Storage device for fabric production
By introducing a dust-proof curtain and baffle linkage mechanism into the fabric storage device, the automatic opening and closing of the dust-proof curtain and the automatic extension and retraction of the baffle are realized, solving the problem that existing devices cannot balance dust prevention and convenience, and improving operational efficiency and safety.
Patent Information
- Application Number
- CN202511682477.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-17
- Publication Date
- 2025-12-19
AI Technical Summary
Existing fabric storage devices struggle to balance dust protection and convenience, and their cumbersome operation hinders retrieval efficiency.
The system employs a linkage mechanism between the dust cover curtain and the baffle. The dust cover curtain opens and closes automatically via a pull rope and a winding shaft, while the baffle extends and retracts automatically as the storage layer moves. Combined with a limiting mechanism, this ensures the stability and safety of the storage layer.
The automatic opening and closing of the dust curtain has been achieved, which improves the convenience of operation and the efficiency of storage and retrieval, ensures the safety and neatness of the fabric roll, and simplifies the operation process.
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Figure CN121158331A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of textile production equipment, in particular to a fabric production storage device. BACKGROUND
[0002] At present, in the production and processing process of fabric, the temporary storage and classification of fabric after weaving, dyeing and finishing, setting and testing is an indispensable link. In order to facilitate management and prevent fabric from falling dust or producing wrinkles, a special storage device is usually used to store different specifications and batches of fabric.
[0003] The existing fabric storage device adopts a cabinet type structure or a multi-layer shelf type structure, a plurality of layers of plates or drawers are arranged in the cabinet body for placing the fabric roll. Although such structure improves the neatness of storage to a certain extent, it still has the problems of poor dustproof effect and inconvenient taking and placing operation in the long-term use process. Some devices are provided with fixed door plates or dust curtains at the front end of the cabinet body to reduce the dust entering the cabinet body, but since the door plates or dust curtains need to be opened and closed manually, the operation is cumbersome during use, which affects the taking and placing efficiency. In addition, the dustproof structure of the existing device only plays a static protection role, and it is difficult to automatically complete the switching of the protection state while the drawer is opened and closed, so that the device cannot balance between dustproof and convenience, and therefore needs to be improved. SUMMARY
[0004] The purpose of the present application is to provide a fabric production storage device to solve the problems raised in the background.
[0005] To achieve the above purpose, the present application provides the following technical scheme: A fabric production storage device, comprising a plurality of vertically arranged rod bodies, a plurality of transverse connecting pieces are arranged between the rod bodies in the vertical direction, the rod bodies and the transverse connecting pieces jointly constitute a support frame, a plurality of plate bodies are arranged on the left side, the right side and the back side of the support frame, a sliding rail is arranged on the transverse connecting piece at both sides, a pull-out storage layer is arranged between the sliding rails, a dust curtain is arranged on the front side of the support frame corresponding to each storage layer, each storage layer is connected with the corresponding dust curtain through a first linkage mechanism, when the storage layer is pulled out, the dust curtain is rolled up, when the storage layer is pushed back into the support frame, the dust curtain falls to prevent dust, the inside of the plate body corresponding to the left side or the right side of each storage layer is provided with a limiting mechanism for limiting the pulling length of the storage layer, the front side of each storage layer is provided with an expansion cavity, a baffle for limiting the front side of the cloth roll is arranged in the expansion cavity, the baffle and the corresponding storage layer are connected through a second linkage mechanism, when the storage layer is pulled out, the baffle is retracted into the expansion cavity, when the storage layer is pushed back into the support frame, the baffle is extended from the expansion cavity to limit the front side of the cloth roll.
[0006] Furthermore, the first linkage mechanism includes a fixed block on the front rod, a rotatable rotating rod between the fixed block and the transverse connecting member, a gear on the rotating rod, arc-shaped plates on both sides of the storage layer, a rack on the arc-shaped plate that meshes with the gear, a winding shaft on the rotating rod, and pull ropes between the two sides of the free end of the dust curtain and the corresponding winding shaft.
