A textile cotton wadding recycling device
By designing a textile cotton bat recycling equipment including a collection module and an extrusion module, the baffle plate in the limit frame and the pressure plate are used to cooperate with the hydraulic rod-driven extrusion frame, the problem of rapid filling of the container and inconvenience in use is solved, efficient cotton bat collection and extrusion is achieved, and the utilization rate and convenience of use are improved.
Patent Information
- Application Number
- CN202410504666.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-25
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2044-04-25
AI Technical Summary
When used in existing textile cotton bat recycling equipment, cotton bat can easily fill the recycling container quickly, resulting in frequent replacement of containers and inconvenient use, and the inability to effectively reduce the volume of cotton bat to improve the utilization rate of containers.
A textile cotton bat recycling equipment including a collection module and an extrusion module is designed. The bat in the limit frame and the pressure plate are combined to achieve the collection and extrusion of cotton bat. The hydraulic rod drives the extrusion frame to move and extrude the cotton bat. The bat in the collection frame is sealed and extruded by the rotation of the bat in the batten and the pressure plate.
It effectively improves the capacity utilization rate of the recycling container, reduces the number of container replacements, improves the convenience of use, and avoids the wool being picked up during the recycling process through the design of the baffle.
Smart Images

Figure CN118163404B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of cotton wool recovery, in particular to a textile cotton wool recovery device. Background Art
[0002] In each process of textile production, cotton wool is often produced. In order to prevent the cotton wool from flying everywhere during the production process and affecting the production environment, and because cotton wool itself is flammable, excessive accumulation of cotton wool in the production environment is prone to danger. Therefore, in the textile production process, a vacuuming device is usually set up to collect the cotton wool through the vacuuming device and then recycle the cotton wool together through a recycling device. When the existing textile cotton wool recycling device is in use, the cotton wool is directly placed in the recycling container of the recycling device for unified collection. The soft cotton wool can easily fill up the recycling container quickly, and it is troublesome to replace the recycling container. If the cotton wool in the recycling container is directly squeezed, although the volume of the cotton wool can be reduced, the cotton wool itself has a certain elasticity. Therefore, the container needs to be sealed so that the cotton wool is always squeezed. Then, a new unsealed container is replaced to continue recycling the cotton wool. The container can hold a small amount of cotton wool at a time, and the recycling container needs to be replaced more frequently, which is inconvenient to use. Summary of the invention
[0003] The object of the present invention is to provide a textile lint recovery device to solve the problems raised in the above-mentioned background technology.
[0004] To achieve the above object, the present invention provides the following technical solutions:
[0005] A textile cotton wool recycling device comprises a collecting module and an extruding module, the collecting module comprises a collecting frame, the top surface of the collecting frame is fixedly connected to a limiting frame, a plurality of baffles are arranged inside the limiting frame, the top surface of the limiting frame is fixedly connected to a connecting frame, the extruding module comprises an extruding frame, the inner side surface of the extruding frame is slidably connected to the inner side surface of the connecting frame, the inner side surface of the extruding frame is rotatably connected to a plurality of pressing plates, one side of both side surfaces of the pressing plate is rotatably connected to an adjusting shaft rotatably connected to the inner side surface of the extruding frame, the top surface of the extruding frame is fixedly connected to a fixing frame slidably connected to the inner side surface of the connecting frame, the side surface of the fixing frame is slidably connected to a top frame fixedly connected to the top surface of the connecting frame, the top inner side surface of the top frame is fixedly connected to two hydraulic rods 1, and the output end of the hydraulic rod 1 is transmission connected to the top surface of the fixed frame.
[0006] Furthermore, a support frame is fixedly connected to the bottom surface of the collection frame, a collection box is arranged at the bottom of the inner side surface of the collection frame, a cover plate is slidably connected to the top of the inner side surface of the collection box, a partition plate is slidably connected to the top surface of the collection box which is slidably connected to the inner side surface of the collection frame, and the bottom surface of the partition plate is in contact with the top surface of the cover plate.
[0007] Furthermore, two pulling frames are slidably connected to the top of the side of the collecting frame corresponding to the partition and the cover plate, and the opposite surfaces of the two pulling frames are in contact with each other, and the side surfaces of the partition and the cover plate located outside the collecting frame are fixedly connected to the inner side surfaces of the adjacent pulling frames.
[0008] Furthermore, threaded grooves are provided at four corners of the top surface of the collection box, the collection box is equipped with a locking rod, and positioning screws are screwed and connected on both sides of the top surface of the locking rod.
[0009] Furthermore, two rectangular grooves are provided on both side surfaces of the baffle plate, a rectangular rod 1 is provided on one side of both side surfaces of the baffle plate, and a rectangular rod 2 is provided on the other side of both side surfaces of the baffle plate, the side surface of the rectangular rod 1 and the side surface of the rectangular rod 2 are both slidably connected to the inner side surfaces of the adjacent rectangular grooves, and the side surface of the rectangular rod 1 and the side surface of the rectangular rod 2 are both slidably connected to a rotating shaft rotatably connected to the inner side surface of the limit frame.
