Finished product warehousing storage device for spinning production

By designing a finished product storage device for spinning production, the electric slide rails and slides drive the support parts up and down, adjust the intervals of the support parts, and achieve the regularity and protection of goods through the cooperation of components such as extrusions, the problems of inconvenience and insufficient space utilization of existing shelves at high storage and access of spinning products, and improve the storage effect and safety of the shelves.

CN119976138APending Publication Date: 2025-05-13HUNAN BOXIAN NEW MATERIALS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510208536.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

The existing three-dimensional warehouse shelves are inconvenient when storing and retrieving high-altitude spinning products, and the fixity of the partitions leads to insufficient space utilization, resulting in difficulty in operation, safety hazards and waste of space.

Method used

A flexible lifting mechanism including a carrier frame, electric slide rail, slider, support member and pallet is designed to drive the support member and telescopic rod up and down through the electric slide rail and slider to adjust the spacing of the support member; at the same time, through the cooperation of components such as extrusions, guide frames, extrusion plates, and regular parts, the regular goods are achieved.

Benefits of technology

It realizes convenient storage and access of goods and efficient use of space, avoids waste of space, and improves the storage effect and safety of shelves.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of spinning product warehousing storage, in particular to a finished product warehousing storage device for spinning production. The finished product warehousing storage device convenient to adjust and used for spinning production comprises a bearing frame, symmetrically-distributed connecting pieces are fixedly connected to the bearing frame, electric sliding rails are installed on the symmetrically-distributed connecting pieces, and sliding pieces are slidably connected into the symmetrically-distributed electric sliding rails; a placing frame is arranged between the symmetrically distributed sliding parts and the inner side of the bottom wall of the bearing frame, the placing frame is composed of a plurality of supporting parts, the adjacent supporting parts are connected through symmetrically distributed first telescopic parts, and the supporting part at the bottommost part is fixedly connected with the inner side of the bottom wall of the bearing frame. According to the goods shelf, through cooperation of the electric sliding rails, the sliding pieces, the supporting pieces, the first telescopic pieces and the trays, efficient storage and taking of goods are achieved, the storage space is flexibly adjusted, the goods are arranged in order through the extrusion pieces, the guide frames, the extrusion plates, the arranging pieces and other parts, and the storage effect and safety of the goods shelf are improved.
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Description

Technical Field

[0001] The invention relates to the field of storage of spinning products, and in particular to a finished product storage device for spinning production. Background Art

[0002] Spinning is the whole process of processing textile fibers into yarn. Specifically, spinning is to take animal or plant fibers and use twisting method to make them into a continuous and infinitely extended yarn so that they can be suitable for subsequent weaving, such as cloth, clothing, etc.

[0003] First, the finished spinning products are usually in the form of rolls for packaging and fixing, and are often packaged in woven bags to protect them from damage. However, when these finished products are placed on the shelves of a three-dimensional warehouse, it becomes relatively difficult to access the spinning products at high places because the shelves are usually set high. This not only requires the frequent use of ladders, which increases the difficulty of operation and safety hazards, but also reduces work efficiency; secondly, since the types and quantities of spinning products often change, and the compartments of existing three-dimensional warehouse shelves are usually fixed, they cannot be flexibly adjusted according to actual needs, resulting in insufficient space utilization and even waste.

[0004] Based on the above situation, the present invention proposes a finished product storage device for spinning production which is easy to adjust. Summary of the invention

[0005] In order to overcome the inconvenience of existing stereoscopic warehouse shelves in storing and accessing high-place spinning products and the shortcomings of insufficient space utilization caused by the fixedness of the interlayers, the present invention proposes an easily adjustable finished product storage device for spinning production.

[0006] The technical solution is: a finished product storage device for spinning production, including a load-bearing frame, the load-bearing frame is fixedly connected with symmetrically distributed connecting parts, the symmetrically distributed connecting parts are all equipped with electric slide rails, the symmetrically distributed electric slide rails are all slidably connected with sliding parts, and a placement frame is provided between the symmetrically distributed sliding parts and the inner side of the bottom wall of the load-bearing frame, the placement frame is composed of a plurality of supporting parts, adjacent supporting parts are connected by symmetrically distributed first telescopic parts, and the bottommost supporting part is fixedly connected to the inner side of the bottom wall of the load-bearing frame.

