Regenerated polyester fiber and plush raw material laying and mixing process and equipment

By designing a mixed beating equipment for recycled polyester fiber and plush raw materials with a rotating shaft and a limit frame hook structure, the problems of fiber entanglement and uneven beating are solved, and the stable operation of the equipment and the improvement of the mixing effect are achieved.

CN120797264APending Publication Date: 2025-10-17CONSINEE GRP CO LTD
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Patent Information

Application Number
CN202510978316.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2025-07-11
Filing Date
2025-07-16
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

During the mixing process of recycled polyester fiber and plush raw materials, the fibers and plush are easily entangled on the mixing parts, affecting the normal operation of the mixing work, and the uneven laying leads to a reduction in the mixing effect.

Method used

A mixing and plying equipment for recycled polyester fiber and plush raw materials was designed. By cooperating with the rotating shaft and mixing plate, the limit frame and hook structure were used to avoid fiber entanglement, and the excess fibers were cut by the pressure roller and knife body to ensure the consistency of the ply thickness.

Benefits of technology

It effectively avoids fiber entanglement, improves the operating stability of the mixing equipment and the accuracy of the laying, and ensures the continuity and efficiency of the mixing effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of fiber and plush mixing and beating, and discloses a recycled polyester fiber and plush raw material laying mixing and beating process and equipment which comprises a rail, the top of the rail is slidably connected with a machine body, one side of the machine body is slidably connected with a working arm, and two shaft rods are rotatably connected into the working arm; a plurality of evenly-distributed limiting frames are fixedly connected to the shaft rod, limiting openings are formed in the limiting frames, mounting frames are slidably connected into the limiting openings, springs are fixedly connected between the tops of the mounting frames and the inner top walls of the limiting openings, and hooks are arranged at the bottom ends of the mounting frames. The regenerated polyester fibers and the plush raw materials remaining on the two sides of the mixing and beating plate can be hooked through the hook at the tail end of the mounting frame rotating along with the rotating shaft, so that the regenerated polyester fibers and the plush raw materials are separated from the mixing and beating plate, and the problem that follow-up mixing and beating work is affected due to the fact that the regenerated polyester fibers and the plush raw materials are prone to being wound around the mixing and beating plate is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of fiber plush mixing and beating, in particular to a regenerative polyester fiber and plush raw material layer mixing and beating process and equipment. BACKGROUND

[0002] The regenerative polyester fiber is a new type of fiber material obtained by recycling polyester products, such as waste polyester bottles and other polyester waste after reprocessing, and in order to achieve sustainable development of the textile industry, the regenerative polyester fiber is often mixed with the plush raw material to produce a new type of high-performance environmentally friendly blended yarn. In the regenerative polyester fiber and plush mixing process, the layer mixing and beating is a common textile process, which mainly refers to placing the regenerative polyester fiber and the plush material according to a certain proportion and level during the textile process, and then mixing and beating by the flat laying and vertical taking method of the grabbing machine to finally form a new blended material. The grabbing machine is a key equipment in the opening and cleaning process of the textile process, which is mainly used for grabbing, opening and mixing fiber raw materials, and the inside of the grabbing machine is provided with a mixing and beating part. In the specific operation, the regenerative polyester fiber and the plush raw material are placed in layers in turn, and the mixing and beating part inside the grabbing machine can vertically grab the flat-laid regenerative polyester fiber and plush raw material and mix them. The grabbing machine is generally equipped with a fan for conveying. After the regenerative polyester fiber and the plush raw material are mixed and beaten, the mixed and beaten regenerative polyester fiber and the plush raw material are conveyed to the subsequent carding machine by the fan for subsequent processing. Due to the working characteristics (fiber and plush mixing and beating) of the grabbing machine, it is commonly used in uniform factories, textile factories and sanitary material factories. However, during the mixing and beating of the regenerative polyester fiber and the plush raw material by the grabbing machine, the wool and the regenerative polyester fiber are in the form of silk threads and are easy to wind around the mixing and beating part, which not only affects the subsequent mixing and beating work, but also affects the normal operation of the mixing and beating part due to the excessive winding of the mixture on the mixing and beating part. Therefore, we propose a regenerative polyester fiber and plush raw material layer mixing and beating process and equipment. SUMMARY

[0003] The present application aims to provide a regenerative polyester fiber and plush raw material layer mixing and beating process and equipment to solve the problems raised in the background.

[0004] In order to achieve the above object, the present application provides the following technical scheme: a regenerated polyester fiber and plush raw material layer mixed beating equipment, including track, the top of the track is slidably connected with the organism, one side of the organism is slidably connected with the working arm, the working arm is rotatably connected with two shafts, a plurality of uniformly distributed mixed beating plates are fixedly connected on the shafts, the mixed beating plates on the two shafts are distributed in a staggered manner, two shaft rods are rotatably connected in the working arm, the two shaft rods are located above the two shafts respectively, a plurality of uniformly distributed limiting frames are fixedly connected on the shaft rods, a limiting opening is formed in the limiting frame, a mounting frame is slidably connected in the limiting opening, a spring is fixedly connected between the top of the mounting frame and the inner top wall of the limiting opening, a hook is arranged at the bottom end of the mounting frame, an installation opening is formed in the bottom of the mounting frame, a transmission gear A is rotatably connected in the installation opening, a transmission gear B is rotatably connected in the installation opening and meshes with the transmission gear A, a limiting rod is fixedly connected on the transmission gear B, the limiting rod is located in the installation opening, a rack is slidably connected at the bottom of the installation opening and meshes with the transmission gear A, a counterweight is fixedly connected on the side of the rack away from the mounting frame, and a limiting plate is fixedly connected in the installation opening.

