Textile fabric cutting device for textile production
By designing a textile fabric cutting device including an anti-tilt protective shell, a deformable conveying mechanism and a deformable cutting mechanism, the problems of low cutting accuracy and textile fabric movement in the traditional device are solved, and a high-precision and automated cutting and discharge process is achieved.
Patent Information
- Application Number
- CN202510054465.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2025-05-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional textile fabric cutting devices lack fixed structures, resulting in poor cutting accuracy and easy movement of textile fabrics during the cutting process.
A textile fabric cutting device including an anti-turn protection case, a deformable conveying mechanism and a deformable cutting mechanism are designed. The device realizes automatic continuous cutting of textile fabrics through the mutual cooperation of multiple structures, and reliably fixes the textile fabrics during the cutting process.
It improves cutting accuracy, avoids the movement of textile fabrics during the cutting process, realizes automatic discharge, facilitates subsequent processing, and simplifies the handling process. It also has information display function, enhancing the functional richness of the device.
Smart Images

Figure CN119973400A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of textile production, and in particular relates to a textile fabric cutting device for textile production. Background Art
[0002] The original meaning of textile is a general term for spinning and weaving. However, with the continuous development and improvement of the textile knowledge system and discipline system, especially the emergence of non-woven textile materials and three-dimensional composite weaving technologies, it is no longer limited to traditional manual spinning and weaving, but also includes non-woven technology, modern three-dimensional weaving technology, modern electrostatic nano-netting technology, etc., which are used in clothing, industry, and decorative textiles. Cutting devices are used to cut textile fabrics in the textile production process; The conventional cutting device includes a workbench, a heat dissipation plate, a heat dissipation grid, a roller, a material outlet, a rotating drum, a transmission belt, a processing box, an indicator light, a mounting plate, a first screw hole, a fastening bolt, a servo motor, a lead screw, a cutting blade, a storage box, a reinforcement plate and a traction plate. The advantage of the cutting device is that it can perform cutting operations on textile fabrics; However, due to the lack of a fixing structure, the traditional cutting device cannot fix the textile fabric during the cutting process. The textile fabric is easily moved during the cutting process, resulting in poor cutting accuracy of the cutting device, which urgently needs to be improved. Summary of the invention
[0003] The object of the present invention is to provide a textile fabric cutting device for textile production to solve the problems raised in the above background technology.
[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a textile fabric cutting device for textile production, comprising an anti-dumping protective shell, a discharge hole is provided at the bottom of the side of the anti-dumping protective shell, a deformable conveying mechanism corresponding to the discharge hole is provided at the bottom of the anti-dumping protective shell, a second limiting guide metal plate is provided on the inner wall of the anti-dumping protective shell, the second limiting guide metal plate is provided on the top of the anti-dumping protective shell, the second limiting guide metal plate is fixedly connected to the anti-dumping protective shell, and a corresponding second limiting guide metal plate is provided on the inner wall of the anti-dumping protective shell. The corresponding deformable cutting mechanism, the deformable cutting mechanism is arranged on the top of the anti-dumping protective shell, the deformable cutting mechanism is fixedly connected to the anti-dumping protective shell, an anti-dumping support bottom plate is arranged below the anti-dumping protective shell, the anti-dumping support bottom plate is fixedly connected to the anti-dumping protective shell, a first anti-tilt protection tube is arranged on the upper surface of the anti-dumping support bottom plate, the first anti-tilt protection tube is fixedly connected to the anti-dumping support bottom plate, the first anti-tilt protection tube is fixedly connected to the anti-dumping protective shell, the deformable conveying mechanism includes a movable material guide plate, the movable material guide plate is slidably connected to the anti-dumping protective shell, A third limiting metal mounting plate is arranged below the movable material guide plate, and the third limiting metal mounting plate is fixedly connected to the anti-dumping protective shell. A fifth telescopic position adjusting member is arranged at one end of the third limiting metal mounting plate, and the fifth telescopic position adjusting member runs through the third limiting metal mounting plate, and the fifth telescopic position adjusting member is fixedly connected to the third limiting metal mounting plate. A first transmission metal plate is arranged at the top of the fifth telescopic position adjusting member, and the first transmission metal plate is fixedly connected to the fifth telescopic position adjusting member. A second transmission metal plate corresponding to the first transmission metal plate is arranged at the top of the movable material guide plate, and the second transmission metal plate is fixedly connected to the movable material guide plate. A plurality of sixth telescopic position adjusting members corresponding to the second transmission metal plate are arranged at both ends of the first transmission metal plate, and the top of the sixth telescopic position adjusting member is fixedly connected to the second transmission metal plate, and the bottom of the sixth telescopic position adjusting member is fixedly connected to the first transmission metal plate. An anti-tilting protection plate is also arranged on the lower surface of the movable material guide plate, and the top of the anti-tilting protection plate is fixedly connected to the movable material guide plate, and the bottom of the anti-tilting protection plate is slidably connected to the third limiting metal mounting plate.
[0005] As a further solution of the present invention: the deformable cutting mechanism includes a first limiting metal mounting plate, the first limiting metal mounting plate is fixedly connected to the anti-dumping protective shell, a second limiting metal mounting plate is arranged on the side of the first limiting metal mounting plate facing the second limiting guide metal plate, a plurality of third retractable position adjusting parts for adjusting the position of the second limiting metal mounting plate are arranged at both ends of the first limiting metal mounting plate, a transmission metal block is arranged on the side of the second limiting metal mounting plate away from the first limiting metal mounting plate, the transmission metal block is slidably connected to the second limiting metal mounting plate, an adjustable speed power output part is arranged at one end of the second limiting metal mounting plate, the adjustable speed power output part is fixedly connected to the second limiting metal mounting plate, a threaded metal transmission rod for driving the transmission metal block is arranged at the output end of the adjustable speed power output part, the threaded metal transmission rod is threadedly connected to the transmission metal block, a liquid storage metal box is arranged at one end of the transmission metal block away from the second limiting metal mounting plate, and a cutting laser head is arranged at one end of the liquid storage metal box away from the transmission metal block.
