Fabric winding equipment for garment material processing

By designing an automatically controlled fabric winding equipment, the problem of manual monitoring winding in the prior art is solved, and no manual quantitative winding and fabric flatness are achieved, and automated winding of different winding sleeves are adapted to.

CN120397785AInactive Publication Date: 2025-08-01周丽娜
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Patent Information

Application Number
CN202510646769.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2025-08-01
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the processing of existing clothing materials, fabric winding requires manual real-time monitoring of the number of windings, which consumes manpower and is inefficient.

Method used

A fabric winding device including a support platform, a sliding base, a fixed base, a winding shaft, a smoothing mechanism and a driving mechanism is designed. Through the cooperation of the smoothing frame and the pressed plate, the winding shaft stops rotation when the specified number is reached, and quantitative winding is realized.

Benefits of technology

Automatic quantitative winding without manual monitoring is achieved, saving manpower, avoiding fabric folds, and adapting to winding sleeves of different diameters, improving the scope of application of the equipment.

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Abstract

The invention belongs to the technical field of fabric winding, and relates to fabric winding equipment for garment material processing, which comprises a supporting platform, a sliding base, a fixed base, a fixed connecting disc, a movable connecting disc and a winding shaft, one side of the top of the supporting platform is slidably connected with the sliding base, and the other side of the top of the supporting platform is fixedly connected with the fixed base; a fixed connecting disc is connected to the top of the fixed base, a movable connecting disc is connected to the top of the sliding base, a winding shaft is connected to the fixed connecting disc, and a supporting hole is formed in the circle center position of the movable connecting disc. During operation, a fabric can be wound through rotation of the winding shaft, after the fabric is wound to a specified value, a pressed plate can be extruded through a smoothing frame, so that a transmission gear is separated from a driving gear and a driven gear, the winding shaft stops rotating, the effect of quantitatively winding the fabric is achieved, manual observation is not needed during operation, and the working efficiency is improved. And manpower consumption is saved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of fabric winding, and relates to a fabric winding device for processing clothing materials. Background Art

[0002] Clothing materials are the basic materials used to process clothing in modern society. During the processing of clothing materials, it is necessary to wind the fabric used for processing clothing materials so as to place the fabric in rolls, which is convenient for the storage and transportation of the fabric.

[0003] In the existing method of winding the fabric for processing clothing, a winding device is usually used. The winding sleeve is sleeved on the drive shaft, and then the fabric is wound around the winding sleeve. Subsequently, the drive shaft is controlled to rotate to drive the winding sleeve to rotate so as to achieve the winding of the fabric. However, during the winding process, the operator needs to observe at all times. After winding to the specified quantity, the drive shaft is controlled to shut down. The whole process requires manual observation of the quantity of the wound material, which is quite labor-consuming during operation. Summary of the Invention

[0004] In view of this, the present invention provides a fabric winding device for processing clothing materials that can automatically stop winding after winding a certain amount of fabric.

[0005] The technical solution is as follows: A fabric winding device for clothing material processing, comprising a support platform, a sliding base, a fixed base, a fixed connection disk, a movable connection disk, a winding shaft, a support structure, a flattening mechanism and a driving mechanism. One side of the top of the support platform is slidably connected with a sliding base, and the other side of the top of the support platform is fixedly connected with a fixed base. The top of the fixed base is connected with a fixed connection disk, and the top of the sliding base is connected with a movable connection disk. A winding shaft is connected to the fixed connection disk. A support hole is provided at the center of the movable connection disk. A support structure capable of inserting into the support hole to support the winding shaft is arranged inside the winding shaft. A flattening mechanism for flattening the fabric is arranged on the support platform, and a driving mechanism for driving the winding shaft to rotate is arranged on the fixed base. The driving mechanism includes a driving motor, a driving gear, a driven gear, a transmission gear, a sliding shaft, a movable gear, a toothed disk, a sliding block, an elastic member III, and a belt transmission group. A driving motor is installed on the fixed base. The output shaft of the driving motor passes through the fixed base and is connected with a driving gear. A driven gear is rotatably connected to the fixed base. A sliding shaft is movably connected to the fixed base. A movable gear is connected to the sliding shaft. A transmission gear is rotatably connected to the fixed base. Tooth-shaped disks are connected to the sides of the transmission gear and the movable gear that are close to each other. The two tooth-shaped disks are engaged with each other. The transmission gear is engaged with the driven gear, and the movable gear is engaged with the driving gear. A sliding block is slidably connected to the sliding shaft, and the sliding block is slidably connected to the fixed base. An elastic member III is connected between the sliding block and the fixed base. When the sliding rod moves downward, it can squeeze the sliding block to move. A belt transmission group is arranged between the winding shaft and the driven gear.

