A fabric hanging device for a textile mill

By combining a fixed frame, a support mechanism, and a drive mechanism, the problems of fabric rolling and color mixing in automated warehouses are solved, enabling automated hanging and ventilation of fabrics, and improving the convenience of fabric retrieval and storage efficiency.

CN120423195BActive Publication Date: 2026-02-27YANGZHOU HONGXIA GENERAL MASCH CO LTD
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Patent Information

Application Number
CN202510653730.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-21
Publication Date
2026-02-27
Estimated Expiration
2045-05-21

AI Technical Summary

Technical Problem

In existing automated storage and retrieval systems (AS/RS), fabrics are prone to rolling off high-level shelves and are difficult to retrieve. Furthermore, the accumulation of fabrics can cause dye migration and color mixing, affecting fabric quality.

Method used

The system employs a fixed frame, support mechanism, and drive mechanism. By anchoring the fixed frame, the fabric is suspended using a ring rope and connecting pipe. Combined with worm gear transmission and servo motor drive, the system achieves automated fabric suspension and retrieval, and improves ventilation through air supply equipment.

Benefits of technology

It reduces phase pressure between fabrics, prevents color mixing, improves the convenience of fabric retrieval and the degree of warehouse automation, enhances ventilation, and avoids dye migration.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of fabric storage, in particular to a fabric suspension device for a textile workshop, which comprises two vertically-arranged fixing frames, a positioning ring is fixedly connected to any corner of each fixing frame, a fixing mechanism is arranged between the two fixing frames, the fixing mechanism comprises two annular rope sleeves, a plurality of connecting screws are fixedly connected to the outer wall of one annular rope sleeve, and a plurality of connecting pipes are fixedly connected to the outer wall of the other annular rope sleeve. In the application, the two fixing frames are respectively fixed to the ceiling and the ground by anchoring, then the fixing mechanism is supported between the two fixing frames by a supporting mechanism, then the fixing mechanism is used for suspending the rolled fabrics, the pressure between the rolled fabrics is reduced, the fabric color mixing condition is reduced, the height of each rolled fabric can be adjusted through the fixing mechanism, and therefore the fabric can be conveniently taken by the user.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of fabric storage, and particularly relates to a fabric hanging device for a textile workshop. BACKGROUND

[0002] Fabric is a material used to make clothes, and the fabric is usually in a strip shape when it is delivered from a factory. In order to facilitate the transportation and storage of the fabric, the fabric is usually rolled into a cylindrical shape and is covered with a plastic bag to maintain the shape of the fabric. When the fabric is stored, a shelf is usually used to support the fabric. Nowadays, an automatic stereoscopic warehouse usually uses a multi-layer shelf to store the fabric rolled into a cylindrical shape. However, when the fabric is stored on the single layer of the shelf, the fabric is usually stacked. However, this method can easily cause the fabric at the bottom to bear a large pressure. When some fabric is dyed, the fabric can be dyed with multiple colors. If the fabric is stacked for too long, and the dye on some chemical fibers is not firmly attached to the surface of the fibers, the dye molecules can migrate, causing the fabric at the bottom to be mixed with multiple colors, resulting in color mixing or a blurred color edge, which affects the clarity of the pattern on the fabric. Furthermore, if the air humidity is high, the fabric is more likely to cause the migration of dye molecules when it is stacked, which is inconvenient. The automatic stereoscopic warehouse usually uses a multi-layer shelf to store goods, and in order to improve the space utilization, the height of the shelf is usually high. However, since the fabric is usually rolled into a cylindrical shape for storage, when the fabric on the high-layer shelf is taken out, the fabric that is not taken out can easily roll down due to its shape, which is inconvenient. Furthermore, it is inconvenient to take out the fabric rolled into a cylindrical shape from the high-layer shelf, which is inconvenient. SUMMARY

[0003] The present application aims to provide a fabric hanging device for a textile workshop to solve the problems in the background.