[0007] Optionally, a tray is also included, and a plurality of trays are placed on each support member respectively, and the trays are snap-fitted with adjacent support members.

[0008] Optionally, it also includes a tidying mechanism for arranging goods stacked on the pallet neatly, the tidying mechanism is arranged on the carrier frame, the tidying mechanism includes a first guide member, a symmetrically distributed first guide member is fixedly connected to the carrier frame on the side close to the electric slide rail, the symmetrically distributed first guide members are all slidably connected with a guide frame, a linear spring is connected between the symmetrically distributed guide frame and the carrier frame, the symmetrically distributed linear springs are all wound around the adjacent first guide member, except for the support member fixedly connected to the carrier frame, the remaining support members are fixedly connected to symmetrically distributed extrusion members on the side close to the electric slide rail, the symmetrically distributed guide frames are all slidably connected with extrusion plates, compression springs are connected between the extrusion plates and the adjacent guide frames, the symmetrically distributed compression springs are all wound around the adjacent extrusion plates, each guide frame is fixedly connected with a symmetrically distributed rack, each extrusion plate is rotatably connected with a symmetrically distributed tidying member, gears are fixedly connected to the tops of the symmetrically distributed tidying members, first torsion springs are connected between the tidying members and the adjacent extrusion plates, and the symmetrically distributed first torsion springs are all wound around the adjacent tidying members.

[0009] Optionally, the rack and adjacent gears are meshed with each other.

[0010] Optionally, the extrusion is press-fitted with adjacent guide frames.

[0011] Optionally, it also includes a stabilizing mechanism for covering the goods stacked on the pallet, the stabilizing mechanism is arranged on a plurality of supporting members, the stabilizing mechanism includes a guiding member, a symmetrically distributed guiding member is fixedly connected to the side of the carrier frame away from the electric slide rail, except for the supporting member fixedly connected to the carrier frame, the bottoms of the remaining supporting members are all fixedly connected to symmetrically distributed second telescopic members, a fixed frame is fixedly connected between the telescopic parts of the second telescopic members along the lateral direction, an elastic cloth is fixedly connected in each fixed frame, a symmetrically distributed second guiding member is fixedly connected to each fixed frame, moving members are slidably connected in the symmetrically distributed second guiding members, connecting rods are rotatably connected to the symmetrically distributed moving members, the connecting rods are rotatably connected to the adjacent supporting members, second torsion springs are connected between the connecting rods and the adjacent supporting members, the symmetrically distributed second torsion springs are all wound around the adjacent connecting rods, and the supporting members are provided with a positioning assembly on the side close to the connecting rod.

[0012] Optionally, the locking assembly includes latches, and the symmetrically distributed latches are all slidably connected to a side of the support member close to the connecting rod, and a return spring is connected between the latch and the adjacent support member.

[0013] Optionally, the latch is snap-fitted with adjacent connecting rods.

[0014] Optionally, the guide is press-fitted to adjacent latches.

[0015] Optionally, an alignment mechanism for accurately placing the pallet is also included, the alignment mechanism is arranged at the bottom of the carrier frame, the alignment mechanism includes a servo motor, the servo motor is installed at the bottom of the carrier frame, the symmetrically distributed output shafts on the servo motor are fixedly connected with screws through couplings, the symmetrically distributed screws are threadedly connected with pushing frames, the symmetrically distributed pushing frames are slidably connected to the supporting members close to one side of the screw, each supporting member is provided with symmetrically distributed U-shaped openings, and the symmetrically distributed pushing frames are snap-fitted with each supporting member through the U-shaped openings.

[0016] The present invention has the following advantages: the present invention first forms a flexible lifting mechanism through electric slide rails, sliding parts, support parts, first telescopic parts, pallets, etc., which can drive the support parts and the first telescopic parts of the telescopic rod to move up and down through the electric slide rails and sliding parts according to the change in the quantity of goods, thereby adjusting the intervals between the support parts. In this way, not only can the goods be stored and retrieved conveniently, but also the storage space of the shelf can be utilized to the maximum extent to avoid space waste. Then, through the cooperation of extrusion parts, guide frames, extrusion plates, regularization parts, etc., the goods stacked on the pallet can be regularized to avoid damage caused by the goods sliding off the shelf due to skewing, thereby improving the storage effect and safety of the shelf.