[0007] Furthermore, mounting plates are provided opposite each other on the pole, and guide wheels are provided between the mounting plates to guide the direction of the pull rope.
[0008] Furthermore, the limiting mechanism includes a square block on the plate, a circular cavity with an opening at the top inside the square block, a telescopic rod extending through the bottom of the square block inside the circular cavity, a compression ring on the telescopic rod inside the circular cavity, a plug at the opening of the circular cavity, the top of the telescopic rod extending through the plug, and a first spring sleeved on the telescopic rod between the compression ring and the plug.
[0009] Furthermore, the bottom of the telescopic rod is provided with an inclined block, and a round rod for pressing the inclined block is provided on the arc plate located on one side of the square block. An inverted L-shaped plate is provided on the side of the square block.
[0010] Furthermore, a square plate extends downward from the front side of the bottom surface of the storage layer. The second linkage mechanism includes a support block located opposite to the rear side of the square plate. A second spring is provided between the support block and the bottom of the baffle. A sliding rod is provided opposite to the rear side of the bottom surface of the storage layer. A baffle plate is provided at the bottom end of the sliding rod. A crossbar is provided between the sliding rods. A connecting plate extends downward from the bottom surface of the baffle. A connecting rod is provided between the connecting plate and the crossbar. A third spring is sleeved on the sliding rod between the crossbar and the baffle plate.
[0011] Furthermore, the connecting rod has a low plane and a high plane, and an extrusion surface is provided between the low plane and the high plane.
[0012] Furthermore, a fixing rod is provided above the low plane, and the fixing rod is provided with a protrusion for pressing the connecting rod to move downward.
[0013] Furthermore, the front side of the transverse connector is provided with a slot, which allows the storage layer to pass through the transverse connector after the connecting rod moves down.
[0014] Furthermore, the front side of the square panel is provided with a handle for pushing and pulling the storage layer.
[0015] Compared with the prior art, the beneficial effects of the present invention are: 1. In this invention, the dust curtain in the device automatically opens and closes through the cooperation of the pull rope and the winding shaft. It automatically rises when the storage layer is pulled out and automatically closes when pushed back, without the need for manual intervention. It is convenient to use and significantly improves the storage and retrieval efficiency and operational comfort of the fabric roll.
[0016] 2. In this invention, the limiting mechanism adopts a mechanical locking structure of inclined block, round rod and inverted L-shaped baffle. When the storage layer is pulled out into place, it automatically locks to prevent the storage layer from sliding back and forth on the slide rail, ensuring safety and stability during the cloth roll loading and unloading process. The operator only needs to apply pushing force to release the lock. The structure is reliable and the operation is simple.
[0017] 3. The present invention achieves automatic extension and retraction of the baffle as the storage layer moves through the second linkage mechanism. When the fabric roll is picked up or put down, the baffle automatically retracts and automatically extends to form a front limit when pushed back, preventing the fabric roll from sliding or rolling out, thus improving the safety and neatness of the fabric roll storage. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of a fabric production storage device according to the present invention.
[0019] Figure 2 This is a schematic diagram of the structure of a fabric production storage device without the installed plate in this invention.
[0020] Figure 3 This is a schematic diagram of the transverse connecting member and sliding track in this invention.
[0021] Figure 4 This is a schematic diagram of the structure of the dust curtain in this invention.
[0022] Figure 5 for Figure 2 A magnified structural diagram of point A in the middle.
[0023] Figure 6 This is a schematic diagram of the overall structure of the inner side limiting mechanism of the plate body in this invention.
[0024] Figure 7 This is a schematic diagram of the internal components after the square block in this invention has been cut open.
[0025] Figure 8 This is a schematic diagram of the structure in this invention where the baffle extends from the telescopic cavity.
[0026] Figure 9 This is a schematic diagram of the structure from the bottom view of the storage layer in this invention.
