Cloth winding device
By introducing a support core and soft rubber layer design into the fabric winding device, combined with the movement of the auxiliary roller and the tilting of the rubber strip, the problem of water vapor adhesion in low-temperature environments is solved, the fabric is smoothly wound and the equipment is cooled at a constant temperature, thereby improving production efficiency.
Patent Information
- Application Number
- CN202422174351.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-09-05
AI Technical Summary
During the fabric winding process, water vapor is easily attached to the winding equipment in a low-temperature environment, causing damage or adhesion of the fabric, affecting production efficiency.
A winding roller structure including a support core, a mesh layer and a soft rubber layer was designed. Air circulated through the gap between the support core and the soft rubber layer. Combined with the movement of the auxiliary roller and the design of the inclined rubber strip, air circulation and heat dissipation were achieved to prevent the formation of water vapor.
Keep the winding roller dry to prevent fabric from sticking, ensure the continuity and efficiency of the production process, remove heat through air circulation, and avoid the formation of water vapor during equipment operation.
Smart Images

Figure CN223397228U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of cloth winding, and more specifically, particularly relates to a cloth winding device. Background Art
[0002] The fabric winding device is an important equipment used for winding and packaging materials in the textile, leather, non-woven fabric and other industries. It is suitable for high-speed production lines and can quickly and accurately roll fabrics into rolls, thereby improving production efficiency.
[0003] During the fabric rewinding process, the rewinding equipment is in a continuous operation state, which will generate heat energy. When the air temperature around the equipment is low in winter, it is easy for the heat energy to generate water vapor that adheres to the rewinding device, causing damage or adhesion to the rewinding fabric. Utility Model Content
[0004] In order to solve the above technical problems, the purpose and function of the cloth winding device of the present invention are achieved by the following specific technical means:
[0005] Its structure includes a taking door, a control box, a fixed plate, an auxiliary roller, a sliding track, a winding roller, and an adjustment roller. The taking door is hinged to the fixed plate. The control box is fixed to the outer surface of the fixed plate to control the operation of the entire equipment. The auxiliary roller is clamped in the inner groove of the sliding track. The winding roller is installed directly below the auxiliary roller. The adjustment roller is located below the front end of the winding roller.
[0006] The winding roller includes a supporting core, a mesh layer, a soft rubber layer, and a through-hole. The supporting core is located inside the soft rubber layer and has the same center as the soft rubber layer. The soft rubber layer and the mesh layer are an integrated structure. A through-hole is formed between the two mesh layers. The gap between the supporting core and the soft rubber layer allows air to circulate, thereby keeping the support core and the soft rubber layer dry.
[0007] As a further improvement of the present invention, the auxiliary roller can be moved up and down along the sliding path to adjust its position, the taking door is opened to facilitate the disassembly and assembly of the winding roller, the mesh layer is a mesh structure to assist internal gas circulation, the auxiliary roller moves and adjusts according to the thickness of the winding roller, and the soft rubber layer is made of soft rubber material, which can increase friction and fix the fabric without damaging it.
[0008] As a further improvement of the present invention, the support core includes a rotating shaft, a top block, a spacer rod, a through hole, an adjusting body, and a connecting port. The rotating shaft runs through the top block and the inside of the adjusting body. The top block is provided with two at the head and tail sides of the adjusting body. The spacer rod is fixed to the outer surface of the adjusting body. The through hole runs through the inside of the adjusting body. A connecting port is formed between the two adjusting bodies. The adjusting body is provided with four circular, evenly distributed and expandable adjustments.
[0009] As a further improvement of the present invention, the spacer rod is supported between the adjusting body and the soft rubber layer, and a hard plate is provided on the inner ring surface of the soft rubber layer to play a supporting role. The end of the top block away from the adjusting body is provided with a tightly fitting rubber ring. The rubber ring at the rear end of the top block can play a role of fixing and increasing resistance after movement. When the top block needs to return to its position, the winding roller is installed back to its original position, and the support core is stuck in the corresponding position and pulled back through the control box.