[0006] As a further solution of the present invention: one end of the third telescopic position adjusting member is fixedly connected to the first limiting metal mounting plate, the other end of the third telescopic position adjusting member is fixedly connected to the second limiting metal mounting plate, a plurality of limiting metal slide rails corresponding to the transmission metal block are arranged on the side of the second limiting metal mounting plate, the limiting metal slide rails are fixedly connected to the second limiting metal mounting plate, the limiting metal slide rails are slidably connected to the transmission metal block, and a limiting connection groove corresponding to the limiting metal slide rails is opened on the transmission metal block.
[0007] As a further solution of the present invention: one end of the liquid storage metal box is fixedly connected to the transmission metal block, and the other end of the liquid storage metal box is fixedly connected to the cutting laser head. A plurality of heat-conducting metal fins are arranged at one end of the liquid storage metal box close to the cutting laser head. The plurality of heat-conducting metal fins are arranged at intervals on the inner wall of the liquid storage metal box, and the heat-conducting metal fins are fixedly connected to the liquid storage metal box.
[0008] As a further solution of the present invention: a movable metal pressure plate is provided at both ends of the second limiting metal mounting plate, the movable metal pressure plate is slidably connected to the second limiting metal mounting plate, a plurality of first telescopic position adjustment parts are provided at both ends of the second limiting metal mounting plate, the first telescopic position adjustment part is fixedly connected to the second limiting metal mounting plate, the telescopic end of the first telescopic position adjustment part is provided with a second telescopic position adjustment part corresponding to the movable metal pressure plate, and one end of the second telescopic position adjustment part is fixedly connected to the first telescopic position adjustment part.
[0009] As a further solution of the present invention: the other end of the second telescopic position adjusting member is fixedly connected to the movable metal pressure plate, a second anti-tilt protection tube is arranged on the side of the movable metal pressure plate, the second anti-tilt protection tube is fixedly connected to the movable metal pressure plate, the second anti-tilt protection tube is slidably connected to the first telescopic position adjusting member, an elastically deformable protection plate is arranged at one end of the movable metal pressure plate close to the second limiting guide metal plate, and the elastically deformable protection plate is fixedly connected to the movable metal pressure plate.
[0010] As a further solution of the present invention: a hollow sealing partition is provided at one end of the liquid storage metal box close to the cutting laser head, and the hollow sealing partition is fixedly connected to the liquid storage metal box; an elastic pressure regulating sealing plate is provided on the side of the hollow sealing partition away from the cutting laser head, and the elastic pressure regulating sealing plate is fixedly connected to the hollow sealing partition; a liquid storage metal cylinder is provided at one end of the transmission metal block close to the first limiting metal mounting plate, the interior of the liquid storage metal cylinder is filled with temperature regulating liquid, and a movable sealing plug is sealingly and slidably connected to the end of the liquid storage metal cylinder away from the transmission metal block; a plurality of hollow feed pipes are provided at one end of the liquid storage metal cylinder away from the first limiting metal mounting plate, and the hollow feed pipes pass through the hollow sealing partition.
[0011] As a further solution of the present invention: one end of the hollow feed pipe is fixedly connected to the liquid storage metal cylinder, the other end of the hollow feed pipe is fixedly connected to the hollow sealing partition, a plurality of pressure relief holes are provided at one end of the liquid storage metal box close to the transmission metal block, a plurality of fourth telescopic position adjusting parts for driving the movable sealing plug to move away from the transmission metal block are provided at one end of the liquid storage metal cylinder close to the transmission metal block, a second limit posture adjustment plate is provided at one end of the movable sealing plug away from the fourth telescopic position adjusting part, a plurality of first limit posture adjustment plates for cooperating with the second limit posture adjustment plate to drive the movable sealing plug to move away from the first limit metal mounting plate are provided at side intervals of the first limit metal mounting plate, and the first limit posture adjustment plate is fixedly connected to the first limit metal mounting plate.
[0012] As a further solution of the present invention: the fourth telescopic position adjusting member is fixedly connected to the liquid storage metal cylinder, and an anti-falling metal ring for braking the movable sealing plug is provided at one end of the liquid storage metal cylinder away from the transmission metal block, the anti-falling metal ring is fixedly connected to the liquid storage metal cylinder, the second limit posture adjustment plate is fixedly connected to the movable sealing plug, and the liquid storage metal cylinder is slidably connected to the second limit metal mounting plate.
[0013] As a further solution of the present invention: a first limiting guide metal plate corresponding to the second limiting guide metal plate is arranged on the inner wall of the anti-dumping protective shell, the first limiting guide metal plate is fixedly connected to the anti-dumping protective shell, a plurality of metal hanging plates are arranged on the side of the anti-dumping protective shell, the metal hanging plates are arranged on the top of the side of the anti-dumping protective shell, the metal hanging plates are fixedly connected to the anti-dumping protective shell, and a plurality of waterproof information display pieces are arranged on the end of the metal hanging plate away from the anti-dumping protective shell.
