Mark-removing material dispersing machine for cloth
By blowing the conveying mechanism of the fabric with the mark removal and bulking machine and the fan together with the swinging feeding mechanism, the crease problem caused by the fabric during the seam and stacking process is solved, and the loose placement of the fabric and the improvement of the dyeing quality are achieved.
Patent Information
- Application Number
- CN202422633359.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-30
AI Technical Summary
The creases generated by the fabric during seam and stacking affect the dyeing quality and are prone to re-creation after treatment.
A cloth mark removal bulking machine is designed, including a conveying mechanism, a fan and a swinging feeding mechanism. The fabric is blown open through the tension of the conveying mechanism and the blowing power of the fan and swinging to eliminate creases.
Effectively eliminate the creases of the fabric when stacking, avoid hard creases again, ensure the dyeing quality, and are suitable for the next step of the fabric.
Smart Images

Figure CN223254370U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of cloth production equipment, in particular to a cloth trace removing bulk material machine. Background Art
[0002] Because the fabric is subjected to great tension when sewing, the edges of the fabric will bend and fold. At the same time, the fabric will usually be swung and folded before being stacked in the fabric cart. After the fabric has been stacked for a period of time, creases will appear on the fabric. These creases will cause color differences when dyeing, affecting the dyeing quality. Therefore, the fabric needs to be processed after creases appear, and it is necessary to avoid creases due to folding the fabric again after processing. Utility Model Content
[0003] In order to overcome the deficiencies and existing problems of the prior art and to perform a mark removal process on cloth, the utility model provides a mark removal bulking machine for cloth.
[0004] The utility model is realized through the following technical solutions:
[0005] A trace-removing bulk feeder for cloth comprises a horizontal frame, a material pipe is provided on the horizontal frame, a conveying mechanism is provided on the inlet side of the material pipe, a fan is provided above the conveying mechanism, the outlet of the fan corresponds to the inlet of the material pipe, a feeding mechanism is provided on the outlet side of the material pipe, the feeding mechanism is connected to a swinging drive mechanism, and a baffle is also provided on the outlet side of the material pipe to prevent the cloth from deviating.
[0006] An extension frame is provided at one end of the horizontal frame, the feeding mechanism is arranged at the bottom of the extension frame, and the baffle is hinged to the end of the extension frame.
[0007] The feeding mechanism comprises a side rod, one end of which is hinged to the bottom of the extension frame, and the side rod is connected to the feeding hopper.
[0008] The side rods are provided with a plurality of positioning holes, and the side walls of the feeding hopper are provided with a plurality of connecting holes matching the positioning holes.
[0009] The swing drive mechanism includes a first rotary motor, the first rotary motor is connected to a rotary arm, the rotary arm is connected to a connecting rod, and the connecting rod is connected to the positioning hole of the side rod.
[0010] The transmission mechanism includes an active transmission roller and a driven transmission roller, an anti-deviation frame for preventing the cloth from deviating is provided between the active transmission roller and the driven transmission roller, and the active transmission roller is connected to a second rotating motor.
[0011] The second rotating motor is connected to a first transmission wheel, one end of the active transmission roller is connected to a second transmission wheel, and the first transmission wheel and the second transmission wheel are connected via a transmission belt.
[0012] A square frame is provided on the top of the horizontal frame, and the fan is arranged above the square frame.
[0013] The utility model further comprises a vertical frame, and the horizontal frame is arranged on the top of the vertical frame.
[0014] The conveyor mechanism of the present invention delivers the fabric to the inlet of the feed pipe, where it is then blown out of the pipe by a fan, and finally released in a swinging manner by a swinging discharge device. During the conveyor's conveying of the fabric, the tension generated by the conveyor initially removes creases from the fabric. As the fan blows the fabric, the wind exerts a pulling force on the fabric, simultaneously spreading and dispersing the folded fabric, further eliminating creases typically incurred during stacking. After exiting the pipe, the fabric becomes loose and is released in a swinging manner by the feeding mechanism, preventing further creases from regular folding and stacking, making it easier to proceed with the next step of fabric handling. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;
[0016] Figure 2 This is a schematic structural diagram of the feeding mechanism of the utility model;
[0017] Figure 3 It is a schematic structural diagram of the transmission mechanism of the present utility model.
