A textile stacking and storage device

By designing a textile palletization storage device including a stacking rack, a roll storage rack and a power mechanism, an automated roll storage rack stacking operation is realized, which solves the problem of forklift workers' vision obstruction, reduces operation difficulty and danger, and ensures the stability of the storage rack.

CN119037974BActive Publication Date: 2025-05-13NANTONG JIELEI MASCH CO LTD
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Patent Information

Application Number
CN202411551185.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-05-13
Estimated Expiration
2044-11-01

AI Technical Summary

Technical Problem

As the height of the stacking rack compartment increases, forklift workers' vision is blocked when storing the storage rack, increasing operation difficulty and danger.

Method used

A textile palletization storage device is designed, including a stacking rack, a roll storage rack and a power mechanism. A stacking plate is provided in the stacking rack. The stacking plate is lifted through the power mechanism to drive the connecting rod to rotate, and the spring on the elastic slide is compressed to realize the automatic stacking of the roll storage rack.

Benefits of technology

Through automated stacking operations, the problem of forklift workers' vision obstruction is solved, the operation difficulty and danger is reduced, and the stability of the roll storage rack is ensured during stacking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of textile storage, and discloses a textile stacking and storage device, including a stacking rack and a cloth roll storage rack, wherein the stacking rack includes a bracket, and further includes: a stacking plate, which is arranged in the bracket; a power mechanism, which is symmetrically installed on the top of the bracket for lifting the stacking plate; a counterweight mechanism, which is arranged on both sides of the bracket for reducing the driving force required when the power mechanism lifts the stacking plate. The above scheme lifts the stacking plate by running the power mechanism, places the cloth roll storage rack on the plate body, and runs the power mechanism to lift the traction motor at the top. The upward plate body will drive the connecting rod below to rotate, and the spring on the elastic slider is compressed through the connecting rod, and the power mechanism stops running, thereby completing the stacking operation of the cloth roll storage rack, thereby solving the problem that the forklift worker's vision will be blocked when the height of the cloth roll storage rack to be stored increases.
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Description

Technical Field

[0001] The invention belongs to the technical field of textile storage, in particular to a textile stacking and storage device. Background Art

[0002] Cloth rolls, as important products in the textile industry, are widely used in various fields. After the production of cloth rolls, in order to ensure the quality and integrity of the cloth rolls, a scientific and reasonable layout is required to store them, ensuring that there is enough space between the cloth rolls to prevent extrusion and deformation. In the prior art, operators often stack several cloth rolls on a storage rack, and then use a forklift to place the storage rack on the stacking rack interlayer for temporary storage. When the storage rack is placed on the bottom layer of the stacking rack, the forklift worker can clearly observe the positional relationship between the storage rack on the forklift bucket and the stacking rack interlayer. At this time, the operator can accurately and quickly store the storage rack. However, as the height of the stacking rack interlayer increases, the problem of the storage rack on the forklift bucket blocking the forklift worker's view of the stacking rack interlayer will become more and more obvious, thereby increasing the difficulty and danger of the forklift worker storing the storage rack. In order to solve the above problems, a textile stacking and storage device is proposed. Summary of the invention

[0003] In order to solve the problems raised in the above background technology, the present invention provides a textile stacking and storage device, which solves the problem that the vision of forklift workers is blocked when storing the storage racks as the height of the stacking rack compartments increases.

[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a textile stacking and storage device, comprising a stacking rack and a cloth roll storage rack, wherein the stacking rack comprises a bracket, and further comprises: a stacking plate, which is arranged in the bracket; a power mechanism, which is symmetrically installed on the top of the bracket for lifting the stacking plate; a counterweight mechanism, which is arranged on both sides of the bracket for reducing the driving force required when the power mechanism lifts the stacking plate;

[0005] The stacking plate comprises plate bodies which are arranged vertically and equidistantly in the bracket for supporting the cloth roll storage rack, and fixing holes are provided at both ends of the bottom plate body, and elastic sliders are elastically connected at both ends of the other plate bodies except the one at the top, and two connecting rods are hinged in the elastic slider, and the top end of the connecting rod is hinged to another plate body through a pin shaft fixed to the top end thereof, and positioning pieces are provided at both ends of the other plate bodies except the one at the bottom end;

[0006] The stacking rack also includes baffles symmetrically installed on both sides of the bracket for limiting the plate body in the horizontal direction. A fixed shaft inserted into the fixed hole is also fixedly installed at the bottom of the bracket for keeping the fixed position of the plate body unchanged.

