Feeding mechanism for setting machine

By designing the squeezing roller and rotating roller assembly of the feeding mechanism, the moisture and wrinkle problems of the fabric in the setting machine are solved, and efficient fabric setting and drying is achieved.

CN223373430UActive Publication Date: 2025-09-23ZHEJIANG HENGJIEKELANZI MASCH CO LTD
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Patent Information

Application Number
CN202422775896.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-09-23
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

In the production of textile fabrics, the fabrics are prone to wrinkles and absorb a lot of moisture, affecting the quality and efficiency of shaping and drying.

Method used

A feeding mechanism is designed, which includes components such as a squeezing roller, a rotating roller, a beating convex ball, a slider and a guide roller. It removes moisture from the fabric by squeezing and beating the fabric and unfolds the fabric to ensure its smooth transportation.

Benefits of technology

Effectively remove moisture from fabrics, prevent wrinkles, and improve styling and drying efficiency and quality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223373430U_ABST
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Abstract

The utility model discloses a feeding mechanism for a setting machine, which comprises a feeding table and a setting machine body, two wringing rollers are arranged above the feeding table, two rotatable rollers are further arranged above the feeding table, a plurality of flapping convex balls are respectively and fixedly arranged on the outer side of each roller, a partition plate is arranged above the feeding table, and a plurality of flapping convex balls are respectively and fixedly arranged on the outer side of each flapping convex ball. A sliding connecting column is arranged on the partition plate in a penetrating mode, the lower end of the connecting column is connected with a jacking plate, the upper end of the connecting column is connected with a connecting block, a sliding rail is further arranged above the feeding table, two sliding blocks capable of sliding are embedded in the sliding rail, and two adjusting rods are hinged to the two ends of the connecting block and the two sides of the two sliding blocks respectively. A plurality of rotatable dispersing balls are embedded in the upper end of the sliding block, a reset spring is arranged on the connecting column in a penetrating mode, a rotatable rotating shaft is arranged below the ejector plate, a plurality of cams are fixedly arranged on the rotating shaft, and a limiting feeding mechanism is further arranged on the feeding table. The device has the advantages that the fabric can be spread and flattened, and excessive moisture adsorbed on the fabric can be removed.
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Description

Technical Field

[0001] The utility model relates to the technical field of shaping machines, in particular to a feeding mechanism for shaping machines. Background Art

[0002] A shaping machine is a machine used to set the shape of textile products. It can be categorized by type: yarn shaping machines, sock shaping machines, fabric shaping machines, curtain shaping machines, spandex-coated yarn shaping machines, silk shaping machines, garment shaping machines, and suit shaping machines. Currently, fabric shaping machines are used in workshops producing textile fabrics. During the production process, freshly woven fabrics often wrinkle. Failure to flatten and smooth them will inevitably affect the quality of the product after setting and drying. Furthermore, fabrics generally absorb a significant amount of moisture or dye before setting and drying. Failure to squeeze out the excess moisture prolongs the drying process, thereby reducing the efficiency of the drying process. To address these issues, the following solution is proposed. Utility Model Content

[0003] The utility model aims to provide a feeding mechanism for a shaping machine, which has the advantages of being able to spread and flatten fabrics and remove excess moisture absorbed on the fabrics.

[0004] The above technical objectives of the present invention are achieved through the following technical solutions:

[0005] The transmission mechanism of the present invention is a pair of transmission mechanisms, each of which is connected to the feed mechanism of the present invention, and the transmission mechanism is connected to the feed mechanism of the present invention on the one hand, and the transmission mechanism is connected to the feed mechanism of the present invention on the other hand. Material toggling mechanism, its both ends are connected with the up-down knob. The knob is on top of each other, and the knob has a round shank to move along the top of the knob. The knob has a round shank to move along the top of the knob. The knob has a round shank to move along the top of the knob.

[0006] Preferably, the rotating mechanism includes two gears, and the two gears are meshed with each other. A first bracket is provided at one end of the two squeezing rollers and is fixedly connected to one side of the two gears respectively. A second motor is installed on the other side of the first bracket, and the output shaft of the second motor is provided at the first bracket and is fixedly connected to one end of the squeezing roller.