[0017] The present invention can automatically unlock the connecting rod by firstly extruding and matching the latch pin with the guide member, and then utilize the second torsion spring to deflect the connecting rod inward, so that the elastic cloth automatically covers the goods, thereby protecting the goods from interference or damage from the external environment and improving the safety of goods storage.

[0018] The present invention realizes accurate positioning and centering of the tray on the support member through the coordinated work of the screw rod, the servo motor and the pushing frame, as well as manual adjustment when necessary, thereby improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.

[0020] Figure 2 It is a schematic diagram of the three-dimensional structure of the carrier frame of the present invention.

[0021] Figure 3 It is a schematic diagram of the three-dimensional structure of the supporting frame, electric slide rail, sliding member and other components of the present invention.

[0022] Figure 4 It is a schematic diagram of the three-dimensional structure of the connecting member, the supporting member, the tray and other components of the present invention.

[0023] Figure 5 It is a schematic diagram of the three-dimensional structure of the first guide member, the linear spring, the extrusion plate and other components of the present invention.

[0024] Figure 6It is a schematic diagram of the three-dimensional structure of the compression spring, rack, gear and other components of the present invention.

[0025] Figure 7 It is a schematic diagram of the three-dimensional structure of the guide frame of the present invention.

[0026] Figure 8 It is a schematic diagram of the three-dimensional structure of the first guide member, the guide frame, the extrusion member and other components of the present invention.

[0027] Fig. 9 It is a schematic diagram of the three-dimensional structure of the guide, support, tray and other components of the present invention.

[0028] Fig.10 It is a schematic diagram of the three-dimensional structure of the second telescopic member, the fixing frame, the elastic cloth and other components of the present invention.

[0029] Fig.11 It is a sectional view of the three-dimensional structure of the moving part, connecting rod, second torsion spring and other components of the present invention.

[0030] Fig.12 It is a schematic diagram of the three-dimensional structure of the carrier frame and the guide member of the present invention.

[0031] Fig.13 It is a schematic diagram of the three-dimensional structure of the push frame, screw rod, support member and other components of the present invention.

[0032] Fig.14 It is a schematic diagram of the three-dimensional structure of the servo motor, the pushing frame, the supporting frame and other components of the present invention.

[0033] Markings in the accompanying drawings: 1. supporting frame, 11. connecting member, 12. electric slide rail, 13. sliding member, 14. supporting member, 15. first telescopic member, 16. tray, 2. first guide member, 201. linear spring, 21. guide frame, 22. extrusion member, 23. extrusion plate, 24. compression spring, 25. rack, 26. gear, 27. first torsion spring, 28. regular member, 3. guide member, 31. second telescopic member, 32. fixed frame, 33. elastic cloth, 34. second guide member, 35. moving member, 36. connecting rod, 37. second torsion spring, 38. latch, 39. reset spring, 4. pushing frame, 41. screw, 42. servo motor. DETAILED DESCRIPTION

[0034] The technical solutions in the embodiments of the present invention are described clearly and completely below. 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.

[0035] Embodiment 1: A finished product storage device for spinning production, such as Figure 1-Figure 4 As shown, it includes a carrier frame 1, and the rear side of the carrier frame 1 is fixedly connected with connecting members 11 that are symmetrically distributed on the left and right. Electric slide rails 12 are installed on the two connecting members 11. Slide members 13 are slidably connected in the two electric slide rails 12. A placement rack is provided between the two slide members 13 and the inner side of the bottom wall of the carrier frame 1. The placement rack is composed of at least three supporting members 14. Adjacent supporting members 14 are connected by four symmetrically distributed first telescopic members 15, and the lowermost supporting member 14 is fixedly connected to the inner side of the bottom wall of the carrier frame 1. At least three trays 16 are respectively placed on each supporting member 14, and the trays 16 are snap-fitted with the adjacent supporting members 14.