[0005] Preferably, the end of the working arm away from the organism is rotatably connected with two belt pulleys A, each belt pulley A is fixedly connected with the shaft on the same side, the side of the belt pulley A away from the working arm is fixedly connected with a driving gear A, two driving motors are fixedly connected in the working arm, the output ends of the driving motors are fixedly connected with driving gears B, and the driving gears B and the driving gears A on the same side are provided with transmission belts A.

[0006] Preferably, the end of the working arm away from the organism is rotatably connected with two belt pulleys B, each belt pulley B is fixedly connected with the end of the shaft on the same side, and each belt pulley B and the belt pulley A on the same side are provided with transmission belts B.

[0007] Preferably, the side of the track close to the working arm is provided with a fixed frame, the two sides of the fixed frame are provided with sliding grooves, the inner bottom wall of the fixed frame is provided with a placing table, the sliding grooves are slidably connected with sliding rails A, and the installation plate is slidably connected between the two sliding rails A.

[0008] Preferably, the bottom of the mounting plate is provided with mounting grooves A on both sides, the bottom of the mounting plate is provided with a mounting groove B between the two mounting grooves A, the reciprocating screw rod is rotatably connected in the mounting groove A, one end of the reciprocating screw rod is fixedly connected with a belt pulley C, the cutter body is slidably connected in the mounting groove A, the cutter body is threadedly connected with the reciprocating screw rod on the same side, two compression rollers B are rotatably connected in the mounting groove B, the compression roller B is fixedly connected with a belt pulley D at one end close to the belt pulley C, and the belt pulley D and the adjacent belt pulley C are provided with a transmission belt C.

[0009] Preferably, the fixed frame is fixedly connected with a sliding rail B in communication with the sliding groove on the same side, the sliding rail B is rotatably connected with a screw A, the sliding rail A close to the sliding rail B is threadedly connected with the screw A, one end of the sliding rail B is fixedly connected with a fixed motor, and the output end of the fixed motor is fixedly connected with the end of the screw A.

[0010] Preferably, the sliding rail A close to the sliding rail B is rotatably connected with a screw B, one end of the screw B is threadedly connected with the mounting plate on the same side, the top of the sliding rail A is fixedly connected with a rotating motor, and the output end of the rotating motor is fixedly connected with the top end of the screw B.

[0011] Preferably, the machine body is provided with a plurality of counterweight plates away from the working arm, the bottom of the working arm is rotatably connected with a compression roller A on both sides, the bottom of the working arm is fixedly connected with a mesh cover, the mesh cover is located below the two rotating shafts, and the working arm is provided with a fan for conveying the regenerated polyester fibers and the plush raw materials.

[0012] Preferably, the track is provided with two, and one end of the track is fixedly connected with a control console.

[0013] A regenerated polyester fiber and plush raw material layering and mixing process specifically includes the following steps: S1: First, lay the regenerated polyester fibers on the placement table, then start the rotating motor to drive the screw B to rotate, so that the mounting plate is lifted to a specified height, then start the fixed motor to drive the screw A to rotate, at this time the mounting plate moves away from the surface of the regenerated polyester fibers, in this process, the compression roller B contacts the surface of the regenerated polyester fibers, so that the compression roller B rotates, at this time the reciprocating screw rod is driven to rotate through the cooperation of the belt pulley D, the transmission belt C and the belt pulley C, at this time the cutter body moves back and forth along the mounting groove A driven by the rotating reciprocating screw rod, at this time the top of the regenerated polyester fibers is pressed by the compression roller B, and the excess regenerated polyester fibers are cut by the moving cutter body, and the cut excess regenerated polyester fibers are pushed down to the placement table; S2: After the surface of the recycled polyester fiber is laid with the plush raw material, the rotating motor is started again according to the requirement, the mounting plate is lifted to a specified height again, then the fixed motor is controlled to rotate reversely, at this time, the reversely rotating screw rod A drives the mounting plate to move reversely, and in the process, the surface of the plush raw material is continuously pressed by the press roller B, and the excess part of the surface of the plush raw material is continuously cut by the back-and-forth moving cutter body, and with the movement of the mounting plate, the excess plush raw material is extruded and placed on the placing table; S3: After that, the recycled polyester fiber and the plush raw material are continuously laid in layers, when the laying is completed, the screw rod A is driven to rotate by the fixed motor, so that the slide rail A and the mounting plate move away from the machine body, and the slide rail A and the mounting plate are moved away from the top of the recycled polyester fiber and the plush raw material; S4: After that, the machine body 2 is controlled through the control panel to move back and forth along the track, and the bottom of the working arm is attached to the surface of the recycled polyester fiber and the plush raw material layer, in the process, the driving motor rotates, and the driving gear B, the transmission belt A and the driving gear A cooperate to drive the rotating shaft to rotate, in the rotating process of the rotating shaft, the recycled polyester fiber and the plush raw material on the top are mixed and beaten by the mixing plate, and the mixed and beaten plush raw material and recycled polyester fiber are transported into the working arm, and the mixed and beaten plush raw material and recycled polyester fiber in the working arm are transported to the subsequent processing machine by the fan; S5: In the rotating process of the rotating shaft, the shaft rod connected thereto is driven to rotate through the cooperation of the belt pulley A, the transmission belt B and the belt pulley B, and in the rotating process of the shaft rod, the limiting frame thereon is driven to rotate, in the process, the hooks at the ends of the mounting frames distributed on both sides of the mixing plate can hook the recycled polyester fiber and the plush raw material remaining on the mixing plate; S6: When the mounting frame with the recycled polyester fiber and the plush raw material rotates above the shaft rod 4, at this time, since the mounting frame is above the limiting frame, the counterweight starts to move towards the limiting frame, and in the process, the rack drives the transmission gear A to rotate, and the transmission gear A drives the transmission gear B to rotate, at this time, the limiting rod is turned out of the mounting hole, and the recycled polyester fiber and the plush raw material hung on the hooks are pushed, so that the recycled polyester fiber and the plush raw material are separated from the hooks, and the separated recycled polyester fiber and plush raw material are transported by the fan; S7: With the continuous rotation of the shaft rod, when the limiting frame moves below the shaft rod, at this time, since the mounting frame is below the limiting frame, the counterweight moves towards the end of the mounting frame under the influence of gravity, and the rack cooperates with the transmission gear A to drive the transmission gear B to rotate reversely, so that the limiting rod is accommodated in the mounting hole, and the hooks can continue to clean the recycled polyester fiber and the plush raw material on the mixing plate.

