Textile fabric drying and setting machine

By installing a blower and a rotating mechanism outside the heating chamber, the problem of condensation on the outer wall of the heating chamber of the setting machine was solved, achieving uniform airflow and air wall isolation, thus ensuring the quality of the fabric and the setting effect.

CN223766573UActive Publication Date: 2026-01-06ZHUJI ZHENXIN DYEING & FINISHING CO LTD
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Patent Information

Application Number
CN202520083965.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2026-01-06
Estimated Expiration
2035-01-14

AI Technical Summary

Technical Problem

The outer wall of the heating chamber of the existing setting machine is prone to rust due to condensation of water vapor caused by temperature difference, and the dripping condensate affects the quality of the fabric.

Method used

First and second air pipes are installed on the outside of the heating box. A rotating mechanism is used to blow air evenly onto the outer wall of the heating box and the outlet, forming an air wall to isolate the hot air and prevent condensation.

Benefits of technology

It effectively reduces the generation of condensation on the outer wall of the heating box, ensures the quality of the fabric, prevents heat leakage, and improves the shaping effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a textile fabric drying and setting machine, and relates to the technical field of textile machinery, the textile fabric drying and setting machine comprises a rack and a heating box arranged on the rack, the heating box is provided with a cloth inlet and a cloth outlet, and the rack is provided with a drying device used for drying the outer side wall of the heating box. The first blowing pipe and the second blowing pipe are mounted on the rack outside the heating box, and the first blowing pipe uniformly blows air to the outer side wall of the heating box under the action of the rotating mechanism, so that hot air near the outer side wall of the heating box is blown away, and water vapor in the hot air is not easy to condense on the outer side wall of the heating box; meanwhile, a second blowpipe blows air to the cloth outlet of the heating box, so that an air wall is formed at the cloth outlet of the heating box, most of hot air in the heating box is isolated in the heating box, the probability that the hot air runs out of the heating box is reduced, and the probability that condensate water is generated on the outer side wall of the heating box is greatly reduced.
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Description

Technical Field

[0001] This application relates to the technical field of textile machinery, and in particular to a textile fabric drying and setting machine. Background Technology

[0002] A setting machine is a key piece of equipment in textile processing used to set the shape of fabrics, and it is widely used in the finishing stage of textiles. Its main function is to achieve dimensional stability, improved hand feel, and a smooth appearance of fabrics under suitable temperature and tension through processes such as heating and stretching.

[0003] In related technologies, reference can be made to Chinese utility model patent with authorization announcement number CN215710490U, which discloses a setting machine, including an unwinding roller, a flattening structure, a heating box, a cooling box, a detection mechanism, and a winding mechanism. The flattening structure includes a base, on which several rollers are provided. The rollers include a movable pressure roller, a rotating roller, and a winding roller. The rotating roller includes two rotating rollers located above and inside the base. The winding roller is located at the end of the base. The movable pressure roller is rotatably connected to the base via a connecting rod. The upper part of the movable pressure roller is connected to the base via a tension spring. A smoothing structure and a camera are arranged sequentially between the rotating roller and the winding roller. The smoothing structure includes a smoothing plate.

[0004] During the operation of the aforementioned setting machine, when the fabric is discharged from the heating chamber, some of the hot air inside the heating chamber is also discharged with the fabric. However, due to the large temperature difference between the inside and outside of the heating chamber, when the hot air encounters the cooler outer wall of the heating chamber after being discharged from the heating chamber, the water vapor in the hot air is easily condensed on the outer wall of the heating chamber. This makes the outer wall of the heating chamber prone to corrosion due to being in a humid environment for a long time. Moreover, when a lot of condensate accumulates, it will drip from the outer wall of the heating chamber. This dripping condensate will fall onto the fabric and have an adverse effect on the quality of the finished fabric. Utility Model Content

[0005] To reduce the probability of condensation on the outer wall of the heating chamber, this application provides a textile fabric drying and setting machine.

