Fabric setting machine convenient to adjust
By introducing wide-width adjustment and protective adjustment devices into the fabric setting machine, the adaptability and protection of the fabric setting machine to different widths is solved, and the uniform stress of the fabric and the cleaning protection of the equipment is achieved, and the quality of the finished product and the adaptability of the equipment is improved.
Patent Information
- Application Number
- CN202422479368.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-10-14
AI Technical Summary
Traditional fabric shaping machines are inconvenient to adjust and are difficult to adapt to fabrics of different widths, resulting in offsets or uneven stress during the processing process, and the inlet lacks effective protective measures, causing external impurities to enter the interior of the equipment.
A fabric shaping machine including a wide-width adjustment device and a protective adjustment device is designed. Through the linkage device, the width adjustment of the guide roller and the position adjustment of the protective plate are controlled to achieve accurate limits and protection of fabrics of different widths to prevent impurities from entering.
It improves the uniform stress during the fabric setting process, reduces product defects, enhances the adaptability and flexibility of the equipment, and ensures the cleanliness and stability of the equipment.
Smart Images

Figure CN223163635U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of textile processing, and specifically relates to a fabric shaping machine which is convenient to adjust. Background Technique
[0002] As is well known, a fabric shaping machine is a device used in the post-treatment process of textiles. Through shaping treatment, the fabric can achieve better flatness, wrinkle resistance, and dimensional stability, thereby improving the quality of the finished product.
[0003] Traditional fabric shaping machines are not convenient to adjust, and it is difficult to adapt to fabrics of different widths, resulting in possible deviation or uneven stress of the fabric during the processing. Moreover, the feeding port lacks effective protection measures and cannot be adjusted according to actual needs, resulting in poor adaptability of the equipment and easy entry of external impurities (such as dust, fibers, etc.) into the interior of the equipment. Content of the Utility Model
[0004] (I) Technical Problems to be Solved
[0005] Aiming at the deficiencies of the prior art, the utility model provides a fabric shaping machine which is convenient to adjust.
[0006] (II) Technical Solutions
[0007] To achieve the above object, the utility model provides the following technical solutions: A fabric shaping machine which is convenient to adjust, including a housing, guide rollers, ironing rollers, protective plates, a width adjustment device, and a protection adjustment device. Feed ports and discharge ports are respectively opened at the left and right ends of the housing. Two groups of the protective plates are installed at the feed port through the protection adjustment device. Two groups of the guide rollers are symmetrically and rotatably installed at the upper and lower ends near the feed port in the inner cavity of the housing. Two groups of the ironing rollers are symmetrically and rotatably installed at the upper and lower ends in the middle of the inner cavity of the housing. A cooling component is installed near the discharge port in the inner cavity of the housing. The width adjustment device includes a connecting rod, a fixed frame, a first bidirectional screw, a first slider, a semi-limiting ring, and a linkage device. A plurality of the connecting rods are installed on the top wall and the bottom wall of the inner cavity of the housing. One end of each group of the connecting rods is installed with a fixed frame with an opening. The first bidirectional screw is rotatably installed in the fixed frame. The first sliders are threadedly installed at both ends of the first bidirectional screw. The side wall of the first slider far away from the opening is fixedly connected with the semi-limiting ring. Both groups of the semi-limiting rings are slidably connected with the side wall of the guide roller. One end of the two groups of the first bidirectional screws penetrates through the fixed frame and the housing and installs the linkage device.
[0008] In order to facilitate the adjustment of the position of the protective plate, the present utility model is improved in that the protective adjustment device includes a support frame, a second bidirectional screw, a second slider and a driving device. Two groups of the support frames with side openings are symmetrically installed on the side wall of the housing with the central axis of the discharge port as the symmetry axis. The second bidirectional screw is rotatably installed in the support frame. The top end of the second bidirectional screw is provided with the driving device. The left and right ends of the two second bidirectional screws are both threadedly installed with the second sliders. A protective plate is fixedly installed between every two corresponding second sliders.