[0006] Optionally, the support structure includes a support shaft, an elastic member I and a clamping block. A support shaft capable of inserting into the support hole is slidably connected to the winding shaft. An elastic member I is connected between the support shaft and the winding shaft. A plurality of clamping blocks are evenly spaced along the circumferential direction on the support shaft. A plurality of sliding channels with the same number as the clamping blocks are evenly spaced inside the winding shaft. The clamping blocks are slidably connected to the winding shaft through the sliding channels. An annular clamping groove is provided inside the winding shaft, and the annular clamping groove is communicated with the sliding channels. The clamping blocks can move into the annular clamping groove.

[0007] Optionally, the flattening mechanism includes an L-shaped support plate, a flattening frame and an elastic member II. An L-shaped support plate is connected between the support platform and the fixed base. A flattening frame for flattening the wound fabric is slidably connected to the upper part of the L-shaped support plate. An elastic member II is connected between the flattening frame and the L-shaped support plate.

[0008] Optionally, the driving mechanism further includes a sliding rod, a pressure-receiving plate, and a positioning bolt. A sliding rod is slidably connected to the fixed base, and a pressure-receiving plate is slidably connected to the sliding rod. The pressure-receiving plate is located below the smoothing frame, and a positioning bolt for fixing the pressure-receiving plate on the sliding rod is connected to the pressure-receiving plate by means of a thread.

[0009] Optionally, one side of the sliding block penetrates through the fixed base and is provided with a guiding groove. The inner side wall of the guiding groove is provided with an inclined surface, and the lower part of the sliding rod is also provided with an inclined surface. The inclined surface of the sliding rod abuts against the inclined surface of the guiding groove so that the downward movement of the sliding rod can squeeze the sliding block to move.

[0010] Optionally, a supporting mechanism is further included. The supporting mechanism includes a connecting sleeve, a top plate, a first connecting rod, a threaded sleeve, a movable sleeve, a fixed sleeve, and a second connecting rod. A connecting sleeve is connected to the winding shaft. Multiple top plates are provided and are circumferentially and evenly spaced around the winding shaft as the center. A first connecting rod is hingedly connected between the top plate and the connecting sleeve. One side of the winding shaft is a threaded part, and a fixed sleeve is connected to the winding shaft. The threaded part of the winding shaft is threadedly connected to a threaded sleeve, and a movable sleeve is connected to the threaded sleeve. Second connecting rods are respectively connected between the top plate and the movable sleeve and the fixed sleeve.

[0011] Optionally, a clamping mechanism is further included. The clamping mechanism includes a support frame, a guiding shaft, a pressing block, a positioning rod, and a fourth elastic member. A support frame is connected to the fixed base. A guiding shaft is connected to the upper part of the support frame. A pressing block is slidably connected to the upper part of the support frame. Positioning rods for fixing the pressing block are slidably connected to both sides of the top of the pressing block, and a fourth elastic member is connected between the two positioning rods.

[0012] Optionally, a clamping mechanism is further included. Card slots are evenly spaced on both side walls of the support frame, and the positioning rod can be inserted into the card slots to fix the pressing block.

[0013] Optionally, a cutting mechanism is further included. The cutting mechanism includes a driving rack, a connecting frame, a screw rod, a cutting knife, and a small gear. A driving rack is connected to the sliding base. A connecting frame is connected to the support frame. A screw rod is rotatably connected to the connecting frame. A cutting knife for cutting the fabric is threadedly connected to the screw rod. The cutting knife is slidably engaged with the connecting frame. A small gear is connected to the screw rod, and the movement of the driving rack can drive the small gear to rotate.