[0010] Further, the side of the limit frame is fixedly connected to a positioning shell, the end of the rectangular rod 1 away from the baffle is rotatably connected to a connecting rod 1, and the end of the rectangular rod 2 away from the baffle is rotatably connected to a connecting rod 2, the sides of the connecting rod 1 and the connecting rod 2 are both slidably connected to the inner side of the limit frame, and one end of the connecting rod 1 and the connecting rod 2 extends into the interior of the positioning shell, the inner side of the positioning shell is slidably connected to two U-shaped frames 1 corresponding to the rectangular rod 1, the side of the U-shaped frame 1 is slidably connected to a U-shaped frame 2 slidably connected to the inner side of the positioning shell, and the inner side of the U-shaped frame 1 is fixedly connected to one end of a plurality of adjacent connecting rods, The two ends of the connecting rod pass through the interior of the U-shaped frame, and the two ends of the connecting rod are fixedly connected to the inner sides of two adjacent side surfaces of the U-shaped frame, both sides of the side surface of the U-shaped frame are screwed together with a bidirectional screw rod, and the second inner side surface of the U-shaped frame is screwed together with the side surfaces of two adjacent bidirectional screw rods, and the ends of the two adjacent bidirectional screw rods close to each other are fixedly connected, and the ends of the two bidirectional screw rods located on a short side of the positioning shell are fixedly sleeved with a toothed belt pulley, and the two toothed belt pulleys are connected through a toothed belt transmission, and a motor is fixedly connected to a bidirectional screw rod corresponding to the side surface of the positioning shell, and the output end of the motor is transmission-connected to an end of a bidirectional screw rod.
[0011] Furthermore, on the inner top and bottom surfaces of both sides of the limit frame, adjustment frames are slidably connected. On both sides of each adjustment frame, sliding rods fixedly connected to the inner side surfaces of the limit frame are slidably connected. On both sides of each adjustment frame, L-shaped rods fixedly connected to the inner side surfaces of the limit frame are slidably connected, and the side surface of the sliding rod is slidably connected to the inner side surface of the adjacent L-shaped rod. On the inner side surface of the adjustment frame, a linkage rod one is slidably connected. The rectangular rod one and the rectangular rod two are located between two adjacent adjustment frames. On the top side of the rotating shaft on the rectangular rod one and on the bottom side of the rotating shaft on the rectangular rod two, support rods one are fixedly connected. The side surface of the adjustment frame at the top is rotatably connected to the top side of the support rod one on the rectangular rod one, and the side surface of the adjustment frame at the bottom is rotatably connected to the bottom side of the support rod one on the rectangular rod two.
[0012] Furthermore, on the side surface of the limit frame, a fixed shell fixedly connected to the side surface of the positioning shell is fixedly connected. On the side surface of the fixed shell, a motor two is fixedly connected. The output end of the motor two is drivingly connected to an adjustment screw rod rotatably connected to the side surface of the positioning shell. On the side surface of the adjustment screw rod, a U-shaped block slidably connected to the inner side surface of the fixed shell is screwed. On the top and bottom sides of the side surface of the U-shaped block, connecting frames slidably connected to the inner side surface of the limit frame are fixedly connected. The positioning shell is located between the two connecting frames. Both ends of the connecting frame are fixedly connected to the side surfaces of two adjacent adjustment frames.
[0013] Furthermore, on the inner side surfaces of both sides of the extrusion frame, positioning frames are slidably connected. On the inner side surface of the positioning frame, a linkage rod two is slidably connected. On the side surface of the adjustment shaft, a support rod two rotatably connected to the side surface of the adjacent linkage rod two is fixedly connected.
[0014] Furthermore, on the inner side surface of the fixed frame, a sliding frame is slidably connected. At both ends of the bottom of the sliding frame, the top surfaces of the adjacent positioning frames are fixedly connected. The output end of the hydraulic rod one passes through the inside of the sliding frame. On the inner side surface of the top of the top frame, a hydraulic rod two is fixedly connected. The output end of the hydraulic rod two is drivingly connected to the top surface of the sliding frame.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] 1. A plurality of baffles are arranged inside the limit frame, so that the pressing plate can be rotated upward, and then the cotton wool can be collected in the connecting frame, and the cotton wool can pass through the pressing plates and fall into the collecting frame. After a certain amount of cotton wool is collected in the collecting frame and the connecting frame, the pressing plate can be rotated downward to roughly block the inside of the extrusion frame, and then the baffle can be rotated upward. At this time, the extrusion frame and the pressing plate can be moved downward by a hydraulic rod to squeeze the cotton wool, and the cotton wool in the connecting frame can pass through the baffles and enter the collecting frame. After the pressing plate moves to the baffle position, the baffle can be rotated downward to seal the cotton wool in the collecting frame, and then the pressing plate can be rotated upward, and the extrusion frame and the pressing plate can be moved upward to continue collecting the cotton wool. When recycling the cotton wool, the cotton wool in the collecting frame can always be blocked by the baffle, and then the cotton wool can be squeezed by the pressing plate again, so that relatively compact cotton wool can be continuously collected in the collecting frame, and more cotton wool can be collected in one recycling container, which is beneficial to reduce the number of container replacements and is easy to use.