[0009] In order to facilitate driving the two second bidirectional screws to rotate, the present utility model is improved in that the driving device includes a driving bevel gear, a driven bevel gear and a driving motor. The top ends of the two second bidirectional screws penetrate through the top wall of the support frame and are sleeved with the driven bevel gears. One side of the driven bevel gear is meshed and connected with the driving bevel gear. The driving motor is installed on the side wall of the housing. The left and right output ends of the driving motor are respectively connected with the two driving bevel gears.
[0010] In order to protect the driving device, the present utility model is improved in that a protective shell is installed outside the driving device.
[0011] In order to simultaneously adjust the rotation of the two first bidirectional screws, the present utility model is improved in that the linkage device includes a housing, a driving gear, a driven gear and a driving shaft. The housing is installed on the front side wall of the housing. One end of the two first bidirectional screws penetrates through the side wall of the housing and extends into the housing and is respectively sleeved with the driving gear and the driven gear. The driving gear penetrates through the side wall of the housing and is provided with the driving shaft.
[0012] In order to facilitate driving the driving shaft to rotate, the present utility model is improved in that a hand crank is installed on the driving shaft.
[0013] In order to ensure the stability and accuracy of the operation of the driving motor, the present utility model is improved in that the driving motor is a servo motor.
[0014] In order to also protect the discharge port and facilitate adjustment, the present utility model is improved in that two groups of protective plates are installed at the feeding port and the discharge port through the protective adjustment device.
[0015] (III) Beneficial effects
[0016] Compared with the prior art, the present utility model provides a fabric shaping machine that is easy to adjust, and has the following beneficial effects:
[0017] The fabric shaping machine that is convenient to adjust, through the set wide-width adjustment device, the linkage device controls the synchronous rotation of two groups of first bidirectional screws, so that the first slider drives the semi-limiting ring to slide on the guide roller, and the distance between the two groups of semi-limiting rings is adjusted according to the actual width of the fabric, realizing the adaptation to the wide width of the fabric, which can better protect the safety of the fabric during processing, avoid damage or quality problems caused by improper position, and through the precise limitation of fabrics with different widths, ensure that the fabric can be evenly stressed during the shaping process, improve the flatness and quality after shaping, reduce product defects caused by fabric deviation or uneven stress, and improve the finished product rate.
[0018] The fabric shaping machine that is convenient to adjust, through the set protection adjustment device, during the rotation of two groups of second bidirectional screws, the second slider is driven to move from both ends towards the middle, so that the two groups of protection plates move towards the fabric direction, and the distance between the two groups of protection plates is adjusted according to the fabric entering the discharge port, realizing the precise adjustment of the position of the protection plates. The adjustable protection plates can effectively prevent external impurities such as dust and fibers from entering the interior of the housing, protect the cleanliness of the equipment, and reduce equipment failures caused by impurities. Brief Description of the Drawings
[0019] Figure 1 It is a three-dimensional structural schematic diagram of the first angle of the present utility model;
[0020] Figure 2 It is a three-dimensional structural schematic diagram of a half-section of the protective housing of the present utility model;
[0021] Figure 3 It is a three-dimensional structural schematic diagram of the interior of the housing of the present utility model;
[0022] Figure 4 It is a three-dimensional structural schematic diagram of the wide-width adjustment device and the linkage device of the present utility model.