[0007] Preferably, the other sides of the two gears are respectively connected to a driving wheel, two driven wheels are provided on one side of the first bracket, one end of the two rollers passes through the first bracket and is fixedly connected to one side of the two driven wheels respectively, and a belt is respectively provided between each driving wheel and the driven wheel.

[0008] Preferably, a water receiving tray is fixed on the lower side of the feeding platform, and the water receiving tray is located below the first bracket. A through groove is opened at the upper end of the feeding platform, and the through groove is connected to the water receiving tray. The lower end of the water receiving tray is connected to a water outlet pipe, and the other end of the water outlet pipe is connected to a discharge valve.

[0009] Preferably, the limiting feeding mechanism includes two limiting frames, two rotatable threaded rods are passed through the inner side of the third bracket, the thread directions of the two threaded rods are opposite, and one end is fixedly connected, a turning handle is provided on one side of the third bracket, one end of the threaded rod is passed through the third bracket and is fixedly connected to one end of the turning handle, threaded seats are respectively passed through the two threaded rods, and the two limiting frames are respectively fixed on the upper ends of the two threaded seats, a sliding rod is fixed on the inner side of the third bracket, and the two limiting frames are respectively slidably passed through the sliding rod, a guide hole is opened on the third bracket, and the guide roller is passed through the inner side of the guide hole.

[0010] The beneficial effects of the utility model are:

[0011] 1. The rotating mechanism can drive two squeezing rollers to rotate simultaneously. When the fabric passes between the two squeezing rollers, the two squeezing rollers can squeeze the fabric to squeeze out excess water on the fabric, thereby saving the time for subsequent fabric shaping and drying, and further improving the efficiency of fabric shaping and drying. The rotation of the two rollers can drive several beating convex balls to rotate simultaneously, so that the upper and lower surfaces of the fabric can be beaten by several beating convex balls at the same time, which can disperse the fabric and prevent fabric wrinkles, and further improve the quality of subsequent fabric shaping and drying.

[0012] 2. The connecting block can be driven up and down by moving the connecting column up and down. When the connecting column moves upward, the two sliders can be driven to slide away from each other along the slide rail by rotating and adjusting a number of adjusting rods. Conversely, when the connecting column moves downward, the two sliders can be driven to slide closer to each other along the slide rail. This can be repeated to achieve repeated movement of the two sliders. When the fabric passes through the upper ends of the two sliders, the two sliders can slide away and closer repeatedly, and the fabric can be spread out and dispersed by a number of dispersion balls to spread the fabric flat, avoid wrinkles on the fabric and affect the quality of shaping and drying, and further improve the fabric shaping and drying efficiency.

[0013] 3. Before the fabric enters the setting machine body, it will pass through the lower end of the guide roller. At this time, the guide roller can guide the conveying of the fabric, and the limiting feeding mechanism can limit the feeding of the fabric to prevent the position deviation of the fabric when entering the setting machine body. Therefore, the setting and drying quality of the fabric can be guaranteed and the setting and drying efficiency can be further improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a structural diagram of an embodiment;

[0015] Figure 2 Schematic diagram of the inner structure of the first bracket in the embodiment;

[0016] Figure 3This is a schematic structural diagram of the other side of the first bracket in the embodiment;

[0017] Figure 4 Schematic diagram of the inner structure of the second bracket in the embodiment;

[0018] Figure 5 This is a schematic diagram of the inner structure of the third bracket in the embodiment;

[0019] Figure 6 Schematic diagram of the structure of the limiting frame in the embodiment.

[0020] 1. Feeding table; 2. Forming machine body; 3. First bracket; 4. Water squeezing roller; 5. Rotating mechanism; 6. Rotating roller; 7. Beating convex ball; 8. Second bracket; 9. Partition; 10. Connecting column; 11. Push plate; 12. Connecting block; 13. Slide rail; 14. Slider; 15. Adjusting rod; 16. Dispersing ball; 17. Return spring; 18. Rotating shaft; 19. Cam; 20. First motor; 21. Third bracket; 22. Guide roller; 23. Position limiting feeding mechanism; 24. Gear; 25. Second motor; 26. Driving wheel; 27. Driven wheel; 28. Belt; 29. ​​Water receiving tray; 30. Water outlet pipe; 31. Discharge valve; 32. Position limiting frame; 33. Threaded rod; 34. Turning handle; 35. Threaded seat; 36. Sliding rod; 37. Guide hole. DETAILED DESCRIPTION

[0021] The following is only a preferred embodiment of the present invention, and the scope of protection is not limited to this embodiment. All technical solutions under the concept of the present invention should fall within the scope of protection of the present invention. The same parts are represented by the same figure marks. It should be noted that the words "front", "rear", "left", "right", "up" and "down" used in the following description refer to the directions in the accompanying drawings, and the words "bottom" and "top", "inside" and "outside" refer to the directions toward or away from the geometric center of a specific component, respectively.