[0014] Compared with the prior art, the present application has the following advantages: 1、In the rotating process of the rotating shaft and the mixing plate, the rotating shaft is driven to rotate through the cooperation of the belt pulley A, the transmission belt B and the belt pulley B, at this time, the end hook of the mounting frame following the rotating shaft can hook up the residual regenerated polyester fiber and the plush raw material on both sides of the mixing plate, so that the regenerated polyester fiber and the plush raw material are separated from the mixing plate, avoiding the problem that the regenerated polyester fiber and the plush raw material are easily entangled on the mixing plate, affecting the subsequent mixing work, and improving the operation stability of the device; 2、When the hook with the regenerated polyester fiber and the plush raw material is rotated to the upper side of the shaft rod with the mounting frame, at this time, the counterweight starts to slide towards the shaft rod due to the influence of gravity, at this time, the cooperation of the rack, the transmission gear A and the transmission gear B drives the limiting rod to rotate, so that the limiting rod is rotated out of the installation port and extrudes the regenerated polyester fiber and the plush raw material on the hook, at this time, the regenerated polyester fiber and the plush raw material fall off from the hook, and the device is provided with a fan to transport the regenerated polyester fiber and the plush raw material on the hook, and with the continuous rotation of the shaft rod, the hook will be rotated to the lower side of the shaft rod with the mounting frame, at this time, the counterweight will slide towards the end of the mounting frame due to the influence of gravity, at this time, the cooperation of the rack, the transmission gear A and the transmission gear B drives the limiting rod to rotate in the opposite direction, so that the limiting rod moves towards the installation port, so that the limiting rod is hidden and stored, so that the hook can continue to clean the residual regenerated polyester fiber and the plush raw material on the mixing plate, avoiding the problem that the regenerated polyester fiber and the plush raw material cannot be separated from the hook after being hung on the hook, affecting the cleaning effect of the hook on the mixing plate, further improving the auxiliary nature of the device for the cleaning work of the residual regenerated polyester fiber and the plush raw material; 3、The regenerated polyester fiber and the plush raw material are laid on the placement table in turn, after laying the regenerated polyester fiber and the plush raw material each time, the cooperation of the fixed motor and the screw A drives the installation plate to lift to a specified height, so as to determine the thickness of the layer of the regenerated polyester fiber and the plush raw material, then the cooperation of the rotary motor and the screw B drives the installation plate to move and adhere to the top of the regenerated polyester fiber or the plush raw material, at this time, the top of the regenerated polyester fiber and the plush raw material is adhered to the compression roller B, and the force generated by the movement of the installation plate drives the compression roller B to rotate, the cooperation of the belt pulley D, the transmission belt C and the belt pulley C drives the reciprocating screw rod to rotate, and the reciprocating screw rod drives the cutter to move back and forth, at this time, the excess regenerated polyester fiber and the plush raw material can be cut and removed, avoiding the problem that the traditional regenerated polyester fiber and the cashmere are relatively fluffy, causing the visual effect of the fluffy regenerated polyester fiber and the cashmere when laying the layer, resulting in the problem that the proportion of the laid material is not accurate. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall structure of the present application. Figure 2 The schematic diagram of the body structure of the application; Figure 3 The schematic diagram of the cross-section structure of the body of the application; Figure 4 The schematic diagram of the rotating shaft structure of the application; Figure 5 The schematic diagram of the shaft rod and its connecting components structure of the application; Figure 6 The schematic diagram of the cross-section structure of the mounting frame of the application; Figure 7 The schematic diagram of the fixed frame structure of the application; Figure 8 The schematic diagram of the cross-section structure of the fixed frame and slide rail B of the application; Figure 9 The schematic diagram of the bottom structure of the mounting plate of the application; Figure 10 The schematic diagram of the connecting structure of the compression roller B and the reciprocating wire rod of the application; Figure 11 The schematic diagram of the enlarged structure of the A area shown in the application; Figure 6 The schematic diagram of the enlarged structure of the A area shown in the application;

[0016] In the figure: 1, track; 11, control console; 2, body; 21, counterweight plate; 22, working arm; 23, compression roller A; 24, mesh cover; 3, rotating shaft; 31, mixing plate; 32, belt pulley A; 33, drive gear A; 34, drive motor; 35, drive gear B; 36, transmission belt A; 4, shaft rod; 41, limiting frame; 42, limiting port; 43, mounting frame; 431, hook; 432, mounting port; 44, spring; 45, transmission gear A; 46, transmission gear B; 461, limiting rod; 47, rack; 48, counterweight block; 49, limiting plate; 5, belt pulley B; 51, transmission belt B; 6, fixed frame; 61, sliding groove; 62, placing table; 63, slide rail A; 64, mounting plate; 641, mounting groove A; 642, mounting groove B; 65, reciprocating wire rod; 651, belt pulley C; 66, cutter body; 67, compression roller B; 671, belt pulley D; 68, transmission belt C; 7, slide rail B; 71, screw A; 72, fixed motor; 8, screw B; 81, rotary motor. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.