[0014] Compared with the prior art, the beneficial effects of the present invention are: the present invention has a simple structure and is easy to use. When in use, the automatic continuous cutting of textile fabrics is achieved through the mutual cooperation of multiple structures, and the textile fabrics can be reliably fixed during the cutting process to avoid the movement of the textile fabrics during the cutting process, so that the cutting accuracy of the cutting device is higher. Secondly, the present invention can automatically discharge the cut textile fabrics, which is convenient for users to perform subsequent processing of the cut textile fabrics. In addition, the present invention is easy to carry, and the present invention has an information display function, which makes the cutting device more functional and worthy of promotion and use. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a structural schematic diagram of a textile fabric cutting device for textile production; Figure 2 It is a structural schematic diagram of a deformable cutting mechanism in a textile fabric cutting device for textile production; Figure 3 It is a schematic diagram of the structure of a liquid storage metal cylinder in a textile fabric cutting device for textile production; Figure 4 It is a structural schematic diagram of a deformable conveying mechanism in a textile fabric cutting device for textile production; Figure 5 It is a structural schematic diagram of a movable material guide plate in a textile fabric cutting device for textile production; In the figure: 1-anti-dumping protective shell, 2-deformable cutting mechanism, 3-metal hanging plate, 4-first limit guide metal plate, 5-waterproof information display, 6-second limit guide metal plate, 7-discharging hole, 8-deformable conveying mechanism, 9-first anti-tilt protection tube, 10-anti-dumping support bottom plate, 20-limiting metal slide rail, 21-liquid storage metal cylinder, 22-first limit posture adjustment plate, 23-first limit metal mounting plate, 24-movable metal pressure plate, 25-second limit metal mounting plate, 26-second anti-tilt protection tube, 27-first telescopic position adjustment member, 280-elastic deformable protection plate, 281-threaded metal transmission rod, 282-adjustable speed power output member, 283-second telescopic position adjustment member, 284-the third telescopic position adjusting member, 285-the limiting connecting groove, 286-the temperature regulating liquid, 287-the second limiting posture adjusting plate, 288-the anti-falling metal ring, 289-the movable sealing plug, 290-the fourth telescopic position adjusting member, 291-the hollow material conveying pipe, 292-the transmission metal block, 293-the liquid storage metal box, 294-the cutting laser head, 295-the heat-conducting metal fin, 296-the hollow sealing partition, 297-the elastic pressure regulating sealing plate, 298-the pressure relief hole, 80-the fifth telescopic position adjusting member, 81-the third limiting metal mounting plate, 82-the first transmission metal plate, 83-the movable material guide plate, 84-the second transmission metal plate, 85-the sixth telescopic position adjusting member, 86-the anti-tilt protection plate. DETAILED DESCRIPTION
[0016] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0017] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected" and "set" should be understood in a broad sense. For example, it can be fixedly connected or set, or it can be detachably connected or set, or integrally connected or set.
[0018] For those skilled in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0019] See also Figure 1The present embodiment provides a textile fabric cutting device for textile production, including an anti-dumping protective shell 1, a discharge hole 7 is opened at the bottom of the side of the anti-dumping protective shell 1, a deformable conveying mechanism 8 corresponding to the discharge hole 7 is arranged at the bottom of the anti-dumping protective shell 1, a second limiting guide metal plate 6 is arranged on the inner wall of the anti-dumping protective shell 1, the second limiting guide metal plate 6 is arranged on the top of the anti-dumping protective shell 1, the second limiting guide metal plate 6 is fixedly connected to the anti-dumping protective shell 1, and a second limiting guide metal plate 6 is arranged on the inner wall of the anti-dumping protective shell 1. The guide metal plate 6 corresponds to a deformable cutting mechanism 2, and the deformable cutting mechanism 2 is arranged on the top of the anti-dumping protective shell 1, and the deformable cutting mechanism 2 is fixedly connected to the anti-dumping protective shell 1, and an anti-dumping support base plate 10 is arranged below the anti-dumping protective shell 1, and the anti-dumping support base plate 10 is fixedly connected to the anti-dumping protective shell 1, and a first anti-tilt protection tube 9 is arranged on the upper surface of the anti-dumping support base plate 10, and the first anti-tilt protection tube 9 is fixedly connected to the anti-dumping support base plate 10, and the first anti-tilt protection tube 9 is fixedly connected to the anti-dumping protective shell 1.
[0020] See also Figure 1 , Figure 4 and Figure 5 In one embodiment, in order to make the use of the deformable conveying mechanism 8 more reliable, the deformable conveying mechanism 8 includes a movable material guide plate 83, the movable material guide plate 83 is slidably connected to the anti-dumping protection shell 1, a third limiting metal mounting plate 81 is arranged below the movable material guide plate 83, the third limiting metal mounting plate 81 is fixedly connected to the anti-dumping protection shell 1, a fifth telescopic position adjusting member 80 is arranged at one end of the third limiting metal mounting plate 81, the fifth telescopic position adjusting member 80 is a hydraulic cylinder, the fifth telescopic position adjusting member 80 is arranged through the third limiting metal mounting plate 81, the fifth telescopic position adjusting member 80 is fixedly connected to the third limiting metal mounting plate 81, a first transmission metal plate 82 is arranged on the top of the fifth telescopic position adjusting member 80, the first transmission metal plate 82 is fixedly connected to the fifth telescopic position adjusting member 80, and the movable A second transmission metal plate 84 corresponding to the first transmission metal plate 82 is arranged on the top of the guide plate 83, and the second transmission metal plate 84 is fixedly connected to the movable guide plate 83. A plurality of sixth telescopic position adjusting members 85 corresponding to the second transmission metal plate 84 are arranged at both ends of the first transmission metal plate 82. The sixth telescopic position adjusting member 85 is a spring, and the sixth telescopic position adjusting member 85 plays a vibrating role when in use. The top of the sixth telescopic position adjusting member 85 is fixedly connected to the second transmission metal plate 84, and the bottom of the sixth telescopic position adjusting member 85 is fixedly connected to the first transmission metal plate 82. An anti-tilt protection plate 86 is also arranged on the lower surface of the movable guide plate 83, and the top of the anti-tilt protection plate 86 is fixedly connected to the movable guide plate 83, and the bottom of the anti-tilt protection plate 86 is slidably connected to the third limiting metal mounting plate 81.
[0021] In another embodiment, the deformable conveying mechanism 8 includes a movable material guide plate 83, which is slidably connected to the anti-dumping protective shell 1, and a third limiting metal mounting plate 81 is arranged below the movable material guide plate 83, and the third limiting metal mounting plate 81 is fixedly connected to the anti-dumping protective shell 1, and a fifth telescopic position adjusting member 80 is arranged at one end of the third limiting metal mounting plate 81, and the fifth telescopic position adjusting member 80 is a cylinder, and the fifth telescopic position adjusting member 80 is arranged through the third limiting metal mounting plate 81, and the fifth telescopic position adjusting member 80 is fixedly connected to the third limiting metal mounting plate 81, and a first transmission metal plate 82 is arranged on the top of the fifth telescopic position adjusting member 80, and the first transmission metal plate 82 is fixedly connected to the fifth telescopic position adjusting member 80, and a movable material guide plate 83 is arranged on the top. A second transmission metal plate 84 corresponding to the first transmission metal plate 82 is fixedly connected to the movable material guide plate 83. A plurality of sixth telescopic position adjusting members 85 corresponding to the second transmission metal plate 84 are arranged at both ends of the first transmission metal plate 82. The sixth telescopic position adjusting member 85 is a metal spring sheet. When in use, the sixth telescopic position adjusting member 85 plays a vibrating role. The top of the sixth telescopic position adjusting member 85 is fixedly connected to the second transmission metal plate 84, and the bottom of the sixth telescopic position adjusting member 85 is fixedly connected to the first transmission metal plate 82. An anti-tilt protection plate 86 is also arranged on the lower surface of the movable material guide plate 83. The top of the anti-tilt protection plate 86 is fixedly connected to the movable material guide plate 83, and the bottom of the anti-tilt protection plate 86 is slidably connected to the third limiting metal mounting plate 81.