[0027] Figure 10 This is a structural schematic diagram of the horizontal connector and the bottom of the storage layer in this invention.
[0028] Figure 11 This is a schematic diagram of the structure of the fixing rod and protrusion in this invention.
[0029] The labels in the diagram represent the following: 100, rod; 101, transverse connector; 102, plate; 104, sliding track; 105, storage layer; 106, dust curtain; 107, baffle; 108, handle; 200, fixing block; 201, rotating rod; 202, gear; 203, curved plate; 204, rack; 205, winding shaft; 206, pull rope; 300, mounting plate; 301, guide wheel; 400, square block; 401, telescopic rod; 402, compression ring; 403, cap; 4 04. First spring; 405. Inclined block; 406. First inclined plane; 407. Second inclined plane; 408. Round rod; 409. Inverted L-shaped plate; 500. Square plate; 501. Support block; 502. Second spring; 503. Sliding rod; 504. Baffle plate; 505. Crossbar; 506. Connecting plate; 507. Connecting rod; 508. Third spring; 509. Low plane; 510. High plane; 511. Extrusion surface; 600. Fixing rod; 601. Mounting block; 602. Protrusion; 603. Groove. Detailed Implementation
[0030] To further understand the content of this invention, a detailed description of the invention will be provided in conjunction with the accompanying drawings and embodiments. It should be understood that the embodiments are merely illustrative and not limiting of the invention.
[0031] The following is in conjunction with the appendix Figures 1-11 This embodiment will be described in further detail.
[0032] Please see Figures 1-11This embodiment of a fabric production storage device includes several vertically arranged rods 100, with several horizontal connecting members 101 fixedly arranged between the rods 100 along the vertical direction. The rods 100 and the horizontal connecting members 101 together form a stable support frame. Several plates 102 are provided on the left, right, and rear sides of the support frame, and a plate 102 is also provided on the top of the support frame to form a basic closed structure, thereby preventing external dust from entering the frame. Sliding rails 104 are fixedly arranged on both sides of the horizontal connecting members 101, and a pull-out storage layer 105 is installed between each sliding rail 104. Fabric rolls are placed on the storage layers 105, with each storage layer 105 holding one layer of fabric rolls. Each storage layer 105 can slide back and forth along the sliding rails 104, facilitating the operator to put in or take out fabric rolls. A dust-proof curtain 106 is provided on the front side of the support frame corresponding to each storage layer 105. Each storage layer 105 is connected to its corresponding dust cover 106 via a first linkage mechanism. When the storage layer 105 is pulled outward, the dust cover 106 automatically rises; when the storage layer 105 is pushed back into the support frame, the dust cover 106 automatically falls to form a dustproof cover. Each storage layer 105 has a limiting mechanism on the inner side of its left or right side plate 102 to limit the pulling length of the storage layer 105, preventing it from sliding back and forth after being pulled out, thus avoiding structural loosening or falling, and ensuring the stability of the dust cover 106. Each storage layer 105 has a telescopic cavity on its front side, and a baffle 107 for limiting the front side of the fabric roll is provided in the telescopic cavity. The baffle 107 is connected to the corresponding storage layer 105 through a second linkage mechanism. When the storage layer 105 is pulled outward, the baffle 107 gradually retracts into the telescopic cavity, making it convenient for operators to store and retrieve the fabric roll. When the storage layer 105 is pushed back to the support frame, the baffle 107 extends out of the telescopic cavity to limit and fix the front side of the fabric roll, preventing the fabric roll from rolling or sliding towards the front side of the storage layer 105.
