Separate drive type cloth rolling device
By adopting a split-drive design in the fabric winding device of the fabric inspection machine, with independent drive motors for the two winding rollers, the problem of complex transmission connections in traditional fabric winding devices is solved, achieving higher reliability and convenience of automatic control.
Patent Information
- Application Number
- CN202423226107.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2034-12-25
AI Technical Summary
In traditional fabric rolling devices, the drive motor and transmission connection mechanism of the two rolling rollers need to roll the fabric alternately, which is complicated and affects the reliability of the machine and the convenience of automatic control.
The device adopts a split-drive fabric winding device, with two fabric winding rollers each having its own independent drive motor, and connected to the splitting roller via a synchronous sprocket assembly. This simplifies the transmission structure and improves reliability and ease of automatic control.
The transmission connection has been simplified, improving the reliability of the fabric inspection machine and the convenience of automatic control.
Smart Images

Figure CN223836706U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a fabric inspection machine, and more particularly to a fabric rolling device located at the end of the fabric inspection machine. Background Technology
[0002] At the end of each fabric inspection machine is a fabric rolling device for folding the fabric into a roll. Common fabric rolling devices typically have two rolling rollers, both of which are connected to the same drive motor via a sprocket assembly. Since the two rolling rollers need to roll the fabric alternately, a relatively complex transmission connection mechanism is required between the drive motor and the two rolling rollers to prevent the idle rolling rollers from spinning idly. This complex transmission mechanism is not only detrimental to the reliability of the machine, but also to automatic control. Utility Model Content
[0003] The present invention aims to improve upon the aforementioned defects of traditional cloth rolling devices.
[0004] The technical solution adopted in this utility model is as follows:
[0005] The split-drive fabric rolling device includes two machine boxes that are horizontally spaced apart and fixed to each other. A first fabric rolling roller and a second fabric rolling roller are provided between the two machine boxes. The first fabric rolling roller and the second fabric rolling roller are horizontally arranged side by side between the two machine boxes, and their ends are respectively rotatably mounted on the opposite side walls of the two machine boxes. The first fabric rolling roller is connected to a first drive motor, and the second fabric rolling roller is connected to a second drive motor.
[0006] As a preferred embodiment, the first fabric roll is located on the fabric inlet side of the machine housing, the second fabric roll is located on the fabric outlet side of the machine housing, and the first drive motor and the second drive motor are located inside the same machine housing.
[0007] As a preferred embodiment, a first splitting roller is provided below the first roll and the second roll, and a second splitting roller is provided below the first splitting roller. Both the first splitting roller and the second splitting roller are horizontally arranged between the two housings, and their ends are respectively rotatably mounted on the opposite side walls of the two housings.
[0008] As a preferred embodiment, a third drive motor is also provided in any of the housings. This third drive motor is connected to the same end of the first and second splitting rollers via a synchronous sprocket assembly.
[0009] As a preferred embodiment, a first movable pressing roller for pressing the fabric onto the first splitting roller is provided on the side above the first splitting roller. The first movable pressing roller is horizontally arranged between the two machine boxes and its two ends are respectively rotatably arranged on the opposite side walls of the two machine boxes.
[0010] As a preferred embodiment, a second movable pressing roller for pressing the fabric onto the second splitting roller is provided on the side above the second splitting roller. The second movable pressing roller is horizontally arranged between the two machine boxes and its two ends are respectively rotatably arranged on the opposite side walls of the two machine boxes.
[0011] As a preferred embodiment, the outer walls of the two housings are symmetrically provided with edge-blowing pipes for blowing air onto both sides of the same side of the fabric to prevent curling.
[0012] As a preferred embodiment, the device also includes a fabric edge alignment mechanism, which includes two limiting plates. The two limiting plates are arranged with their surfaces facing each other, and their bottoms are centered between the first and second fabric rolls. Their tops are exposed above the first and second fabric rolls. The two limiting plates are fixedly mounted on two supports, and the two supports are slidably mounted on two first guide rods. The two first guide rods are both round rods and are positioned vertically at the fabric inlet ends of the two machine housings.
[0013] As a preferred embodiment, one bracket is locked and fixed to the two first guide rods, and the outer side of the other bracket is provided with a spring clamping device that elastically presses it against the opposite bracket.
[0014] As a preferred embodiment, the fabric outlet side of both housings is also provided with a fabric outlet device. The fabric outlet device includes a second guide rod horizontally arranged between the two housings and two fabric outlet frames set on the second guide rod. The second guide rod is a square rod with both ends fixed to the two housings respectively. The fabric outlet frame includes a frame body slidably arranged on the second guide rod and several rollers rotatably arranged on the top of the frame body. The several rollers are all arranged parallel to the first roll fabric roller and the second roll fabric roller. The several rollers are of the same specification and their tops are not higher than the tops of the first roll fabric roller and the second roll fabric roller. Both fabric outlet frames are provided with locking devices for fixing them to the second guide rod.