[0014] Optionally, a limiting mechanism is further included. The limiting mechanism includes a locking block and a connecting spring. A locking block is slidably connected to the sliding base, and a connecting spring is connected between the locking block and the sliding base. Two locking slots are opened at the top of the support platform, and the locking block can be inserted into the locking slots to fix the sliding base.

[0015] The beneficial effects of the present invention are as follows: 1. When the present invention is in operation, the fabric can be wound by the rotation of the winding shaft. After the fabric reaches the specified value, the pressing plate can be pressed by the smoothing frame, so that the driving gear is disengaged from the driving gear and the driven gear, and the winding shaft stops rotating, thereby achieving the effect of quantitatively winding the fabric. Moreover, no manual observation is required during operation, saving labor consumption.

[0016] 2. When the present invention winds the fabric, the wound fabric can contact the smoothing frame. At the same time, the second elastic member can apply pressure to the smoothing frame to smooth the fabric and avoid fabric wrinkles.

[0017] 3. During the operation of the present invention, the top plate can be controlled to expand outward to fix the winding sleeve. Different diameters of winding sleeves can be placed during operation for fabric winding work, and all can be fixed by the top plate, improving the overall scope of application. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a three-dimensional structural schematic diagram of the present invention.

[0019] Figure 2 is a structural schematic diagram of the support structure, support mechanism and limit mechanism of the present invention.

[0020] Figure 3 is a structural schematic diagram of the support structure and support mechanism of the present invention.

[0021] Figure 4 is a cross-sectional view of the winding shaft of the present invention.

[0022] Figure 5 is the present invention Figure 4 enlarged view of part A.

[0023] Figure 6 is a structural schematic diagram of the smoothing mechanism of the present invention.

[0024] Figure 7 is a structural schematic diagram of the smoothing mechanism and driving mechanism of the present invention.

[0025] Figure 8 is a structural schematic diagram of the driving mechanism of the present invention.

[0026] Figure 9 is a cross-sectional view of the fixed base of the present invention.

[0027] Figure 10 is the present invention Figure 9 enlarged view of part B.

[0028] Figure 11 is an exploded view of the driving mechanism of the present invention.

[0029] Figure 12 This is the first structural schematic diagram of the clamping mechanism of the present invention.

[0030] Figure 13 This is the second structural schematic diagram of the clamping mechanism of the present invention.

[0031] Figure 14 This is the structural schematic diagram of the cutting mechanism of the present invention.

[0032] Wherein: 1: support platform, 2: sliding base, 3: fixed base, 4: fixed connection disk, 41: belt drive group, 5: movable connection disk, 6: winding shaft, 61: threaded part, 71: connecting sleeve, 72: top plate, 73: first connecting rod, 81: threaded sleeve, 82: movable sleeve, 83: fixed sleeve, 84: second connecting rod, 91: support shaft, 92: first elastic member, 921: locking block, 922: connecting spring, 93: clamping block, 101: L-shaped support plate, 102: smoothing frame, 103: second elastic member, 121: sliding rod, 122: pressure receiving plate, 123: positioning bolt, 124: drive motor, 125: drive gear, 126: driven gear, 127: transmission gear, 1271: sliding shaft, 1272: movable gear, 1273: toothed disk, 128: sliding block, 129: third elastic member, 111: support frame, 112: guide shaft, 113: pressing block, 114: positioning rod, 115: fourth elastic member, 131: drive rack, 132: connecting frame, 133: screw rod, 134: cutting knife, 135: pinion. Specific embodiments

[0033] The following further illustrates the technical solution in combination with specific embodiments. It should be noted that: The words indicating directions such as up, down, left, and right mentioned herein are only in terms of the positions of the shown structures in the corresponding drawings. The serial numbers assigned to the components herein, for example: first, second, etc., are only used to distinguish the described objects and do not have any sequential or technical meanings. And as used in this application: connection, coupling, unless otherwise specified, all include direct and indirect connection (coupling).

