Textile cloth packaging device
By designing an automated textile fabric packaging device, the automatic winding, jointing, unloading and packing of textile fabrics is achieved, which solves the labor intensity and safety hazards caused by manual operations in the prior art, improves production efficiency and optimizes the equipment structure.
Patent Information
- Application Number
- CN202510736124.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2025-08-01
AI Technical Summary
The existing winding equipment cannot automatically complete the packing operation after winding of textile fabrics, and requires manual participation, resulting in high labor intensity and safety hazards.
A textile fabric packaging device is designed, including a winding assembly, a joint assembly, a feeder, a discharge rack and a packaging box. Through the automated winding, joint, unloading and packing process, manual intervention is reduced and automatic processing of textile fabrics is realized.
It improves production efficiency, reduces labor intensity, reduces safety hazards, and is compact in structure and is suitable for use in workshops in small places.
Smart Images

Figure CN120397795A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of textile product packaging, and particularly to a textile cloth packaging device. Background Art
[0002] After the textile cloth is processed, generally, the cloth needs to be wound up, and the processed cloth is wound onto a cloth winding roller to facilitate the transportation of the cloth between various processes and the final storage. Some textile cloths have relatively high requirements for transfer and storage conditions, and it is required to be packaged and stored in a box (plastic box, cardboard box, etc.) after winding.
[0003] At present, most winding devices often adopt a semi-automatic mode. That is, although the winding device can wind the flat stacked cloth onto the winding roller and can realize a continuous winding process through a supporting automatic roll-changing mechanism, manual unloading is still required after each winding roller finishes winding, and after unloading, it needs to be carried and transferred to the outer box. Since the wound cloth is relatively heavy, the labor intensity is high when manual participation is involved, and there are potential safety hazards due to human operation errors in the man-machine cooperation. Summary of the Invention
[0004] The present invention provides a textile cloth packaging device, which is beneficial to solving the problem that the existing winding device cannot automatically complete the boxing operation after winding some textile cloths and requires manual operation cooperation.
[0005] The present invention is implemented as follows:
[0006] A textile cloth packaging device includes a frame. A winding assembly is provided on the frame, and the winding assembly can clamp and rotate a winding roller. A joining assembly is provided on one side of the winding assembly, and the joining assembly can cut the textile cloth wound around the winding roller and join the subsequent textile cloth to a new winding roller. A feeder is provided on the frame on one side of the winding assembly. The feeder includes a material box for storing a plurality of winding rollers. An inlet hopper is provided at the rear end of the material box. A track plate capable of horizontally supporting the winding roller is provided inside the material box. A positioning groove is provided at the end of the track plate, and a jacking mechanism is provided directly below the positioning groove. The jacking mechanism can jack the winding roller in the positioning groove to the clamping position of the winding assembly. A detachable packaging box is provided on the frame on the side of the winding assembly away from the feeder. The top of the packaging box is an open structure. A discharging rack is provided on the side of the packaging box close to the winding assembly. The moving path of the jacking structure is directly below the rotation center line during the winding process of the winding assembly. The discharging rack is misaligned and arranged below the wound cloth at the rear end of this moving path. The discharging rack includes two supports symmetrically arranged on the left and right sides of the packaging box. Buffer blocks are provided on the supports in an inclined manner. The wound cloth on the winding assembly can enter the packaging box after being buffered by the discharging rack after contact.
[0007] On the basis of the above technical solution, the front end of the frame is connected to an auxiliary frame, the auxiliary frame is provided with a horizontally arranged guide roller, and the guide roller is transmission-connected to a guide motor.
[0008] On the basis of the above technical solution, a conveying frame is provided on the frame, and a plurality of conveying rollers are movably connected to the conveying frame. The conveying rollers cooperate with guide rollers to supply the textile fabric to the winding assembly for winding.