[0017] 2. The baffle plate is provided with a rectangular groove, and the rectangular rod one can be inserted into the adjacent rectangular groove, and the rectangular rod two can be moved out of the adjacent rectangular groove. At this time, the baffle plate can be rotated upward with the rectangular rod one and the connecting rod one as the center, and the rectangular rod two can be inserted into the adjacent rectangular groove, and the rectangular rod one can be moved out of the adjacent rectangular groove. At this time, the baffle plate can be rotated upward with the rectangular rod two and the connecting rod one as the center. In this way, when the baffle plate always rotates with one axis, a certain amount of cotton wool will always remain between the baffle plate at the edge and the limit frame, which is convenient for cleaning the inside of the recycling equipment. At the same time, there is no need to rotate the baffle plate downward to avoid the baffle plate picking up the cotton wool in the collection frame. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the overall structure of a textile cotton wool recovery device of the present invention;
[0019] Figure 2 It is a schematic diagram of the internal structure of the collection frame in the present invention;
[0020] Figure 3 It is a schematic diagram of the structure of the collection box in the present invention;
[0021] Figure 4 It is a schematic diagram of the structure of the locking rod in the present invention;
[0022] Figure 5 It is a schematic diagram of the structure of the extrusion module in the present invention;
[0023] Figure 6 It is a schematic diagram of the internal structure of the extrusion frame in the present invention;
[0024] Figure 7 It is a schematic diagram of the positioning frame structure in the present invention;
[0025] Figure 8It is a schematic structural diagram of the limit frame in the present invention;
[0026] Figure 9 It is a schematic top-down internal structure diagram of the positioning shell in the present invention;
[0027] Figure 10 It is a schematic internal structure diagram of the fixed shell in the present invention;
[0028] Figure 11 It is a schematic top-down internal structure diagram of the fixed shell in the present invention;
[0029] Figure 12 It is a schematic structural diagram of the baffle in the present invention;
[0030] Figure 13 It is a schematic top-down internal structure diagram of the positioning shell in the present invention;
[0031] Figure 14 It is a schematic structural diagram of the adjustment frame in the present invention;
[0032] Figure 15 It is a schematic internal structure diagram of the limit frame in the present invention;
[0033] Figure 16 It is a schematic structural diagram of the first linkage rod in the present invention.
[0034] In the figure: 100, collection module; 110, collection box; 111, support frame; 112, collection box; 113, partition; 114, cover plate; 115, pull box; 120, connection box; 130, limit frame; 131, adjustment frame; 132, first linkage rod; 133, sliding rod; 134, L-shaped rod; 140, positioning shell; 141, first U-shaped frame; 142, second U-shaped frame; 143, bidirectional lead screw; 144, toothed belt pulley; 145, first motor; 150, fixed shell; 151, second motor; 152, adjustment lead screw; 153, U-shaped block; 154, connection frame; 160, baffle; 161, rectangular groove; 170, first rectangular rod; 171, first connecting rod; 180, second rectangular rod; 181, second connecting rod; 190, rotating shaft; 191, first support rod; 200, extrusion module; 210, extrusion box; 211, positioning frame; 212, second linkage rod; 220, top frame; 221, first hydraulic rod; 222, second hydraulic rod; 230, pressing plate; 231, adjustment shaft; 232, second support rod; 240, fixed frame; 241, sliding frame; 300, positioning rod; 310, positioning screw. Detailed implementation manners
[0035] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0036] Please refer to Figure 1-8 , in an embodiment of the present invention, a textile cotton wadding recycling device includes a collection module 100 and an extrusion module 200. The collection module 100 includes a collection frame 110. A limit frame 130 is fixedly connected to the top surface of the collection frame 110. A number of baffles 160 are arranged inside the limit frame 130. A connection frame 120 is fixedly connected to the top surface of the limit frame 130. The extrusion module 200 includes an extrusion frame 210. The inner side surface of the extrusion frame 210 is slidably connected to the inner side surface of the connection frame 120. A number of pressing plates 230 are rotatably connected to the inner side surface of the extrusion frame 210. One side of each of the two side surfaces of the pressing plate 230 is rotatably connected to an adjustment shaft 231 that is rotatably connected to the inner side surface of the extrusion frame 210. A fixed frame 240 that is slidably connected to the inner side surface of the connection frame 120 is fixedly connected to the top surface of the extrusion frame 210. A top frame 220 that is fixedly connected to the top surface of the connection frame 120 is slidably connected to the side surface of the fixed frame 240. Two hydraulic cylinders 221 are fixedly connected to the inner side surface of the top of the top frame 220. The output end of the hydraulic cylinder 221 is drivingly connected to the top surface of the fixed frame 240.