[0007] Preferably, when the connecting rod rotates to the maximum angle, the angle between the connecting rod and the horizontal plane is °, and the elastic force of the elastic sliding block is always smaller than the gravity of the plate body.

[0008] Preferably, the positioning member comprises a positioning block movably connected to the plate body, and both ends of the positioning block are elastically supported by spring combination screws threadedly connected to the plate body, and both ends of the positioning block are also provided with slopes;

[0009] Initially, the top of the positioning block and the middle of the plate body are at the same height plane.

[0010] Preferably, one end of the pin is fixedly connected to a protruding rod located below the positioning block;

[0011] The convex rod is used to press the positioning block upward when rotating.

[0012] Preferably, the power mechanism includes a traction motor, a motor wheel, a cable and a guide roller. The traction motor is fixedly connected to the top of the bracket, and the motor wheel is fixedly sleeved on the output end of the traction motor. Each group of guide rollers has two and are movably connected to the top of the bracket. The cable is wound around the guide roller and the motor wheel, and the two ends of the cable are respectively connected to the counterweight mechanism and the plate body.

[0013] Preferably, the counterweight mechanism includes a limiting vertical rod fixedly connected to both sides of the bracket, and counterweight blocks are equidistantly and movably mounted on the limiting vertical rod. The counterweight block located at the top is fixedly connected to one end of the cable, and connecting parts are provided at both ends of the bottom of the other counterweight blocks except the one located at the bottom. Buckling parts are fixedly connected to the two ends of the other counterweight blocks except the one located at the top, and the buckling parts are movably connected to the connecting parts.

[0014] Preferably, the fastening member comprises an outer cover fixedly connected to both ends of the counterweight block and an elastic inclined block elastically connected to the inside of the outer cover;

[0015] The bracket is provided with equidistantly arranged snap-in openings for snapping with the bottom end of the elastic inclined block.

[0016] Preferably, the connecting member comprises a pressing block fixedly connected to the bottom of the counterweight block and a "mouth"-shaped block, and a convex shaft is fixedly connected to the bottom of the pressing block;

[0017] The buckle also includes an inclined groove formed on the elastic inclined block and a sloped surface formed on the top of the elastic inclined block;

[0018] After the pressing block moves downward into the outer cover, the convex shaft moves along the inclined groove, forcing the elastic inclined block to disengage from the bayonet, thereby stretching the tension spring on the elastic inclined block.

[0019] Preferably, when the elastic inclined block is disengaged from the bayonet, the slope surface is located inside the "mouth" shaped block, and the two have an overlapping portion in the vertical direction.

[0020] Preferably, the widths of the plurality of elastic inclined blocks and the bayonet in the vertical direction decrease successively from top to bottom.

[0021] Compared with the prior art, the present invention has the following beneficial effects:

[0022] The above scheme lifts the stacking plate by running the power mechanism, places the cloth roll storage rack on the plate body, and runs the power mechanism to lift the traction motor at the top. The upward plate body drives the connecting rod below to rotate, and the spring on the elastic slider is compressed through the connecting rod. When the connecting rod rotates to the maximum angle, the power mechanism stops running. When the cloth roll storage rack needs to be stored again, the operator can store the cloth roll storage rack on the next group of plate bodies, and run the power mechanism again to drive the topmost plate body upward and drive the next group of plate bodies upward through the connecting rod, thereby completing the stacking operation of the cloth roll storage rack, thereby solving the problem that the forklift operator's vision will be blocked when the height of the cloth roll storage rack to be stored increases;

[0023] The above scheme limits the support feet of the cloth roll storage rack by the positioning member when the plate body is driven upward. When the plate body drives the connecting rod to rotate upward, the pin shaft is also rotated, and the convex rod is driven to rotate, so that the convex rod squeezes the positioning block upward, so that the slopes set at both ends of the positioning block move upward and squeeze the support feet of the cloth roll storage rack, thereby limiting the cloth roll storage rack and ensuring its stability during stacking.