[0036] like Figure 5-Figure 8 As shown, it also includes a tidying mechanism for arranging the goods stacked on the pallet 16 neatly, the tidying mechanism is arranged on the carrier 1, and the tidying mechanism includes a first guide member 2, the left and right parts of the rear side of the carrier 1 are fixedly connected to the first guide members 2, the two first guide members 2 are slidably connected to the guide frames 21, the two guide frames 21 and the carrier 1 are connected with linear springs 201, and the two linear springs 201 are respectively wound around the adjacent first guide members 2, except for the lowermost support member 14, the rear sides of the remaining support members 14 are fixedly connected to the extrusion members 22 distributed symmetrically on the left and right, and the front parts of the two guide frames 21 are slidably connected to the extrusion members 22. The pressure plate 23, compression springs 24 are connected between the extrusion plate 23 and the adjacent guide frame 21, and the two compression springs 24 are wound on the adjacent extrusion plates 23. Each guide frame 21 is fixedly connected with a rack 25 that is symmetrically distributed front and back. Each extrusion plate 23 is rotatably connected with a regular piece 28 that is symmetrically distributed front and back. Gears 26 are fixed to the tops of the four regular pieces 28. A first torsion spring 27 is connected between the regular piece 28 and the adjacent extrusion plate 23. The four first torsion springs 27 are wound on the adjacent regular piece 28. The rack 25 and the adjacent gear 26 are meshed with each other, and the extrusion piece 22 and the adjacent guide frame 21 are extrusion-fitted.

[0037] When the rolled finished spinning products are packed in woven bags, the staff can use a forklift or other tools to push the bagged spinning products onto the uppermost pallet 16. When the uppermost pallet 16 is full, the electric slide rail 12 can be controlled to drive the sliding member 13 to move upward, thereby driving the uppermost support member 14 and the pallet 16 to move upward, so that the first telescopic member 15 of the uppermost layer extends upward, thereby increasing the interval between the uppermost layer and the next layer, and continuing to stack the bagged spinning products on the next layer of pallet 16, and so on, until an appropriate amount of goods are stored on each layer of pallet 16. When the output of some types of spinning products is relatively small, there is still a lot of space between the top of the goods and the upper layer of support member 14. In order not to waste the space of the three-dimensional warehouse shelves, the electric slide rail 12 can be controlled to drive the sliding member 13 to move downward, thereby causing the uppermost support member 14 to move downward, and the first telescopic member 15 to shrink downward until the goods on each layer contact the support member 14 of the upper layer.

[0038] At the same time, when the uppermost supporting member 14 moves upward, the uppermost extruding member 22 also moves upward therewith. When the uppermost extruding member 22 contacts the guide frame 21, the uppermost extruding member 22 will squeeze the guide frame 21 to drive the rack 25, the extruding plate 23, and the regulating member 28 to move inward together, and the linear spring 201 will be deformed. When the extruding plate 23 moving inward contacts the left and right sides of the goods, the left and right sides of the goods will resist the extruding plate 23 to make it relatively still. As the guide frame 21 drives the rack 25 to continue to move inward, the compression spring 24 will also be deformed. When the inwardly moving rack 25 meshes with the gear 26, the gear 26 will drive the regulating member 28 to rotate inward, and the first torsion spring 27 will be twisted. The regulating member 28 rotating inward will contact the front and back parts of the goods, and the regulating member 28 will push some crooked goods inward, so that they can be stacked more upright on the pallet 16, thereby preventing the goods from slipping off the pallet 16 and causing damage.

[0039] When the extrusion piece 22 on the uppermost layer passes over the guide frame 21, under the elastic force of the linear spring 201, the guide frame 21 will drive the extrusion plate 23 to move outward and reset. The extrusion plate 23 moving outward will be separated from the cargo, and under the elastic force of the compression spring 24, the extrusion plate 23 drives the regulating piece 28 to continue to slide inward and reset relative to the guide frame 21, the gear 26 will be separated from the rack 25, and under the action of the first torsion spring 27, the regulating piece 28 will flip outward and reset. Similarly, when the extrusion piece 22 on the support member 14 of the next layer moves upward to contact the guide frame 21, the regulating piece 28 will also regulate the cargo machine on the pallet 16 of the next layer. When the extrusion piece 22 moves downward, the extrusion piece 22 will squeeze the guide frame 21 to drive the extrusion plate 23 to move outward, and the linear spring 201 will deform again. When the extrusion piece 22 moving downward passes over the guide frame 21, under the elastic force of the linear spring 201, the guide frame 21 drives the extrusion plate 23 to move inward and reset.