[0023] In the figure: 1, housing; 2, guide roller; 3, ironing roller; 4, protection plate; 5, feed inlet; 6, discharge outlet; 7, cooling component; 8, connecting rod; 9, fixed frame; 10, first bidirectional screw; 11, first slider; 12, semi-limiting ring; 13, support frame; 14, second bidirectional screw; 15, second slider; 16, active bevel gear; 17, driven bevel gear; 18, drive motor; 19, protective housing; 20, outer shell; 21, active gear; 22, driven gear; 23, drive shaft; 24, hand crank. Detailed Description of the Embodiment
[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0025] Please refer to Figures 1-4 , a fabric sizing machine that is easy to adjust, including a housing 1, guide rollers 2, ironing rollers 3, protective plates 4, a width adjustment device, and a protection adjustment device. Feed ports 5 and discharge ports 6 are respectively opened at the left and right ends of the housing 1. Two groups of the protective plates 4 are installed at the feed port 5 through the protection adjustment device. Two groups of the guide rollers 2 are symmetrically and rotatably installed at the upper and lower parts near the feed port 5 in the inner cavity of the housing 1. Two groups of the ironing rollers 3 are symmetrically and rotatably installed at the upper and lower parts in the middle of the inner cavity of the housing 1. A cooling assembly 7 is installed near the discharge port 6 in the inner cavity of the housing 1. The width adjustment device includes connecting rods 8, fixed frames 9, first bidirectional screws 10, first sliders 11, semi-limiting rings 12, and a linkage device. A plurality of the connecting rods 8 are installed on the inner top wall and the inner bottom wall of the housing 1. One end of each group of the connecting rods 8 is installed with a fixed frame 9 with an opening. The first bidirectional screw 10 is rotatably installed in the fixed frame 9. The first sliders 11 are threadedly installed at both ends of the first bidirectional screw 10. The side wall of the end of the first slider 11 away from the opening is fixedly connected with the semi-limiting ring 12. Both groups of the semi-limiting rings 12 are slidably connected to the side wall of the guide roller 2. One end of the two groups of the first bidirectional screws 10 penetrates through the fixed frame 9 and the housing 1 to install a linkage device. In this embodiment, when in use, first, the fabric enters from the feed port 5, first passes between the two groups of guide rollers 2, then passes between the two ironing rollers 3, and finally passes above the cooling assembly 7 and exits from the discharge port 6 on the other side. The width of the guide rollers 2 can be adjusted according to the width of the fabric. First, the two groups of the first bidirectional screws 10 are controlled to rotate synchronously through the linkage device. During the rotation of the first bidirectional screw 10, the first slider 11 is driven to move from both ends towards the middle. The first slider 11 drives the semi-limiting ring 12 to slide on the guide roller 2. (The semi-limiting ring 12 is in non-contact sliding connection with the guide roller 2, and the inner diameter of the semi-limiting ring 12 is larger than the inner diameter of the guide roller 2, so it will not affect the normal rotation of the guide roller 2). According to the actual width of the fabric, the distance between the two groups of the semi-limiting rings 12 is adjusted to achieve the width adaptation of the fabric, so that the guide roller 2 can limit fabrics of different widths, is applicable to the treatment of different types of fabrics, and enhances the adaptability and flexibility of the equipment.
[0026] During actual use, to further facilitate the adjustment of the position of the protective plate 4, in this embodiment, the protective adjustment device includes a support frame 13, a second bidirectional screw 14, second sliders 15, and a driving device. On the side wall of the housing 1, two groups of the support frames 13 with side openings are symmetrically installed with respect to the central axis of the discharge port 6. The second bidirectional screw 14 is rotatably installed in the support frame 13. The top end of the second bidirectional screw 14 is provided with the driving device. The left and right ends of the two groups of second bidirectional screws 14 are threadedly installed with the second sliders 15. A protective plate 4 is fixedly installed between each two corresponding second sliders 15. When the driving device is started, the driving device drives the two groups of second bidirectional screws 14 to rotate simultaneously. During the rotation of the two groups of second bidirectional screws 14, the second sliders 15 are driven to move from both ends towards the middle. The two second sliders 15 at the upper end drive the protective plate 4 connected therebetween, and the two second sliders 15 at the lower end drive the protective plate 4 connected therebetween, respectively moving from the upper and lower ends towards the middle. The distance between the two groups of protective plates 4 is adjusted according to the fabric entering the discharge port 6, and the position of the protective plate 4 can be accurately adjusted. The adjustable protective plate 4 can effectively prevent impurities from entering the interior of the machine body, and at the same time can be adjusted according to actual needs, improving the practicability and adaptability of the equipment.