[0018] Please refer to Figure 1-11 The application provides a technical scheme: a regenerated polyester fiber and plush raw material layer mixing and beating equipment, which comprises two tracks 1, one end of the track 1 is fixedly connected with a control cabinet 11, the top of the track 1 is slidably connected with a body 2, one side of the body 2 is slidably connected with a working arm 22, the bottom of the working arm 22 is fixedly connected with a mesh cover 24, two rotating shafts 3 are rotationally connected in the working arm 22, the mesh cover 24 is located below the two rotating shafts 3, a plurality of uniformly distributed mixing and beating plates 31 are fixedly connected to the rotating shafts 3, the mixing and beating plate 31 is an arc-shaped plate body, the two rotating shafts 3 rotate towards each other, at this time, the mixing and beating plate 31 contacts the plush and the regenerated polyester fiber after passing through the mesh cover 24, the arc-shaped plate body can vertically grab the plush and the regenerated polyester fiber, and the two rotating shafts 3 convey the plush and the regenerated polyester fiber into the working arm 22, the mesh cover 24 can extrude and limit the regenerated polyester fiber and the plush at the bottom of the mesh cover 24 during the mixing and beating process, so that the mixing and beating effect is not reduced due to the mixing and beating plate 31 grabbing too much regenerated polyester fiber and plush, the mixing and beating plates 31 on the two rotating shafts 3 are distributed in a staggered manner, two belt pulleys A32 are rotationally connected to the end of the working arm 22 away from the body 2, each belt pulley A32 is fixedly connected with the rotating shaft 3 on the same side, a drive gear A33 is fixedly connected to the side of the belt pulley A32 away from the working arm 22, two drive motors 34 are fixedly connected in the working arm 22, a drive gear B35 is fixedly connected to the output end of the drive motor 34, a transmission belt A36 is arranged between the drive gear B35 and the drive gear A33 on the same side, a plurality of counterweight plates 21 are arranged on the side of the body 2 away from the working arm 22, the appropriate counterweight plates 21 can make the body 2 more stable during movement, pressure rollers A23 are rotationally connected to the bottom of the working arm 22 on both sides, a fan for conveying the regenerated polyester fiber and the plush raw material is arranged in the working arm 22, a conveying pipeline can be externally connected to the output end of the fan, and the regenerated polyester fiber and the plush raw material after mixing and beating are conveyed into the subsequent processing machine through the conveying pipeline by the fan.

[0019] Furthermore, the machine body 2 is controlled by the control console 11 to move back and forth along the track 1, and the bottom of the working arm 22 is attached to the surface of the layer of recycled polyester fiber and plush raw material. During this process, the drive motor 34 rotates, driving the drive gear B35 to rotate. At this time, the drive gear B35 drives the drive gear A33 to rotate via the transmission belt A36, and then drives the rotating shaft 3 to rotate via the drive gear A33. During the rotation of the rotating shaft 3, the top of the recycled polyester fiber and plush raw material is mixed by the mixing plate 31, and the laid recycled polyester fiber and plush raw material are vertically grabbed by the mixing plate 31 and transported to the working arm 22. Finally, the plush raw material and recycled polyester fiber mixed in the working arm 22 are transported to the subsequent processing machine by the fan.

[0020] Combined with attachment Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 and Figure 11 As shown, the working arm 22 is rotatably connected to two shafts 4, and the two shafts 4 are respectively located above the two rotating shafts 3. A number of evenly distributed limit frames 41 are fixedly connected to the shaft 4, and a limit opening 42 is provided on the limit frame 41. A mounting frame 43 is slidably connected in the limit opening 42. A spring 44 is fixedly connected between the top of the mounting frame 43 and the inner top wall of the limit opening 42. A hook 431 is provided at the bottom of the mounting frame 43, and a mounting opening 432 is provided at the bottom of the mounting frame 43. A transmission gear A45 is rotatably connected in the mounting opening 432, and a transmission gear B46 that meshes with the transmission gear A45 is rotatably connected in the mounting opening 432. A limit rod 461 is fixedly connected to the transmission gear B46. 461 is located in the mounting opening 432, and the bottom of the mounting opening 432 is slidably connected to a rack 47 that meshes with the transmission gear A45. The rack 47 is fixedly connected to the side away from the mounting frame 43 with a counterweight block 48. The mounting opening 432 is fixedly connected to a limit plate 49. The number of mounting frames 43 is greater than the number of mixing boards 31. When each mixing board 31 rotates to above the rotating shaft 3, both sides of the mixing board 31 will fit with the mounting frames 43 at the corresponding positions. The end of the working arm 22 away from the body 2 is rotatably connected to two pulleys B5, and each pulley B5 is fixedly docked with the end of the shaft 4 on the same side as it. A transmission belt B51 is provided between each pulley B5 and the pulley A32 on the same side as it.

[0021] Further, during the rotation of the rotating shaft 3, the pulley A32 is rotated, and at this time, the pulley A32 drives the pulley B5 to rotate synchronously through the transmission belt B51, and at this time, the pulley B5 drives the shaft rod 4 connected thereto to rotate, and during the rotation of the shaft rod 4, the limiting frame 41 on the shaft rod 4 is driven to rotate, and during the rotation, the hooks 431 at the ends of the mounting frames 43 distributed on both sides of the mixing plate 31 can hook the regenerated polyester fibers and the plush raw materials remaining on the mixing plate 31, and when the mounting frames 43 with the regenerated polyester fibers and the plush raw materials are rotated to the upper side of the shaft rod 4, at this time, the mounting frames 43 are located above the limiting frame 41, and at this time, due to the influence of gravity, the counterweight 48 starts to slide towards the limiting frame 41, and during the sliding, the rack 47 drives the transmission gear A45 to rotate, and the transmission gear A45 drives the transmission gear B46 to rotate, at this time, the limiting rod 461 is rotated out of the mounting hole 432, and pushes the regenerated polyester fibers and the plush raw materials hung on the hooks 431, so that the regenerated polyester fibers and the plush raw materials are separated from the hooks 431, and the separated regenerated polyester fibers and the plush raw materials are transported through the fan, and with the continuous rotation of the shaft rod 4, when the limiting frame 41 moves to the lower side of the shaft rod 4, at this time, the mounting frames 43 are located below the limiting frame 41, and therefore, under the influence of gravity, the counterweight 48 moves to the end of the mounting frame 43, and the rack 47 cooperates with the transmission gear A45 to drive the transmission gear B46 to rotate reversely, so that the limiting rod 461 is accommodated in the mounting hole 432, and the hooks 431 can continue to clean the regenerated polyester fibers and the plush raw materials on the mixing plate 31.