[0009] On the basis of the above technical solution, the bottom of the material box is provided with an inclined bottom plate which is higher in front and lower in the back along its feeding direction. A first pusher is provided at the low end of the inclined bottom plate. The first pusher can push the winding roller located at the low end of the inclined bottom plate vertically upward, so that the winding roller is transferred one by one from the material box to the feed hopper. An upper baffle is provided on the inner wall of the material box at the end of the pushing stroke of the first pusher.
[0010] On the basis of the above technical solution, side baffles are provided on the left and right sides of the feed hopper, and two parallel track plates are spaced apart on the left and right and fixed on the inner walls of the side baffles. The lifting mechanism is a second pusher, and the transmission output end of the second pusher is located at the top and is connected to a material support seat. The top of the material support seat is provided with a groove that adapts to the outer contour of the winding roller.
[0011] On the basis of the above technical solution, the bottom of the support of the unloading rack is connected to the frame, the inner side walls of the support in the left and right directions constitute the assembly limiting structure of the packaging box body, the top of the support is provided with a flap bent inward in the left and right directions, and the top of the flap is provided with a sinking groove, and the buffer block is arranged in the sinking groove; a number of springs that can be stretched and retracted in the longitudinal direction are provided in the sinking groove, and the springs are abutted between the buffer block and the flap, and the bottom end face of the buffer block is an inclined end face with the inside lower and the outside higher in the left and right directions.
[0012] On the basis of the above technical solution, the frame is provided with a lifting assembly at the packaging box assembly position, and the lifting assembly includes a lifting plate for horizontally supporting the packaging box and a plurality of lifting cylinders located at the bottom of the lifting plate.
[0013] On the basis of the above technical solution, a pad is provided at the bottom inner side of the packaging box, and cushioning cotton is provided between the bottom of the pad and the installation box.
[0014] Compared with the prior art, the present invention has at least the following advantages:
[0015] 1. High degree of automation: The present invention realizes the automatic winding, joining, discharging and boxing of textile fabrics, reduces manual participation, and improves production efficiency. Especially in the aspect of discharging, by setting a discharging rack and a packaging box body that are adapted to the winding component and the feeding mechanism of the winding roller and cooperate with each other, the automation is further improved on the basis of the structure of the existing winding equipment, without relying on manual discharging after each winding of the winding roller, which not only reduces the labor intensity but also reduces the potential safety hazards of the operation.
[0016] 2. Compact structure: By integrating the winding component, the joining component, the feeding box and the packaging box body in an orderly manner on the same frame, the overall structure is compact and does not occupy a large amount of space, which is beneficial to adapting to the assembly and operation of more small-site workshops. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the embodiments. It should be understood that the following drawings only show some embodiments of the present invention, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, without creative efforts, other related drawings can also be obtained based on these drawings.
[0018] Figure 1 is a schematic structural diagram of a textile fabric packaging device in an embodiment;
[0019] Figure 2 is Figure 1 the internal structural schematic diagram of;
[0020] Figure 3 is Figure 2 the sectional view of;
[0021] Figure 4 is Figure 2 the structural schematic diagram of the feeder in;
[0022] Figure 5 is Figure 2 the schematic diagram of the assembly position of the packaging box body in;
[0023] Figure 6 is the partial schematic diagram of the assembly position of the discharging rack;
[0024] Figure 7 is Figure 5 the three-dimensional structural schematic diagram of the packaging box body and the discharging rack in;
[0025] Figure 8 is Figure 7 the partial sectional view of the installation structure of the buffer block in;
[0026] Figure 9 is the structural schematic diagram of the lifting component in another embodiment;
[0027] Figure 10 It is a cross-sectional view of the packaging box body in another embodiment.
[0028] Labels in the figure: 100, frame; 110, conveyor frame; 120, conveyor roller; 130, protective cover; 200, auxiliary frame; 210, guiding roller; 220, guiding motor; 300, winding assembly; 400, feeder; 410, material box; 411, inclined bottom plate; 412, first pusher; 413, upper baffle; 420, feed hopper; 421, track plate; 422, second pusher; 423, connecting plate; 424, side baffle; 425, positioning groove; 426, material supporting seat; 500, joint assembly; 600, packaging box body; 610, cushion plate; 620, buffer cotton; 700, unloading rack; 710, support; 711, sunk groove; 712, mounting hole; 720, buffer block; 730, spring; 800, lifting cylinder; 810, lifting plate; a, winding fabric; b, winding roller. Specific embodiments
[0029] To make the purposes, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention. Therefore, the detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed present invention, but merely represents selected embodiments of the present invention.