[0040] When it is necessary to take the goods off the support 14, the forklift can be controlled to extend into the pallet 16, lift and move the pallet 16, and thus take the goods off the shelf. In summary, a flexible lifting mechanism is first formed by the electric slide rail 12, the sliding member 13, the support member 14, the first telescopic member 15, the pallet 16, etc., which can drive the support member 14 and the first telescopic member 15 of the telescopic rod to move up and down according to the change in the quantity of the goods through the electric slide rail 12 and the sliding member 13, so as to adjust the interval between the support members 14. In this way, not only can the goods be stored and retrieved conveniently, but also the storage space of the shelf can be utilized to the maximum extent to avoid space waste. Then, through the cooperation of the extrusion member 22, the guide frame 21, the extrusion plate 23, the regularization member 28, etc., the goods stacked on the pallet 16 can be regularized to avoid damage caused by the goods sliding off the shelf due to skewing, thereby improving the storage effect and safety of the shelf.

[0041] Embodiment 2: Based on embodiment 1, Figure 9-12 As shown, it also includes a stabilizing mechanism for covering the goods stacked on the pallet 16, the stabilizing mechanism is arranged on a plurality of supporting members 14, the stabilizing mechanism includes a guiding member 3, the left and right parts of the front side of the carrier frame 1 are fixedly connected with the guiding members 3, except for the lowermost supporting member 14, the bottoms of the remaining supporting members 14 are fixedly connected with second telescopic members 31 symmetrically distributed on the left and right, a fixed frame 32 is fixedly connected between the telescopic parts of the two second telescopic members 31 in the lateral direction, an elastic cloth 33 is fixedly connected in each of the fixing frames 32, and a second guiding member 34 symmetrically distributed on the left and right is fixedly connected to the front side of each fixing frame 32, a moving member 35 is slidably connected in each of the second guiding members 34, and a connecting rod 36 is rotatably connected to each of the moving members 35, the connecting rod 36 is rotatably connected to the adjacent supporting member 14, a second torsion spring 37 is connected between the connecting rod 36 and the adjacent supporting member 14, the symmetrically distributed second torsion springs 37 are all wound around the adjacent connecting rod 36, and the supporting member 14 is provided with a positioning assembly on the side close to the connecting rod 36.

[0042] like Fig.11 As shown, the locking assembly includes a latch 38, and the symmetrically distributed latches 38 are all slidably connected to the side of the support member 14 close to the connecting rod 36. A return spring 39 is connected between the latch 38 and the adjacent support member 14. The latch 38 and the adjacent connecting rod 36 are snap-fitted, and the guide member 3 and the adjacent latch 38 are squeezed together.

[0043] Initially, the latch 38 is inserted into the adjacent connecting rod 36, so that the second torsion spring 37 is in a twisted state. When the support member 14 moves upward, the support member 14 will drive the latch 38, the connecting rod 36, the second guide member 34, the elastic cloth 33, etc. to move upward together. When the upwardly moved latch 38 contacts the guide member 3, the guide member 3 will resist the latch 38 to move outward, the return spring 39 will be deformed, and the outwardly moving latch 38 will be separated from the connecting rod 36. Under the action of the second torsion spring 37, the connecting rod 36 The second telescopic member 31 will extend downward, and the elastic cloth 33 moving downward will cover the goods on the next layer to prevent the goods from being disturbed or damaged by the external environment. When the upward moving latch 38 passes over the guide member 3, the latch 38 moves inward under the elastic force of the return spring 39. Since the connecting rod 36 deflects inward, the latch notch on the connecting rod 36 also deflects accordingly, and the connecting rod 36 will resist the latch 38.