[0010] As a further improvement of the present invention, the auxiliary roller includes a central axis, an inclined rubber strip, and a roller. The central axis runs through the interior of the roller. The inclined rubber strip is inclined in a symmetrical structure with the middle as the center line, and the inclined rubber strip is made of soft rubber.
[0011] As a further improvement of the present invention, the cross-section of the top block is a trapezoidal structure, which will adjust the expansion range of the regulating body when moving toward the middle end. The through hole and the connecting port connect the space on both sides inside and outside to guide the airflow and maintain constant temperature. The spacer rods are provided with three groups of four in each group and are evenly distributed in a circle. There are eight through holes, and four are in a group and are evenly distributed in a circle.
[0012] Compared with the prior art, the present invention has the following beneficial effects:
[0013] 1. The soft rubber layer of the winding roller has a gripping effect on the fabric, allowing the fabric to be spread flat on the surface of the winding roller for rolling and winding. The mesh layer is in a grid state, so that air can circulate at the position where the fabric and the winding roller are in contact. The temperature generated when the rotating shaft continues to rotate is circulated to the air inside and outside the adjusting body through the gap joints and through holes between the adjusting bodies, and the heat is continuously taken out. The space created by the distance between the soft rubber layer and the adjusting body supported by the spacer rod can also assist in the circulation of air and avoid direct contact with the rotating shaft, so that the mesh layer and the soft rubber layer are always kept dry. During the continuous operation of the equipment, before the heat is generated and contacts with the cold air in the air to produce water vapor, the space designed between the fabric and the rotating device can be isolated, and the gap can allow air circulation to take away the heat, so that the rotating device can achieve a constant temperature cooling state.
[0014] 2. When the winding roller continues to wind up and the thickness increases, the auxiliary roller pressed on it will move along the sliding path through the central axis to adjust its placement height. While the auxiliary roller rotates together with the winding roller, the inclined rubber strip on the surface of the roller will help stretch the wound fabric from the middle to both sides through its own material and inclination angle, preventing the fabric from stacking and allowing the fabric to be wound up in an orderly and smooth manner. During the process of fabric winding, it can be further stretched and sorted, and synchronously adjusted according to its winding state to always contact the top of the fabric to assist the overall operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 The utility model is a structural schematic diagram of a cloth winding device.
[0016] Figure 2 This is a schematic structural diagram of the winding roller of the utility model.
[0017] Figure 3 This is a schematic structural diagram of the support core of the utility model.
[0018] Figure 4 This is a schematic diagram of the cross-sectional structure of the support core of the utility model.
[0019] Figure 5 This is a structural diagram of the auxiliary roller of the utility model.
[0020] In the figure: access door 1, control box 2, fixed plate 3, auxiliary roller 4, slideway 5, rewinding roller 6, adjustment roller 7, support core 61, mesh layer 62, soft rubber layer 63, through-hole 64, rotating shaft 11, top block 12, spacer rod 13, through-hole 14, adjustment body 15, connecting hole 16, central axis 41, tilting rubber strip 42, roller 43. DETAILED DESCRIPTION
[0021] The present invention will be further described below with reference to the accompanying drawings:
[0022] As attached Figure 1 To the attached Figure 5 As shown:
[0023] The utility model provides a cloth winding device, which structure includes a taking door 1, a control box 2, a fixed plate 3, an auxiliary roller 4, a sliding channel 5, a winding roller 6, and an adjusting roller 7. The taking door 1 is hingedly connected to the fixed plate 3, the control box 2 is fixed to the outer surface of the fixed plate 3 to control the operation of the entire device, the auxiliary roller 4 is clamped in the inner groove of the sliding channel 5, the winding roller 6 is installed directly below the auxiliary roller 4, and the adjusting roller 7 is located below the front end of the winding roller 6.