[0024] The above scheme can reduce the driving force required for the power mechanism to lift the stacking plate by setting up several groups of counterweight blocks. When the counterweight block descends, the pressure block and the "mouth"-shaped block on it will also descend and enter the outer cover, and the pressure block will also enter the elastic inclined block, causing the convex shaft to descend in the inclined groove and forcing the elastic inclined block to disengage from the bayonet, while causing the slope to enter the "mouth"-shaped block. At this time, the fastener will lose support and will fall synchronously with the counterweight block on it. At this time, the inside of the "mouth"-shaped block will play a role in hanging the slope. At this time, the descending counterweight block will be connected to the adjacent counterweight block below and form a whole. As the number of cloth roll storage racks increases, the weight of the counterweight block connected to the cable will also increase, thereby reducing the weight difference at both ends of the cable. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0026] Figure 2 for Figure 1 The enlarged view of point A in the middle;

[0027] Figure 3 It is a top plan view of the stacked plate of the present invention;

[0028] Figure 4 for Figure 3 Schematic diagram of the cross-sectional structure at the middle BB;

[0029] Figure 5 for Figure 3 Schematic diagram of the cross-sectional structure at CC in the middle;

[0030] Figure 6 The structural diagram of the elastic slider of the present invention is

[0031] Figure 7 It is a schematic diagram of the side cross-sectional structure of the counterweight block of the present invention;

[0032] Figure 8 Based Figure 7 The enlarged view of point D in the middle;

[0033] Fig. 9 It is a schematic diagram of the matching structure of the platform and the "mouth"-shaped block of the present invention;

[0034] Fig.10 It is a structural schematic diagram of the counterweight mechanism of the present invention;

[0035] Fig.11 It is a schematic structural diagram of the fastening member of the present invention.

[0036] In the figure: 1. stacking rack; 11. bracket; 111. bayonet; 12. baffle; 13. fixed shaft; 2. stacking plate; 21. plate body; 211. fixing hole; 22. elastic slider; 23. connecting rod; 231. pin shaft; 232. convex rod; 24. positioning member; 241. positioning block; 242. spring combination screw; 243. ramp; 3. power mechanism; 31. traction motor; 32. motor wheel; 33. cable; 34. guide roller; 4. counterweight mechanism; 41. limit vertical rod; 42. counterweight block; 43. buckle; 431. outer cover; 432. elastic inclined block; 433. inclined groove; 434. slope; 44. connecting member; 441. pressure block; 442. convex shaft; 443. "mouth" shaped block; 5. cloth roll storage rack. DETAILED DESCRIPTION

[0037] 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.

[0038] like Figures 1 to 11As shown, the present invention provides a textile stacking and storage device, including a stacking rack 1 and a cloth roll storage rack 5, wherein the stacking rack 1 includes a bracket 11, and further includes: a stacking plate 2, which is arranged in the bracket 11; a power mechanism 3, which is symmetrically installed on the top of the bracket 11 for lifting the stacking plate 2; a counterweight mechanism 4, which is arranged on both sides of the bracket 11 for reducing the driving force required when the power mechanism 3 lifts the stacking plate 2;

[0039] The stacking plate 2 includes plate bodies 21 which are arranged vertically and equidistantly in the bracket 11 for supporting the cloth roll storage rack 5. The bottom plate body 21 has fixing holes 211 at both ends. The other plate bodies 21, except the one at the top, are elastically connected with elastic sliders 22 at both ends. Two connecting rods 23 are hinged in the elastic slider 22. The top of the connecting rod 23 is hinged with another plate body 21 through a pin 231 fixed to the top thereof. The other plate bodies 21, except the one at the bottom, are provided with positioning members 24 located on the inner side of the elastic slider 22 at both ends.

[0040] The stacking rack 1 also includes baffles 12 symmetrically mounted on both sides of the bracket 11 for limiting the plate body 21 in the horizontal direction. A fixed shaft 13 inserted into the fixed hole 211 is also fixedly mounted at the bottom of the bracket 11 for keeping the fixed position of the plate body 21 unchanged.

[0041] When the connecting rod 23 rotates to the maximum angle, the angle between the connecting rod 23 and the horizontal plane is 70°, and the elastic force of the elastic slider 22 is always smaller than the gravity of the plate body 21 .