[0004] To achieve the above-mentioned purpose, the present application provides the following technical scheme:

[0005] A fabric hanging device for a textile workshop, comprising:

[0006] Two fixed frames, a fixing mechanism for fixing the fabric, a supporting mechanism for supporting the fixing mechanism so that it is suspended, and a driving mechanism, any of the two vertically arranged fixed frames is fixedly connected with a positioning ring at the four corners, the fixing mechanism is located between the two fixed frames, the fixing mechanism comprises two annular rope sleeves, wherein the outer side wall of one annular rope sleeve is fixedly connected with a plurality of connecting screws, the outer side wall of the other annular rope sleeve is fixedly connected with a plurality of connecting pipes, any connecting pipe is rotatably connected with a connecting cylinder at one end, the plurality of connecting cylinders correspond to the plurality of connecting screws one by one, any connecting cylinder is provided with a threaded hole at one end, and any threaded hole is screwed with the corresponding connecting screw, the supporting mechanism is located between the two fixed frames, and the driving mechanism is movably connected with the supporting mechanism.

[0007] Further in, the support mechanism comprises:

[0008] Two U-shaped frames slidably connected to the fixed frame, four moving plates and four main screws, one side of each of the two U-shaped frames is fixedly connected with a sliding block, one side of each of the two fixed frames is provided with a sliding groove, and the two sliding blocks are respectively and slidably connected in the two sliding grooves, the two arms of each of the two U-shaped frames are provided with a guide groove, one inner wall of one of the U-shaped frames is provided with an embedding groove, one side of each of the four moving plates is fixedly connected with a clamping block, the four clamping blocks are respectively and slidably connected in the four guide grooves, one side of each of the moving plates is provided with two supporting arms, one end of each of the supporting arms is rotatably connected with a connecting shaft, one side of each of the connecting shafts is fixedly connected with the adjacent moving plate, an outer side wall of each of the connecting shafts is provided with a torsion spring, one end of each of the torsion springs is fixedly connected with the adjacent connecting shaft, and the other end of each of the torsion springs is fixedly connected with one end of the adjacent supporting arm, the four main screws are respectively located at the two arms of each of the U-shaped frames, one side of each of the U-shaped frames is fixedly connected with a supporting plate, one end of each of the main screws is rotatably connected with the adjacent supporting plate, and one side of each of the clamping blocks on the moving plate is fixedly connected with an internal thread ring, and each of the internal thread rings is threadedly connected with the adjacent main screw.

[0009] Further in, one end of each of the supporting arms is rotatably connected with a clamping wheel, an annular clamping groove is formed in an outer side wall of each of the ring-shaped rope sleeves, and each of the clamping wheels is located in the adjacent clamping groove.

[0010] Further in, two connecting plates are fixedly connected between the two U-shaped frames, and the two connecting plates are respectively located at the two arms of each of the U-shaped frames, one side of each of the connecting plates is fixedly connected with a plurality of connecting rings, one side of each of the connecting plates is provided with a rotating rod, an outer side wall of each of the rotating rods is rotatably sleeved with the adjacent plurality of connecting rings, and each of the rotating rods is fixedly connected with the adjacent two main screws.

[0011] Further in, one side of each of the connecting plates is fixedly connected with a U-shaped plate, a worm is rotatably connected between the two arms of each of the U-shaped plates, an outer side wall of each of the rotating rods is fixedly sleeved with a worm wheel, and each of the worms is meshed with the adjacent worm wheel.

[0012] Further in, the driving mechanism comprises:

[0013] An embedding plate and a winding drum for winding the iron wire, the embedding plate is movably connected in the embedding groove, two ends of the winding drum are rotatably connected with mounting plates, one end of each of the mounting plates is fixedly connected with the top surface of the embedding plate, an inner side wall of the winding drum is fixedly connected with a hanging ring, one end of each of the connecting pipes is fixedly connected with the iron wire, one end of each of the iron wires penetrates through the other end of the adjacent connecting pipe and is fixedly connected with a hook, one side of one of the mounting plates is fixedly connected with a motor box, a stepping motor is arranged in the motor box, and a motor shaft of the stepping motor is fixedly connected with one end of the adjacent winding drum.

[0014] Further in: Any connecting cylinder outer wall is provided with a plurality of slots, any connecting cylinder inside is fixedly sleeved with an air bag, any air bag is fixedly connected with a catheter, and any catheter one end is sequentially penetrated through the inside of the adjacent connecting cylinder and the adjacent connecting pipe.