[0024] The winding roller 6 includes a support core 61, a mesh layer 62, a soft rubber layer 63, and a through-hole 64. The support core 61 is located inside the soft rubber layer 63 and at the same center. The soft rubber layer 63 and the mesh layer 62 are an integrated structure. A through-hole 64 is formed between the two mesh layers 62. The gap between the support core 61 and the soft rubber layer 63 allows air to circulate, thereby keeping the air dry. When the winding roller 6 needs to be disassembled after winding, the control box 2 is used to control the push of the top block 12 to make the soft rubber layer 63 and the cloth tighter to prevent 6 from spinning.
[0025] Among them, the auxiliary roller 4 can be moved up and down along the sliding path 5 to adjust its position, the taking door 1 is opened to facilitate the disassembly and assembly of the winding roller 6, the mesh layer 62 is a mesh structure to assist internal gas circulation, the auxiliary roller 4 moves and adjusts according to the thickness of the winding roller 6, the soft rubber layer 63 is made of soft rubber material and can increase friction and fix the fabric without damaging it, and the soft rubber layer 63 is provided with four evenly distributed in a circle.
[0026] Among them, the support core 61 includes a rotating shaft 11, a top block 12, a spacer rod 13, a through hole 14, an adjusting body 15, and a connecting port 16. The rotating shaft 11 passes through the top block 12 and the adjusting body 15. The top block 12 is provided with two spacers located at the head and tail sides of the adjusting body 15. The spacer rod 13 is fixed to the outer surface of the adjusting body 15. The through hole 14 passes through the adjusting body 15. A connecting port 16 is formed between the two adjusting bodies 15. The adjusting body 15 is provided with four circular, evenly distributed and expandable adjustments. The gap between the adjusting body 15 and the rotating shaft 11 can allow air to circulate and adjust the heat generated by the rotation to reduce the heat brought out by the air.
[0027] Among them, the spacer rod 13 is supported between the regulating body 15 and the soft rubber layer 63. The inner ring surface of the soft rubber layer 63 is provided with a hard plate to play a supporting role. The end of the top block 12 away from the regulating body 15 is provided with a tightly fitting rubber ring. The rubber ring at the rear end of the top block 12 can play a role of fixing and increasing resistance after movement. When the top block 12 needs to return to its position, the winding roller 6 is installed back to its original position, and the support core 61 is stuck in the corresponding position and is pulled back by the control box 2. The limited space of the through hole 14 can allow the air inside to have a certain impact when it is output.
[0028] Among them, the auxiliary roller 4 includes a central axis 41, an inclined rubber strip 42, and a roller 43. The central axis 41 runs through the inside of the roller 43. The inclined rubber strip 42 is inclined in a symmetrical structure with the middle as the center line. The inclined rubber strip 42 is made of soft rubber. The inclination angle of the inclined rubber strip 42 assists the fabric to spread from the middle to both sides to prevent stacking.
[0029] Among them, the cross-section of the top block 12 is a trapezoidal structure, and when it moves toward the middle end, it will adjust the expansion range of the regulating body 15. The through hole 14 and the connecting port 16 connect the space on both sides of the inside and outside to guide the airflow and maintain a constant temperature. The spacer rods 13 are provided with three groups of four in each group and are evenly distributed in a circle. The through holes 14 are provided with eight and four are in a group and are evenly distributed in a circle. The surface of the regulating body 15 is inclined to provide space and direction for auxiliary gas movement.