[0006] This application provides a textile fabric drying and setting machine, which adopts the following technical solution:

[0007] A textile fabric drying and setting machine includes a frame and a heating chamber mounted on the frame. The heating chamber has a fabric inlet and a fabric outlet. Fabric enters the heating chamber through the fabric inlet and exits through the fabric outlet. The frame is equipped with a drying device for drying the outer wall of the heating chamber. The drying device includes:

[0008] The first air blowing pipe is rotatably mounted on the frame and blows air onto the outer wall of the heating box.

[0009] The second air blowing pipe is installed on the frame and is used to blow air to the fabric outlet of the heating box.

[0010] A rotating mechanism is mounted on the frame and is used to drive the first air blower to rotate.

[0011] By adopting the above technical solution, a first air pipe and a second air pipe are installed on the frame outside the heating box. The first air pipe blows air evenly onto the outer wall of the heating box under the action of the rotating mechanism, thereby blowing away the hot air near the outer wall of the heating box. This makes it difficult for water vapor in the hot air to condense on the outer wall of the heating box. Even if water vapor does condense, the first air pipe can dry the condensate in time. At the same time, the second air pipe blows air onto the outlet of the heating box, thereby forming an air wall at the outlet of the heating box, isolating most of the hot air inside the heating box, reducing the probability of hot air escaping from the heating box, and thus greatly reducing the probability of condensation on the outer wall of the heating box.

[0012] Optionally, the rotating mechanism includes:

[0013] A first rotating shaft is rotatably mounted on the frame, and a first air blowing pipe is mounted on the first rotating shaft;

[0014] A first bevel gear, wherein the first bevel gear is mounted on a first rotating shaft;

[0015] A rotating motor is mounted on the frame;

[0016] The second bevel gear is mounted on the output shaft of the rotating motor and meshes with the first bevel gear.

[0017] By adopting the above technical solution, the rotating motor starts and drives the second bevel gear to rotate, the second bevel gear rotates and drives the first bevel gear to rotate, the first bevel gear rotates and drives the first rotating shaft to rotate, and the first rotating shaft rotates and drives the first air pipe to rotate, thereby realizing the rotation of the first air pipe by controlling the rotating motor.

[0018] Optionally, the frame is provided with a swing mechanism for controlling the reciprocating swing of the first rotating shaft, the swing mechanism comprising:

[0019] A first swing arm, wherein the first swing arm is mounted on a first rotating shaft;

[0020] A swing block is rotatably mounted on a frame. The first air pipe is mounted on the swing block. A first swing groove and a second swing groove are respectively opened on the two side walls facing away from each other. A first swing column is mounted on the first swing rod. The first swing column rotates with the first swing rod and enters the first swing groove.

[0021] The second swing arm is rotatably mounted on the frame, and a second swing column is provided on the second swing arm;

[0022] A rotating assembly is mounted on a frame and is used to drive the second swing rod to rotate. The second swing column enters the second swing groove under the action of the rotating assembly. The rotating assembly drives the second swing rod to rotate in the opposite direction to the first swing rod. The second swing column and the first swing column alternately enter the first swing groove and the second swing groove in sequence.

[0023] By adopting the above technical solution, the rotation of the first rotating shaft drives the rotation of the first swing rod, the rotation of the first swing rod drives the movement of the first swing column, and after the first swing column moves into the first swing groove, it drives the swing block to rotate. The rotation of the swing block drives the first air pipe to rotate. When the first swing column moves out of the first swing groove with the rotation, the second swing column on the second swing rod moves into the second swing groove under the action of the rotating component and drives the swing block to move back to its original position in the opposite direction. This realizes the reciprocating rotation of the first air pipe, so that the first air pipe can continuously blow air evenly onto the side wall of the heating box.

[0024] Optionally, the rotating component includes:

[0025] A first gear, which is mounted on a first rotating shaft;

[0026] The second gear is mounted on the second swing arm and meshes with the first gear.

[0027] By adopting the above technical solution, the rotation of the first rotating shaft drives the rotation of the first swing rod, and at the same time, the rotation of the first rotating shaft drives the rotation of the first gear, the rotation of the first gear drives the rotation of the second gear, and the rotation of the second gear drives the rotation of the first swing rod, thereby realizing the synchronous and opposite rotation of the first swing rod and the second swing rod.