[0037] Specifically, the pressing plate 230 can be rotated upward to open the inside of the extrusion frame 210, and then the cotton wadding is collected in the connection frame 120. The cotton wadding can pass through between the pressing plates 230 and fall into the collection frame 110. After a certain amount of cotton wadding is collected in the collection frame 110 and the connection frame 120, the pressing plate 230 can be rotated downward to substantially block the inside of the extrusion frame 210. Then the baffle 160 is rotated upward. At this time, the extrusion frame 210 and the pressing plate 230 are moved downward by the hydraulic cylinder 221 to extrude the cotton wadding. The cotton wadding in the connection frame 120 can pass through between the baffles 160 and enter the collection frame 110. After the pressing plate 230 moves to the position of the baffle 160, the baffle 160 can be rotated downward to seal the cotton wadding in the collection frame 110. Then the pressing plate 230 is rotated upward, and the extrusion frame 210 and the pressing plate 230 are moved upward to the original position, so as to continue collecting the cotton wadding. When recycling the cotton wadding, the cotton wadding in the collection frame 110 can always be blocked by the baffle 160. After a certain amount of cotton wadding is collected in the connection frame 120, the pressing plate 230 can be rotated downward again, and the cotton wadding is extruded into the collection frame 110 by the pressing plate 230. In this way, relatively compact cotton wadding can be continuously collected in the collection frame 110, which is beneficial to reducing the number of container replacements and facilitating use.
[0038] Embodiment 1
[0039] As Figure 2-4 shown, in this embodiment, a support frame 111 is fixedly connected to the bottom surface of the collection box 110. A collection box 112 is arranged at the bottom of the inner side surface of the collection box 110. A cover plate 114 is slidably connected to the top of the inner side surface of the collection box 112. A partition plate 113 that is slidably connected to the inner side surface of the collection box 110 is slidably connected to the top surface of the collection box 112, and the bottom surface of the partition plate 113 contacts the top surface of the cover plate 114. Two pulling frames 115 are slidably connected to the side top of the collection box 110 corresponding to the partition plate 113 and the cover plate 114, and the opposite surfaces of the two pulling frames 115 contact each other. The outer side surfaces of the partition plate 113 and the cover plate 114 located outside the collection box 110 are fixedly connected to the inner side surfaces of the adjacent pulling frames 115. Thread grooves are formed at the four corners of the top surface of the collection box 112. The collection box 112 is equipped with a clamping rod 300, and positioning screws 310 are screwed on both sides of the top surface of the clamping rod 300.
[0040] During specific implementation, the pulling frame 115 can be translated along the side wall of the collection box 110 to limit the partition plate 113 or the cover plate 114. The partition plate 113 and the cover plate 114 can be pulled apart by the pulling frame 115, so that the partition plate 113 and the cover plate 114 are located at the side of the collection box 112 and no longer block the top of the collection box 112. In this way, when recycling cotton wool, after the cotton wool passes through the limiting frame 130 and enters the collection box 110, it will fall into the collection box 112. After a certain amount of cotton wool is collected in the collection box 112, the partition plate 113 and the cover plate 114 can be moved towards the inside of the collection box 110, so that the cover plate 114 separates the collection box 110 from the limiting frame 130 and seals the inside of the collection box 112 through the cover plate 114. At this time, the collection box 112 can be removed from the collection box 110. After the collection box 112 is removed, the clamping rod 300 can be clamped on the top of the collection box 112 to make the positioning screw 310 correspond to the thread groove, and then the positioning screw 310 is screwed into the thread groove. In this way, the position of the cover plate 114 can be restricted by the clamping rod 300, so that the cover plate 114 keeps sealing the inside of the collection box 112. Then, the cotton wool can be transported through the collection box 112 and the cotton wool can be conveyed to the corresponding recycling and treatment area.