[0022] like Figures 1 to 6 As shown, a feeding mechanism for a setting machine includes a feeding platform 1 and a setting machine body 2. A first bracket 3 is fixedly provided at the upper end of the feeding platform 1. Two squeezing rollers 4 are penetrated on the inner side of the first bracket 3. A rotating mechanism 5 is provided on one side of the first bracket 3. The rotating mechanism 5 is respectively connected to the two squeezing rollers 4. The two squeezing rollers 4 can be driven to rotate simultaneously by the rotating mechanism 5. When the fabric passes between the two squeezing rollers 4, the fabric can be squeezed by the two squeezing rollers 4 to squeeze out excess water on the fabric, thereby saving the time for subsequent fabric setting and drying, and further improving the efficiency of fabric setting and drying.

[0023] The rotating mechanism 5 includes two gears 24, and the two gears 24 are meshed with each other. One end of the two squeezing rollers 4 is provided with a first bracket 3 and is fixedly connected to one side of the two gears 24 respectively. A second motor 25 is installed on the other side of the first bracket 3. The output shaft of the second motor 25 is provided with the first bracket 3 and is fixedly connected to one end of the squeezing roller 4. The rotation of the second motor 25 can drive one of the squeezing rollers 4 to rotate, thereby driving one of the gears 24. Since the two gears 24 are meshed with each other, the two gears 24 can eventually rotate at the same time, thereby realizing the simultaneous rotation of the two squeezing rollers 4, and the rotation directions are opposite.

[0024] Two rotatable rollers 6 are also provided on the inner side of the first bracket 3, and a number of beating convex balls 7 are fixed on the outer side of each roller 6. The rotation of the two rollers 6 can drive the number of beating convex balls 7 to rotate simultaneously. Therefore, the upper and lower surfaces of the fabric can be beaten simultaneously by the number of beating convex balls 7, which can disperse the fabric and prevent wrinkles on the fabric, further improving the subsequent shaping and drying quality of the fabric.

[0025] The other sides of the two gears 24 are respectively connected to a driving wheel 26, and two driven wheels 27 are provided on one side of the first bracket 3. One end of the two rollers 6 passes through the first bracket 3 and is fixedly connected to one side of the two driven wheels 27. A belt 28 is respectively provided between each driving wheel 26 and the driven wheel 27. The rotation of the two gears 24 can drive the two driving wheels 26 to rotate simultaneously, and then the two driven wheels 27 can be rotated simultaneously through the belt 28, and finally the two rollers 6 can be rotated simultaneously.

[0026] A rotatable shaft 18 is also provided on the inner side of the second bracket 8, and a plurality of cams 19 are fixedly provided on the shaft 18. A first motor 20 is mounted on one side of the second bracket 8. The output shaft of the first motor 20 passes through the second bracket 8 and is fixedly connected to one end of the shaft 18. The rotation of the first motor 20 can drive the plurality of cams 19 to rotate simultaneously. A second bracket 8 is fixedly provided on the upper end of the feeding platform 1. A partition 9 is fixedly provided on the inner side of the second bracket 8. A slidable connecting column 10 is provided on the partition 9. A lifting plate 11 is provided below the partition 9, and the lower end of the connecting column 10 is fixedly connected to the upper end of the lifting plate 11. The plurality of cams 19 are respectively located below the lifting plate 11. A return spring 17 is provided on the connecting column 10, and the two ends of the return spring 17 are connected between the lower end of the partition 9 and the upper end of the lifting plate 11. As the plurality of cams 19 rotate, the return spring 17 rotates. When the more protruding side of the cams 19 contacts the lower end of the ejector plate 11, as the cams 19 continue to rotate, the ejector plate 11 can be pushed upward, thereby driving the connecting column 10 to move upward. At this time, the return spring 17 is squeezed to generate elastic force. When the more protruding side of the cam 19 is separated from the ejector plate 11, the return spring 17 can drive the connecting column 10 and the ejector plate 11 to return to their initial positions. In this way, the connecting column 10 can be repeatedly moved up and down.