[0018] In the figure: 100-horizontal frame, 101-material pipe, 102-vertical frame, 103-fan, 104-extension frame, 105-baffle, 110-transmission mechanism, 111-active transmission roller, 112-driven transmission roller, 113-anti-bias frame, 114-second rotary motor, 115-first transmission wheel, 116-second transmission wheel, 120-feeding mechanism, 121-side rod, 122-feeding hopper, 130-swinging drive mechanism, 131-first rotary motor, 132-swing arm, 133-connecting rod. DETAILED DESCRIPTION
[0019] In order to facilitate understanding by those skilled in the art, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.
[0020] like Figure 1As shown, a cloth trace removal bulk material machine includes a horizontal frame 100, the horizontal frame 100 is used to accommodate equipment, a material pipe 101 is provided on the horizontal frame 100, the material pipe 101 is used to convey cloth, a conveying mechanism 110 is provided on the inlet side of the material pipe 101, the conveying mechanism 110 is used to convey the cloth to the inlet of the material pipe 101, the conveying mechanism 110 includes an active transmission roller 111 and a driven transmission roller 112, and an anti-deflection frame 113 for preventing the cloth from deflecting is provided between the active transmission roller 111 and the driven transmission roller 112. The active drive roller 111 and the driven drive roller 112 are arranged adjacent to each other, with the driven drive roller 112 located near the entrance of the feed pipe 101. During transport, the cloth first passes around the driven drive roller 112 before passing around the active drive roller 111 and entering the feed pipe 101. This increases the contact area between the active drive roller 111 and the cloth, providing greater friction to ensure efficient transport. Furthermore, the tension exerted by the active drive roller 111 on the cloth during transport removes streaks from the cloth. During transport, the cloth is restrained by the anti-deviation frame 113, preventing deviation. The active drive roller 111 is connected to a first rotary motor 131, the output shaft of which is connected to a first transmission wheel 115. A second transmission wheel 116 is provided at one end of the active drive roller 111. The first and second transmission wheels 115, 116 are connected by a transmission belt, and the second rotary motor 114 provides rotational power to the active drive roller 111.
[0021] like Figure 1 As shown, a fan 103 is installed above the conveyor mechanism 110. The outlet of the fan 103 corresponds to the inlet of the material pipe 101. The fabric is transported by the conveyor mechanism 110 to the inlet of the material pipe 101, where it is then blown out by the fan 103. The wind force generated by the high-power fan 103 disperses and spreads the concentrated fabric, preventing it from folding in half and mitigating creases caused when folded and stacked. Simultaneously, the fan 103 exerts a pulling force on the fabric as it blows it out of the material pipe 101, further mitigating creases. A square frame is installed on top of the horizontal frame 100. The fan 103 is mounted above the square frame, which elevates the fan 103 and prevents interference between the fan 103 and the conveyor mechanism 110. A shock-absorbing pad is installed between the horizontal frame 100 and the square frame to mitigate vibrations generated by the fan 103 during operation.
[0022] The outlet of the feed pipe 101 is equipped with a feeding mechanism 120 for feeding the fabric. This mechanism is connected to a swing drive mechanism 130, which drives the feeding mechanism 120 in a reciprocating swinging motion. This swinging motion allows the fabric, dispersed by the fan 103, to be fed in a swinging manner, thus preventing the fabric from forming hard creases due to regular folding. The outlet of the feed pipe 101 is also equipped with a baffle 105 to prevent the fabric from deviating. This baffle 105 blocks the fabric, allowing it to enter the feeding mechanism 120 and preventing it from being blown out by excessive wind from the fan 103. An extension frame 104 is provided at one end of the horizontal frame 100. The feeding mechanism 120 is located at the bottom of the extension frame 104, and the baffle 105 is hinged to the end of the extension frame 104. The feeding mechanism 120 includes a side rod 121, one end of which is hinged to the bottom of the extension frame 104. The side rod 121 is connected to a feeding hopper 122. After the cloth is blown out of the feeding pipe 101, it is blocked by the baffle 105 and falls into the feeding hopper 122 for feeding. The extension frame 104 can also prevent the blown cloth from deviating to one side.