[0022] The accompanying drawings are included to provide a further understanding of the application and are incorporated in and constitute a part of this specification. Figure 1 , Figure 7 , Figure 8 , Figure 9 and Figure 10As shown, the track 1 is provided with a fixed frame 6 near one side of the working arm 22, both sides of the fixed frame 6 are provided with a sliding groove 61, the inner bottom wall of the fixed frame 6 is provided with a placing table 62, the sliding groove 61 is slidably connected with a sliding rail A 63, the two sliding rails A 63 are slidably connected with a mounting plate 64, both sides of the bottom of the mounting plate 64 are provided with a mounting groove A 641, the bottom of the mounting plate 64 is provided with a mounting groove B 642, the mounting groove B 642 is located between the two mounting grooves A 641, the mounting groove A 641 is rotatably connected with a reciprocating screw rod 65, one end of the reciprocating screw rod 65 is fixedly connected with a belt pulley C 651, the mounting groove A 641 is slidably connected with a cutter body 66, one side of the cutter body 66 near the edge of the mounting plate 64 is provided with a cutting edge, the direction of the cutting edge is downwardly inclined, which is convenient for better cutting the excess regenerated polyester fiber and plush raw materials, the cutter body 66 is threadedly connected with the reciprocating screw rod 65 on the same side thereof, the mounting groove B 642 is rotatably connected with two compression rollers B 67, one end of the compression roller B 67 near the belt pulley C 651 is fixedly connected with a belt pulley D 671, the belt pulley D 671 and the adjacent belt pulley C 651 are provided with a transmission belt C 68, one side outer wall of the fixed frame 6 is fixedly connected with a sliding rail B 7 in communication with the sliding groove 61 on the same side thereof, the sliding rail B 7 is rotatably connected with a screw A 71, the sliding rail A 63 near one side of the sliding rail B 7 is threadedly connected with the screw A 71, one end of the sliding rail B 7 is fixedly connected with a fixed motor 72, the output end of the fixed motor 72 is fixedly connected with the end portion of the screw A 71, the sliding rail A 63 near one side of the sliding rail B 7 is rotatably connected with a screw B 8, one end of the screw B 8 on the same side of the mounting plate 64 is threadedly connected, the top of the sliding rail A 63 is fixedly connected with a rotating motor 81, the output end of the rotating motor 81 is fixedly connected with the top end of the screw B 8.

[0023] Further, when laying the recycled polyester fibers and the pile raw material, the recycled polyester fibers are laid on the placement table 62, and then according to the required layer thickness, the rotating motor 81 is started to drive the screw rod B8 to rotate, so that the mounting plate 64 is lifted to a specified height, and then the fixed motor 72 is started to drive the screw rod A71 to rotate, at this time the mounting plate 64 moves away from the surface of the recycled polyester fibers, in this process, the pressure roller B67 is in contact with the surface of the recycled polyester fibers, so that the pressure roller B67 rotates, at this time the pressure roller B67 drives the belt pulley D671 to rotate, the belt pulley D671 drives the belt pulley C651 to rotate through the transmission belt C68, and at this time the belt pulley C651 drives the reciprocating lead screw 65 to rotate, at this time the rotating reciprocating lead screw 65 drives the cutter body 66 to move back and forth along the mounting groove A641, at this time the top of the recycled polyester fibers is pressed by the pressure roller B67, and the excess recycled polyester fibers are cut by the moving cutter body 66, and the cut excess recycled polyester fibers are pushed down to the placement table 62, and then the pile raw material is laid on the surface of the recycled polyester fibers, and then according to the requirements, the rotating motor 81 is started again to lift the mounting plate 64 to a specified height, and then the fixed motor 72 is controlled to rotate in reverse, at this time the screw rod A71 rotates in reverse to drive the mounting plate 64 to move in reverse, and in this process, the surface of the pile raw material is continuously pressed by the pressure roller B67, and the excess part of the surface of the pile raw material is continuously cut by the reciprocating cutter body 66, and with the movement of the mounting plate 64, the excess pile raw material is pushed out of the placement table 62, and then the recycled polyester fibers and the pile raw material are laid in turn, and when the laying is completed, the excess recycled polyester fibers and the pile raw material accumulated on both sides of the fixed frame 6 are collected for subsequent use, and then the fixed motor 72 is used to drive the screw rod A71 to rotate, so that the slide rail A63 and the mounting plate 64 move away from the machine body 2, and the slide rail A63 and the mounting plate 64 move away from the top of the recycled polyester fibers and the pile raw material, and then the mixed beating work of the recycled polyester fibers and the pile raw material can be carried out, so as to prevent the slide rail A63 from blocking the normal work of the work arm 22.