[0015] The two fabric rolling rollers of this invention are each driven by an independent motor, which helps to improve the reliability of the product and the convenience of automatic control. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present invention from a certain angle.
[0017] Figure 2 This is another schematic diagram of the overall structure of an embodiment of the present utility model.
[0018] Figure 3 This is a schematic diagram of the fabric threading process according to an embodiment of the present utility model. Detailed Implementation
[0019] The present invention will now be described in conjunction with the accompanying drawings and specific embodiments.
[0020] like Figure 1-3 The shown split-drive fabric winding device includes two machine boxes 1 that are arranged laterally apart and fixed to each other. Between the two machine boxes 1 are a first fabric winding roller 2, a second fabric winding roller 3, a first filament separating roller 6, a second filament separating roller 7, a first movable fabric pressing roller 8, and a second movable fabric pressing roller 9.
[0021] The first fabric roll 2 is located on the fabric inlet side of the machine housing 1, and the second fabric roll 3 is located on the fabric outlet side of the machine housing 1. The first fabric roll 2 and the second fabric roll 3 are horizontally arranged side by side between the two machine housings 1, and both ends are respectively rotatably mounted on the opposite side walls of the two machine housings 1. The first fabric roll 2 is connected to the first drive motor 4, and the second fabric roll 3 is connected to the second drive motor 5. The first drive motor 4 and the second drive motor 5 are located inside the same machine housing 1.
[0022] The first splitting roller 6 is located below the first winding roller 2 and the second winding roller 3, and the second splitting roller 7 is located below the first splitting roller 6. The first splitting roller 6 and the second splitting roller 7 are both horizontally arranged between the two housings 1, and their two ends are respectively rotatably mounted on the opposite side walls of the two housings 1. Each housing 1 is also equipped with a third drive motor, which is connected to the same end of the first splitting roller 6 and the second splitting roller 7 through a synchronous sprocket assembly.
[0023] The first movable pressing roller 8 is located above the side of the first splitting roller 6. The first movable pressing roller 8 is horizontally arranged between the two machine boxes 1 and its two ends are respectively rotatably arranged on the spring seats provided on the opposite side of the two machine boxes 1, so as to press the fabric elastically onto the first splitting roller 6.
[0024] The second movable pressing roller 9 is located above the second splitting roller 7. The second movable pressing roller 9 is horizontally arranged between the two machine boxes 1 and its two ends are respectively rotatably arranged on the spring seats provided on the opposite side of the two machine boxes 1, so as to press the fabric elastically onto the second splitting roller 7.
[0025] Two casings 1 are symmetrically provided with edge blowing pipes 10 on their opposite outer casing walls. The air inlet of the edge blowing pipes 10 on both sides is connected to a high-pressure air source, and the air outlet is respectively aligned with the two sides of the same side of the fabric, so as to prevent edge curling by blowing air onto the two sides of the fabric respectively.
[0026] The fabric infeed side of each of the two housings 1 is also provided with a fabric edge alignment mechanism 11. The fabric edge alignment mechanism 11 includes two limiting plates 11.1. The two limiting plates 11.1 are arranged opposite each other, with their bottoms centered between the first fabric roll 2 and the second fabric roll 3, and their tops protruding above the first fabric roll 2 and the second fabric roll 3. The two limiting plates 11.1 are respectively fixed on two brackets 11.2. The two brackets 11.2 are slidably mounted on two first guide rods 11.3. The two first guide rods 11.3 are both round rods and are arranged vertically at the fabric infeed ends of the two housings 1. One bracket 11.2 is locked and fixed to the two first guide rods 11.3. The outer side of the other bracket 11.2 is provided with a spring pressing device 11.4 that elastically presses it against the opposite bracket 11.2.
[0027] The fabric outlet side of each of the two housings 1 is also provided with a fabric outlet device 12. The fabric outlet device 12 includes a second guide rod 12.1 horizontally arranged between the two housings 1 and two fabric outlet frames 12.2 set on the second guide rod 12.1. The second guide rod 12.1 is a square rod with both ends fixed to the two housings 1 respectively. The fabric outlet frame 12.2 includes a frame body 12.21 slidably arranged on the second guide rod 12.1 and two rollers 12.22 rotatably arranged on the top of the frame body 12.21. The two rollers 12.22 are both arranged parallel to the first roll fabric roller 2 and the second roll fabric roller 3. The top of the two rollers 12.22 is not higher than the top of the first roll fabric roller 2 and the second roll fabric roller 3. Both fabric outlet frames 12.2 are provided with locking devices for fixing them to the second guide rod 12.1.