[0015] Further in: The top surface of the embedded plate is fixedly connected with a vertical plate, and the top end of the vertical plate is rotatably connected with two L-shaped rotating plates; any rotating plate short arm one side is rotatably connected with a plurality of guide rollers; any guide roller outer wall is provided with a plurality of annular grooves; any rotating plate short arm the other side is fixedly connected with a drive box; any drive box inside is provided with a servo motor; and the motor shaft of any servo motor is fixedly connected with one end of the adjacent guide roller.

[0016] Further in: Any fixed frame the other side four sides are fixedly connected with a support plate.

[0017] Further in: Any fixed frame one side is provided with a plurality of air holes.

[0018] Compared with the prior art, the beneficial effects of the present application are:

[0019] 1. By anchoring two fixed frames to the ceiling and the ground respectively, and then supporting the fixed mechanism between the two fixed frames by the support mechanism, and then passing the connecting pipe on the fixed mechanism through the inside of the rolled fabric, the rolled fabric is hung on the connecting pipe, thereby reducing the pressure between the rolled fabrics, reducing the fabric color mixing situation, and adjusting the height position of each connecting pipe by rotating the two annular rope sleeves on the fixed mechanism, thereby facilitating the use personnel to access the fabric.

[0020] 2. By passing the anchor rod through the connecting ring on the fixed frame and then fixing it to the ceiling or the ground, and then clamping the sliding block on the U-shaped frame into the sliding groove, and then rotating the worm to drive the rotating rod to rotate through the worm gear, so that the rotating rod drives the two adjacent moving plates of the rotating plate to move towards or away from each other, and the annular rope sleeve is supported by the adjacent card wheel to form a rectangle, when the two adjacent moving plates of any rotating plate move towards each other, the two arms on the moving plate are driven by the adjacent torsion spring to rotate towards each other, thereby reducing the distance between the two sides of the annular rope sleeve, when the two adjacent moving plates of any rotating plate move away from each other, the annular rope sleeve is compressed to drive the two arms on the moving plate to rotate away from each other, thereby increasing the distance between the two sides of the annular rope sleeve, and a plurality of support mechanisms and fixed mechanisms can be clamped between the two U-shaped frames, when it is needed to hang the rolled fabric on the connecting pipe, the distance between the two sides of the annular rope sleeve can be adjusted to increase or decrease the space occupied by the annular rope sleeve, and the height of the suspended fabric on the connecting pipe can be adjusted by pulling the two annular rope sleeves to rotate, thereby facilitating personnel to access;

[0021] 3, by the hook on the iron wire hook in the ring, start the stepper motor drive winding drum rotating winding iron wire, can make iron wire drive connecting tube from the inside of the through the fabric roll, need to make connecting tube through the inside of the roll fabric, can be aligned with the connecting tube inside the center of the roll fabric, and iron wire through the connecting pipe using two turn plate on the guide roller clamping, and make iron wire in the same height of the ring groove inside, make ring groove limit to iron wire, then start servo motor to pull iron wire through the guide tube, using ring groove to shape the iron wire to make it straight, make iron wire drive connecting tube through the inside of the roll fabric, and can use air pump repeatedly to charge and discharge air bag, make connecting tube through the inside of the roll fabric, through the air bag constantly expanding open roll fabric inside space to facilitate the connecting tube through, then connecting tube and adjacent connecting screw rod screw fixed;

[0022] 4, by arranging fan or fan and other air supply equipment on the fixed frame, make air supply equipment located at the support plate, then start the air supply equipment can make the wind through the ventilation hole to the roll fabric hung between the two fixed frame, so as to improve the ventilation effect of fabric, reduce humidity, so as to reduce the fabric color mixing situation. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 is the overall structure of the present invention schematic diagram;

[0024] Figure 2 is the fixed frame structure of the present invention schematic diagram;

[0025] Figure 3 is the fixed mechanism, support mechanism and drive mechanism position relation of the present invention schematic diagram;

[0026] Figure 4 is the fixed mechanism structure of the present invention schematic diagram;

[0027] Figure 5 is the annular rope sleeve section structure of the present invention schematic diagram;

[0028] Figure 6 is the fixed mechanism and drive mechanism structure of the present invention schematic diagram;

[0029] Figure 7 is the support mechanism structure of the present invention schematic diagram;

[0030] Figure 8 is the present invention Figure 7 A local enlarged view of the present invention;

[0031] Figure 9 is the support arm and moving plate structure of the present invention schematic diagram.