[0022] See also Figure 1 , Figure 2 and Figure 3In one embodiment, in order to make the use of the deformable cutting mechanism 2 more reliable, in this embodiment, preferably, the deformable cutting mechanism 2 includes a first limiting metal mounting plate 23, the first limiting metal mounting plate 23 is fixedly connected to the anti-dumping protection shell 1, and a second limiting metal mounting plate 25 is provided on the side of the first limiting metal mounting plate 23 facing the second limiting guide metal plate 6, and a plurality of third retractable position adjusting members 284 for adjusting the position of the second limiting metal mounting plate 25 are provided at both ends of the first limiting metal mounting plate 23, and the third retractable position adjusting member 284 is a hydraulic cylinder, and a transmission metal block 292 is provided on the side of the second limiting metal mounting plate 25 away from the first limiting metal mounting plate 23, and the transmission metal block 292 It is slidably connected with the second position-limiting metal mounting plate 25, and one end of the second position-limiting metal mounting plate 25 is provided with an adjustable speed power output member 282, and the adjustable speed power output member 282 is a servo motor. The adjustable speed power output member 282 is fixedly connected with the second position-limiting metal mounting plate 25, and the output end of the adjustable speed power output member 282 is provided with a threaded metal transmission rod 281 for driving the transmission metal block 292, and the threaded metal transmission rod 281 is threadedly connected with the transmission metal block 292, and the end of the transmission metal block 292 away from the second position-limiting metal mounting plate 25 is provided with a liquid storage metal box 293, and the end of the liquid storage metal box 293 away from the transmission metal block 292 is provided with a cutting laser head 294, and the use of the cutting laser head 294 is the prior art; See also Figure 2 and Figure 3 In one embodiment, in order to make the function of the deformable cutting mechanism 2 more abundant, in this embodiment, preferably, one end of the third telescopic position adjusting member 284 is fixedly connected to the first limiting metal mounting plate 23, and the other end of the third telescopic position adjusting member 284 is fixedly connected to the second limiting metal mounting plate 25, and a plurality of limiting metal slide rails 20 corresponding to the transmission metal block 292 are arranged on the side of the second limiting metal mounting plate 25, and the limiting metal slide rails 20 are fixedly connected to the second limiting metal mounting plate 25, and the limiting metal slide rails 20 are fixedly connected to the transmission metal block 292. The metal block 292 is slidably connected, and a limit connection groove 285 corresponding to the limit metal slide rail 20 is opened on the transmission metal block 292. One end of the liquid storage metal box 293 is fixedly connected to the transmission metal block 292, and the other end of the liquid storage metal box 293 is fixedly connected to the cutting laser head 294. A plurality of heat-conducting metal fins 295 are arranged at intervals on the inner wall of the liquid storage metal box 293, and the heat-conducting metal fins 295 are fixedly connected to the liquid storage metal box 293; See also Figure 2 and Figure 3In one embodiment, in order to make the function of the deformable cutting mechanism 2 more abundant, in this embodiment, preferably, movable metal pressing plates 24 are provided at both ends of the second limiting metal mounting plate 25, and the movable metal pressing plates 24 are slidably connected to the second limiting metal mounting plate 25. A plurality of first telescopic position adjusting members 27 are provided at both ends of the second limiting metal mounting plate 25, and the first telescopic position adjusting member 27 is a hydraulic cylinder, and the first telescopic position adjusting member 27 is fixedly connected to the second limiting metal mounting plate 25. The telescopic end of the first telescopic position adjusting member 27 is provided with a second telescopic position adjusting member 283 corresponding to the movable metal pressing plate 24, and the second telescopic position adjusting member 283 The second telescopic position adjusting member 283 is a spring, one end of the second telescopic position adjusting member 283 is fixedly connected to the first telescopic position adjusting member 27, the other end of the second telescopic position adjusting member 283 is fixedly connected to the movable metal pressing plate 24, a second anti-tilt protection tube 26 is arranged on the side of the movable metal pressing plate 24, the second anti-tilt protection tube 26 is fixedly connected to the movable metal pressing plate 24, the second anti-tilt protection tube 26 is slidably connected to the first telescopic position adjusting member 27, an elastic deformable protection plate 280 is arranged on one end of the movable metal pressing plate 24 close to the second limiting guide metal plate 6, the elastic deformable protection plate 280 is a rubber plate, and the elastic deformable protection plate 280 is fixedly connected to the movable metal pressing plate 24; See also Figure 2 and Figure 3 In one embodiment, in order to make the deformable cutting mechanism 2 more functional, in this embodiment, preferably, a hollow sealing partition 296 is provided at one end of the liquid storage metal box 293 close to the cutting laser head 294, and the hollow sealing partition 296 is a hollow steel plate, and the hollow sealing partition 296 is fixedly connected to the liquid storage metal box 293, and an elastic pressure regulating sealing plate 297 is provided on the side of the hollow sealing partition 296 away from the cutting laser head 294, and the elastic pressure regulating sealing plate 297 is an elastic rubber plate, and the connection between the elastic pressure regulating sealing plate 297 and the hollow sealing partition 296 has good sealing performance, and the elastic pressure regulating sealing plate 297 and the hollow sealing The partition 296 is fixedly connected, and a liquid storage metal cylinder 21 is arranged at one end of the transmission metal block 292 close to the first limit metal mounting plate 23. The interior of the liquid storage metal cylinder 21 is filled with a temperature regulating liquid 286, which is mineral oil. The temperature regulating liquid 286 can pass through the hollow sealing partition 296 and enter the interior of the elastic pressure regulating sealing plate 297. The end of the liquid storage metal cylinder 21 away from the transmission metal block 292 is sealed and slidably connected with a movable sealing plug 289. The end of the liquid storage metal cylinder 21 away from the first limit metal mounting plate 