[0024] A recycled polyester fiber and pile raw material layering and mixing beating process specifically includes the following steps: S1: First, the recycled polyester fiber is laid on the placement table 62, and then according to the required layer thickness, the rotating motor 81 is started to drive the screw rod B8 to rotate, so that the mounting plate 64 is lifted to a specified height, and then the fixed motor 72 is started to drive the screw rod A71 to rotate, at this time the mounting plate 64 moves away from the surface of the recycled polyester fiber, in this process, the pressure roller B67 contacts the surface of the recycled polyester fiber, so that the pressure roller B67 rotates, at this time, through the cooperation of the belt pulley D671, the transmission belt C68 and the belt pulley C651, the reciprocating lead screw 65 is driven to rotate, at this time the rotating reciprocating lead screw 65 drives the cutter body 66 to move back and forth along the mounting groove A641, at this time the top of the recycled polyester fiber is pressed by the pressure roller B67, and the excess recycled polyester fiber is cut by the moving cutter body 66, and the cut excess recycled polyester fiber is pushed down to the placement table 62; S2: After the surface of the recycled polyester fiber is laid with the plush raw material, according to the requirements, the rotating motor 81 is started again to lift the mounting plate 64 to a specified height, and then the fixed motor 72 is controlled to rotate in reverse, at this time the reverse rotating screw rod A71 drives the mounting plate 64 to move in reverse, and in this process, the surface of the plush raw material is continuously pressed by the pressure roller B67, and the excess part of the surface of the plush raw material is continuously cut by the reciprocating cutter body 66, and with the movement of the mounting plate 64, the excess plush raw material is pushed out of the placement table 62; S3: After that, the recycled polyester fiber and the plush raw material are continuously laid in turn, and when the layering is completed, the fixed motor 72 is used to drive the screw rod A71 to rotate, so that the slide rail A63 and the mounting plate 64 move away from the machine body 2, and the slide rail A63 and the mounting plate 64 move away from the top of the recycled polyester fiber and the plush raw material; S4: After that, the machine body 2 is controlled through the control panel 11 to move back and forth along the track 1, and the bottom of the working arm 22 is attached to the surface of the recycled polyester fiber and the plush raw material layer, in this process, the driving motor 34 rotates, and the driving gear B35, the transmission belt A36 and the driving gear A33 cooperate to drive the rotating shaft 3 to rotate, in the rotating process of the rotating shaft 3, the top of the recycled polyester fiber and the plush raw material is beaten by the beating plate 31, and the beaten plush raw material and recycled polyester fiber is transported into the working arm 22, and the beaten plush raw material and recycled polyester fiber in the working arm 22 is transported to the subsequent processing machine by the fan; S5: In the process of rotating the rotating shaft 3, it drives the connected shaft rod 4 to rotate through the cooperation of the belt pulley A32, the transmission belt B51 and the belt pulley B5, and in the process of rotating the shaft rod 4, the limiting frame 41 on the shaft rod 4 can be rotated, in this process, the hooks 431 at the ends of the mounting frames 43 distributed on both sides of the beating plate 31 can hook up the recycled polyester fiber and the plush raw material remaining on the beating plate 31; S6: When the mounting frame 43 with the recycled polyester fiber and plush material hooked thereon rotates to the top of the shaft 4, since the mounting frame 43 is located above the limiting frame 41, the counterweight 48 starts to move toward the limiting frame 41. During this process, the rack 47 drives the transmission gear A45 to rotate, and the transmission gear A45 drives the transmission gear B46 to rotate. At this time, the limiting rod 461 rotates out of the mounting opening 432 and pushes the recycled polyester fiber and plush material hung on the hook 431, so that the recycled polyester fiber and plush material are separated from the hook 431, and the separated recycled polyester fiber and plush material are transported by the fan. S7: As the shaft 4 continues to rotate, when the limit frame 41 moves to the bottom of the shaft 4, since the mounting frame 43 is located below the limit frame 41, the counterweight block 48 will move toward the end of the mounting frame 43 under the influence of gravity, and make the rack 47 cooperate with the transmission gear A45, driving the transmission gear B46 to rotate in the opposite direction, so that the limit rod 461 is stored in the mounting port 432, and the hook 431 can continue to be used to clean the recycled polyester fiber and plush materials on the mixing board 31.

[0025] Working principle: First, install the device at the designated position, then lay the regenerated polyester fiber on the placement table 62, and then according to the required layer thickness, start the rotating motor 81 to drive the screw B8 to rotate, thereby lifting the mounting plate 64 to a designated height, and then start the fixed motor 72 to drive the screw A71 to rotate. At this time, the mounting plate 64 moves over the surface of the regenerated polyester fiber. During this process, the pressure roller B67 contacts the surface of the regenerated polyester fiber, causing the pressure roller B67 to rotate. At this time, the reciprocating screw 65 is driven to rotate through the pulley D671, the transmission belt C68 and the pulley C651. At this time, the rotating reciprocating screw 65 will drive the knife body 66 to move back and forth along the mounting groove A641. At this time, the top of the regenerated polyester fiber is pressed by the pressure roller B67, and the excess regenerated polyester fiber is cut by the moving knife body 66, and the cut excess regenerated polyester fiber is squeezed off the placement table 62, and then the plush raw material is laid on the surface of the polyester fiber. The above operation is repeated to control the layer thickness of the plush raw material. After the recycled polyester fibers and the plush raw materials are sequentially layered, the machine body 2 is controlled by the control console 11 to move along the track 1 back and forth, and the bottom of the working arm 22 is attached to the surface of the recycled polyester fibers and the plush raw material layer. In this process, the driving motor 34 rotates, and the driving gear B 35, the transmission belt A 36 and the driving gear A 33 cooperate to drive the rotating shaft 3 to rotate. In the rotating process of the rotating shaft 3, the top of the recycled polyester fibers and the plush raw materials is mixed and beaten by the mixing and beating plate 31, and the mixed and beaten plush raw materials and recycled polyester fibers are transported into the working arm 22, and the fan transports the mixed and beaten plush raw materials and recycled polyester fibers in the working arm 22 to the subsequent processing machine. During the rotation of the rotating shaft 3, the shaft rod 4 connected thereto is rotated through the cooperation of the belt pulley A32, the transmission belt B51 and the belt pulley B5. The limiting frame 41 on the shaft rod 4 can be rotated in the rotating process. In this process, the hooks 431 at the ends of the mounting frames 43 distributed on both sides of the mixing and beating plate 31 can hook the recycled polyester fibers and the plush raw materials remaining on the mixing and beating plate 31. When the mounting frame 43 with the recycled polyester fibers and the plush raw materials is rotated to the upper side of the shaft rod 4, the counterweight 48 starts to move towards the limiting frame 41 at this time because the mounting frame 43 is located above the limiting frame 41. In this process, the rack 47 drives the transmission gear A45 to rotate, and the transmission gear A45 drives the transmission gear B46 to rotate. At this time, the limiting rod 461 is rotated out of the mounting hole 432 and pushes the recycled polyester fibers and the plush raw materials hanging on the hook 431, so that the recycled polyester fibers and the plush raw materials are separated from the hook 431, and the fan transports the separated recycled polyester fibers and the plush raw materials. With the continuous rotation of the shaft rod 4, when the limiting frame 41 moves to the lower side of the shaft rod 4, the counterweight 48 moves to the end of the mounting frame 43 under the influence of gravity because the mounting frame 43 is located below the limiting frame 41. The rack 47 cooperates with the transmission gear A45 to drive the transmission gear B46 to rotate in the opposite direction, so that the limiting rod 461 is stored in the mounting hole 432. The hook 431 can continue to clean the recycled polyester fibers and the plush raw materials on the mixing and beating plate 31.