[0033] Please see Figures 1-11In this embodiment, the first linkage mechanism includes a fixing block 200 fixedly mounted on the front rod 100. A rotating rod 201 is rotatably mounted between the fixing block 200 and the transverse connecting member 101 via a bearing. A gear 202 is fixedly mounted on the rotating rod 201. Arc-shaped plates 203 are fixedly mounted on both sides of each storage layer 105. The arc-shaped plates 203 can limit the left and right sides of the fabric roll to prevent the fabric roll from rolling or sliding on the left and right sides of the storage layer 105. A rack 204 that meshes with the gear 202 is fixedly mounted on the arc-shaped plates 203. When the storage layer 105 is pulled outward along the sliding track 104, the arc-shaped plates 203 drive the rack 204 to push the gear 202 to rotate, thereby driving the rotating rod 201 to rotate synchronously. A winding shaft 205 is fixedly installed on the rotating rod 201. Pull ropes 206 are provided on both sides of the free end of the dust curtain 106 and the corresponding winding shafts 205. One end of the pull rope 206 is fixed on the winding shaft, and the other end is fixedly connected to the free end of the dust curtain 106. The rotation of the rotating rod 201 can drive the winding shaft to rotate, so that when the storage layer 105 is pulled out or pushed into the support frame, the pull rope 206 is released or tightened.
[0034] The dust curtain 106 is an existing structure, independently mounted on the front rod 100 of the support frame, and includes a mounting base, a roller, a curtain body, and an elastic rewind mechanism. Each storage layer 105 has a corresponding mounting base fixedly mounted on the front rod 100 of the support frame, and the mounting bases are rotatably connected to the roller via pins. The roller is a hollow cylindrical structure with an internal elastic rewind mechanism, preferably a torsion spring or elastic steel sheet structure, used to apply a rewinding torque to the roller when the pull rope 206 is released. A flexible dustproof curtain body is wound around the outer surface of the roller. The curtain body is made of dustproof cloth or PVC film material, with its upper end connected to the roller and its lower end being a free end connected to the pull rope 206. In the default state of this device, the dust curtain 106 is in a wound state, and the torsion spring inside the roller is in a pre-tensioned state, providing immediate rewinding power when the pull rope 206 is released.
[0035] In this embodiment, when the storage layer 105 is pulled outward, the winding shaft rotates, releasing the pull rope 206. At this time, the torsion spring inside the roller releases its stored energy, causing the curtain to automatically rise and roll up, exposing the opening of the storage layer 105. When the storage layer 105 is pushed back into the support frame, the winding shaft rotates in the opposite direction, causing the winding shaft to rewind the pull rope 206. Under the traction force of the pull rope 206, the curtain is pulled down and unfolded, achieving dustproof closure. This structure ensures that the opening and closing of the dust curtain 106 automatically corresponds to the movement direction of the pull-out layer, eliminating the need for manual opening or closing of the dust curtain 106. This makes operation convenient and improves the efficiency of storing and retrieving fabric rolls.
[0036] Please see Figure 2 and Figure 5In this embodiment, mounting plates 300 are provided opposite to the rod 100, and the mounting plates 300 are fixedly connected to the rod 100. Guide wheels 301 are provided between the mounting plates 300 to guide the direction of the pull rope 206. The guide wheels 301 are rollers or bearings, providing smooth guidance during the raising and lowering of the pull rope 206, ensuring the pull rope 206 remains taut and preventing tangling. By setting the guide wheels 301, the raising and lowering of the dust curtain 106 is made smoother, avoiding skewing and jamming, further improving the reliability of the linkage transmission.
[0037] Please see Figure 6 and Figure 7 In this embodiment, a limiting mechanism is fixedly installed inside the plate 102 on the left or right side of the support frame to control the pull-out position of the storage layer 105 and prevent it from unintentionally sliding on the sliding track 104. The limiting mechanism includes a square block 400, a circular cavity, a telescopic rod 401, a compression ring 402, a first spring 404, an inclined block 405, a round rod 408, and an inverted L-shaped plate 409.