[0041] As Figure 8-13As shown, in this embodiment, two rectangular grooves 161 are provided on both sides of the baffle 160, a rectangular rod 170 is provided on one side of both sides of the baffle 160, and a rectangular rod 2 180 is provided on the other side of both sides of the baffle 160, and the side of the rectangular rod 170 and the side of the rectangular rod 2 180 are both slidably connected to the inner side of the adjacent rectangular groove 161, and the side of the rectangular rod 170 and the side of the rectangular rod 2 180 are both slidably connected to the rotating shaft 190 which is rotatably connected to the inner side of the limiting frame 130. 0, the side of the limit frame 130 is fixedly connected to the positioning shell 140, the end of the rectangular rod 170 away from the baffle 160 is rotatably connected to the connecting rod 171, and the end of the rectangular rod 2 180 away from the baffle 160 is rotatably connected to the connecting rod 2 181, the sides of the connecting rod 171 and the connecting rod 2 181 are both slidably connected to the inner side of the limit frame 130, and one end of the connecting rod 171 and the connecting rod 2 181 extends to the inside of the positioning shell 140, and the inner side of the positioning shell 140 corresponds to the rectangular rod 1 170 is slidably connected to two U-shaped frames 141, and the side of the U-shaped frame 141 is slidably connected to a U-shaped frame 2 142 which is slidably connected to the inner side of the positioning shell 140. The inner side of the U-shaped frame 141 is fixedly connected to the ends of the adjacent connecting rods 171, and the end of the connecting rod 2 181 passes through the inside of the U-shaped frame 141, and the end of the connecting rod 2 181 is fixedly connected to the inner side of the side of the adjacent U-shaped frame 2 142. Both sides of the side of the U-shaped frame 141 are screwed and connected with a bidirectional screw rod 143, and the U The inner side surface of the frame 142 is screwed together with the side surfaces of two adjacent bidirectional screw rods 143, and the ends of the two adjacent bidirectional screw rods 143 close to each other are fixedly connected. The ends of the two bidirectional screw rods 143 located on a short side of the positioning shell 140 are fixedly sleeved with a toothed belt pulley 144, and the two toothed belt pulleys 144 are connected through a toothed belt transmission. A motor 145 is fixedly connected to a bidirectional screw rod 143 corresponding to the side surface of the positioning shell 140, and the output end of the motor 145 is transmission-connected to an end of a bidirectional screw rod 143.
[0042] During specific implementation, the first rectangular rod 170 and the second rectangular rod 180 can move inside the adjacent rotating shaft 190. After collecting a certain amount of cotton wool in the collection box 110 and rotating the pressing plate 230 downward to block and squeeze the inside of the extrusion frame 210, the first motor 145 can be started. The first motor 145 can drive a bidirectional lead screw 143 to rotate. The two bidirectional lead screws 143 located on one short side of the positioning shell 140 rotate synchronously through the toothed belt wheels 144, and the two bidirectional lead screws 143 located on one long side of the positioning shell 140 are fixedly connected to each other. In this way, the four bidirectional lead screws 143 can rotate synchronously. When the first motor 145 drives a bidirectional lead screw 143 to rotate forward, the first U-shaped frame 141 and the second U-shaped frame 142 located on the same short side of the positioning shell 140 can move away from each other, and the two first U-shaped frames 141 can move towards each other, and the two second U-shaped frames 142 can move away from each other. The first U-shaped frame 141 can drive the first rectangular rod 170 to move through the first connecting rod 171, and the second U-shaped frame 142 can drive the second rectangular rod 180 to move through the second connecting rod 181, so that the first rectangular rod 170 is inserted into the corresponding baffle 160, and the second rectangular rod 180 is separated from the adjacent baffle 160. At this time, the baffle 160 will rotate upward around the rotating shaft 190 on the first rectangular rod 170. After the baffle 160 is opened, when the pressing plate 230 presses the cotton wool downward, the cotton wool can pass through the baffle 160 and enter the collection box 112. After the extrusion is completed, the baffle 160 can be rotated downward to its original position to block the cotton wool in the collection box 112, and then the pressing plate 230 can be moved upward to its original position and rotated upward;
[0043] After a large amount of cotton wool accumulates again inside the connection frame 120, the pressing plate 230 can be rotated downward again, and then the first motor 145 can be used to drive a bidirectional lead screw 143 to rotate in the reverse direction. At this time, the first U-shaped frame 141 and the second U-shaped frame 142 located on the same short side of the positioning shell 140 can move towards each other, and the two first U-shaped frames 141 can move away from each other, and the two second U-shaped frames 142 can move towards each other. At this time, the first rectangular rod 170 can be separated from the corresponding baffle 160, and the second rectangular rod 180 can be inserted into the adjacent baffle 160. At this time, the baffle 160 will rotate upward around the rotating shaft 190 on the second rectangular rod 180. After the baffle 160 is opened, when the pressing plate 230 presses the cotton wool downward, the cotton wool can pass through the baffle 160 and enter the collection box 112. By repeatedly rotating the baffle 160 upward around the first rectangular rod 170 and the second rectangular rod 180, it is possible to prevent a certain amount of cotton wool from always remaining between the baffle 160 at the edge and the limit frame 130, which is convenient for cleaning the inside of the recycling equipment and does not require the baffle 160 to be rotated downward to avoid the baffle 160 from picking up the cotton wool in the collection box 110.