[0030] In the description of the present invention, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, "a plurality" means two or more, unless otherwise specifically defined.
[0031] It should be noted that when an element is referred to as being "fixedly provided on" another element, it can be directly on the other element or there may also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to an element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are only for illustrative purposes and do not represent the only embodiments.
[0032] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0033] Embodiment 1: In combination with Figures 1-8 As shown, this embodiment discloses a textile fabric packaging device, aiming to solve the problem that the existing winding equipment cannot automatically complete the boxing operation after winding the textile fabric and requires manual operation, so as to improve production efficiency, reduce labor intensity, and reduce potential safety hazards.
[0034] As Figure 1 shown, the main structure of the packaging device specifically includes a frame 100 and an auxiliary frame 200, which are assembled by aluminum alloy profiles, aluminum panels and glass, mainly playing a role of bearing and supporting.
[0035] In combination with Figure 2 、 3 and Figure 5, a winding assembly 300 is provided on the frame 100. The winding assembly 300 can clamp and rotate the winding roller b, which is a prior art. Its specific structure and working principle will not be elaborated here. Those skilled in the art can select and implement from the prior art according to the actual operation situation. For the integrity of the technical solution, the main structure of the winding assembly 300 is briefly summarized here: The winding assembly 300 is connected to the top of the frame 100 through a mounting seat. A left-right transverse movement module is provided on the mounting seat. A rotating motor (used to drive the rotation of the winding roller b during the winding process) and a clamping member (used to clamp the winding roller b) are arranged on the moving member of the left-right transverse movement module. The clamping member specifically adopts an air-expansion jaw, etc. During operation, the book roll is pre-transported in place by the outside. At this time, the winding roller b is horizontally oriented left and right. The two winding assemblies 300 move horizontally in the left and right directions to approach both axial ends of the winding roller b. First, the clamping member is used to clamp and fix the winding roller b. After the initial end of the winding fabric a is wound and fixed in cooperation with the engaging assembly 500, the rotating motor is used to stably drive the winding roller b to rotate, so that the winding fabric a is evenly and continuously wound on the winding roller b.
[0036] A splicing assembly 500 is provided on one side of the winding assembly 300. This splicing assembly 500 is capable of cutting the textile fabric wound on the winding roller b and splicing the subsequent textile fabric to a new winding roller b. This is prior art, and its specific structure and operating principle will not be described in detail here. Those skilled in the art can select and implement a model from existing technologies based on actual operational conditions. For the sake of completeness of the technical solution, the main structure of the splicing assembly 500 is briefly summarized here: the splicing assembly in this embodiment includes a cutter positioned above the winding station and a material control splint located on the side of the feed end of the wound fabric a, with a gluing mechanism provided on the material control splint. During operation, the material control splint clamps and controls the end of the fabric cut in the previous process, and glues the fabric at the threshold position through the gluing mechanism. After the new winding roller b is replaced on the winding component 300, the fabric on the material control splint is extended in length in conjunction with the appropriate front-end feeding action so that the glued area of the fabric can be attached to the new winding roller b. Then the winding component 300 can perform a new winding operation cycle. When the winding is completed, the cutter above cooperates with the material control splint and the gluing mechanism to stick the fabric and then cut it, automatically completing the packaging. Then the winding component 300 releases the clamping and moves left and right to allow the wound fabric a to be unloaded in an orderly manner.
[0037] Further, such as Figures 2-4 A feeder 400 is provided on the frame 100 on one side of the winding assembly 300. The feeder 400 includes a material box 410 for storing a plurality of winding rollers b. The winding rollers b located in the material box 410 serve as spare materials, waiting to be automatically transferred to the winding station to realize continuous automatic operation.