[0023] The side bar 121 is provided with a plurality of positioning holes, and the side wall of the feeding hopper 122 is provided with a plurality of connecting holes that match the positioning holes. By adjusting the connection position of the positioning holes and the connecting holes, the installation position of the feeding hopper 122 can be adjusted. The swing drive mechanism 130 includes a first rotary motor 131, the first rotary motor 131 is connected to a swing arm 132, and the swing arm 132 is connected to a connecting rod 133. When the second rotary motor 114 drives the swing arm 132 to rotate, the swing arm 132 drives the feeding hopper 122 to perform a reciprocating swing motion through the connecting rod 133, realizing swing-type feeding. The connecting rod 133 is connected to the positioning holes of the side bar 121. By adjusting the connection position of the connecting rod 133 and the positioning holes and the installation position of the feeding hopper 122, the swing amplitude of the feeding hopper 122 can be controlled.
[0024] This embodiment also includes a vertical frame 102. The horizontal frame 100 is installed on the top of the vertical frame 102. The vertical frame 102 elevates the equipment to a certain height to prevent personnel from directly contacting the equipment and causing danger. At the same time, it can use gravity to increase the interaction force between the conveyor mechanism 110 and the fabric, thereby improving the effect of the stretching force on the fabric to remove marks. A maintenance ladder is installed on one side of the vertical frame 102, and a guardrail is installed on the maintenance ladder. A maintenance ladder is installed on one side of the vertical frame 102, and a guardrail is installed on the maintenance ladder.
[0025] The above embodiments are preferred implementations of the present invention and are not intended to limit the present invention. Without departing from the scope of the present invention, any obvious replacements are within the scope of protection of the present invention.
Claims
1. A material removal bulking machine for cloth, comprising a horizontal frame (100), characterized in that: A material pipe (101) is provided on the horizontal frame (100), a conveying mechanism (110) is provided on the inlet side of the material pipe (101), a fan (103) is provided above the conveying mechanism (110), the outlet of the fan (103) corresponds to the inlet of the material pipe (101), a feeding mechanism (120) is provided on the outlet side of the material pipe (101), the feeding mechanism (120) is connected to a swing driving mechanism (130), and a baffle (105) is also provided on the outlet side of the material pipe (101) to prevent the material from deviating.
2. The material removal bulking machine according to claim 1, characterized in that: An extension frame (104) is provided at one end of the horizontal frame (100), the feeding mechanism (120) is provided at the bottom of the extension frame (104), and the baffle (105) is hinged to the end of the extension frame (104).
3. The material dispensing machine according to claim 2, characterized in that: The feeding mechanism (120) comprises a side rod (121), one end of the side rod (121) is hinged to the bottom of the extension frame (104), and the side rod (121) is connected to a feeding hopper (122).
4. The material dispensing machine according to claim 3, characterized in that: The side rod (121) is provided with a plurality of positioning holes, and the side wall of the feeding hopper (122) is provided with a plurality of connecting holes matching the positioning holes.
5. The material dispensing machine according to claim 4, characterized in that: The swing drive mechanism (130) comprises a first rotary motor (131), the first rotary motor (131) is connected to a rotary arm (132), the rotary arm (132) is connected to a connecting rod (133), and the connecting rod (133) is connected to a positioning hole of the side rod (121).
6. The material dispensing machine according to claim 1, characterized in that: The conveying mechanism (110) comprises a driving transmission roller (111) and a driven transmission roller (112); an anti-deviation frame (113) for preventing the fabric from deviating is provided between the driving transmission roller (111) and the driven transmission roller (112); and the driving transmission roller (111) is connected to a second rotating motor (114).
7. The material dispensing machine according to claim 6, characterized in that: The second rotating motor (114) is connected to a first transmission wheel (115), one end of the active transmission roller (111) is connected to a second transmission wheel (116), and the first transmission wheel (115) and the second transmission wheel (116) are connected via a transmission belt.
8. The material dispensing machine according to claim 7, characterized in that: A square frame is provided on the top of the horizontal frame (100), and the fan (103) is provided above the square frame.
9. The material dispensing machine according to any one of claims 1 to 8, characterized in that: It also includes a vertical frame (102), and the horizontal frame (100) is arranged on the top of the vertical frame (102).