[0042] By adopting the above scheme, the cloth roll storage rack 5 is placed on the plate body 21, and the power mechanism 3 is operated to lift the traction motor 31 at the top. The upward plate body 21 drives the connecting rod 23 below to rotate, and the spring on the elastic slider 22 is compressed through the connecting rod 23. When the connecting rod 23 rotates to the maximum angle, the power mechanism 3 stops running. When the cloth roll storage rack 5 needs to be stored again, the operator can store the cloth roll storage rack 5 on the next group of plate bodies 21, and run the power mechanism 3 again to drive the topmost plate body 21 upward and drive the next group of plate bodies 21 upward through the connecting rod 23, so as to complete the stacking operation of the cloth roll storage rack 5, thereby solving the problem that the forklift operator's vision will be blocked when the height of the cloth roll storage rack 5 to be stored increases;

[0043] It is worth mentioning that by limiting the maximum rotation angle of the connecting rod 23, the connecting rod 23 is always in an inclined state, so that the subsequent elastic slider 22 can push the connecting rod 23 to reset. At the same time, the connecting rod 23 cannot rotate after rotating to the maximum angle, ensuring that the plate body 21 can drive the lower group of plate bodies 21 upward through the connecting rod 23.

[0044] like Figure 3-6As shown, the positioning member 24 includes a positioning block 241 movably connected to the plate body 21, and the two ends of the positioning block 241 are elastically supported by spring combination screws 242 threadedly connected to the plate body 21, and the two ends of the positioning block 241 are also provided with slopes 243; initially, the top of the positioning block 241 and the middle of the plate body 21 are at the same height plane;

[0045] One end of the pin 231 is fixedly connected to a convex rod 232 located below the positioning block 241; when the convex rod 232 rotates, it is used to squeeze the positioning block 241 upward;

[0046] By adopting the above scheme, when the connecting rod 23 is driven to rotate by the upward movement of the plate body 21, the pin shaft 231 is also rotated, and the protruding rod 232 is driven to rotate, so that the protruding rod 232 squeezes the positioning block 241 upward, so that the slopes 243 set at both ends of the positioning block 241 move upward and squeeze the supporting feet of the cloth roll storage rack 5, thereby achieving the limitation of the cloth roll storage rack 5, and then ensuring its stability during stacking.

[0047] like Figure 1-2 , Figure 7 and Fig.10 As shown, the power mechanism 3 includes a traction motor 31, a motor wheel 32, a cable 33 and a guide roller 34. The traction motor 31 is fixedly connected to the top of the bracket 11, and the motor wheel 32 is fixedly sleeved on the output end of the traction motor 31. Each set of guide rollers 34 is two and both are movably connected to the top of the bracket 11. The cable 33 is wound around the guide roller 34 and the motor wheel 32, and the two ends of the cable 33 are respectively connected to the counterweight mechanism 4 and the plate body 21;

[0048] The counterweight mechanism 4 includes a limit vertical rod 41 fixedly connected to both sides of the bracket 11, and a counterweight block 42 is movably sleeved on the limit vertical rod 41 at equal intervals. The counterweight block 42 at the top is fixedly connected to one end of the cable 33, and the two ends of the bottom of the other counterweight blocks 42 except the one at the bottom are provided with connecting pieces 44, and the two ends of the other counterweight blocks 42 except the one at the top are fixedly connected with buckles 43, and the buckles 43 are movably connected with the connecting pieces 44;

[0049] By adopting the above scheme, the motor wheel 32 can drive the cable 33 to lift the plate body 21 by running the traction motor 31, and the counterweight block 42 will be lowered synchronously when the plate body 21 is lifted, thereby reducing the driving force required by the power mechanism 3 to lift the stacking plate 2.

[0050] like Figure 7-11 As shown, the fastening member 43 includes an outer cover 431 fixedly connected to both ends of the counterweight block 42 and an elastic inclined block 432 elastically connected to the inside of the outer cover 431;

[0051] The bracket 11 is provided with equidistantly provided with snap-fitting holes 111 for snapping with the bottom end of the elastic inclined block 432;

[0052] The connecting member 44 includes a pressing block 441 fixedly connected to the bottom of the counterweight block 42 and a "mouth" shaped block 443, and a convex shaft 442 is fixedly connected to the bottom of the pressing block 441;

[0053] The fastening member 43 further includes an inclined groove 433 formed on the elastic inclined block 432 and a slope 434 formed on the top of the elastic inclined block 432;

[0054] After the pressing block 441 moves downward into the outer cover 431, the convex shaft 442 moves along the inclined groove 433, forcing the elastic inclined block 432 to disengage from the bayonet 111, thereby stretching the tension spring on the elastic inclined block 432;

[0055] When the elastic inclined block 432 is separated from the bayonet 111, the slope 434 is located inside the "mouth" shaped block 443, and the two overlap in the vertical direction;