[0034] A fabric winding device for processing clothing materials, as Figures 1 - 10As shown in the figure, it includes a support platform 1, a sliding base 2, a fixed base 3, a fixed connection disk 4, a movable connection disk 5, a winding shaft 6, a support structure, a flattening mechanism, and a driving mechanism. On the right side of the top of the support platform 1, there is a slidably connected sliding base 2. On the left side of the top of the support platform 1, there is a fixedly connected fixed base 3. On the top of the fixed base 3, there is a connected fixed connection disk 4. On the top of the sliding base 2, there is a connected movable connection disk 5. At the center position on the right side of the fixed connection disk 4, there is a connected winding shaft 6. At the center position of the movable connection disk 5, there is a support hole opened. Inside the winding shaft 6, there is a support structure which can be inserted into the support hole so that the movable connection disk 5 can support the winding shaft 6 through the support structure. On the support platform 1, there is a flattening mechanism for flattening the fabric. On the fixed base 3, there is a driving mechanism for driving the winding shaft 6 to rotate.

[0035] As Figures 2 - 5 shown, the support structure includes a support shaft 91, a first elastic member 92, and a clamping block 93. Inside the right side of the winding shaft 6, there is a slidably connected support shaft 91. Between the support shaft 91 and the winding shaft 6, there is a connected first elastic member 92. The first elastic member 92 is a return spring. The support shaft 91 can be inserted into the support hole so that the support hole can support the support shaft 91. On the left side of the outer arc surface of the support shaft 91, there are four clamping blocks 93 evenly spaced along the circumferential direction. Inside the right side of the winding shaft 6, there are four sliding channels evenly spaced. The clamping blocks 93 are slidably connected to the winding shaft 6 through the sliding channels. Inside the right side of the winding shaft 6, there is an annular clamping groove opened. The annular clamping groove is communicated with the sliding channels. The clamping blocks 93 can move and extend into the annular clamping groove. On the right side of the support shaft 91, there is an internal hexagonal hole so that an operator can operate the support shaft 91 through an internal hexagonal wrench.

[0036] As Figure 6 shown, the flattening mechanism includes an L-shaped support plate 101, a flattening frame 102, and a second elastic member 103. Between the right side of the top of the support platform 1 and the fixed base 3, there is a connected L-shaped support plate 101. On the upper part of the L-shaped support plate 101, there is a slidably connected flattening frame 102. The top of the flattening frame 102 is arranged as an arc surface for flattening the wound fabric. Between the flattening frame 102 and the L-shaped support plate 101, there is a connected second elastic member 103. The second elastic member 103 is a buffer spring.

[0037] As Figures 7 - 11As shown in the figure, the driving mechanism includes a sliding rod 121, a pressure receiving plate 122, a positioning bolt 123, a driving motor 124, a driving gear 125, a driven gear 126, a transmission gear 127, a sliding shaft 1271, a movable gear 1272, a toothed disc 1273, a sliding block 128, a third elastic member 129, and a belt transmission group 41. The lower right side of the fixed base 3 is slidably connected to the sliding rod 121. The pressure receiving plate 122 is slidably connected to the sliding rod 121. The pressure receiving plate 122 is located below the flattening frame 102, so that the downward movement of the flattening frame 102 can squeeze the pressure receiving plate 122 downward. The positioning bolt 123 is threadedly connected to the pressure receiving plate 122. The rotation of the positioning bolt 123 can abut against the sliding rod 121 for fixing the pressure receiving plate 122 on the sliding rod 121. An operating handle is connected to the front side of the positioning bolt 123 to facilitate the rotation of the positioning bolt 123. The driving motor 124 is installed at the lower part of the fixed base 3. The output shaft of the driving motor 124 passes through the fixed base 3 and is connected to the driving gear 125. The middle part of the left side of the fixed base 3 is rotatably connected to the driven gear 126. The lower left side of the fixed base 3 is slidably and rotatably connected to the sliding shaft 1271. The left side of the sliding shaft 1271 is connected to the movable gear 1272. The lower left side of the fixed base 3 is rotatably connected to the transmission gear 127. Tooth-shaped discs 1273 are connected to the sides of the transmission gear 127 and the movable gear 1272 that are close to each other. The two tooth-shaped discs 1273 are engaged with each other. The transmission gear 127 is engaged with the driven gear 126. The movable gear 1272 is engaged with the driving gear 125, so that the rotation of the driving gear 125 can drive the driven gear 126 to rotate through the movable gear 1272, the tooth-shaped disc 1273, and the transmission gear 127. The right side of the sliding shaft 1271 is rotatably connected to the sliding block 128. The sliding block 128 is slidably connected to the fixed base 3. A third elastic member 129 is connected between the sliding block 128 and the fixed base 3. The third elastic member 129 is a compression spring. The right side of the sliding block 128 passes through the right side of the fixed base 3 and is provided with a guiding groove. The right side wall of the guiding groove is provided with an inclined surface. The lower part of the sliding rod 121 is also provided with an inclined surface. The inclined surface of the sliding rod 121 abuts against the inclined surface of the guiding groove, so that the downward movement of the sliding rod 121 can squeeze the inclined surface at the guiding groove through its upper inclined surface to drive the sliding block 128 to move to the right. A belt transmission group 41 is provided between the winding shaft 6 and the driven gear 126.