[0027] During actual use, to further facilitate the rotation of the two groups of second bidirectional screws 14, in this embodiment, the driving device includes a driving bevel gear 16, a driven bevel gear 17, and a driving motor 18. The top ends of the two groups of second bidirectional screws 14 penetrate through the top wall of the support frame 13 and are sleeved with the driven bevel gear 17. One side of the driven bevel gear 17 is meshed and connected with the driving bevel gear 16. The driving motor 18 is installed on the side wall of the housing 1. The left and right output ends of the driving motor 18 are respectively connected with the two groups of driving bevel gears 16. When the driving motor 18 is started, the output shaft of the motor starts to rotate. The left and right output ends of the motor are connected with the driving bevel gears 16, and the two groups of driving bevel gears 16 rotate accordingly. The driving bevel gear 16 drives the meshed and connected driven bevel gear 17 to rotate, thereby driving the two groups of second bidirectional screws 14 to rotate synchronously.
[0028] During actual use, to further protect the driving device, in this embodiment, a protective housing 19 is installed outside the driving device. The protective housing 19 provides an additional protective layer for the driving device, which can block external infringements such as dust, moisture, and foreign objects, and extend the service life of the driving device.
[0029] During actual use, the two groups of first double screws 10 are further adjusted to rotate simultaneously. In this embodiment, the linkage device includes a housing 20, a driving gear 21, a driven gear 22, and a driving shaft 23. The housing 20 is installed on the front side wall of the housing 1. One end of each of the two groups of first double screws 10 passes through the side wall of the housing 1 and extends into the housing 20, and is respectively sleeved with the driving gear 21 and the driven gear 22. The driving shaft 23 is installed through the side wall of the housing 20 on the driving gear 21. When the driving shaft 23 is manually rotated, when the driving shaft 23 rotates, the driving gear 21 rotates accordingly. Due to the meshing of the driving gear 21 and the driven gear 22, the driven gear 22 also rotates simultaneously, thereby realizing the simultaneous adjustment of the two groups of first double screws 10. The synchronous adjustment of the two groups of screws can be achieved through a single driving source, simplifying the operation steps and improving the work efficiency.
[0030] During actual use, it is further convenient to drive the driving shaft 23 to rotate. In this embodiment, a hand crank 24 is installed on the driving shaft 23. The design of the hand crank 24 enables the user to manually rotate the driving shaft 23 without relying on an external power source, thereby improving the convenience and flexibility of the operation.
[0031] During actual use, the stability and accuracy of the driving motor 18 are further ensured. In this embodiment, the driving motor 18 is a servo motor. The servo motor can perform position, speed, and torque control with high precision. The servo motor adopts closed-loop control and has good stability, which can avoid problems such as stalling and vibration, and ensure the stability and accuracy of the operation of the driving motor 18.
[0032] During actual use, the discharge port 6 is further protected and adjusted conveniently. In this embodiment, the feed port 5 and the discharge port 6 are both installed with a protective plate 4 through the protective adjustment device. Two groups of the protective plates 4 are installed at both the feed port 5 and the discharge port 6, which can effectively prevent impurities or external factors from interfering with the fabric shaping process and ensure the shaping quality. The protective plate 4 is adjusted through the protective adjustment device and can be flexibly adjusted according to different fabric or process requirements, improving the adaptability and practicality of the shaping machine.
[0033] To illustrate in detail the possible application scenarios, technical principles, specific implementable solutions, achievable purposes and effects of this application, etc., the following will be described in detail in combination with the listed specific embodiments and with reference to the accompanying drawings. The embodiments described herein are only used to more clearly illustrate the technical solutions of this application, so they are only examples and cannot be used to limit the protection scope of this application.