23 is arranged with a plurality of hollow material delivery pipes 291, and the hollow material delivery pipes 291 penetrate the hollow sealing partition 296. See also Figure 2 and Figure 3In one embodiment, in order to make the functions of the deformable cutting mechanism 2 more abundant, in this embodiment, preferably, in this embodiment, preferably, one end of the hollow feed pipe 291 is fixedly connected to the liquid storage metal cylinder 21, and the other end of the hollow feed pipe 291 is fixedly connected to the hollow sealing partition 296. A plurality of pressure relief holes 298 are provided at one end of the liquid storage metal box 293 close to the transmission metal block 292, and a plurality of fourth telescopic position adjusting members 290 for driving the movable sealing plug 289 to move in a direction away from the transmission metal block 292 are provided at one end of the liquid storage metal cylinder 21 close to the transmission metal block 292. The fourth telescopic position adjusting member 290 is a spring, and a second limit attitude adjusting plate 287 is provided at one end of the movable sealing plug 289 away from the fourth telescopic position adjusting member 290, and the second limit attitude adjusting plate 287 is neodymium iron Boron magnetic plate, the side intervals of the first limit metal mounting plate 23 are provided with a plurality of first limit posture adjustment plates 22 for cooperating with the second limit posture adjustment plate 287 to drive the movable sealing plug 289 to move away from the first limit metal mounting plate 23, the first limit posture adjustment plate 22 is an electromagnetic plate, the first limit posture adjustment plate 22 is fixedly connected to the first limit metal mounting plate 23, the fourth telescopic position adjustment member 290 is fixedly connected to the liquid storage metal cylinder 21, the end of the liquid storage metal cylinder 21 away from the transmission metal block 292 is provided with an anti-falling metal ring 288 for braking the movable sealing plug 289, the anti-falling metal ring 288 is fixedly connected to the liquid storage metal cylinder 21, the second limit posture adjustment plate 287 is fixedly connected to the movable sealing plug 289, and the liquid storage metal cylinder 21 is slidably connected to the second limit metal mounting plate 25.
[0023] In another embodiment, the deformable cutting mechanism 2 includes a first limiting metal mounting plate 23, the first limiting metal mounting plate 23 is fixedly connected to the anti-dumping protective shell 1, a second limiting metal mounting plate 25 is provided on the side of the first limiting metal mounting plate 23 facing the second limiting guide metal plate 6, and a plurality of third retractable position adjusting parts 284 for adjusting the position of the second limiting metal mounting plate 25 are provided at both ends of the first limiting metal mounting plate 23, the third retractable position adjusting part 284 is a cylinder, and a transmission metal block 292 is provided on the side of the second limiting metal mounting plate 25 away from the first limiting metal mounting plate 23, and the transmission metal block 292 is slidably connected to the second limiting metal mounting plate 25 Next, an adjustable speed power output part 282 is provided at one end of the second position-limiting metal mounting plate 25. The adjustable speed power output part 282 is a stepping motor. The adjustable speed power output part 282 is fixedly connected to the second position-limiting metal mounting plate 25. A threaded metal transmission rod 281 for driving a transmission metal block 292 is provided at the output end of the adjustable speed power output part 282. The threaded metal transmission rod 281 is threadedly connected to the transmission metal block 292. A liquid storage metal box 293 is provided at one end of the transmission metal block 292 away from the second position-limiting metal mounting plate 25. A cutting laser head 294 is provided at one end of the liquid storage metal box 293 away from the transmission metal block 292. The use of the cutting laser head 294 is a prior art. In another embodiment, in order to make the function of the deformable cutting mechanism 2 more abundant, in this embodiment, preferably, one end of the third telescopic position adjusting member 284 is fixedly connected to the first limiting metal mounting plate 23, and the other end of the third telescopic position adjusting member 284 is fixedly connected to the second limiting metal mounting plate 25, and the side of the second limiting metal mounting plate 25 is provided with a plurality of limiting metal slide rails 20 corresponding to the transmission metal block 292, the limiting metal slide rail 20 is fixedly connected to the second limiting metal mounting plate 25, and the limiting metal slide rail 20 is slidably connected to the transmission metal block 292, and the transmission metal The metal block 292 is provided with a limit connection groove 285 corresponding to the limit metal slide rail 20, one end of the liquid storage metal box 293 is fixedly connected to the transmission metal block 292, and the other end of the liquid storage metal box 293 is fixedly connected to the cutting laser head 294. The end of the liquid storage metal box 293 close to the cutting laser head 294 is provided with a plurality of heat-conducting metal fins 295, and the plurality of heat-conducting metal fins 295 are arranged at intervals on the inner wall of the liquid storage metal box 293, and the heat-conducting metal fins 295 are fixedly connected to the liquid storage metal box 293. The two ends of the second limit metal mounting plate 25 are provided with movable metal pressing plates 24 The movable metal pressing plate 24 is slidably connected to the second limiting metal mounting plate 25. Both ends of the second limiting metal mounting plate 25 are provided with a plurality of first telescopic position adjusting members 27. The first telescopic position adjusting member 27 is a cylinder. The first telescopic position adjusting member 27 is fixedly connected to the second limiting metal mounting plate 25. The telescopic end of the first telescopic position adjusting member 27 is provided with a second telescopic position adjusting member 283 corresponding to the movable metal pressing plate 24. The second telescopic position adjusting member 283 is a metal spring. One end of the second telescopic position adjusting member 283 is connected to the first telescopic position adjusting member. 