[0038] When it is necessary to wind the fabric, this winding device can be used. Initially, the clamping block 93 is located in the annular clamping groove, the support shaft 91 retracts into the winding shaft 6, and the first elastic member 92 is in a compressed state. When in use, the sliding base 2 can be first pulled backward, and then the winding sleeve is sleeved on the winding shaft 6. Subsequently, the fabric is wound around the winding sleeve. After winding, the sliding base 2 is pulled back to its original position, and then the support shaft 91 is operated to rotate to drive the clamping block 93 to align with the sliding channel. At this time, under the action of the first elastic member 92, the support shaft 91 and the clamping block 93 move to the right. After the support shaft 91 moves to the right, it extends into the support hole of the movable connection disk 5, so as to support the right side of the winding shaft 6 through the movable connection disk 5 and the support shaft 91. Subsequently, the driving motor 124 can be controlled to drive the driving gear 125 to rotate. The rotation of the driving gear 125 drives the driven gear 126 to rotate through the movable gear 1272, the toothed disk 1273 and the transmission gear 127. The rotation of the driven gear 126 drives the winding shaft 6 to rotate through the belt transmission group 41, so as to drive the winding sleeve to rotate and wind the fabric. During the winding process, as the fabric increases, the fabric will contact the flattening frame 102, thereby gradually squeezing the flattening frame 102 to move downward, and the second elastic member 103 is compressed. The second elastic member 103 can apply an upward pressure to the flattening frame 102 to make the flattening frame 102 smooth the fabric. As the flattening frame 102 moves downward, it will contact and squeeze the pressure receiving plate 122 and the sliding rod 121 to move downward. When the sliding rod 121 moves downward, it can squeeze the sliding block 128 to move to the right through its upper inclined surface, and the third elastic member 129 is compressed. The rightward movement of the sliding block 128 drives the sliding shaft 1271 and the movable gear 1272 to move to the right. After the movable gear 1272 moves to the right, it also meshes with the driving gear 125, but at this time the two toothed disks 1273 are disengaged, and the transmission gear 127 stops rotating. At this time, the winding shaft 6 also loses power and stops rotating. Subsequently, the support shaft 91 can be operated to move to the left and retract into the winding shaft 6, and then the support shaft 91 is rotated to make the clamping block 93 enter the annular clamping groove. Subsequently, the sliding base 2 is pulled to move, and the fabric after winding can be drawn out. In this way, this device can be used for winding the fabric, and after winding, the winding can be automatically controlled to stop, avoiding too much or too little winding quantity. During the actual operation, if it is necessary to control the winding quantity, the positioning bolt 123 can be loosened, and the pressure receiving plate 122 is controlled to move up and down for adjustment. When the pressure receiving plate 122 moves downward, the quantity of fabric wound each time can be increased, and when the pressure receiving plate 122 moves upward, the quantity of fabric wound each time can be decreased, so as to achieve the effect of controlling the winding quantity.