[0038] Specifically, a square block 400 is fixedly installed on the inner side of the plate 102, and the square block 400 has a circular cavity with an open top. A through hole is opened at the bottom of the circular cavity, and a telescopic rod 401 extending through the bottom of the square block 400 is provided inside the circular cavity. A compression ring 402 is fixedly installed on the telescopic rod 401 located inside the circular cavity. The compression ring 402 is slidably connected to the inner wall of the circular cavity. A plug 403 is provided at the opening of the circular cavity, and the plug 403 is threadedly connected to the opening end of the circular cavity to facilitate the installation of internal components. The top end of the telescopic rod 401 extends through the plug 403, and a first spring 404 is sleeved on the telescopic rod 401 between the compression ring 402 and the plug 403. A wedge block 405 is fixedly installed at the bottom of the telescopic rod 401. The wedge block 405 has two opposing inclined surfaces, which serve as contact surfaces for limiting and resetting, respectively. A round rod 408 for pressing the inclined block 405 is fixed on the arc plate 203 located on one side of the square block 400, and an inverted L-shaped plate 409 is fixed on the side of the square block 400.
[0039] In this embodiment, when the storage layer 105 is pulled outward along the sliding track 104, the round rod 408 moves forward. As the storage layer 105 is gradually pulled out, the round rod 408 gradually contacts the first inclined surface 406 of the inclined block 405, and when it continues to be pulled out, it squeezes the inclined surface, causing the telescopic rod 401 to move upward, and the first spring 404 is compressed. When the storage layer 105 is pulled out until the dust curtain 106 rises to its position, the round rod 408 will pass over the first inclined surface 406 of the inclined block 405 and just fit into the clamping space between the inverted L-shaped plate 409 and the second inclined surface 407. At this point, the round rod 408 is limited to this position, forming a stable mechanical locking state, thereby preventing the storage layer 105 from sliding on the sliding track 104 and avoiding accidental movement of the storage layer 105 during the fabric roll loading and unloading operation. After the fabric roll loading and unloading is completed, the operator can apply an inward pushing force to the storage layer 105, causing the round rod 408 to move in the opposite direction and press against the second inclined surface 407. At this time, the telescopic rod 401 moves upward again and compresses the first spring 404. When the round rod 408 has completely passed the second inclined surface 407, the first spring 404 is released, and the telescopic rod 401 drives the inclined block 405 to return to its original position, releasing the limiting state. Then, the storage layer 105 can be smoothly pushed back into the support frame, completing one limiting-unlocking-resetting cycle. Through the above structural design, the limiting mechanism can automatically lock itself after the storage layer 105 is pulled out, preventing the storage layer 105 from sliding accidentally and improving the safety of taking out and putting in the fabric roll and the stability of the dust curtain 106. At the same time, the release action of the mechanism only requires applying an inward pushing force to the storage layer 105, which is simple to operate and does not affect the normal winding and unwinding rhythm.
[0040] Please see Figures 8-11 In this embodiment, the second linkage mechanism is used to automatically control the extension and retraction position of the baffle 107 within the telescopic cavity during the extraction and retraction of the storage layer 105, thereby providing front-side limiting protection during the fabric roll storage stage. This mechanism is integrally installed in the bottom structure of each storage layer 105 and includes components such as a square plate 500, a support block 501, a sliding rod 503, a baffle plate 504, a crossbar 505, a connecting plate 506, a connecting rod 507, a second spring 502, a third spring 508, a fixing rod 600, and a protrusion 602.