[0032] In the figure: 100, fixed frame; 200, fixed mechanism; 210, annular rope sleeve; 211, clamping groove; 220, connecting screw; 230, connecting pipe; 231, iron wire; 240, connecting cylinder; 241, air bag; 300, supporting mechanism; 310, U-shaped frame; 311, embedded groove; 320, moving plate; 321, support arm; 322, connecting shaft; 330, clamping wheel; 340, main screw; 350, connecting plate; 351, rotating rod; 352, worm wheel; 360, U-shaped plate; 361, worm; 400, driving mechanism; 410, embedded plate; 420, winding drum; 421, motor box; 430, vertical plate; 431, rotating plate; 432, guide roller; 433, sleeve frame; 440, driving box. DETAILED DESCRIPTION

[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0034] Please refer to Figures 1-9 In the embodiments of the present application, a fabric suspension device for a textile workshop comprises:

[0035] two fixed frames 100, a fixed mechanism 200 for fixing the fabric, a supporting mechanism 300 for supporting the fixed mechanism 200 to be suspended, and a driving mechanism 400, the two fixed frames 100 are arranged vertically, and each of the two fixed frames 100 is fixedly connected with a positioning ring at each corner, the fixed mechanism 200 is located between the two fixed frames 100, the fixed mechanism 200 comprises two annular rope sleeves 210, one of the annular rope sleeves 210 is fixedly connected with a plurality of connecting screws 220 on the outer side wall, and the other annular rope sleeve 210 is fixedly connected with a plurality of connecting pipes 230 on the outer side wall, one end of each of the connecting pipes 230 is rotatably connected with a connecting cylinder 240, the plurality of connecting cylinders 240 correspond to the plurality of connecting screws 220 one by one, one end of each of the connecting cylinders 240 is provided with a threaded hole, and each threaded hole is screwed with the corresponding connecting screw 220, the supporting mechanism 300 is located between the two fixed frames 100, and the driving mechanism 400 is movably clamped with the supporting mechanism 300.

[0036] Specifically, anchor rods are driven into the ground and the ceiling, and the anchor rods pass through the positioning rings on the two fixing frames 100, so that the two fixing frames 100 are fixed to the ground and the ceiling by anchoring. The two annular rope sleeves 210 are supported by the support mechanism 300, so that the two annular rope sleeves 210 are suspended between the two fixing frames 100. The connecting tube 240 is inserted into the center of the rolled fabric, and then the connecting tube 240 is screwed with the corresponding connecting screw 220, so that the rolled fabric is hung on the connecting tube 230, thereby reducing the pressure between the rolled fabrics and reducing the color mixing of the fabrics during storage.

[0037] Embodiment One

[0038] As shown in Figures 1-3 and Figures 7-9 in this embodiment, the support mechanism 300 includes:

[0039] Two U-shaped frames 310, four moving plates 320 and four main screws 340 can slide on the fixed frame 100, one side of each of the two U-shaped frames 310 is fixedly connected with a sliding block, one side of each of the two fixed frames 100 is provided with a sliding groove, and the two sliding blocks are slidably connected in the two sliding grooves, respectively, guide grooves are formed in the two arms of each of the two U-shaped frames 310, an embedding groove 311 is formed in an inner wall of one of the U-shaped frames 310, a clamping block is fixedly connected to one side of each of the four moving plates 320, the four clamping blocks are slidably connected in the four guide grooves, respectively, two supporting arms 321 are arranged on one side of each of the moving plates 320, a connecting shaft 322 is rotatably connected to one end of each of the supporting arms 321, one end of each of the connecting shafts 322 is fixedly connected to one side of the adjacent moving plate 320, a torsional spring is arranged on the outer side wall of each of the connecting shafts 322, one end of each of the torsional springs is fixedly connected to the adjacent connecting shaft 322, and the other end is fixedly connected to one end of the adjacent supporting arm 321, the four main screws 340 are located at the two arms of each of the two U-shaped frames 310, respectively, a supporting plate is fixedly connected to each of the two arms of each of the U-shaped frames 310, one end of each of the main screws 340 is rotatably connected to the adjacent supporting plate, an internally threaded ring is fixedly connected to one side of the clamping block on each of the moving plates 320, each of the internally threaded rings is screwed with the adjacent main screw 340, a clamping wheel 330 is rotatably connected to the other end of each of the supporting arms 321, a clamping groove 211 is formed in the outer side wall of each of the ring-shaped rope sleeves 210, each of the clamping wheels 330 is located in the adjacent clamping groove 211, two connecting plates 350 are fixedly connected between the two U-shaped frames 310, and the two connecting plates 350 are located at the two arms of each of the U-shaped frames 310, respectively, a plurality of connecting rings are fixedly connected to one side of each of the connecting plates 350, a rotating rod 351 is arranged on one side of each of the connecting plates 350, the outer side wall of each of the rotating rods 351 is rotatably sleeved with the plurality of adjacent connecting rings, each of the rotating rods 351 is fixedly connected with the two adjacent main screws 340, a U-shaped plate 360 is fixedly connected to one side of each of the connecting plates 350, a worm 361 is rotatably connected between the two arms of each of the U-shaped plates 360, a worm wheel 352 is fixedly sleeved with the outer side wall of each of the rotating rods 351, and each of the worms 361 is meshed with the adjacent worm wheel 352.

[0040] In this embodiment, in the initial state, the two supporting arms 321 on each of the moving plates 320 will be V-shaped under the drive of the adjacent torsional spring, and the clamping wheels 330 at the other ends of the two supporting arms 321 on each of the moving plates 320 will rotate towards each other under the drive of the adjacent torsional spring when they are not bound by the adjacent ring-shaped rope sleeve 210, as shown in Figure 5As shown, any annular rope sleeve 210 is provided with metal wire inside to improve the strength and tensile force of the annular rope sleeve 210, two annular rope sleeves 210 are respectively close to two connecting plates 350, and two annular rope sleeves 210 are sleeved on the clamping wheel 330 on the adjacent branch arm 321, so that the clamping wheel 330 is clamped into the clamping groove 211 inside the adjacent annular rope sleeve 210 to keep the adjacent annular rope sleeve 210 tensioned and make the annular rope sleeve 210 rectangular. One end of the worm 361 is connected with a connecting head, and the worm 361 is driven to rotate by clamping into the connecting head inside the mechanical equipment, so that the worm 361 drives the adjacent rotating rod 351 to rotate through the worm gear 352, so that the rotating rod 351 drives the adjacent two main screws 340 to rotate, and the main screws 340 at both ends of any rotating rod 351 drive two adjacent moving plates 320 to move towards or away from each other through adjacent internal thread rings. When the moving plates 320 at both ends of any rotating rod 351 move away from each other, since the total length of the annular rope sleeve 210 does not change, the two moving plates 320 on the branch arm 321 are naturally rotated away from each other due to the limitation of the adjacent annular rope sleeve 210, so that the distance between the two sides of the rectangular annular rope sleeve 210 increases. When the moving plates 320 at both ends of any rotating rod 351 move towards each other, the two branch arms 321 on the moving plate 320 are naturally rotated towards each other driven by the adjacent torsion spring, so that the distance between the two sides of the rectangular annular rope sleeve 210 is shortened. Therefore, when the rolled fabric is taken off from the connecting pipe 230 or hung by the connecting pipe 230, the distance between the two sides of the rectangular annular rope sleeve 210 can be increased to provide enough space for the user to use, and when the rolled fabric is hung on the connecting pipe 230 for storage, the distance between the two sides of the rectangular annular rope sleeve 210 can be reduced, so that the thickness between the two sides of the rectangular annular rope sleeve 210 is reduced, thereby reducing the occupied space and facilitating the user to store the rolled fabric. The same number of U-shaped frames 310 are clamped into the sliding grooves of the two fixed frames 100, and the user can manually pull or use other mechanical equipment to pull the two annular rope sleeves 210 to rotate, so as to adjust the height of the connecting pipe 230, thereby facilitating the user to take the rolled fabric. The mechanical equipment for driving the worm 361 can be a power equipment such as a gasoline engine, and the power equipment for driving the worm 361 to rotate can realize automatic operation. The mechanical equipment for driving the annular rope sleeve 210 can be a power device such as a mechanical arm or a driving device such as a driving motor added on the clamping wheel 330, so as to directly pull the annular rope sleeve 210 by the power device such as the mechanical arm to drive the annular rope sleeve 210 to rotate, or to drive the clamping wheel 330 to rotate by the driving device such as the driving motor to drive the annular rope sleeve 210 to rotate, so as to realize the automatic rotation of the annular rope sleeve 210 and improve the automation degree of the whole storage process, thereby realizing the automatic three-dimensional warehouse.