[0044] Embodiment 2
[0045] On the basis of Embodiment 1, as Figure 8-16As shown, in this embodiment, adjustment frames 131 are slidably connected to the inner top and bottom surfaces on both sides of the limit frame 130. Sliding rods 133 fixedly connected to the inner sides of the adjustment frames 131 are slidably connected to the inner sides of the limit frame 130. L-shaped rods 134 fixedly connected to the inner sides of the limit frame 130 are slidably connected to both sides of the adjustment frames 131. The sides of the sliding rods 133 are slidably connected to the inner sides of the adjacent L-shaped rods 134. A first linkage rod 132 is slidably connected to the inner side of the adjustment frame 131. The rectangular rod 170 and the rectangular rod 180 are located between two adjacent adjustment frames 131. At the top of the side of the rotating shaft 190 on the rectangular rod 170 and at the bottom of the side of the rotating shaft 190 on the rectangular rod 180, first support rods 191 are fixedly connected. The side of the adjustment frame 131 at the top is rotatably connected to the top of the side of the first support rod 191 on the rectangular rod 170, and the side of the adjustment frame 131 at the bottom is rotatably connected to the bottom of the side of the first support rod 191 on the rectangular rod 180. A fixed shell 150 fixedly connected to the side of the positioning shell 140 is fixedly connected to the side of the limit frame 130. A second motor 151 is fixedly connected to the side of the fixed shell 150. The output end of the second motor 151 is drivingly connected to an adjustment lead screw 152 rotatably connected to the side of the positioning shell 140. A U-shaped block 153 threadedly engaged with the side of the adjustment lead screw 152 is slidably connected to the inner side of the fixed shell 150. First connecting frames 154 fixedly connected to the inner sides of the limit frame 130 are fixedly connected to the top and bottom of the side of the U-shaped block 153. The positioning shell 140 is located between the two first connecting frames 154. Both ends of the first connecting frames 154 are fixedly connected to the sides of two adjacent adjustment frames 131.
[0046] In a specific implementation, the support rods 191 on the plurality of rectangular rods 170 and the adjustment frame 131 at the top can form a parallelogram, and the support rods 191 on the plurality of rectangular rods 180 and the adjustment frame 131 at the bottom can form a parallelogram, so that the support rods 191 on the plurality of rectangular rods 170 are linked through the top adjustment frame 131, and the support rods 191 on the plurality of rectangular rods 180 are linked through the bottom adjustment frame 131, and the limit frame 130 can limit the moving direction of the sliding rod 133 through the L-shaped rod 134, thereby limiting the moving direction of the limit frame 130, so that the limit frame 130 The frame 130 can only translate along the inner wall of the limit frame 130, while the linkage rod 132 can move up and down along the inner wall of the adjustment frame 131, the adjustment screw 152 can limit the position of the U-shaped block 153, the U-shaped block 153 can limit the position of the adjustment frame 131 through the connecting frame 154, the adjustment frame 131 can limit the angle of the support rod 191 through the linkage rod 132, the support rod 191 can limit the angle of the rectangular rod 170 or the rectangular rod 2 180 through the rotating shaft 190, and then limit the angle of the baffle 160, when only the rectangular rod 170 is inserted into the corresponding rectangular groove 161, or only the rectangular rod 180 is inserted into the corresponding rectangular groove 161. When the second rod 180 is inserted into the corresponding rectangular groove 161, the adjusting screw rod 152 can be driven to rotate by the second motor 151. When the adjusting screw rod 152 rotates, the U-shaped block 153 can be moved. The U-shaped block 153 can pull the adjusting frame 131 to move through the connecting frame 154. The adjusting frame 131 can push the linkage rod 132 to move, so that the support rod 191 on the linkage rod 132 rotates. When only the rectangular rod 170 is inserted into the rectangular groove 161, the top linkage rod 132 will drive the rectangular rod 170 to rotate through the support rod 191 and the rotating shaft 190, so that the rectangular rod 170 passes through The rectangular groove 161 drives the baffle 160 to rotate upward, and the rectangular rod 180 is disengaged from the rectangular groove 161, so that the rectangular rod 180 will not prevent the baffle 160 from rotating. When only the rectangular rod 180 is inserted into the rectangular groove 161, the bottom linkage rod 132 will drive the rectangular rod 180 to rotate through the support rod 191 and the rotating shaft 190, so that the rectangular rod 180 drives the baffle 160 to rotate upward through the rectangular groove 161, and the rectangular rod 170 is disengaged from the rectangular groove 161, so that the rectangular rod 170 will not prevent the baffle 160 from rotating, and the adjustment is relatively simple and easy to use.
[0047] like Figure 5-7As shown, in this embodiment, the inner side surfaces of both sides of the extrusion frame 210 are slidably connected to the positioning frame 211, the inner side surface of the positioning frame 211 is slidably connected to the linkage rod 212, the side of the adjusting shaft 231 is fixedly connected to the support rod 232 which is rotatably connected to the side of the adjacent linkage rod 212, the inner side surface of the fixed frame 240 is slidably connected to the sliding frame 241, both ends of the bottom of the sliding frame 241 are fixedly connected to the top surface of the adjacent positioning frame 211, the output end of the hydraulic rod 1 221 passes through the inside of the sliding frame 241, the inner side surface of the top of the top frame 220 is fixedly connected to the hydraulic rod 222, and the output end of the hydraulic rod 222 is transmission-connected to the top surface of the sliding frame 241.