[0028] The fabric end of fabric 13 is fixed to the first roll of fabric 2, and the fabric 13 is then... Figure 3 As shown, when the remaining rollers are connected, starting the first motor 4 can wind the fabric 13 onto the first roll roller 2. If the roll roller needs to be replaced, stop the first roll roller 2, cut off the fabric end of the fabric 13, and fix it onto the second roll roller 3. The fabric 13 will still follow the... Figure 3 The remaining rollers are shown. The finished fabric roll can be pushed onto the fabric exit frame 12 and unloaded from the machine housing 1. In addition, the distance between the two limit plates 11.1 and the distance between the two fabric exit frames 12.2 can be adjusted to accommodate fabrics 13 of different widths.
Claims
1. A split-drive fabric winding device, comprising two machine housings (1) arranged laterally and fixed to each other, wherein a first fabric winding roller (2) and a second fabric winding roller (3) are provided between the two machine housings (1), the first fabric winding roller (2) and the second fabric winding roller (3) are arranged horizontally side by side between the two machine housings (1) and both ends are respectively rotatably mounted on the opposite side walls of the two machine housings (1); characterized in that: The first roll of fabric (2) is connected to the first drive motor (4), and the second roll of fabric (3) is connected to the second drive motor (5).
2. The split-drive fabric winding device according to claim 1, characterized in that: The first fabric roller (2) is located on the fabric inlet side of the machine housing (1), the second fabric roller (3) is located on the fabric outlet side of the machine housing (1), and the first drive motor (4) and the second drive motor (5) are located inside the same machine housing (1).
3. The split-drive fabric winding device according to claim 1, characterized in that: Below the first roll of cloth (2) and the second roll of cloth (3) is a first splitting roller (6), and below the first splitting roller (6) is a second splitting roller (7). The first splitting roller (6) and the second splitting roller (7) are both horizontally arranged between the two machine boxes (1) and both ends are respectively rotatably arranged on the opposite side of the two machine boxes (1).
4. The split-drive fabric winding device according to claim 3, characterized in that: A third drive motor is also provided inside any of the housings (1), which is connected to the same end of the first splitting roller (6) and the second splitting roller (7) via a synchronous sprocket assembly.
5. The split-drive fabric winding device according to claim 4, characterized in that: A first movable pressing roller (8) for pressing the fabric onto the first splitting roller (6) is provided on the upper side of the first splitting roller (6). The first movable pressing roller (8) is horizontally arranged between the two machine boxes (1) and its two ends are respectively rotatably arranged on the opposite side walls of the two machine boxes (1).
6. The split-drive fabric winding device according to claim 4 or 5, characterized in that: The second splitting roller (7) is provided with a second movable pressing roller (9) above its side for pressing the fabric onto the second splitting roller (7). The second movable pressing roller (9) is horizontally arranged between the two machine boxes (1) and its two ends are respectively rotatably arranged on the opposite side walls of the two machine boxes (1).
7. The split-drive fabric winding device according to claim 1, characterized in that: The outer walls of the two housings (1) are symmetrically provided with edge-blowing pipes (10) for blowing air onto the two sides of the same side of the fabric to prevent the edges from curling.
8. The split-drive fabric winding device according to claim 1, characterized in that: It also includes a fabric edge alignment mechanism (11), which includes two limiting plates (11.1). The two limiting plates (11.1) are arranged opposite each other, with their bottoms centered between the first fabric roll (2) and the second fabric roll (3), and their tops protruding above the first fabric roll (2) and the second fabric roll (3). The two limiting plates (11.1) are respectively fixed on two supports (11.2), and the two supports (11.2) are slidably mounted on two first guide rods (11.3). The two first guide rods (11.3) are both round rods and are arranged vertically at the fabric inlet ends of the two machine boxes (1).
9. The split-drive fabric winding device according to claim 8, characterized in that: One bracket (11.2) is locked and fixed to two first guide rods (11.3), and the other bracket (11.2) is provided with a spring pressing device (11.4) on the outside of the other bracket (11.2) to elastically press it against the opposite bracket (11.2).
10. The split-drive fabric winding device according to claim 1, characterized in that: The fabric outlet side of each of the two housings (1) is also provided with a fabric outlet device (12). The fabric outlet device (12) includes a second guide rod (12.1) horizontally arranged between the two housings (1) and two fabric outlet frames (12.2) set on the second guide rod (12.1). The second guide rod (12.1) is a square rod and its two ends are respectively fixed on the two housings (1). The fabric outlet frame (12.2) includes a frame that slides on the second guide rod (12.1). The frame (12.21) and a plurality of rollers (12.22) rotatably mounted on the top of the frame (12.21) are arranged parallel to the first roll roller (2) and the second roll roller (3), and the top of the plurality of rollers (12.22) is not higher than the top of the first roll roller (2) and the second roll roller (3); both fabric output frames (12.2) are provided with locking devices for fixing them to the second guide rod (12.1).