[0041] Specifically, a one-piece square plate 500 extends downward from the front side of the bottom surface of the storage layer 105 for mounting the linkage components. Support blocks 501 are symmetrically fixedly mounted on the rear side of the square plate 500. A second spring 502 is fixedly connected between the bottom of the support blocks 501 and the bottom of the baffle 107. Two sliding rods 503 are fixedly mounted opposite each other on the rear side of the bottom surface of the storage layer 105. A baffle plate 504 is fixedly mounted at the bottom end of each sliding rod 503. A crossbar 505 connects the sliding rods 503, and the crossbar 505 is slidably connected to the sliding rods 503. A connecting plate 506 extends downward from the bottom surface of the baffle 107. A connecting rod 507 is fixedly mounted between the connecting plate 506 and the crossbar 505. A third spring 508 is sleeved on each sliding rod 503. This spring is located between the crossbar 505 and the baffle plate 504. The second spring 502 and the third spring provide a restoring force after the baffle 107 retracts into the telescopic cavity. Fixed posts are provided on the support block 501 and the bottom of the baffle 107 corresponding to the second spring 502. The upper and lower ends of the second spring 502 are respectively sleeved on the fixed posts, and there is a certain gap between the fixed posts on the support block 501 and the fixed posts on the baffle 107, which does not affect the extension and retraction of the second spring 502. The connecting rod 507 is provided with a low plane 509 and a high plane 510, and a pressing surface 511 is provided between the low plane 509 and the high plane 510. A fixed rod 600 is provided above the low plane 509, and mounting blocks 601 are provided opposite to each other on the transverse connecting member 101. The two ends of the fixed rod 600 are respectively fixed to the mounting blocks 601, and a protrusion 602 for pressing the connecting rod 507 to move downward is fixed on the fixed rod 600.
[0042] In this embodiment, when the storage layer 105 is located inside the support frame, the baffle 107 extends from the telescopic cavity under the action of the second spring 502 and the third spring 508. When the storage layer 105 is pulled outward, the protrusion 602 gradually presses against the pressing surface 511 of the connecting rod 507 from the lower plane 509. When the protrusion 602 passes the pressing surface 511 and reaches the area of the higher plane 510, the connecting rod 507 moves down to the lowest point. The downward movement of the connecting rod 507 drives the connecting plate 506 to move down, thereby causing the baffle 107 to retract completely into the telescopic cavity, making room for the operation of taking and putting away the fabric roll, which is convenient for the operator to store and put away the fabric roll; when the fabric roll is taken and put away... When the storage layer 105 begins to be pushed back into the support frame, the protrusion 602 gradually returns from the high plane 510 to the low plane 509 area via the extrusion surface 511. Under the combined action of the second spring 502 and the third spring 508, the connecting rod 507 moves upward, driving the connecting plate 506 to push the baffle 107 upward from the telescopic cavity, so that the baffle 107 is once again located on the front side of the fabric roll, thereby limiting and fixing the front side of the fabric roll and preventing the fabric roll from rolling or sliding towards the front side of the storage layer 105. Among them, the front side of the transverse connector 101 is provided with a slot 603. When the connecting rod 507 moves downward and causes the connecting plate 506 to move downward, the slot 603 provides room for movement for the connecting rod 507 and the connecting plate 506, avoiding structural interference, and allowing the storage layer 105 to smoothly pass through the front side of the transverse connector 101 to complete the entire stroke. The above structure enables the baffle 107 to automatically retract during the extraction phase to avoid operational interference; and to automatically extend during the push-back phase to provide stable positioning for the fabric roll, thereby improving the safety and practicality of the device.
[0043] Please see Figure 1 In this embodiment, to facilitate the operator in pushing and pulling the storage layer 105, a handle 108 is fixedly provided on the square plate 500 on the front side of each storage layer 105. Through the handle 108, the operator can easily pull the storage layer 105 outward or push it back into the support frame.
[0044] In summary, the above description is only a preferred embodiment of the present invention. All equivalent changes and modifications made within the scope of the claims of the present invention should be covered by the present invention.