[0038] The material box 410 is a rectangular box structure with an open top. The bottom of the material box 410 is provided with an inclined bottom plate 411 which is higher in the front and lower in the back along its feeding direction. The lower end of the inclined bottom plate 411 is provided with a first pusher 412. The first pusher 412 includes a pushing cylinder fixed on the frame 100. The telescopic rod of the pushing cylinder is vertically upward and connected to a support plate. The top end face of the support plate is parallel to the inclined bottom plate 411. The support plate and the rear side wall of the material box 410 form an acute material control angle, which is conducive to stabilizing the vertical lifting of the winding roller b. The first pusher 412 can push the winding roller b located at the lower end of the inclined bottom plate 411 vertically upward, so that the winding rollers b are transferred one by one from the material box 410 to the feed hopper 420, thereby realizing automatic feeding of the winding roller b. In order to make the lifting and pushing more stable, an upper baffle 413 is provided on the inner wall of the material box 410 at the end of the pushing stroke of the first pusher 412, which helps to prevent the winding roller b from falling off from the top during the pushing process.
[0039] A feed hopper 420 is provided at the rear end of the bin 410. Inside the bin 410, there is a track plate 421 capable of horizontally supporting the winding roller b. At the end of the track plate 421, there is a positioning groove 425. A jacking mechanism is provided directly below the positioning groove 425, and the jacking mechanism can jack the winding roller b in the positioning groove 425 to the clamping position of the winding assembly 300.
[0040] Further, as Figure 4 shown, on both left and right sides of the feed hopper 420, there are side baffles 424. Two parallel track plates 421 are distributed at intervals left and right and fixed on the inner walls of the side baffles 424. It should be noted that the track plate 421 is higher at the front and lower at the rear along its feeding direction, so that the winding roller b can automatically roll to the end at the top of the track plate 421. The jacking mechanism is the second pusher 422, and the second pusher 422 also uses a cylinder. The transmission output end of the second pusher 422 is at the top and is connected with a material supporting seat 426. There is a groove (V-shaped groove) adapted to the outer contour of the winding roller b at the top of the material supporting seat 426 to ensure that the winding roller b can be stably jacked to the clamping position of the winding assembly 300. During operation, the winding rollers b stacked in the bin 410 can move backward along the inclined bottom plate 411. The first pusher 412 jacks up the winding rollers b one by one to transfer them onto the feed hopper 420. The winding roller b moves backward along the track plate 421 to the positioning groove 425. During this process, the side baffles 424 orderly control its moving path. The second pusher 422 jacks up the winding roller b to the winding station at the threshold time and waits for the winding assembly 300 to clamp and fix it.
[0041] In order to make the material transfer between the bin 410 and the feed hopper 420 more smooth and reliable, a connecting plate 423 is provided at the front end of the feed hopper 420. As Figure 4 shown, the connecting plate 423 cooperates with the upper baffle 413 to improve the transfer stability and reliability of the winding roller b.
[0042] In this embodiment, as shown in Figure 2 、 3 、5, 7 and 8, a detachable packaging box 600 is provided on the side of the rack 100 away from the feeder 400 where the winding assembly 300 is located. The top of the packaging box 600 is an open structure to facilitate the entry of the wound fabric a. A discharging rack 700 is provided on the side of the packaging box 600 close to the winding assembly 300. The moving path of the jacking structure is directly below the rotation center line during the winding process of the winding assembly 300. The discharging rack 700 is arranged in a staggered manner below the wound fabric a at the rear end of this moving path. The discharging rack 700 includes two supports 710 symmetrically arranged on both left and right sides of the packaging box 600. An inclined buffer block 720 is provided on the support 710. After the wound fabric a on the winding assembly 300 is clamped and contacted, it can enter the packaging box 600 after being buffered by the discharging rack 700, realizing the automatic discharging and boxing of the wound fabric a.