[0041] As shown in Figure 3 and Figure 6 In this embodiment, the driving mechanism 400 includes:

[0042] The embedded plate 410 is movably clamped in the embedded groove 311, and the winding drum 420 is rotatably connected at both ends with a mounting plate, one end of any mounting plate is fixedly connected with the top surface of the embedded plate 410, the inner side wall of the winding drum 420 is fixedly connected with a hanging ring, one end in the inside of any connecting pipe 230 is fixedly connected with the wire 231, one end of any wire 231 penetrates through the other end of the adjacent connecting pipe 230 and is fixedly connected with a hook, one side of a mounting plate is fixedly connected with a motor box 421, the inside of the motor box 421 is provided with a stepping motor, the motor shaft of the stepping motor is fixedly connected with one end of the adjacent winding drum 420, the outer side wall of any connecting cylinder 240 is provided with a plurality of notches, the inside of any connecting cylinder 240 is fixedly sleeved with an air bag 241, any air bag 241 is fixedly connected with a conduit, one end of any conduit successively penetrates through the inside of the adjacent connecting cylinder 240 and the adjacent connecting pipe 230, one end of any conduit is located outside the other end of the adjacent connecting pipe 230, the top surface of the embedded plate 410 is fixedly connected with a vertical plate 430, the top end of the vertical plate 430 is rotatably connected with two L-shaped turning plates 431, one side of the short arm of any turning plate 431 is rotatably connected with a plurality of guide rollers 432, the outer side wall of any guide roller 432 is provided with a plurality of annular grooves, the other side of the short arm of any turning plate 431 is fixedly connected with a drive box 440, the inside of any drive box 440 is provided with a servo motor, the motor shaft of any servo motor is fixedly connected with one end of the adjacent guide roller 432, the outer side wall of the vertical plate 430 is movably sleeved with a sleeve frame 433, and the long arms of the two turning plates 431 are slidably sleeved in the inside of the sleeve frame 433.

[0043] In the embodiment, when the connecting tube 240 needs to pass through the center of the rolled fabric, the embedded plate 410 is clamped into the embedded slot 311 on the adjacent U-shaped frame 310, and then the hook of the iron wire 231 on the adjacent connecting tube 230 is hooked on the hanging ring on the winding drum 420, and the two rotating plates 431 are rotated to abut against each other, so that the iron wire 231 is clamped in the annular slots on the guide rollers 432 at the same height, and the guide tube is located in the other annular slots. The connecting tube 230 is made of rubber, and the iron wire 231 is clamped into the annular slots on the guide rollers 432 together with the outer skin of the connecting tube 230. Then, the sleeve frame 433 is slid onto the long arms of the two rotating plates 431 to fix the two rotating plates 431. Then, the stepping motor is started to drive the winding drum 420 to wind the iron wire 231, so that the iron wire 231 pulls the connecting tube 240 to move. Then, the center of the rolled fabric is aligned with the connecting tube 240, and the air pump is connected to the guide tube. Then, the stepping motor is started to drive the winding drum 420 to release the iron wire 231. Then, the two servo motors are started to drive the adjacent guide rollers 432 to rub the iron wire 231 to move, so that the iron wire 231 is pulled by the guide rollers 432 to drive the connecting tube 240 to pass through the center of the rolled fabric. The iron wire 231 is shaped and straightened through the annular slots on the guide rollers 432, so that the connecting tube 240 passes through the inside of the rolled fabric. Then, the connecting tube 240 passing through the center of the rolled fabric is screwed with the connecting screw 220, and the hook on the iron wire 231 is removed from the hanging ring. When the guide rollers 432 rotate to pull the iron wire 231, the two guide rollers 432 pull the iron wire 231 through the connecting tube 230. The rubber material of the connecting tube 230 improves the friction between the connecting tube 230 and the iron wire 231, thereby improving the pulling effect of the guide rollers 432 on the iron wire 231. When the connecting tube 240 passes through the inside of the rolled fabric, the air pump is started to repeatedly inflate and deflate the air bag 241, so that the air bag 241 intermittently expands. Part of the air bag 241 can be squeezed out of the slot of the adjacent connecting tube 240 when the air bag 241 expands, so that the air bag 241 expands to expand the space inside the rolled fabric, thereby facilitating the passage of the connecting tube 240. The air pump is a prior art and will not be described here.