[0026] It should be noted that in this paper, the relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between the entities or operations. Moreover, the terms "include", "contain" or any other variant thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.

[0027] While embodiments of the application have been shown and described, it is to be understood that the embodiments described are merely exemplary of the principles and application of the present application. Numerous modifications and adaptions can be made without departing from the spirit and scope of the present application, which is defined by the following claims and their equivalents.

Claims

1. A device for mixing recycled polyester fiber and plush raw material layers, comprising a track (1), the top of the track (1) being slidably connected to a body (2), one side of the body (2) being slidably connected to a working arm (22), the working arm (22) being rotatably connected to two rotating shafts (3), each of the rotating shafts (3) being fixedly connected to a plurality of evenly distributed mixing plates (31), the mixing plates (31) on the two rotating shafts (3) being staggered, and characterized in that: Two shafts (4) are rotatably connected to the working arm (22), and the two shafts (4) are respectively located above the two rotating shafts (3). A plurality of evenly distributed limiting frames (41) are fixedly connected to the shafts (4), and a limiting opening (42) is provided on the limiting frame (41). A mounting frame (43) is slidably connected to the limiting opening (42). A spring (44) is fixedly connected between the top of the mounting frame (43) and the inner top wall of the limiting opening (42). A hook (431) is provided at the bottom of the mounting frame (43), and a mounting opening (432) is provided at the bottom of the mounting frame (43). A transmission gear A (45) is rotatably connected in the opening (432), a transmission gear B (46) meshing with the transmission gear A (45) is rotatably connected in the installation opening (432), a limiting rod (461) is fixedly connected to the transmission gear B (46), the limiting rod (461) is located in the installation opening (432), a rack (47) meshing with the transmission gear A (45) is slidably connected to the bottom of the installation opening (432), a counterweight (48) is fixedly connected to the side of the rack (47) away from the installation frame (43), and a limiting plate (49) is fixedly connected in the installation opening (432).

2. The equipment for mixing and plying recycled polyester fiber and plush materials according to claim 1, characterized in that: The working arm (22) is rotatably connected to one end away from the machine body (2) with two pulleys A (32), each of the pulleys A (32) is fixedly docked with the rotating shaft (3) on the same side thereof, the pulley A (32) is fixedly connected to a driving gear A (33) on the side away from the working arm (22), the working arm (22) is fixedly connected to two driving motors (34), the output ends of the driving motors (34) are fixedly connected to driving gears B (35), and a transmission belt A (36) is provided between the driving gear B (35) and the driving gear A (33) on the same side thereof.

3. The equipment for mixing and plying recycled polyester fiber and plush materials according to claim 2, characterized in that: One end of the working arm (22) away from the machine body (2) is rotatably connected to two pulleys B (5), each of the pulleys B (5) is fixedly docked with the end of the shaft (4) on the same side thereof, and a transmission belt B (51) is provided between each of the pulleys B (5) and the pulley A (32) on the same side thereof.

4. The equipment for mixing and plying recycled polyester fiber and plush materials according to claim 3, characterized in that: A fixing frame (6) is provided on one side of the track (1) close to the working arm (22), and a slide groove (61) is provided on both sides of the fixing frame (6). A placement platform (62) is provided on the inner bottom wall of the fixing frame (6), and a slide rail A (63) is slidably connected in the slide groove (61), and a mounting plate (64) is slidably connected between the two slide rails A (63).

5. The equipment for mixing and plying recycled polyester fiber and plush materials according to claim 4, characterized in that: Both sides of the bottom of the mounting plate (64) are provided with mounting grooves A (641), and the bottom of the mounting plate (64) is provided with a mounting groove B (642), and the mounting groove B (642) is located between the two mounting grooves A (641). A reciprocating screw rod (65) is rotatably connected in the mounting groove A (641), and one end of the reciprocating screw rod (65) is fixedly connected to a pulley C (651). A knife body (66) is slidably connected in the mounting groove A (641), and the knife body (66) is threadedly connected to the reciprocating screw rod (65) on the same side thereof. Two pressure rollers B (67) are rotatably connected in the mounting groove B (642), and one end of the pressure roller B (67) close to the pulley C (651) is fixedly connected to a pulley D (671), and a transmission belt C (68) is provided between the pulley D (671) and the adjacent pulley C (651).