Claims
1. A storage device for fabric production, comprising a plurality of vertically arranged rods (100), a plurality of transverse connecting members (101) arranged vertically between the rods (100), the rods (100) and the transverse connecting members (101) together forming a support frame, a plurality of plates (102) arranged on the left, right and rear sides of the support frame, and sliding rails (104) located on both sides of the transverse connecting members (101), with a pull-out storage layer (105) arranged between the sliding rails (104), characterized in that: Each storage layer (105) is provided with a dust curtain (106) on the front side of the support frame. Each storage layer (105) is connected to the corresponding dust curtain (106) through a first linkage mechanism. When the storage layer (105) is pulled outward, the dust curtain (106) rolls up. When the storage layer (105) is pushed back into the support frame, the dust curtain (106) falls down to prevent dust. Each storage layer (105) has a limiting mechanism on the inner side of the left or right plate (102) on the corresponding side for limiting the storage layer. The length of the storage layer (105) is limited. Each storage layer (105) has a telescopic cavity on its front side. A baffle (107) for limiting the front side of the fabric roll is provided in the telescopic cavity. The baffle (107) and the corresponding storage layer (105) are connected by a second linkage mechanism. When the storage layer (105) is pulled out, the baffle (107) retracts into the telescopic cavity one by one. When the storage layer (105) is pushed back into the support frame, the baffle (107) extends out of the telescopic cavity to limit the front side of the fabric roll.
2. The fabric production storage device according to claim 1, characterized in that: The first linkage mechanism includes a fixed block (200) on the front rod (100), a rotatable rotating rod (201) between the fixed block (200) and the transverse connecting member (101), a gear (202) on the rotating rod (201), arc plates (203) on both sides of the storage layer (105), a rack (204) on the arc plate (203) that meshes with the gear (202), a winding shaft (205) on the rotating rod (201), and pull ropes (206) on both sides of the free end of the dust curtain (106) and the corresponding winding shafts (205).
3. The fabric production storage device according to claim 2, characterized in that: Mounting plates (300) are provided opposite each other on the rod (100), and guide wheels (301) are provided between the mounting plates (300) to guide the direction of the pull rope (206).
4. The fabric production storage device according to claim 1, characterized in that: The limiting mechanism includes a square block (400) on the plate (102). The square block (400) has a circular cavity with an opening at the top. A telescopic rod (401) extending through the bottom of the square block (400) is provided in the circular cavity. A compression ring (402) is provided on the telescopic rod (401) located in the circular cavity. A plug (403) is provided at the opening of the circular cavity. The top end of the telescopic rod (401) extends through the plug (403). A first spring (404) is sleeved on the telescopic rod (401) between the compression ring (402) and the plug (403).
5. A fabric production storage device according to claim 4, characterized in that: The bottom of the telescopic rod (401) is provided with a wedge (405), and a round rod (408) for pressing the wedge (405) is provided on the arc plate (203) on one side of the square block (400). The side of the square block (400) is provided with an inverted L-shaped plate (409).
6. A fabric production storage device according to claim 1, characterized in that: A square plate (500) extends downward from the front side of the bottom surface of the storage layer (105). The second linkage mechanism includes a support block (501) located opposite to the rear side of the square plate (500). A second spring (502) is provided between the support block (501) and the bottom of the baffle (107). A sliding rod (503) is provided opposite to the rear side of the bottom surface of the storage layer (105). A baffle (504) is provided at the bottom end of the sliding rod (503). A crossbar (505) is provided between the sliding rods (503). A connecting plate (506) extends downward from the bottom surface of the baffle (107). A connecting rod (507) is provided between the connecting plate (506) and the crossbar (505). A third spring (508) is sleeved on the sliding rod (503) between the crossbar (505) and the baffle (504).
7. A fabric production storage device according to claim 6, characterized in that: The connecting rod (507) has a low plane (509) and a high plane (510), and an extrusion surface (511) is provided between the low plane (509) and the high plane (510).
8. A fabric production storage device according to claim 7, characterized in that: A fixing rod (600) is provided above the low plane (509), and a protrusion (602) is provided on the fixing rod (600) for pressing the connecting rod (507) to move downward.
9. A fabric production storage device according to claim 6, characterized in that: The front side of the transverse connector (101) is provided with a slot (603), which allows the storage layer (105) to pass through the transverse connector (101) after the connecting rod (507) moves down.
10. A fabric production storage device according to claim 6, characterized in that: The front side of the square plate (500) is provided with a handle (108) for pushing and pulling the storage layer (105).