[0044] Embodiment Two

[0045] On the basis of the first embodiment, the support plate and the air hole are arranged to facilitate ventilation of the rolled fabric.

[0046] As shown in Figures 1-2 In this embodiment, the support plate is fixedly connected to the other four side edges of any fixed frame 100, and the air hole is arranged on one side of any fixed frame 100.

[0047] In the embodiment, the support plate is supported on the ground or the ceiling, so that the two fixing frames 100 are spaced apart from the adjacent ground or ceiling, and a fan or a blower or the like air supply device is installed on the other side of any one of the fixing frames 100, so that the air supply device supplies air to the fabric hung between the two fixing frames 100, thereby facilitating air ventilation of the fabric, reducing humidity, and reducing fabric color mixing. The air supply device is a prior art, and thus will not be described herein.

[0048] It is apparent to those skilled in the art that the present application is not limited to the details of the foregoing exemplary embodiments, and that the present application can be carried out in other specific forms without departing from the spirit or essential characteristics of the present application. Accordingly, no matter from which point of view, the embodiments should be considered as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the foregoing description, and thus all changes falling within the meaning and range of equivalency of the elements of the claims are intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.

[0049] Furthermore, it should be understood that although the present specification is described in terms of embodiments, not every embodiment according to the present specification need necessarily include every independent technical feature. The description herein of a particular embodiment, in terms of an exemplary embodiment or the alternative, does not preclude that embodiment from being implemented with or without necessarily being limited to other embodiments that can or can not be similar to the exemplary embodiment. Rather, the description herein of a particular feature is intended merely as an example of that feature, and thus should not be understood as requiring any particular feature in any particular embodiment.