[0043] Further, the bottom of the support 710 of the unloading rack 700 is connected to the frame 100. The inner side walls of the support 710 in the left - right direction form an assembly limiting structure for the packaging box 600, facilitating the accurate installation of the packaging box 600. The top of the support 710 is provided with a turned - up edge that bends inward in the left - right direction, and a sunk groove 711 is provided at the top of the turned - up edge. The buffer block 720 is arranged in the sunk groove 711. As Figure 8 shown, three longitudinally telescopic mounting holes 712 are provided in the sunk groove 711. A spring 730 is arranged in the mounting hole 712, and the spring 730 abuts between the buffer block 720 and the turned - up edge. The bottom end face of the buffer block 720 is an inclined end face that is lower on the inner side and higher on the outer side in the left - right direction, enabling the buffer block 720 to compress the spring 730 downward when being extruded by the wound fabric a, playing a buffering role. At the same time, the buffer block 720 can be reset under the action of the spring 730, ensuring the stability of the buffering effect. During operation, after the wound fabric a falls from the winding assembly 300 (the falling height is set according to the actual processing situation, and the falling height in this embodiment is between 1 mm and 5 mm), the axial ends of the wound fabric a contact the buffer block 720 and are effectively buffered. And the structure of setting the inclined end face at the bottom of the buffer block 720 makes the buffering feedback in the inner area of the buffer block 720 more sensitive, and the weight in the middle area of the wound fabric a can be preferentially absorbed and buffered, which is beneficial to cooperate with the inclined contour at the top of the buffer block 720 to achieve the effect of guiding to the middle, so as to realize more stable unloading control.
[0044] Combined with Figure 1 shown, in order to make the input of the textile fabric more smooth and stable, an auxiliary frame 200 is connected to the front end of the frame 100. A horizontally arranged guiding roller 210 is provided on the auxiliary frame 200. The guiding roller 210 is drivingly connected to a guiding motor 220, and the guiding motor 220 drives the guiding roller 210 to rotate, providing power for the conveying of the textile fabric.
[0045] In this embodiment, a conveying frame 110 is provided on the frame 100. A number of conveying rollers 120 are movably connected to the conveying frame 110. The conveying rollers 120 cooperate with the guiding roller 210 to wind the textile fabric to be sent to the winding assembly 300, ensuring that the textile fabric can be stably and smoothly conveyed to the winding assembly 300. Specifically, some of the conveying rollers are configured with a tension adjustment structure, making the feeding of the textile fabric more flat and smooth.
[0046] In order to make the main working components of the equipment in a relatively clean working environment, a protective cover 130 is provided on the top of the frame 100, which can not only play a dust - proof role but also improve safety and stability, avoiding accidental contact and injury to on - site personnel.
[0047] Embodiment 2: On the basis of Embodiment 1, combined with Figure 9As shown, in this embodiment, a lifting assembly is provided at the assembly position of the packaging box body 600 on the rack 100. The lifting assembly includes a lifting plate 810 that horizontally supports the packaging box body 600, and a plurality of lifting cylinders 800 located at the bottom of the lifting plate 810. The lifting and lowering of the packaging box body 600 is achieved through the telescoping of the lifting cylinders 800, shortening the height difference between the packaging box body 600 and the unloading rack 700, which not only can improve the stability of unloading, but also facilitate the boxing of the wound fabric a and the replacement of the packaging box body 600.
[0048] Embodiment 3: On the basis of Embodiment 2, combined with Figure 10 As shown, in this embodiment, a backing plate 610 is provided at the inner bottom of the packaging box body 600, and a buffer cotton 620 is provided between the bottom of the backing plate 610 and the installation box body, further reducing the impact force during the boxing process of the wound fabric a and protecting the quality of the wound fabric a.