[0056] With the above solution, when the counterweight block 42 moves downward, the pressing block 441 and the "mouth"-shaped block 443 thereon also move downward and enter the interior of the outer cover 431, and the pressing block 441 also enters the elastic inclined block 432, causing the convex shaft 442 to move downward in the inclined groove 433 and forcing the elastic inclined block 432 to disengage from the bayonet 111. Figure 8 and 9 As shown, the slope 434 will enter the "mouth" shaped block 443. At this time, the buckle 43 will lose its support and will fall synchronously with the counterweight block 42 thereon, and the bottom end of the elastic inclined block 432 will also abut against the inner wall of the bayonet 111 and cannot move. At this time, the inside of the "mouth" shaped block 443 will play a role in hanging the slope 434. At this time, the downward counterweight block 42 will be connected with the adjacent counterweight block 42 below to form a whole;

[0057] It is worth noting that when the counterweight block 42 connected as a whole needs to be reset, the counterweight mechanism 4 is operated to drive the top counterweight block 42 upward. When the bottom end of the elastic inclined block 432 coincides with the bayonet 111, the upwardly moving counterweight block 42 will drive the slope 434 and the pressure block 441 upward, and the convex shaft 442 will move upward in the inclined groove 433 and force the elastic inclined block 432 to reset and snap into the bayonet 111. At the same time, the slope 434 will also disengage from the "mouth"-shaped block 443 until the device is reset.

[0058] like Figure 7-11 As shown, the widths of the plurality of elastic inclined blocks 432 and the bayonet 111 in the vertical direction decrease from top to bottom;

[0059] By adopting the above scheme, when the upper group of elastic inclined blocks 432 moves down to the same height as the lower group of bayonet holes 111, the upper group of elastic inclined blocks 432 is prevented from being stuck in the lower bayonet holes 111, thereby ensuring that the counterweight block 42 will not be disconnected when it is connected and moved downward, thereby ensuring the stability of the device during operation.

[0060] The working principle and use process of the present invention:

[0061] First, the operator places the cloth roll storage rack 5 storing cloth rolls on the plate body 21 by using a forklift, and then operates the power mechanism 3 to lift the traction motor 31 at the top. At this time, the plate body 21 at the bottom will maintain a constant vertical height due to its own gravity, and the upward plate body 21 will drive the connecting rod 23 at the bottom to rotate, and the spring on the elastic slider 22 will be compressed through the connecting rod 23. When the connecting rod 23 rotates to the maximum angle, the power mechanism 3 stops running. When the cloth roll storage rack 5 needs to be stored again, the operator can store the cloth roll storage rack 5 on the next group of plate bodies 21, and then repeat the operation of the power mechanism 3. At this time, when the top plate body 21 goes up, it will drive the next group of plate bodies 21 to go up through the connecting rod 23, completing the stacking operation of the cloth roll storage rack 5.

[0062] When the plate body 21 moves upward and drives the connecting rod 23 to rotate, the pin shaft 231 will also rotate, and the convex rod 232 will rotate, so that the convex rod 232 squeezes the positioning block 241 upward, so that the slopes 243 set at both ends of the positioning block 241 move upward and squeeze the supporting feet of the cloth roll storage rack 5, thereby limiting the cloth roll storage rack 5 and ensuring its stability during stacking;

[0063] When the traction motor 31 is running and lifting the plate body 21 through the cable 33, the counterweight block 42 connected to the other end of the cable 33 will also move downward, thereby balancing the gravity on both ends of the cable 33. When the counterweight block 42 moves downward, the pressing block 441 and the "mouth"-shaped block 443 on it will also move downward and enter the inside of the outer cover 431, and the pressing block 441 will also enter the elastic inclined block 432, so that the convex shaft 442 moves downward in the inclined groove 433, and forces the elastic inclined block 432 to disengage from the bayonet 111. At the same time, as shown in the attached Figure 8-9 As shown, the slope 434 will enter the "mouth" shaped block 443. At this time, the fastener 43 will lose its support and will fall synchronously with the counterweight block 42 thereon. At this time, the inside of the "mouth" shaped block 443 will suspend the slope 434. At this time, the downward counterweight block 42 will be connected with the adjacent counterweight block 42 below to form a whole.

[0064] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.