[0039] Such as Figures 2 - 5As shown, it also includes a supporting mechanism, which includes a connecting sleeve 71, a top plate 72, a connecting rod 1 73, a threaded sleeve 81, a movable sleeve 82, a fixed sleeve 83 and a connecting rod 2 84. The left side of the winding shaft 6 is connected to the connecting sleeve 71, and the top plate 72 is provided with four pieces and is evenly spaced circumferentially with the winding shaft 6 as the center. The left side of the top plate 72 is hingedly connected to the connecting sleeve 71 with a connecting rod 1 73. The right side of the winding shaft 6 is a threaded portion 61, and the right side of the winding shaft 6 is connected to a fixed sleeve 83. The threaded portion 61 of the winding shaft 6 is connected to the threaded sleeve 81 through a thread, and the threaded sleeve 81 is connected to the movable sleeve 82. The right side of the top plate 72 is respectively connected to the movable sleeve 82 and the fixed sleeve 83 with a connecting rod 2 84, so that the movable sleeve 82 can move and squeeze the top plate 72 outward through the connecting rod 2 84.

[0040] When placing the winding sleeve, winding sleeves of different sizes can be sleeved between the outer sides of multiple top plates 72. After the sleeve is sleeved, the threaded sleeve 81 can be rotated to move to the left through the thread between it and the threaded portion 61. When the threaded sleeve 81 moves to the left, it drives the movable sleeve 82 to move to the left, thereby squeezing the connecting rod 2 84 adjacent to the movable sleeve 82, and stretching the top plate 72, so that the multiple top plates 72 move away from each other. At the same time, the remaining connecting rod 2 84 and connecting rod 1 73 will also swing accordingly. When the multiple top plates 72 move away from each other, they can resist the winding sleeve to fix the winding sleeve. In this way, the fixing work can be performed on winding sleeves of different sizes, thereby improving the overall scope of application.

[0041] like Figure 12 and Figure 13 As shown, it also includes a clamping mechanism, which includes a support frame 111, a guide shaft 112, a clamping block 113, a positioning rod 114 and four elastic members 115. The upper right side of the fixed base 3 is connected to the support frame 111, the upper part of the support frame 111 is connected to the guide shaft 112, the upper part of the support frame 111 is slidably connected to the clamping block 113, the clamping block 113 is located above the guide shaft 112, the left and right sides of the top of the clamping block 113 are slidably connected to the positioning rods 114, and the four elastic members 115 are connected between the two positioning rods 114. The left and right side walls of the upper inner part of the support frame 111 are evenly spaced with card slots, and the positioning rods 114 can be inserted into the card slots to fix the clamping block 113.

[0042] When winding the fabric, the fabric can be wound around the guiding shaft 112 and the pressing block 113 and then wound on the winding sleeve. After winding, when the fabric needs to be cut, the two positioning rods 114 can be pulled closer to each other so that the positioning rods 114 are disengaged from the card slots. At this time, under the action of gravity, the pressing block 113 moves downward to press the fabric, preventing the fabric from falling to the ground. In subsequent winding, it is only necessary to pull the fabric from below the pressing block 113, which is more convenient to operate.

[0043] As Figure 14 shown, it further includes a cutting mechanism. The cutting mechanism includes a driving rack 131, a connecting frame 132, a screw 133, a cutting knife 134 and a pinion 135. The upper left side of the sliding base 2 is connected with the driving rack 131. The support frame 111 is connected with the connecting frame 132. The connecting frame 132 is rotatably connected with the screw 133. The cutting knife 134 is threadedly connected to the screw 133. The cutting knife 134 is slidably matched with the connecting frame 132. The movement of the cutting knife 134 can cut the fabric. The right side of the screw 133 is connected with the pinion 135. The pinion 135 is located at the movement track of the driving rack 131 so that the movement of the driving rack 131 can rub the pinion 135 to rotate.

[0044] After the fabric is wound, when the winding sleeve with the wound fabric needs to be taken out, first pull the sliding base 2 to slide backward. When the sliding base 2 slides backward, it drives the driving rack 131 to move. When the driving rack 131 moves, it rubs the pinion 135 to rotate. The rotation of the pinion 135 drives the screw 133 to rotate. The rotation of the screw 133 can drive the cutting knife 134 to move leftward through the thread. When the cutting knife 134 moves leftward, it can cut the fabric. In this way, the function of automatically cutting the fabric can be realized.