[0048] During specific implementation, a plurality of supporting rods 232 can be linked by adjacent linkage rods 212, and linkage rods 212 can translate in positioning frame 211, and can drive sliding frame 241 to move upward relative to fixing frame 240 by hydraulic rod 222, and sliding frame 241 can drive linkage rod 212 to move upward, thereby toggling supporting rod 232 to rotate upward, so that adjusting shaft 231 rotates, and adjusting shaft 231 can drive pressing plate 230 to rotate upward, so that pressing plate 230 can be opened, and cotton wool can pass through between pressing plates 230 and fall into collecting frame 110, and when cotton wool needs to be squeezed, hydraulic rod 222 can be used to squeeze cotton wool. 22 makes the sliding frame 241 move downward relative to the fixed frame 240, thereby driving the second support rod 232 to rotate downward through the linkage rod 212 to close the pressure plate 230, and then the fixed frame 240 can be moved downward through the hydraulic rod 1 221, and the sliding frame 241 can be driven by the hydraulic rod 222 to move downward synchronously with the fixed frame 240, so that the cotton wool is squeezed by the squeezing frame 210 and the pressure plate 230, and a certain gap can be left between two adjacent pressure plates 230, and a certain gap can be left between two adjacent baffles 160 to avoid cotton wool clogging and affecting the rotation of the pressure plate 230 and the baffle 160.
[0049] It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above and that the invention can be implemented in other specific forms without departing from the spirit or essential features of the invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description, and it is intended that all variations falling within the meaning and scope of the equivalent elements of the claims be included in the invention. Any reference numeral in a claim should not be considered as limiting the claim to which it relates.
[0050] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment contains only an independent technical solution. This narrative style of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A textile cotton recycling device, characterized in that: The invention comprises a collecting module (100) and an extrusion module (200), wherein the collecting module (100) comprises a collecting frame (110), the top surface of the collecting frame (110) is fixedly connected to a limiting frame (130), a plurality of baffles (160) are arranged inside the limiting frame (130), the top surface of the limiting frame (130) is fixedly connected to a connecting frame (120), and the extrusion module (200) comprises an extrusion frame (210), the outer side surface of the extrusion frame (210) is slidably connected to the inner side surface of the connecting frame (120), the inner side surface of the extrusion frame (210) is rotatably connected to a plurality of pressing plates (230), and one side of each of the two side surfaces of the pressing plate (230) is rotatably connected to an adjusting shaft (230) rotatably connected to the inner side surface of the extrusion frame (210). 231), the top surface of the extrusion frame (210) is fixedly connected to a fixing frame (240) that is slidably connected to the inner side surface of the connection frame (120), the side surface of the fixing frame (240) is slidably connected to a top frame (220) that is fixedly connected to the top surface of the connection frame (120), the top inner side surface of the top frame (220) is fixedly connected to two hydraulic rods (221), the output end of the hydraulic rod (221) is transmission-connected to the top surface of the fixing frame (240), two side surfaces of the baffle (160) are provided with two rectangular grooves (161), one side of the two side surfaces of the baffle (160) is provided with a rectangular rod (170), and the other side of the two side surfaces of the baffle (160) is provided with a rectangular rod (180), the rectangular rod (1) The side surface of the rectangular rod 1 (170) and the side surface of the rectangular rod 2 (180) are both slidably connected to the inner side surface of the adjacent rectangular groove (161); the side surface of the rectangular rod 1 (170) and the side surface of the rectangular rod 2 (180) are both slidably connected to a rotating shaft (190) rotatably connected to the inner side surface of the limit frame (130); the side surface of the limit frame (130) is fixedly connected to a positioning shell (140); one end of the rectangular rod 1 (170) away from the baffle (160) is rotatably connected to the connecting rod 1 (171), and one end of the rectangular rod 2 (180) away from the baffle (160) is rotatably connected to the connecting rod 2 (181); the sides of the connecting rod 1 (171) and the connecting rod 2 (181) are both slidably connected to the inner side surface of the limit frame (130), and the connecting rod 1 (171) The first and second ends of the connecting rods (171) and (181) extend into the interior of the positioning shell (140); the inner side surface of the positioning shell (140) is slidably connected to two U-shaped frames (141) corresponding to the rectangular rod (170); the side surface of the U-shaped frame (141) is slidably connected to a U-shaped frame (142) slidably connected to the inner side surface of the positioning shell (140); the inner side surface of the U-shaped frame (141) is fixedly connected to the ends of several adjacent connecting rods (171); the end of the connecting rod (181) passes through the interior of the U-shaped frame (141); and the end of the connecting rod (181) is fixedly connected to the inner side surface of the adjacent U-shaped frame (142); both sides of the side surface of the U-shaped frame (141) are screwed together with bidirectional screw rods (143);The