[0044] When the goods need to be removed from the support member 14, the latch 38 can be manually pulled outward, the return spring 39 is deformed again, and then the fixed frame 32 is lifted upward, and the elastic cloth 33 also moves upward and separates from the goods, thereby driving the movable member 35 to move inward, causing the connecting rod 36 to deflect outward and reset, and the second torsion spring 37 returns to the torsion state, and the latch 38 is released. Under the elastic force of the return spring 39, the latch 38 will be inserted into the connecting rod 36, so that the connecting rod 36 is fixed. In summary, the connecting rod 36 can be automatically unlocked by the extrusion cooperation between the latch 38 and the guide member 3, and then the second torsion spring 37 is used to make the connecting rod 36 deflect inward, so that the elastic cloth 33 automatically covers the goods, thereby protecting the goods from interference or damage from the external environment, thereby improving the safety of cargo storage.

[0045] like Fig.13 and Fig.14 As shown, it also includes an alignment mechanism for accurately placing the tray 16. The alignment mechanism is arranged at the bottom of the carrier frame 1. The alignment mechanism includes a servo motor 42. The servo motor 42 is installed at the bottom of the carrier frame 1. The output shafts symmetrically distributed on the left and right of the servo motor 42 are fixedly connected with screws 41 through couplings. The two screws 41 are threadedly connected with push frames 4. The two push frames 4 are slidably connected to the lowermost support member 14. Each support member 14 has a symmetrically distributed U-shaped opening. The two push frames 4 are snap-fitted with each support member 14 through the U-shaped opening.

[0046] First, place the empty pallet 16 on the support 14. At this time, the pallet 16 may not be completely inserted into the support 14. The servo motor 42 can be controlled to drive the screw 41 to rotate forward, thereby driving the push frame 4 to move inward. The inwardly moving push frame 4 will enter the U-shaped opening and contact the pallet 16. The push frame 4 will apply a force toward the center to the pallet 16. This force toward the center will gradually center the pallet 16 on the support 14 until it reaches a predetermined position. If the pallet 16 extends forward a part when it is initially placed, the staff can manually push it back to ensure that the pallet 16 can be accurately inserted into the support 14 to achieve a fully centered and aligned state. Finally, the servo motor 42 is controlled to drive the screw 41 to rotate in the opposite direction, thereby driving the push frame 4 to move outward and reset. In summary, through the coordinated work of the screw 41, the servo motor 42, and the push frame 4, as well as manual adjustment when necessary, the precise positioning and centering of the pallet 16 on the support 14 are achieved, thereby improving work efficiency.

[0047] It should be understood that this embodiment is only used to illustrate the present invention and is not used to limit the scope of the present invention. In addition, it should be understood that after reading the content taught by the present invention, those skilled in the art can make various changes or modifications to the present invention, and these equivalent forms also fall within the scope limited by the appended claims of the application.

Claims

1. A finished product storage device for spinning production, characterized in that: The invention comprises a support frame (1), the support frame (1) is fixedly connected with symmetrically distributed connecting members (11), the symmetrically distributed connecting members (11) are all installed with electric slide rails (12), the symmetrically distributed electric slide rails (12) are all slidably connected with sliding members (13), a placement frame is provided between the symmetrically distributed sliding members (13) and the inner side of the bottom wall of the support frame (1), the placement frame is composed of a plurality of supporting members (14), adjacent supporting members (14) are all connected by symmetrically distributed first telescopic members (15), and the bottommost supporting member (14) is fixedly connected to the inner side of the bottom wall of the support frame (1).

2. A finished product storage device for spinning production according to claim 1, characterized in that: It also includes a tray (16), wherein a plurality of trays (16) are respectively placed on each support member (14), and the trays (16) are snap-fitted with adjacent support members (14).