Claims

1. A fabric hanging device for use in a textile mill, characterized by, The utility model relates to a kind of fixed frame and support mechanism, including: Two vertically arranged fixed frames (100), any fixed frame (100) is fixedly connected with positioning ring at four corners; Fixing mechanism (200) is located between the two fixed frames (100), the fixing mechanism (200) includes two annular rope sleeves (210), wherein one annular rope sleeve (210) outer wall is fixedly connected with multiple connecting screws (220), another annular rope sleeve (210) outer wall is fixedly connected with multiple connecting pipes (230), any connecting pipe (230) one end is rotatably connected with connecting barrel (240), multiple connecting barrels (240) and multiple connecting screws (220) one-to-one correspondence, any connecting barrel (240) one end is provided with threaded hole, and any threaded hole is screwing with corresponding connecting screw (220); Support mechanism (300) is located between the two fixed frames (100), the support mechanism (300) includes: Two U-shaped frames (310) are fixedly connected with sliding block on one side, the two fixed frames (100) adjacent side is provided with sliding slot, and the two sliding blocks are respectively slidably connected in the two sliding slots, the two U-shaped frames (310) two arms are provided with guide slot, and one U-shaped frame (310) inner wall is provided with embedding slot (311); Four moving plates (320) are fixedly connected with clamping block on one side, four clamping blocks are respectively slidably connected in four guide slots, any moving plate (320) one side is provided with two supporting arms (321), any supporting arm (321) one end is rotatably connected with connecting shaft (322), any connecting shaft (322) one end is fixedly connected with adjacent moving plate (320) one side, any connecting shaft (322) outer wall is provided with torsion spring, and any torsion spring one end is fixedly connected with adjacent connecting shaft (322), and the other end is fixedly connected with adjacent supporting arm (321) one end; Four main screws (340) are respectively located at the two arms of the two U-shaped frames (310), any U-shaped frame (310) two arms are fixedly connected with supporting plate, any main screw (340) one end is rotatably connected with adjacent supporting plate, and the clamping block one side of any moving plate (320) is fixedly connected with internal thread ring, and any internal thread ring is screwing with adjacent main screw (340); Any supporting arm (321) other end is rotatably connected with clamping wheel (330), and any annular rope sleeve (210) outer wall is provided with annular clamping groove (211), and any clamping wheel (330) is located in adjacent clamping groove (211) inside; Driving mechanism (400) is movably connected with the support mechanism (300), the driving mechanism (400) includes: Embedding plate (410) is movably connected in the embedding slot (311). The winding drum (420) is rotatably connected with the mounting plate at both ends, and one end of any mounting plate is fixedly connected with the top surface of the embedded plate (410). The inner side wall of the winding drum (420) is fixedly connected with a hanging ring. The inner end of any connecting pipe (230) is fixedly connected with a wire (231). One end of any wire (231) penetrates through the other end of the adjacent connecting pipe (230) and is fixedly connected with a hook. One side of a mounting plate is fixedly connected with a motor box (421), and a stepping motor is arranged in the motor box (421). The motor shaft of the stepping motor is fixedly connected with one end of the adjacent winding drum (420).

2. The textile mill fabric hanging device of claim 1, wherein, Two connecting plates (350) are fixedly connected between the two U-shaped frames (310), and the two connecting plates (350) are located at the two arms of any U-shaped frame (310). The side of each connecting plate (350) is fixedly connected with a plurality of connecting rings. The side of any connecting plate (350) is provided with a rotating rod (351). The outer side wall of any rotating rod (351) is rotatably connected with the inner side of the adjacent connecting ring. Any rotating rod (351) is fixedly connected with the two main screws (340).

3. The textile mill fabric hanging device of claim 2, wherein, The side of any connecting plate (350) is fixedly connected with a U-shaped plate (360). The two arms of any U-shaped plate (360) are rotatably connected with a worm (361). The outer side wall of any rotating rod (351) is fixedly connected with a worm gear (352). Any worm (361) is engaged with the adjacent worm gear (352).

4. The textile mill fabric hanging device of claim 1, wherein, The other side of any fixed frame (100) is fixedly connected with a support plate.

5. The textile mill fabric hanging device of claim 4, wherein, The side of any fixed frame (100) is provided with a plurality of ventilation holes.

6. The textile mill fabric hanging device of claim 1, wherein, The outer side wall of any connecting cylinder (240) is provided with a plurality of notches. The inner side of any connecting cylinder (240) is fixedly connected with an air bag (241). Any air bag (241) is fixedly connected with a catheter. One end of any catheter penetrates through the inner side of the adjacent connecting cylinder (240) and the adjacent connecting pipe (230) in sequence. One end of any catheter is located outside the other end of the adjacent connecting pipe (230).

7. A textile mill fabric hanging device according to claim 6, wherein, The top surface of the embedded plate (410) is fixedly connected with a vertical plate (430). The top end of the vertical plate (430) is rotatably connected with two L-shaped rotating plates (431). The short arm of any rotating plate (431) is rotatably connected with a plurality of guide rollers (432). The outer side wall of any guide roller (432) is provided with a plurality of annular grooves. The short arm of any rotating plate (431) is fixedly connected with a drive box (440). The inner side of any drive box (440) is provided with a servo motor. The motor shaft of any servo motor is fixedly connected with one end of the adjacent guide roller (432). The outer side wall of the vertical plate (430) is movably connected with a sleeve frame (433). The long arms of the two rotating plates (431) are movably connected in the inner side of the sleeve frame (433).

Citation Information

Patent Citations

  • Novel high-stability roll type fabric three-dimensional storage equipment component

    CN219884760U