[0045] As Figure 2 shown, it further includes a limiting mechanism. The limiting mechanism includes a locking block 921 and a connecting spring 922. The locking block 921 is slidably connected to the right side of the sliding base 2. The locking block 921 can slide up and down along the sliding base 2. A connecting spring 922 is connected between the locking block 921 and the sliding base 2. Two locking grooves are opened in the front and back on the top right side of the support platform 1. The locking block 921 can be inserted into the locking groove to fix the sliding base 2. When the sliding base 2 slides, it can pull the locking block 921 to move upward, and the connecting spring 922 is compressed. After the sliding base 2 finishes sliding, the locking block 921 is also aligned with the locking groove. At this time, the locking block 921 can be released. Under the action of the connecting spring 922, the locking block 921 moves downward to reset and insert into the locking groove to fix the sliding base 2.

[0046] The above has introduced this application in detail. Specific examples are used in this article to expound on the principle and implementation manner of this application. The description of the above embodiments is only used to help understand the method and its core idea of this application; at the same time, for those of ordinary skill in the art, according to the idea of this application, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation to this application.

Claims

1. A fabric winding device for clothing material processing, characterized by comprising There is a support platform (1), a sliding base (2), a fixed base (3), a fixed connection disk (4), a movable connection disk (5), a winding shaft (6), a support structure, a flattening mechanism and a driving mechanism. On one side of the top of the support platform (1), there is a sliding base (2) connected in a sliding manner. On the other side of the top of the support platform (1), there is a fixed base (3) fixedly connected. On the top of the fixed base (3), there is a fixed connection disk (4) connected. On the top of the sliding base (2), there is a movable connection disk (5) connected. On the fixed connection disk (4), there is a winding shaft (6) connected. At the center position of the movable connection disk (5), there is a support hole opened. Inside the winding shaft (6), there is a support structure that can be inserted into the support hole to support the winding shaft (6). On the support platform (1), there is a flattening mechanism for flattening the fabric. On the fixed base (3), there is a driving mechanism for driving the winding shaft (6) to rotate; the driving mechanism includes a driving motor (124), a driving gear (125), a driven gear (126), a transmission gear (127), a sliding shaft (1271), a movable gear (1272), a toothed disk (1273), a sliding block (128), an elastic member three (129), and a belt transmission group (41). On the fixed base (3), there is a driving motor (124) installed. The output shaft of the driving motor (124) passes through the fixed base (3) and is connected to a driving gear (125). On the fixed base (3), there is a driven gear (126) rotatably connected. On the fixed base (3), there is a sliding shaft (1271) movably connected. On the sliding shaft (1271), there is a movable gear (1272) connected. On the fixed base (3), there is a transmission gear (127) rotatably connected. On the sides of the transmission gear (127) and the movable gear (1272) that are close to each other, there is a toothed disk (1273) connected. The two toothed disks (1273) are engaged with each other. The transmission gear (127) is engaged with the driven gear (126). The movable gear (1272) is engaged with the driving gear (125). On the sliding shaft (1271), there is a sliding block (128) slidably connected. The sliding block (128) is slidably connected to the fixed base (3). Between the sliding block (128) and the fixed base (3), there is an elastic member three (129) connected. When the sliding rod (121) moves downward, it can squeeze the sliding block (128) to move. Between the winding shaft (6) and the driven gear (126), there is a belt transmission group (41).

2. The fabric winding device for processing clothing materials according to claim 1 is characterized in that, The support structure includes a support shaft (91), a first elastic member (92), and a clamping block (93). A support shaft (91) that can be inserted into the support hole is slidably connected to the winding shaft (6). A first elastic member (92) is connected between the support shaft (91) and the winding shaft (6). A plurality of clamping blocks (93) are circumferentially and evenly spaced and connected to the support shaft (91). A plurality of sliding channels with the same number as the clamping blocks (93) are evenly spaced in the winding shaft (6). The clamping blocks (93) are slidably connected to the winding shaft (6) through the sliding channels. An annular clamping groove is formed in the winding shaft (6), and the annular clamping groove communicates with the sliding channels. The clamping blocks (93) can move into the annular clamping groove.