[0049] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A textile cloth packaging device, comprising a frame (100), a winding assembly (300) is provided on the frame (100), the winding assembly (300) can clamp and rotate a winding roller (b), a joining assembly (500) is provided on one side of the winding assembly (300), the joining assembly (500) can cut the textile cloth wound on the winding roller (b) and join the subsequent textile cloth to a new winding roller (b), characterized in that, On one side of the winding assembly (300) on the frame (100), there is a feeder (400). The feeder (400) includes a material box (410) for storing a number of winding rollers (b). At the rear end of the material box (410), there is a feed hopper (420). Inside the material box (410), there is a track plate (421) that can horizontally support the winding rollers (b). At the end of the track plate (421), there is a positioning groove (425). Directly below the positioning groove (425), there is a lifting mechanism that can lift the winding roller (b) in the positioning groove (425) to the clamping position of the winding assembly (300). On the side of the frame (100) away from the feeder (400) and located at the winding assembly (300), there is a detachable packaging box body (600). The top of the packaging box body (600) is an open structure. On the side of the packaging box body (600) close to the winding assembly (300), there is a discharging rack (700). The moving path of the lifting structure is directly below the rotation center line during the winding process of the winding assembly (300). The discharging rack (700) is staggeredly arranged below the winding fabric (a) at the rear end of this moving path. The discharging rack (700) includes two supports (710) symmetrically arranged on the left and right sides of the packaging box body (600). On the supports (710), there are inclined buffer blocks (720). After the winding fabric (a) on the winding assembly (300) is clamped and contacts, it can enter the packaging box body (600) after being buffered by the discharging rack (700).
2. The textile fabric packaging device according to claim 1, characterized in that, At the front end of the frame (100), there is an auxiliary frame (200) connected. On the auxiliary frame (200), there is a horizontally arranged guiding roller (210). The guiding roller (210) is drivingly connected to a guiding motor (220).
3. A textile fabric packaging device according to claim 2, characterized in that, On the frame (100), there is a conveying frame (110). On the conveying frame (110), a number of conveying rollers (120) are movably connected. The conveying rollers (120) cooperate with the guiding roller (210) to wind the textile fabric fed to the winding assembly (300).
4. A textile fabric packaging device according to claim 1, characterized in that, At the bottom of the material box (410), there is an inclined bottom plate (411) that is higher at the front and lower at the rear along its feeding direction. At the low-position end of the inclined bottom plate (411), there is a first pusher (412). The first pusher (412) can vertically push up the winding roller (b) at the low-position end of the inclined bottom plate (411) to transfer the winding rollers (b) from the material box (410) to the feed hopper (420) one by one. At the end of the pushing stroke of the first pusher (412) on the inner wall of the material box (410), there is an upper baffle (413).
5. A textile fabric packaging device according to claim 4, characterized in that, On the left and right sides of the feed hopper (420), there are side baffles (424). Two parallel track plates (421) are spaced left and right and fixed on the inner walls of the side baffles (424). The lifting mechanism is a second pusher (422). The driving output end of the second pusher (422) is located at the top and is connected to a material supporting seat (426). On the top of the material supporting seat (426), there is a groove adapted to the outer contour of the winding roller (b).
6. The textile fabric packaging device according to claim 1, characterized in that, The bottom of the support (710) of the unloading rack (700) is connected to the machine frame (100). The inner side walls of the support (710) in the left-right direction form an assembly limiting structure for the packaging box body (600). The top of the support (710) is provided with a turned edge that bends inward in the left-right direction, and a sunk groove (711) is provided at the top of the turned edge. The buffer block (720) is arranged in the sunk groove (711); several springs (730) capable of telescoping longitudinally are arranged in the sunk groove (711), and the springs (730) are abutted between the buffer block (720) and the turned edge. The bottom end face of the buffer block (720) is an inclined end face that is lower on the inner side and higher on the outer side in the left-right direction.
7. A textile fabric packaging device according to claim 1, characterized in that, The machine frame (100) is provided with a lifting assembly at the assembly position of the packaging box body (600). The lifting assembly includes a lifting plate (810) that horizontally supports the packaging box body (600), and several lifting cylinders (800) located at the bottom of the lifting plate (810).
8. A textile fabric packaging device according to claim 1, characterized in that, A cushion plate (610) is provided at the inner bottom of the packaging box body (600), and a buffer cotton (620) is arranged between the bottom of the cushion plate (610) and the installation box body.