3. A finished product storage device for spinning production according to claim 2, characterized in that: The invention also comprises a tidying mechanism for arranging goods stacked on the pallet (16) in an orderly manner. The tidying mechanism is arranged on the carrier (1), and comprises a first guide member (2). The carrier (1) on the side close to the electric slide rail (12) is fixedly connected with symmetrically distributed first guide members (2). The symmetrically distributed first guide members (2) are all slidably connected with guide frames (21). Linear springs (201) are connected between the symmetrically distributed guide frames (21) and the carrier (1). The symmetrically distributed linear springs (201) are all wound around the adjacent first guide members (2). Except for the support member (14) fixedly connected to the carrier (1), the other support members (14) on the side close to the electric slide rail (12) are fixedly connected with symmetrically distributed first guide members (2). The invention relates to a plurality of symmetrically distributed extrusion pieces (22), and a symmetrically distributed guide frame (21) is slidably connected with an extrusion plate (23), and a compression spring (24) is connected between the extrusion plate (23) and the adjacent guide frame (21), and the symmetrically distributed compression spring (24) is wound around the adjacent extrusion plate (23). A symmetrically distributed rack (25) is fixedly connected to each guide frame (21), and a symmetrically distributed regular piece (28) is rotatably connected to each extrusion plate (23), and a gear (26) is fixedly connected to the top of the symmetrically distributed regular piece (28), and a first torsion spring (27) is connected between the regular piece (28) and the adjacent extrusion plate (23), and the symmetrically distributed first torsion spring (27) is wound around the adjacent regular piece (28).

4. A finished product storage device for spinning production according to claim 3, characterized in that: The rack (25) and the adjacent gear (26) are meshed with each other.

5. A finished product storage device for spinning production according to claim 4, characterized in that: The extrusion piece (22) is extrusion-fitted with the adjacent guide frame (21).

6. A finished product storage device for spinning production according to claim 5, characterized in that: The invention also comprises a stabilizing mechanism for covering the goods stacked on the pallet (16), the stabilizing mechanism being arranged on a plurality of supporting members (14), the stabilizing mechanism comprising a guiding member (3), a side of the carrier frame (1) away from the electric slide rail (12) being fixedly connected with the guiding members (3) being symmetrically distributed, except for the supporting member (14) fixedly connected to the carrier frame (1), the bottoms of the other supporting members (14) are all fixedly connected with symmetrically distributed second telescopic members (31), the telescopic parts of the second telescopic members (31) in the lateral direction are all fixedly connected with a fixing frame (32), and an elastic cloth (33) is fixedly connected inside each fixing frame (32) Each fixed frame (32) is fixedly connected with a symmetrically distributed second guide member (34), a movable member (35) is slidably connected inside the symmetrically distributed second guide member (34), a connecting rod (36) is rotatably connected to the symmetrically distributed movable member (35), the connecting rod (36) is rotatably connected to an adjacent support member (14), a second torsion spring (37) is connected between the connecting rod (36) and the adjacent support member (14), the symmetrically distributed second torsion spring (37) is wound around an adjacent connecting rod (36), and a locking assembly is provided on a side of the support member (14) close to the connecting rod (36).

7. A finished product storage device for spinning production according to claim 6, characterized in that: The latch assembly comprises latches (38), and the symmetrically distributed latches (38) are all slidably connected to one side of the support member (14) close to the connecting rod (36), and a return spring (39) is connected between the latches (38) and the adjacent support member (14).

8. A finished product storage device for spinning production according to claim 7, characterized in that: The latch pin (38) is engaged with the adjacent connecting rod (36).

9. A finished product storage device for spinning production according to claim 8, characterized in that: The guide (3) and the adjacent latch (38) are press-fitted.

10. A finished product storage device for spinning production according to claim 9, characterized in that: The invention also comprises an alignment mechanism for accurately placing the tray (16), the alignment mechanism being arranged at the bottom of the carrier (1), the alignment mechanism comprising a servo motor (42), the servo motor (42) being mounted at the bottom of the carrier (1), the symmetrically distributed output shafts on the servo motor (42) being fixedly connected to screw rods (41) via couplings, the symmetrically distributed screw rods (41) being threadedly connected to push racks (4), the symmetrically distributed push racks (4) being slidably connected to the support members (14) on one side close to the screw rods (41), each support member (14) being provided with symmetrically distributed U-shaped openings, the symmetrically distributed push racks (4) being snap-fitted with each support member (14) via the U-shaped openings.