[0034] Although embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A fabric shaping machine convenient for adjustment, comprising a housing (1), a guide roller (2), an ironing roller (3), a protective plate (4), a width adjustment device and a protection adjustment device, characterized in that: The left and right ends of the housing (1) are respectively provided with a feed inlet (5) and a discharge outlet (6). Two groups of the protective plates (4) are installed at the feed inlet (5) through the protective adjustment device. Two groups of the guide rollers (2) are symmetrically and rotatably installed on the upper and lower sides at one end of the inner cavity of the housing (1) close to the feed inlet (5). Two groups of the ironing rollers (3) are symmetrically and rotatably installed on the upper and lower sides in the middle of the inner cavity of the housing (1). A cooling assembly (7) is installed at the inner cavity of the housing (1) close to the discharge outlet (6). The width adjustment device includes a connecting rod (8), a fixed frame (9), a first bidirectional screw (10), a first slider (11), a semi-limiting ring (12) and a linkage device. A plurality of the connecting rods (8) are installed on both the inner top wall and the inner bottom wall of the housing (1). One end of each group of the connecting rods (8) is correspondingly installed with a fixed frame (9) with an opening. The first bidirectional screw (10) is rotatably installed in the fixed frame (9). The first sliders (11) are threadedly installed at both ends of the first bidirectional screw (10). The side wall of the first slider (11) far away from the opening is fixedly connected with the semi-limiting ring (12). Both groups of the semi-limiting rings (12) are slidably connected with the side wall of the guide roller (2). One end of the two groups of the first bidirectional screws (10) penetrates through the fixed frame (9) and the housing (1) and is installed with a linkage device.
2. The fabric shaping machine according to claim 1, wherein: The protective adjustment device includes a support frame (13), a second bidirectional screw (14), a second slider (15) and a driving device. Two groups of the support frames (13) with side openings are symmetrically installed on the side wall of the housing (1) with the central axis of the discharge outlet (6) as the symmetry axis. The second bidirectional screw (14) is rotatably installed in the support frame (13). The driving device is installed at the top end of the second bidirectional screw (14). The second sliders (15) are threadedly installed at the left and right ends of the two groups of the second bidirectional screws (14). The protective plates (4) are fixedly installed between every two corresponding second sliders (15).
3. The fabric shaping machine according to claim 2, wherein: The driving device includes a driving bevel gear (16), a driven bevel gear (17) and a driving motor (18). The top ends of the two groups of the second bidirectional screws (14) penetrate through the top wall of the support frame (13) and are sleeved with the driven bevel gear (17). The driven bevel gear (17) is meshed and connected with the driving bevel gear (16) on one side. The driving motor (18) is installed on the side wall of the housing (1). The left and right output ends of the driving motor (18) are respectively connected with the two groups of the driving bevel gears (16).
4. The fabric shaping machine according to claim 3, wherein: A protective shell (19) is installed outside the driving device.
5. The fabric shaping machine that is easy to adjust according to claim 4, characterized in that: The linkage device includes a housing (20), a driving gear (21), a driven gear (22) and a driving shaft (23). The housing (20) is installed on the front side wall of the housing (1). One end of two groups of the first bidirectional screws (10) penetrates through the side wall of the housing (1) and extends into the housing (20), and the driving gear (21) and the driven gear (22) are respectively sleeved thereon. The driving gear (21) penetrates through the side wall of the housing (20) and is installed with the driving shaft (23).
6. The fabric shaping machine that is easy to adjust according to claim 5, wherein: A hand crank disc (24) is installed on the driving shaft (23).
7. The fabric shaping machine that is easy to adjust according to claim 6, characterized in that: The driving motor (18) is a servo motor.
8. The fabric shaping machine that is easy to adjust according to claim 7, characterized in that: Two groups of the protection plates (4) are installed at the feeding port (5) and the discharging port (6) respectively through the protection and adjustment device.