of the balance groove 11336, the center of gravity bead 11333 is installed in the inner groove of the balance groove 11336, the water slider 11334 is connected to the auxiliary shaft 11335, the center of gravity bead 11333 is a spherical structure, the balance groove 11336 is an arc-shaped structure, the water slider 11334 can make the water slide down quickly, the water slider is separated from an object by the sliding head 11331, when the water gravity on the surface of the water slider 11334 drives the water slider to shake, the center of gravity bead 11333 rolls in the balance groove 11336 to stabilize the water slider, and the friction sponge layer 11337 prevents the center of gravity bead 11333 from sliding.
Wherein, elasticity returning plate 17 is including extending fixed block 171, software shell 172, limit bullet piece 173, diving board 174, layer 175, it is the integral structure to extend fixed block 171 and diving board 174, diving board 174 installs inside software shell 172, limit bullet piece 173 is embedded inside diving board 174, layer 175 is located inside software shell 172, layer 175 is made by the rubber material to hold in the palm, limit bullet piece 173 is the triangle-shaped structure, it is by the tilting when preventing that diving board 174 from promoting the outside object of layer 175 to extend fixed block 171, limit bullet piece 173 can be blocked when diving board 174 plays to a certain extent, prevents its excessive pop-out.
The specific use mode and function of the embodiment are as follows:
in the invention, when the device starts to process the air-impermeable double-layer cloth, the device drives the central main shaft 18 and the rotating shaft 27 to rotate, when the internal device generates heat through friction, the roller for winding the cloth is contacted with the inner layer of the cloth to form a plurality of water drops, the water drops can slide into the outer surface of the water drop head 1133 through the main supporting rod 114, the water drops can slide onto the sliding head 11331 under the assistance of the water sliding body 11334, when the water sliding body 11334 shakes, the water drops can roll in the balancing groove 11336 through the gravity center bead 11333 to carry out balance adjustment, the water drops can slide into the water absorption groove 1112 through the water drop head 1131, the water absorption film 1111 in the water absorption groove can be absorbed together with the other water absorption film 1111 through the suction force of water, the pulling block 1115 can be taken out of the limiting groove together to move along the limiting groove 1114, when the water amount is more and more, the water is absorbed together with the absorbing film 1111 above the soft strip 1113 to drag the limiting groove 1114 to move inwards, the strands 116 will be abutted together, when the main supporting rod 114 moves inward, the fixing buckle 115 will release the standby rod 13, so that it will be pushed outward by the elasticity of the elastic plate 174, the sponge 12 will be pushed against the inside of the air-impermeable layer, absorb the remaining water and hold it, when there is a mosquito entangled on the surface, the rotating shaft 27 will rotate, the forced squeezing rod 26 will rotate together, when it rotates to the fixing pushing block 29, it will be pushed outward, the compression rod 22 will be squeezed, so that the insect clamping rod 24 will be forced to clamp inward, if there is a mosquito on the surface, it will be clamped together, when moving away the fixing pushing block 29, the mosquito will be released, falling into the placing grid, opening the insect clamping rod 24 again, and waiting for the next operation.
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.