3. A fabric winding device for processing clothing materials according to claim 1, characterized in that, The flattening mechanism includes an L-shaped support plate (101), a flattening frame (102), and a second elastic member (103). An L-shaped support plate (101) is connected between the support platform (1) and the fixed base (3). A flattening frame (102) for flattening the wound fabric is slidably connected to the upper part of the L-shaped support plate (101). A second elastic member (103) is connected between the flattening frame (102) and the L-shaped support plate (101).

4. The fabric winding device for processing clothing materials according to claim 3, characterized in that, The driving mechanism further includes a sliding rod (121), a pressure-receiving plate (122), and a positioning bolt (123). A sliding rod (121) is slidably connected to the fixed base (3). A pressure-receiving plate (122) is slidably connected to the sliding rod (121). The pressure-receiving plate (122) is located below the flattening frame (102). A positioning bolt (123) for fixing the pressure-receiving plate (122) to the sliding rod (121) is threadedly connected to the pressure-receiving plate (122).

5. The fabric winding device for clothing material processing according to claim 4, characterized in that, One side of the sliding block (128) passes through the fixed base (3) and is provided with a guiding groove. The inner side wall of the guiding groove is provided with an inclined surface. The lower part of the sliding rod (121) is also provided with an inclined surface. The inclined surface of the sliding rod (121) abuts against the inclined surface of the guiding groove, so that the downward movement of the sliding rod (121) can squeeze the sliding block (128) to move.

6. The fabric winding device for processing clothing materials according to claim 1, characterized in that, A support mechanism is further included. The support mechanism includes a connecting sleeve (71), a top plate (72), a first connecting rod (73), a threaded sleeve (81), a movable sleeve (82), a fixed sleeve (83), and a second connecting rod (84). A connecting sleeve (71) is connected to the winding shaft (6). A plurality of top plates (72) are provided and are circumferentially and evenly spaced with the winding shaft (6) as the center. A first connecting rod (73) is hingedly connected between the top plate (72) and the connecting sleeve (71). One side of the winding shaft (6) is a threaded portion (61). A fixed sleeve (83) is connected to the winding shaft (6). The threaded portion (61) of the winding shaft (6) is threadedly connected to a threaded sleeve (81). A movable sleeve (82) is connected to the threaded sleeve (81). A second connecting rod (84) is connected between the top plate (72) and the movable sleeve (82) and the fixed sleeve (83) respectively.

7. The fabric winding device for clothing material processing according to claim 1, characterized in that, It further includes a clamping mechanism, and the clamping mechanism includes a support frame (111), a guide shaft (112), a pressing block (113), a positioning rod (114), and an elastic member IV (115). A support frame (111) is connected to the fixed base (3). The upper part of the support frame (111) is connected with a guide shaft (112). The upper part of the support frame (111) is slidably connected with a pressing block (113). Both sides of the top of the pressing block (113) are slidably connected with positioning rods (114) for fixing the pressing block (113). An elastic member IV (115) is connected between the two positioning rods (114).

8. A fabric winding device for processing clothing materials according to claim 7, characterized in that, It further includes a clamping mechanism. Slots are evenly spaced on both side walls of the support frame (111). The positioning rod (114) can be inserted into the slots to fix the pressing block (113).

9. A fabric winding device for processing clothing materials according to claim 7, characterized in that, It further includes a cutting mechanism, and the cutting mechanism includes a driving rack (131), a connecting frame (132), a screw rod (133), a cutting knife (134), and a pinion gear (135). A driving rack (131) is connected to the sliding base (2). A connecting frame (132) is connected to the support frame (111). A screw rod (133) is rotatably connected to the connecting frame (132). A cutting knife (134) for cutting the fabric is threadedly connected to the screw rod (133). The cutting knife (134) is slidably matched with the connecting frame (132). A pinion gear (135) is connected to the screw rod (133). The movement of the driving rack (131) can drive the pinion gear (135) to rotate.

10. The fabric winding device for processing clothing materials according to claim 1, characterized in that, It further includes a limiting mechanism, and the limiting mechanism includes a locking block (921) and a connecting spring (922). A locking block (921) is slidably connected to the sliding base (2). A connecting spring (922) is connected between the locking block (921) and the sliding base (2). Two locking grooves are formed at the top of the support platform (1). The locking block (921) can be inserted into the locking grooves to fix the sliding base (2).