[0027] A connecting block 12 is provided above the partition 9, and the upper end of the connecting column 10 is fixedly connected to the lower end of the connecting block 12. A slide rail 13 is also fixed on the inner side of the second bracket 8. Two slidable sliders 14 are embedded on the slide rail 13. Two ends of the connecting block 12 and the two sides of the two sliders 14 are hinged with two adjusting rods 15. The upper end of each slider 14 is respectively embedded with a number of rotatable dispersion balls 16. The connecting block 12 can be driven up and down by moving the connecting column 10 up and down. When the connecting column 10 moves upward, the adjusting rods 15 can be rotated to adjust the connection. The joint drives the two sliders 14 to slide away from each other along the slide rail 13. Conversely, when the connecting column 10 moves downward, the two sliders 14 can be driven to slide closer to each other along the slide rail 13. This can be repeated to achieve repeated movement of the two sliders 14. When the fabric passes through the upper ends of the two sliders 14, the two sliders 14 can repeatedly move away from and close to each other, and the fabric can be spread out and dispersed by a number of dispersion balls 16 to spread the fabric flat, avoid wrinkles in the fabric and affect the shaping and drying quality, and further improve the shaping and drying efficiency of the fabric.

[0028] A third bracket 21 is also fixed to the upper end of the feeding table 1, and a rotatable guide roller 22 is passed through the inner side of the third bracket 21. A limited feeding mechanism 23 is also provided on the inner side of the third bracket 21. The fabric will pass through the lower end of the guide roller 22 before entering the shaping machine body 2. At this time, the guide roller 22 can guide the conveying of the fabric, and the limited feeding mechanism 23 can limit the feeding of the fabric to prevent the fabric from positional deviation when entering the shaping machine body 2. Therefore, the shaping and drying quality of the fabric can be guaranteed, and the shaping and drying efficiency can be further improved.

[0029] The limiting feeding mechanism 23 includes two limiting frames 32, and two rotatable threaded rods 33 are passed through the inner side of the third bracket 21. The thread directions of the two threaded rods 33 are opposite, and one end is fixedly connected. A turning handle 34 is provided on one side of the third bracket 21, and one end of the threaded rod 33 passes through the third bracket 21 and is fixedly connected to one end of the turning handle 34. By rotating the turning handle 34, the two threaded rods 33 can be driven to rotate simultaneously. The two limit frames 32 are respectively provided with a threaded seat 35 on the two threaded seats 35, and the two limit frames 32 are respectively fixed to the upper ends of the two threaded seats 35. A sliding rod 36 is fixed on the inner side of the third bracket 21. The two limit frames 32 are respectively slidably passed through the sliding rod 36. A guide hole 37 is opened on the third bracket 21, and the guide roller 22 is passed through the inner side of the guide hole 37. The rotation of the two threaded rods 33 can respectively drive the two threaded seats 35 to move away from or approach each other along the two threaded rods 33, thereby driving the two limit frames 32 to move away from or approach each other, so as to adjust the distance between the two limit frames 32 brackets, thereby playing a limiting role for fabrics of different widths. When the two guide frames move, they can slide along the sliding rod 36. Therefore, the sliding rod 36 can play a guiding and limiting role on the moving trajectory of the limit frame 32 to ensure that the guide frame can only move straight left and right.

[0030] A water receiving tray 29 is fixedly provided on the lower side of the feeding platform 1, and the water receiving tray 29 is located below the first bracket 3. A through groove is opened at the upper end of the feeding platform 1, and the through groove is communicated with the water receiving tray 29. The lower end of the water receiving tray 29 is connected to a water outlet pipe 30, and the other end of the water outlet pipe 30 is connected to a discharge valve 31. The water squeezed out of the fabric can be collected through the water receiving tray 29, and then the water in the water receiving tray 29 can be discharged through the water outlet pipe 30 by opening the discharge valve 31 for subsequent recycling.