6. The equipment for mixing and plying recycled polyester fiber and plush materials according to claim 5, characterized in that: The outer wall of one side of the fixed frame (6) is fixedly connected to a slide rail B (7) connected to the slide groove (61) on the same side thereof, and a screw rod A (71) is rotatably connected inside the slide rail B (7). The slide rail A (63) close to the side of the slide rail B (7) is threadedly connected to the screw rod A (71), and one end of the slide rail B (7) is fixedly connected to a fixed motor (72), and the output end of the fixed motor (72) is fixedly docked with the end of the screw rod A (71).

7. The equipment for mixing and piling recycled polyester fiber and plush materials according to claim 6, characterized in that: A screw rod B (8) is rotatably connected in the slide rail A (63) on one side of the slide rail B (7), and the screw rod B (8) is threadedly connected to one end of the mounting plate (64) on the same side thereof. A rotary motor (81) is fixedly connected to the top of the slide rail A (63), and the output end of the rotary motor (81) is fixedly docked with the top end of the screw rod B (8).

8. The equipment for mixing and plying recycled polyester fiber and plush materials according to claim 7, characterized in that: A plurality of counterweight plates (21) are provided on a side of the machine body (2) away from the working arm (22), and pressure rollers A (23) are rotatably connected to both sides of the bottom of the working arm (22). A mesh cover (24) is fixedly connected to the bottom of the working arm (22), and the mesh cover (24) is located below the two rotating shafts (3). A fan for conveying recycled polyester fibers and plush materials is provided in the working arm (22).

9. The equipment for mixing and plying recycled polyester fiber and plush materials according to claim 8, characterized in that: Two rails (1) are provided, and one end of the rail (1) is fixedly connected to a console (11).

10. A process for mixing recycled polyester fiber and plush raw materials, characterized by: The process for mixing recycled polyester fiber and plush raw material layers according to claim 9 specifically comprises the following steps: S1: First, the regenerated polyester fiber is laid on the placement table (62), and then the rotating motor (81) is started according to the required layer thickness, so that it drives the screw B (8) to rotate, thereby lifting the mounting plate (64) to a specified height, and then the fixed motor (72) is started to drive the screw A (71) to rotate. At this time, the mounting plate (64) moves over the surface of the regenerated polyester fiber. During this process, the pressure roller B (67) contacts the surface of the regenerated polyester fiber, causing the pressure roller B (67) to rotate. At this time, the reciprocating screw (65) is driven to rotate by the pulley D (671), the transmission belt C (68) and the pulley C (651). At this time, the rotating reciprocating screw (65) drives the knife body (66) to move back and forth along the mounting groove A (641). At this time, the top of the regenerated polyester fiber is pressed by the pressure roller B (67), and the excess regenerated polyester fiber is cut by the moving knife body (66), and the cut excess regenerated polyester fiber is squeezed off the placement table (62); S2: Then, the plush material is laid on the surface of the recycled polyester fiber, and then, according to the demand, the rotating motor (81) is started again to lift the mounting plate (64) to a specified height again, and then the fixed motor (72) is controlled to start reverse rotation. At this time, the reverse rotating screw A (71) will drive the mounting plate (64) to move in the reverse direction, and in this process, the pressure roller B (67) is continued to press the surface of the plush material, and the knife body (66) that moves back and forth is continued to cut the excess part of the surface of the plush material, and as the mounting plate (64) moves, the excess plush material is squeezed out of the placement table (62); S3: After that, the recycled polyester fiber and the plush material are continuously layered. When the layering is completed, the fixed motor (72) is used to drive the screw A (71) to rotate, so that the slide rail A (63) and the mounting plate (64) are moved away from the machine body (2), and the slide rail A (63) and the mounting plate (64) are moved away from the top of the recycled polyester fiber and the plush material; S4: Afterwards, the machine body 2 is controlled by the control console (11) to move back and forth along the track (1), and the bottom of the working arm (22) is attached to the surface of the layer of recycled polyester fiber and plush material. During this process, the driving motor (34) rotates, and the driving gear B (35), the transmission belt A (36) and the driving gear A (33) cooperate to drive the rotating shaft (3) to rotate. During the rotation process, the rotating shaft (3) starts to mix the top of the recycled polyester fiber and the plush material through the mixing plate (31), and the mixed plush material and the recycled polyester fiber are transported to the working arm (22), and the mixed plush material and the recycled polyester fiber in the working arm (22) are transported to the subsequent processing machine through the fan; S5: During the rotation of the rotating shaft (3), the shaft (4) connected thereto is driven to rotate by the cooperation of the pulley A (32), the transmission belt B (51) and the pulley B (5). During the rotation of the shaft (4), the limit frame (41) on the shaft (4) is driven to rotate. During this process, the hooks (431) at the ends of the mounting frames (43) on both sides of the mixing board (31) can be used to hook up the recycled polyester fibers and plush materials remaining on the mixing board (31); S6: When the mounting frame (43) hooked with the recycled polyester fiber and the plush material rotates to the top of the shaft 4, at this time, since the mounting frame (43) is located above the limit frame (41), the counterweight (48) starts to move toward the limit frame (41), and in this process, the rack (47) drives the transmission gear A (45) to rotate, and the transmission gear A (45) drives the transmission gear B (46) to rotate. At this time, the limit rod (461) will rotate out of the mounting port (432) and push the recycled polyester fiber and the plush material hung on the hook (431) to separate the recycled polyester fiber and the plush material from the hook (431), and the separated recycled polyester fiber and the plush material are transported by the fan; S7: As the shaft (4) continues to rotate, when the limit frame (41) moves to the bottom of the shaft (4), since the mounting frame (43) is located below the limit frame (41), the counterweight (48) will move toward the end of the mounting frame (43) under the influence of gravity, and the rack (47) will cooperate with the transmission gear A (45), driving the transmission gear B (46) to rotate in the opposite direction, so that the limit rod (461) is stored in the mounting port (432), and the hook (431) can continue to be used to clean the recycled polyester fiber and plush materials on the mixing board (31).