27 is fixedly connected, the other end of the second telescopic position adjusting member 283 is fixedly connected to the movable metal pressing plate 24, a second anti-tilt protection tube 26 is arranged on the side of the movable metal pressing plate 24, the second anti-tilt protection tube 26 is fixedly connected to the movable metal pressing plate 24, the second anti-tilt protection tube 26 is slidably connected to the first telescopic position adjusting member 27, an elastic deformable protection plate 280 is arranged at one end of the movable metal pressing plate 24 close to the second limiting guide metal plate 6, the elastic deformable protection plate 280 is a silicone plate, and the elastic deformable protection plate 280 is fixedly connected to the movable metal pressing plate 24; In another embodiment, in order to make the deformable cutting mechanism 2 more functional, in this embodiment, preferably, a hollow sealing partition 296 is provided at one end of the liquid storage metal box 293 close to the cutting laser head 294, and the hollow sealing partition 296 is a hollow aluminum alloy plate, and the hollow sealing partition 296 is fixedly connected to the liquid storage metal box 293, and an elastic pressure regulating sealing plate 297 is provided on the side of the hollow sealing partition 296 away from the cutting laser head 294, and the elastic pressure regulating sealing plate 297 is an elastic silicone plate, and the connection between the elastic pressure regulating sealing plate 297 and the hollow sealing partition 296 has good sealing performance, and the elastic pressure regulating sealing plate 297 and the hollow The sealing partition 296 is fixedly connected, and a liquid storage metal cylinder 21 is arranged at one end of the transmission metal block 292 close to the first limit metal mounting plate 23. The interior of the liquid storage metal cylinder 21 is filled with a temperature regulating liquid 286, and the temperature regulating liquid 286 is water. The temperature regulating liquid 286 can pass through the hollow sealing partition 296 and enter the interior of the elastic pressure regulating sealing plate 297. The end of the liquid storage metal cylinder 21 away from the transmission metal block 292 is sealed and slidably connected with a movable sealing plug 289. The end of the liquid storage metal cylinder 21 away from the first limit metal mounting plate 23 is arranged with a plurality of hollow material delivery pipes 291, and the hollow material delivery pipes 291 penetrate the hollow sealing partition 296. In another embodiment, in order to make the function of the deformable cutting mechanism 2 more abundant, in this embodiment, preferably, in this embodiment, preferably, one end of the hollow feed pipe 291 is fixedly connected to the liquid storage metal cylinder 21, and the other end of the hollow feed pipe 291 is fixedly connected to the hollow sealing partition 296. A plurality of pressure relief holes 298 are provided at one end of the liquid storage metal box 293 close to the transmission metal block 292, and a plurality of fourth telescopic position adjusting members 290 for driving the movable sealing plug 289 to move away from the transmission metal block 292 are provided at one end of the liquid storage metal cylinder 21 close to the transmission metal block 292. The fourth telescopic position adjusting member 290 is a metal spring sheet, and a second limit posture adjusting plate 287 is provided at one end of the movable sealing plug 289 away from the fourth telescopic position adjusting member 290. The second limit posture adjusting plate 287 is an electromagnetic plate, and the first limit metal mounting plate 23 The side intervals are provided with a plurality of first limit posture adjustment plates 22 for cooperating with the second limit posture adjustment plate 287 to drive the movable sealing plug 289 to move in the direction away from the first limit metal mounting plate 23. The first limit posture adjustment plate 22 is a neodymium iron boron magnetic plate. The first limit posture adjustment plate 22 is fixedly connected to the first limit metal mounting plate 23. The fourth telescopic position adjustment member 290 is fixedly connected to the liquid storage metal cylinder 21. The end of the liquid storage metal cylinder 21 away from the transmission metal block 292 is provided with an anti-falling metal ring 288 for braking the movable sealing plug 289. The anti-falling metal ring 288 can prevent the movable sealing plug 289 from falling off. The anti-falling metal ring 288 is fixedly connected to the liquid storage metal cylinder 21. The second limit posture adjustment plate 287 is fixedly connected to the movable sealing plug 289. The liquid storage metal cylinder 21 is slidably connected to the second limit metal mounting plate 25.
[0024] See also Figure 1 In one embodiment, in order to make the function of the cutting device richer, in this embodiment, preferably, a first limiting guide metal plate 4 corresponding to the second limiting guide metal plate 6 is provided on the inner wall of the anti-dumping protective shell 1, and the first limiting guide metal plate 4 is an aluminum alloy plate. When in use, the guiding effect of the first limiting guide metal plate 4 allows the textile fabric to better pass through between the cutting laser head 294 and the second limiting guide metal plate 6. The first limiting guide metal plate 4 is fixedly connected to the anti-dumping protective shell 1, and a plurality of metal hanging plates 3 are provided on the side of the anti-dumping protective shell 1. The metal hanging plates 3 are arranged on the top of the side of the anti-dumping protective shell 1, and the metal hanging plates 3 are fixedly connected to the anti-dumping protective shell 1. A plurality of waterproof information display pieces 5 are provided at one end of the metal hanging plate 3 away from the anti-dumping protective shell 1. The waterproof information display piece 5 is a handwritten fluorescent board, and the waterproof information display piece 5 is fixedly connected to the metal hanging plate 3.
[0025] In another embodiment, in order to make the cutting device more functional, a first limiting guide metal plate 4 corresponding to the second limiting guide metal plate 6 is provided on the inner wall of the anti-dumping protective shell 1, and the first limiting guide metal plate 4 is a steel plate. When in use, the guiding effect of the first limiting guide metal plate 4 allows the textile fabric to better pass through between the cutting laser head 294 and the second limiting guide metal plate 6. The first limiting guide metal plate 4 is fixedly connected to the anti-dumping protective shell 1, and a plurality of metal hanging plates 3 are provided on the side of the anti-dumping protective shell 1. The metal hanging plates 3 are provided on the top of the side of the anti-dumping protective shell 1, and the metal hanging plates 3 are fixedly connected to the anti-dumping protective shell 1. A plurality of waterproof information display pieces 5 are provided at one end of the metal hanging plate 3 away from the anti-dumping protective shell 1, and the waterproof information display piece 5 is an LED light board, and the waterproof information display piece 5 is detachably connected to the metal hanging plate 3.