[0031] The specific embodiments described above further illustrate the technical problems, technical solutions and beneficial effects solved by the present invention. It should be understood that the above are only specific embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A feeding mechanism for a setting machine, characterized in that: The invention comprises a feeding platform (1) and a shaping machine body (2), wherein a first bracket (3) is fixedly provided on the upper end of the feeding platform (1), two squeezing rollers (4) are passed through the inner side of the first bracket (3), a rotating mechanism (5) is provided on one side of the first bracket (3), and the rotating mechanism (5) is respectively connected to the two squeezing rollers (4), two rotatable rollers (6) are also passed through the inner side of the first bracket (3), and a plurality of beating convex balls (7) are respectively fixedly provided on the outer side of each of the rollers (6), and a first bracket (3) is fixedly provided on the upper end of the feeding platform (1). Two brackets (8), a partition (9) is fixedly provided on the inner side of the second bracket (8), a slidable connecting column (10) is passed through the partition (9), a top moving plate (11) is provided below the partition (9), and the lower end of the connecting column (10) is fixedly connected to the upper end of the top moving plate (11), a connecting block (12) is provided above the partition (9), and the upper end of the connecting column (10) is fixedly connected to the lower end of the connecting block (12), and a slide rail (13) is also fixedly provided on the inner side of the second bracket (8), and a slide rail (13) is embedded in the slide rail There are two slidable sliders (14), and two adjusting rods (15) are respectively hinged on the two ends of the connecting block (12) and the two sides of the two sliders (14). A plurality of rotatable dispersion balls (16) are respectively embedded on the upper end of each slider (14). A reset spring (17) is passed through the connecting column (10), and the two ends of the reset spring (17) are connected between the lower end of the partition (9) and the upper end of the top moving plate (11). A rotatable shaft (18) is also passed through the inner side of the second bracket (8). A plurality of cams (19) are fixedly provided, and the plurality of cams (19) are respectively located below the ejector plate (11); a first motor (20) is installed on one side of the second bracket (8); an output shaft of the first motor (20) passes through the second bracket (8) and is fixedly connected to one end of the rotating shaft (18); a third bracket (21) is fixedly provided on the upper end of the feeding platform (1); a rotatable guide roller (22) is passed through the inner side of the third bracket (21); and a limited feeding mechanism (23) is also provided on the inner side of the third bracket (21).

2. A feeding mechanism for a setting machine according to claim 1, characterized in that: The rotating mechanism (5) comprises two gears (24), and the two gears (24) are meshed with each other. One end of the two squeezing rollers (4) is provided with a first bracket (3) and is fixedly connected to one side of the two gears (24) respectively. A second motor (25) is installed on the other side of the first bracket (3). The output shaft of the second motor (25) is provided with the first bracket (3) and is fixedly connected to one end of the squeezing roller (4).

3. A feeding mechanism for a setting machine according to claim 2, characterized in that: The other sides of the two gears (24) are respectively connected to driving wheels (26), one side of the first bracket (3) is provided with two driven wheels (27), one end of the two rollers (6) passes through the first bracket (3) and is respectively fixedly connected to one side of the two driven wheels (27), and a belt (28) is respectively provided between each driving wheel (26) and the driven wheel (27).

4. A feeding mechanism for a setting machine according to claim 3, characterized in that: A water receiving tray (29) is fixedly provided on the lower side of the feeding platform (1), and the water receiving tray (29) is located below the first bracket (3). A through groove is provided at the upper end of the feeding platform (1), and the through groove is connected to the water receiving tray (29). The lower end of the water receiving tray (29) is connected to a water outlet pipe (30), and the other end of the water outlet pipe (30) is connected to a discharge valve (31).

5. A feeding mechanism for a setting machine according to claim 4, characterized in that: The limiting feeding mechanism (23) includes two limiting frames (32), two rotatable threaded rods (33) are passed through the inner side of the third bracket (21), the thread directions of the two threaded rods (33) are opposite, and one end is fixedly connected, a turning handle (34) is provided on one side of the third bracket (21), one end of the threaded rod (33) passes through the third bracket (21) and is fixedly connected to one end of the turning handle (34), a threaded seat (35) is passed through the two threaded rods (33), and the two limiting frames (32) are respectively fixed on the upper ends of the two threaded seats (35), a sliding rod (36) is fixed on the inner side of the third bracket (21), and the two limiting frames (32) are respectively slidably passed through the sliding rod (36), a guide hole (37) is opened on the third bracket (21), and the guide roller (22) is passed through the inner side of the guide hole (37).