[0065] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A textile stacking and storage device, comprising a stacking rack (1) and a cloth roll storage rack (5), wherein the stacking rack (1) comprises a bracket (11), characterized in that: Also includes: A stacking plate (2) disposed in a bracket (11); A power mechanism (3) symmetrically mounted on the top of the bracket (11) for lifting the stacking plate (2); A counterweight mechanism (4) disposed on both sides of the bracket (11) and used to reduce the driving force required by the power mechanism (3) to lift the stacking plate (2); The stacking plate (2) comprises plate bodies (21) which are arranged vertically and equidistantly in a bracket (11) for supporting a cloth roll storage rack (5); fixing holes (211) are provided at both ends of the bottom plate body (21); both ends of the other plate bodies (21) except the one located at the top are elastically connected to elastic sliders (22); two connecting rods (23) are hingedly connected inside the elastic slider (22); the top end of the connecting rod (23) is hingedly connected to another plate body (21) via a pin (231) fixed to the top end; and both ends of the other plate bodies (21) except the one located at the bottom are provided with positioning members (24) located inside the elastic slider (22); The stacking frame (1) further comprises baffles (12) symmetrically mounted on both sides of the bracket (11) for limiting the position of the plate body (21) in the horizontal direction; a fixing shaft (13) is also fixedly mounted on the bottom of the bracket (11) and is inserted into the fixing hole (211) for keeping the fixed position of the plate body (21) unchanged; When the connecting rod (23) rotates to the maximum angle, the angle between the connecting rod (23) and the horizontal plane is 70°, and the elastic force of the elastic slider (22) is always smaller than the gravity of the plate body (21); The positioning member (24) comprises a positioning block (241) movably connected to the plate body (21), the two ends of the positioning block (241) are elastically supported by spring combination screws (242) threadedly connected to the plate body (21), and the two ends of the positioning block (241) are also provided with slopes (243); Initially, the top of the positioning block (241) and the middle of the plate body (21) are at the same height plane; One end of the pin shaft (231) is fixedly connected to a protruding rod (232) located below the positioning block (241); The convex rod (232) is used to press the positioning block (241) upward when rotating.

2. The textile stacking and storage device according to claim 1, characterized in that: The power mechanism (3) comprises a traction motor (31), a motor wheel (32), a cable (33) and a guide roller (34); the traction motor (31) is fixedly connected to the top of the bracket (11); the motor wheel (32) is fixedly sleeved on the output end of the traction motor (31); each group of guide rollers (34) is two and both are movably connected to the top of the bracket (11); the cable (33) is wound around the guide roller (34) and the motor wheel (32); and the two ends of the cable (33) are respectively connected to the counterweight mechanism (4) and the plate body (21).

3. The textile stacking and storage device according to claim 2, characterized in that: The counterweight mechanism (4) comprises a limiting vertical rod (41) fixedly connected to both sides of the bracket (11); counterweight blocks (42) are equidistantly and movably sleeved on the limiting vertical rod (41); the counterweight block (42) located at the top is fixedly connected to one end of the cable (33); the two ends of the bottom of the other counterweight blocks (42) except the one located at the bottom are provided with connecting pieces (44); the two ends of the other counterweight blocks (42) except the one located at the top are fixedly connected with buckling pieces (43); the buckling pieces (43) are movably connected to the connecting piece (44).

4. The textile stacking and storage device according to claim 3, characterized in that: The buckle member (43) comprises an outer cover (431) fixedly connected to two ends of the counterweight block (42) and an elastic inclined block (432) elastically connected to the inside of the outer cover (431); The bracket (11) is provided with equidistantly spaced snap-on openings (111) for snapping into the bottom end of the elastic inclined block (432).

5. The textile stacking and storage device according to claim 4, characterized in that: The connecting member (44) comprises a pressing block (441) fixedly connected to the bottom of the counterweight block (42) and a "mouth"-shaped block (443); a convex shaft (442) is fixedly connected to the bottom of the pressing block (441); The buckle (43) further comprises an inclined groove (433) formed on the elastic inclined block (432) and a slope (434) disposed on the top of the elastic inclined block (432); After the pressing block (441) moves downward into the outer cover (431), the convex shaft (442) moves along the inclined groove (433), forcing the elastic inclined block (432) to disengage from the bayonet (111), thereby stretching the tension spring on the elastic inclined block (432).

6. The textile stacking and storage device according to claim 5, characterized in that: When the elastic inclined block (432) is separated from the bayonet (111), the slope surface (434) is located inside the "mouth"-shaped block (443), and the two have overlapping parts in the vertical direction.

7. The textile stacking and storage device according to claim 6, characterized in that: The widths of the plurality of elastic inclined blocks (432) and the bayonet (111) in the vertical direction decrease from top to bottom.

Citation Information

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