[0026] The working principle and use process of the present invention are as follows: when in use, the free end of the textile fabric (hereinafter referred to as the workpiece) is passed through between the first limit guide metal plate 4 and the second limit guide metal plate 6, and the gravity of the workpiece is used to make it droop naturally, thereby avoiding wrinkles on the workpiece, so as to facilitate subsequent high-precision processing. When it is necessary to adjust the position of the cutting laser head 294, the threaded metal transmission rod 281 is driven to rotate by the adjustable speed power output member 282. At this time, the threaded metal transmission rod 281 drives the cutting laser head 294 to move horizontally along the length direction of the threaded metal transmission rod 281, thereby realizing the position adjustment of the cutting laser head 294; Thus, by using the cutting laser head 294, the user can not only realize fixed-length cutting of the workpiece by the lateral movement of the cutting laser head 294, at which time the workpiece can be automatically loaded by the downward movement of the gravity of the workpiece, but also move the cutting laser head 294 to the target position, and then realize fixed-width cutting of the workpiece by the falling of the workpiece, at which time uninterrupted processing can be realized. In addition, the user can realize inclined cutting of the workpiece by the downward movement of the workpiece and the lateral movement of the cutting laser head 294, thereby enriching the cutting function of the cutting device; Secondly, when it is necessary to achieve fixed-length slitting of the workpiece by lateral movement of the cutting laser head 294, the first retractable position adjusting member 27 is controlled to extend, so that the movable metal pressure plate 24 cooperates with the elastic deformable protection plate 280 to press and fix the workpiece, and then the slitting of the workpiece is achieved by lateral movement of the cutting laser head 294. During the slitting process, the workpiece is reliably fixed, thereby preventing the workpiece from moving during the slitting process, thereby achieving high-precision slitting of the workpiece. After the slitting is completed, the movable metal pressure plate 24 is driven to reset, and the cut workpiece falls freely at this time. The fallen workpiece is discharged after being guided by the movable guide plate 83. When the workpiece is retained on the upper surface of the movable guide plate 83, the sixth retractable position adjusting member 85 is controlled to continuously extend and contract, so that the movable guide plate 83 moves vertically back and forth, so that the retained workpiece falls off, thereby better facilitating the user to perform subsequent processing on the cut workpiece. In addition, when the cutting laser head 294 is driven to move laterally, the second limit posture adjustment plate 287 is intermittently repelled by the first limit posture adjustment plate 22, and the movable sealing plug 289 is used in conjunction with the fourth retractable position adjustment member 290 to make the movable sealing plug 289 move laterally back and forth. When the movable sealing plug 289 moves toward the direction close to the transmission metal block 292, part of the temperature-adjusting liquid 286 in the liquid storage metal cylinder 21 is pressed into the liquid storage metal box 293. At this time, the elastic pressure-adjusting sealing plate 297 expands and deforms. When the movable sealing plug 289 moves away from the transmission metal block 292, the temperature-adjusting liquid 286 in the liquid storage metal box 293 is extracted into the liquid storage metal cylinder 21. Thus, through the lateral reciprocating movement of the movable sealing plug 289, the temperature-adjusting liquid 286 continuously flows back and forth inside the liquid storage metal box 293, thereby realizing efficient water cooling of the cutting laser head 294. Thus, through the mutual cooperation of multiple structures, automatic continuous cutting of textile fabrics can be achieved, and the textile fabrics can be reliably fixed during the cutting process to prevent the textile fabrics from moving during the cutting process, so that the cutting accuracy of the cutting device is higher. Secondly, the present invention can automatically arrange the cut textile fabrics, which is convenient for users to perform subsequent processing on the cut textile fabrics. In addition, the present invention is easy to carry, and the present invention has an information display function, which makes the cutting device more functional. In addition, the present invention has a simple structure, is easy to use, and is worthy of promotion and use.
[0027] 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.
[0028] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.
Claims
1. A textile fabric cutting device for textile production, comprising an anti-dumping protective shell, characterized in that: A discharge hole is provided at the bottom of the side of the anti-dumping protective shell, a deformable conveying mechanism corresponding to the discharge hole is provided at the bottom of the anti-dumping protective shell, a second limiting guide metal plate is provided on the inner wall of the anti-dumping protective shell, the second limiting guide metal plate is provided on the top of the anti-dumping protective shell, the second limiting guide metal plate is fixedly connected to the anti-dumping protective shell, a deformable cutting mechanism corresponding to the second limiting guide metal plate is also provided on the inner wall of the anti-dumping protective shell, the deformable cutting mechanism is provided on the top of the anti-dumping protective shell, and the deformable The cutting mechanism is fixedly connected to the anti-dumping protection shell, an anti-dumping support bottom plate is arranged below the anti-dumping protection shell, the anti-dumping support bottom plate is fixedly connected to the anti-dumping protection shell, a first anti-tilt protection tube is arranged on the upper surface of the anti-dumping support bottom plate, the first anti-tilt protection tube is fixedly connected to the anti-dumping support bottom plate, the first anti-tilt protection tube is fixedly connected to the anti-dumping protection shell, the deformable conveying mechanism comprises a movable material guide plate, the movable material guide plate is slidably connected to the anti-dumping protection shell, a third limiting metal mounting plate is arranged below the movable material guide plate, The third limiting metal mounting plate is fixedly connected to the anti-dumping protective shell, a fifth telescopic position adjusting member is arranged at one end of the third limiting metal mounting plate, the fifth telescopic position adjusting member runs through the third limiting metal mounting plate, the fifth telescopic position adjusting member is fixedly connected to the third limiting metal mounting plate, a first transmission metal plate is arranged at the top of the fifth telescopic position adjusting member, the first transmission metal plate is fixedly connected to the fifth telescopic position adjusting member, a second transmission metal plate corresponding to the first transmission metal plate is arranged at the top of the movable material guide plate, the second transmission metal plate is fixedly connected to the movable material guide plate, a plurality of sixth telescopic position adjusting members corresponding to the second transmission metal plate are arranged at both ends of the first transmission metal plate, the top of the sixth telescopic position adjusting member is fixedly connected to the second transmission metal plate, the bottom of the sixth telescopic position adjusting member is fixedly connected to the first transmission metal plate, an anti-tilting protection plate is also arranged on the lower surface of the movable material guide plate, the top of the anti-tilting protection plate is fixedly connected to the movable material guide plate, and the bottom of the anti-tilting protection plate is slidably connected to the third limiting metal mounting plate.