inner side surface of the second U-shaped frame (142) is screwed and connected to the side surfaces of two adjacent bidirectional screw rods (143); the ends of the two adjacent bidirectional screw rods (143) close to each other are fixedly connected; the ends of the two bidirectional screw rods (143) located on a short side of the positioning shell (140) are fixedly sleeved with toothed belt wheels (144); the two toothed belt wheels (144) are connected through toothed belt transmission; a motor (145) is fixedly connected to a bidirectional screw rod (143) corresponding to the side surface of the positioning shell (140); the output end of the motor (145) is connected to the end of a bidirectional screw rod (143); the inner top surfaces on both sides of the limit frame (130) are An adjustment frame (131) is slidably connected to the inner bottom surface; two side surfaces of the adjustment frame (131) are fixedly connected to sliding rods (133) slidably connected to the inner side surface of the limit frame (130); two side surfaces of the adjustment frame (131) are slidably connected to L-shaped rods (134) fixedly connected to the inner side surface of the limit frame (130); the side surfaces of the sliding rods (133) are slidably connected to the inner side surfaces of adjacent L-shaped rods (134); the inner side surfaces of the adjustment frame (131) are slidably connected to linkage rods 1 (132); the rectangular rods 1 (170) and the rectangular rods 2 (180) are located between two adjacent adjustment frames (131) and are located at the rectangular positions. The top of the side of the rotating shaft (190) on the rectangular rod (170) and the bottom of the side of the rotating shaft (190) on the rectangular rod (180) are both fixedly connected to the support rod (191); the side of the adjustment frame (131) located at the top is rotatably connected to the top of the side of the support rod (191) on the rectangular rod (170); and the side of the adjustment frame (131) located at the bottom is rotatably connected to the bottom of the side of the support rod (191) on the rectangular rod (180); the side of the limit frame (130) is fixedly connected to a fixed shell (150) fixedly connected to the side of the positioning shell (140); the side of the fixed shell (150) The second side of the positioning shell (140) is fixedly connected to a second motor (151); the output end of the second motor (151) is drivingly connected to an adjusting screw rod (152) that is rotatably connected to the side of the positioning shell (140); the side of the adjusting screw rod (152) is screwedly connected to a U-shaped block (153) that is slidably connected to the inner side of the fixed shell (150); the top and bottom of the side of the U-shaped block (153) are fixedly connected to a connecting frame (154) that is slidably connected to the inner side of the limiting frame (130); the positioning shell (140) is located between the two connecting frames (154); and both ends of the connecting frame (154) are fixedly connected to the sides of two adjacent adjusting frames (131).
2. A textile lint recovery device according to claim 1, characterized in that: The bottom surface of the collection frame (110) is fixedly connected to a support frame (111), the bottom of the inner side surface of the collection frame (110) is provided with a collection box (112), the top of the inner side surface of the collection box (112) is slidably connected to a cover plate (114), the top surface of the collection box (112) is slidably connected to a partition plate (113) slidably connected to the inner side surface of the collection frame (110), and the bottom surface of the partition plate (113) is in contact with the top surface of the cover plate (114).
3. A textile lint recovery device according to claim 2, characterized in that: Two pull frames (115) are slidably connected to the top of the side of the collection frame (110) corresponding to the partition plate (113) and the cover plate (114), and the opposite surfaces of the two pull frames (115) are in contact with each other. The side surfaces of the partition plate (113) and the cover plate (114) located outside the collection frame (110) are fixedly connected to the inner side surfaces of adjacent pull frames (115).
4. A textile lint recovery device according to claim 3, characterized in that: The four corners of the top surface of the collection box (112) are provided with threaded grooves. The collection box (112) is provided with a locking rod (300) in combination. Positioning screws (310) are screwed and connected to both sides of the top surface of the locking rod (300).
5. The textile lint recovery device according to claim 1, characterized in that: The inner side surfaces of both sides of the extrusion frame (210) are slidably connected to positioning frames (211), the inner side surfaces of the positioning frames (211) are slidably connected to linkage rod 2 (212), and the side surfaces of the adjustment shaft (231) are fixedly connected to support rod 2 (232) rotatably connected to the side surfaces of adjacent linkage rod 2 (212).
6. The textile lint recovery device according to claim 5, characterized in that: The inner side surface of the fixed frame (240) is slidably connected to a sliding frame (241), both ends of the bottom of the sliding frame (241) are fixedly connected to the top surface of the adjacent positioning frame (211), the output end of the hydraulic rod 1 (221) passes through the inside of the sliding frame (241), the inner side surface of the top of the top frame (220) is fixedly connected to the hydraulic rod 2 (222), and the output end of the hydraulic rod 2 (222) is transmission-connected to the top surface of the sliding frame (241).
Citation Information
Patent Citations
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