[0030] The specific usage and function of this embodiment are as follows:
[0031] In the present invention, the cloth is arranged and transported to the winding roller 6 by the adjusting roller 7, and the soft rubber layer 63 of the winding roller 6 plays a role in grabbing the cloth, so that the cloth can be spread flat on the surface of the winding roller 6 for rolling and winding. The mesh layer 62 is in a grid state, so that the air can circulate at the position where the cloth and the winding roller 6 are in contact. When the winding roller 6 continues to wind up and the thickness increases, the auxiliary roller 4 pressed on the top will move along the sliding path 5 through the central axis 41 to adjust the height of the placement. When the auxiliary roller 4 rotates together with the winding roller 6, the inclined rubber strip 42 on the surface of the drum 43 will help stretch the wound cloth from the middle end to both sides through its own material and inclination angle to prevent the cloth from stacking, so that the cloth can be wound up in an orderly and flat manner. When the rotating shaft 11 continues to rotate, the The temperature generated is adjusted, and the air on both sides of the regulating body 15 is circulated through the gap connecting port 16 and the through hole 14, and the heat is continuously taken out. The space created by the distance between the soft rubber layer 63 and the regulating body 15 supported by the spacer rod 13 can also assist in the circulation of air, and avoid direct contact with the rotating shaft 11, so that the mesh layer 62 and the soft rubber layer 63 are always kept dry. After the winding roller 6 is wound up, the control box 2 is used to control the top block 12 to move toward the regulating body 15, so that the regulating body 15 stretches outward, and the rotating shaft 11 plays a role in increasing the gap, allowing air to quickly enter, and the rotating shaft 11 quickly cools down. The spacer rod 13 will push the soft rubber layer 63 to be closer to the fabric, preventing the winding roller 6 from rotating after disassembly.
[0032] Utilizing the technical solution described in the utility model, or those skilled in the art designing similar technical solutions inspired by the technical solution of the utility model to achieve the above-mentioned technical effects, all fall within the scope of protection of the utility model.
Claims
1. A cloth winding device, comprising a taking door (1), a control box (2), a fixed plate (3), an auxiliary roller (4), a slideway (5), a winding roller (6), and an adjusting roller (7), wherein the taking door (1) is hingedly connected to the fixed plate (3), the control box (2) is fixed to the outer surface of the fixed plate (3) to control the operation of the entire device, the auxiliary roller (4) is clamped in the inner groove of the slideway (5), the winding roller (6) is installed directly below the auxiliary roller (4), and the adjusting roller (7) is located below the front end of the winding roller (6), and is characterized in that: The winding roller (6) comprises a support core (61), a mesh layer (62), a soft adhesive layer (63), and a through-hole (64); the support core (61) is located inside the soft adhesive layer (63) and has the same center; the soft adhesive layer (63) and the mesh layer (62) are an integrated structure; and a through-hole (64) is formed between the two mesh layers (62).
2. The cloth winding device according to claim 1, characterized in that: The auxiliary roller (4) can be moved up and down along the sliding path (5) to adjust its position. The taking door (1) is opened to facilitate the disassembly and assembly of the winding roller (6). The mesh layer (62) is a mesh structure that assists internal gas circulation. The auxiliary roller (4) is moved and adjusted according to the thickness of the winding roller (6).
3. The cloth winding device according to claim 1, characterized in that: The support core (61) comprises a rotating shaft (11), a top block (12), a spacer rod (13), a through hole (14), an adjusting body (15), and a connecting port (16). The rotating shaft (11) passes through the top block (12) and the adjusting body (15). The top block (12) is provided with two spacers located at the head and tail sides of the adjusting body (15). The spacer rod (13) is fixed to the outer surface of the adjusting body (15). The through hole (14) passes through the adjusting body (15). A connecting port (16) is formed between the two adjusting bodies (15).
4. A cloth winding device according to claim 1 or 3, characterized in that: The spacer rod (13) is supported between the regulating body (15) and the soft body rubber layer (63). The inner surface of the soft body rubber layer (63) is provided with a hard plate to play a supporting role. The end of the top block (12) away from the regulating body (15) is provided with a tightly fitting rubber ring.
5. The cloth winding device according to claim 1, characterized in that: The auxiliary roller (4) comprises a central axis (41), an inclined rubber strip (42), and a roller (43); the central axis (41) runs through the interior of the roller (43); and the inclined rubber strip (42) is inclined in a symmetrical structure with the middle as the center line.
6. The cloth winding device according to claim 3, characterized in that: The cross section of the top block (12) is a trapezoidal structure, and when it moves toward the middle end, it will adjust the expansion range of the regulating body (15). The through hole (14) and the connecting port (16) connect the spaces on both sides to guide the air flow and maintain constant temperature. The spacer rods (13) are provided in three groups, each with four rods evenly distributed in a circular shape.