2. The textile fabric cutting device for textile production according to claim 1, characterized in that: The deformable cutting mechanism includes a first limiting metal mounting plate, which is fixedly connected to the anti-dumping protective shell, a second limiting metal mounting plate is arranged on the side of the first limiting metal mounting plate facing the second limiting guide metal plate, a plurality of third retractable position adjusting parts for adjusting the position of the second limiting metal mounting plate are arranged at both ends of the first limiting metal mounting plate, a transmission metal block is arranged on the side of the second limiting metal mounting plate away from the first limiting metal mounting plate, the transmission metal block is slidably connected to the second limiting metal mounting plate, an adjustable speed power output part is arranged at one end of the second limiting metal mounting plate, the adjustable speed power output part is fixedly connected to the second limiting metal mounting plate, a threaded metal transmission rod for driving the transmission metal block is arranged at the output end of the adjustable speed power output part, the threaded metal transmission rod is threadedly connected to the transmission metal block, a liquid storage metal box is arranged at one end of the transmission metal block away from the second limiting metal mounting plate, and a cutting laser head is arranged at one end of the liquid storage metal box away from the transmission metal block.
3. The textile fabric cutting device for textile production according to claim 2, characterized in that: One end of the third telescopic position adjusting member is fixedly connected to the first limiting metal mounting plate, and the other end of the third telescopic position adjusting member is fixedly connected to the second limiting metal mounting plate. A plurality of limiting metal slide rails corresponding to the transmission metal block are arranged on the side of the second limiting metal mounting plate. The limiting metal slide rail is fixedly connected to the second limiting metal mounting plate, and the limiting metal slide rail is slidably connected to the transmission metal block. A limiting connection groove corresponding to the limiting metal slide rail is provided on the transmission metal block.
4. The textile fabric cutting device for textile production according to claim 3, characterized in that: One end of the liquid storage metal box is fixedly connected to the transmission metal block, and the other end of the liquid storage metal box is fixedly connected to the cutting laser head. A plurality of heat-conducting metal fins are arranged at one end of the liquid storage metal box close to the cutting laser head. The plurality of heat-conducting metal fins are arranged at intervals on the inner wall of the liquid storage metal box, and the heat-conducting metal fins are fixedly connected to the liquid storage metal box.
5. The textile fabric cutting device for textile production according to claim 4, characterized in that: A movable metal pressure plate is provided at both ends of the second limiting metal mounting plate, and the movable metal pressure plate is slidably connected to the second limiting metal mounting plate. A plurality of first telescopic position adjusting parts are provided at both ends of the second limiting metal mounting plate, and the first telescopic position adjusting part is fixedly connected to the second limiting metal mounting plate. A second telescopic position adjusting part corresponding to the movable metal pressure plate is provided at the telescopic end of the first telescopic position adjusting part, and one end of the second telescopic position adjusting part is fixedly connected to the first telescopic position adjusting part.
6. The textile fabric cutting device for textile production according to claim 5, characterized in that: The other end of the second telescopic position adjusting member is fixedly connected to the movable metal pressure plate, a second anti-tilt protection tube is arranged on the side of the movable metal pressure plate, the second anti-tilt protection tube is fixedly connected to the movable metal pressure plate, the second anti-tilt protection tube is slidably connected to the first telescopic position adjusting member, an elastically deformable protection plate is arranged at one end of the movable metal pressure plate close to the second limiting guide metal plate, and the elastically deformable protection plate is fixedly connected to the movable metal pressure plate.
7. The textile fabric cutting device for textile production according to claim 6, characterized in that: A hollow sealing partition is provided at one end of the liquid storage metal box close to the cutting laser head, and the hollow sealing partition is fixedly connected to the liquid storage metal box; an elastic pressure regulating sealing plate is provided on the side of the hollow sealing partition away from the cutting laser head, and the elastic pressure regulating sealing plate is fixedly connected to the hollow sealing partition; a liquid storage metal cylinder is provided at one end of the transmission metal block close to the first limiting metal mounting plate, the interior of the liquid storage metal cylinder is filled with temperature regulating liquid, and a movable sealing plug is sealingly and slidably connected to the end of the liquid storage metal cylinder away from the transmission metal block; a plurality of hollow feed pipes are provided at one end of the liquid storage metal cylinder away from the first limiting metal mounting plate, and the hollow feed pipes pass through the hollow sealing partition.
8. The textile fabric cutting device for textile production according to claim 7, characterized in that: One end of the hollow feed pipe is fixedly connected to the liquid storage metal cylinder, and the other end of the hollow feed pipe is fixedly connected to the hollow sealing partition. A plurality of pressure relief holes are provided at one end of the liquid storage metal box close to the transmission metal block, and a plurality of fourth telescopic position adjusting parts for driving the movable sealing plug to move away from the transmission metal block are provided at one end of the liquid storage metal cylinder close to the transmission metal block. A second limit posture adjustment plate is provided at one end of the movable sealing plug away from the fourth telescopic position adjusting part, and a plurality of first limit posture adjustment plates for cooperating with the second limit posture adjustment plate to drive the movable sealing plug to move away from the first limit metal mounting plate are provided at side intervals of the first limit metal mounting plate, and the first limit posture adjustment plate is fixedly connected to the first limit metal mounting plate.
9. The textile fabric cutting device for textile production according to claim 8, characterized in that: The fourth telescopic position adjusting member is fixedly connected to the liquid storage metal cylinder. An anti-falling metal ring for braking the movable sealing plug is provided at one end of the liquid storage metal cylinder away from the transmission metal block. The anti-falling metal ring is fixedly connected to the liquid storage metal cylinder. The second limit posture adjusting plate is fixedly connected to the movable sealing plug. The liquid storage metal cylinder is slidably connected to the second limit metal mounting plate.
10. The textile fabric cutting device for textile production according to any one of claims 1 to 9, characterized in that: A first limiting guide metal plate corresponding to the second limiting guide metal plate is arranged on the inner wall of the anti-dumping protective shell, the first limiting guide metal plate is fixedly connected to the anti-dumping protective shell, a plurality of metal hanging plates are arranged on the side of the anti-dumping protective shell, the metal hanging plates are arranged on the top of the side of the anti-dumping protective shell, the metal hanging plates are fixedly connected to the anti-dumping protective shell, and a plurality of waterproof information display pieces are arranged on the end of the metal hanging plate away from the anti-dumping protective shell.
Citation Information
Cited By
Textile fabric cutting device for textile production
CN120797389A