[0028] Optionally, the first swing rod and the second swing rod are respectively provided with a first limiting block and a second limiting block. When the first swing column moves out of the first swing groove, the first limiting block abuts against the outer wall of the swing block. When the second swing column moves out of the second swing groove, the second limiting block abuts against the outer wall of the swing block.

[0029] By adopting the above technical solution, a first limiting block and a second limiting block are respectively installed on the first swing rod and the second swing rod. After the first swing column and the second swing column move out of the first swing groove and the second swing groove, the first limiting block and the second limiting block contact the swing block, thereby limiting the rotation of the swing block, reducing the probability that the swing block will continue to rotate under the action of inertia, and ensuring that the subsequent first swing column and the second swing column can continue to move into the first swing groove and the second swing groove.

[0030] Optionally, the frame is provided with an adjustment mechanism for adjusting the height of the first air blowing pipe, the adjustment mechanism comprising:

[0031] An adjusting block is vertically slidably mounted on the frame, and the first air pipe, the rotating mechanism, and the swinging mechanism are all mounted on the adjusting block;

[0032] An adjusting column is rotatably mounted on an adjusting block. The adjusting column has an inclined first sliding groove and a vertical second sliding groove connected to both ends of the first sliding groove on its side wall.

[0033] A fixed column is mounted on the frame, with one end of the fixed column extending into a sliding groove;

[0034] A return spring, which is mounted on the frame and connected to the adjusting block;

[0035] An adjusting shaft is mounted on an adjusting column and connected to the output shaft of a rotating motor.

[0036] By adopting the above technical solution, the rotating motor starts and drives the first rotating shaft to rotate, which in turn drives the adjusting shaft to rotate. The rotating shaft drives the adjusting column to rotate, and the rotating column drives the adjusting block to move vertically through the first sliding groove, the second sliding groove, and the fixed column. When the fixed column is located in the first sliding groove, the adjusting block moves gradually along the inclined first sliding groove. When the fixed column moves to the bottom of the first sliding groove, it enters the second sliding groove. Since the second sliding groove is vertically set, the adjusting block moves directly along the second sliding groove to the highest position under the action of the return spring and continues to move into the first sliding groove. This realizes the reciprocating movement of the adjusting block in the vertical position and expands the blowing area of ​​the first air pipe.

[0037] In summary, this application includes at least one of the following beneficial technical effects:

[0038] 1. By installing a first air pipe and a second air pipe on the frame outside the heating box, the first air pipe blows air evenly onto the outer wall of the heating box under the action of the rotating mechanism, thereby blowing away the hot air near the outer wall of the heating box, making it difficult for water vapor in the hot air to condense on the outer wall of the heating box. Even if water vapor does condense, the first air pipe can dry the condensate in time. At the same time, the second air pipe blows air onto the outlet of the heating box, thereby forming an air wall at the outlet of the heating box, isolating most of the hot air inside the heating box, reducing the probability of hot air escaping from the heating box, and thus greatly reducing the probability of condensation on the outer wall of the heating box.

[0039] 2. The rotation of the first rotating shaft drives the first swing rod to rotate, which in turn drives the first swing column to move. After the first swing column moves into the first swing groove, it drives the swing block to rotate. The rotation of the swing block drives the first air pipe to rotate. When the first swing column moves out of the first swing groove with the rotation, the second swing column on the second swing rod moves into the second swing groove under the action of the rotating component and drives the swing block to move back to its original position. This realizes the reciprocating rotation of the first air pipe, so that the first air pipe can continuously blow air evenly onto the side wall of the heating box.

[0040] 3. By installing a first limiting block and a second limiting block on the first swing rod and the second swing rod respectively, the first limiting block and the second limiting block contact the swing block after the first swing column and the second swing column move out of the first swing groove and the second swing groove, thereby limiting the rotation of the swing block, reducing the probability of the swing block continuing to rotate under inertia, and ensuring that the subsequent first swing column and the second swing column can continue to move into the first swing groove and the second swing groove. Attached Figure Description

[0041] Figure 1 This is a three-dimensional structural diagram of this application;

[0042] Figure 2 This is a structural schematic diagram of the drying device and regulating mechanism in this application, in which the side wall of the regulating block is shown in cross section.

[0043] Figure 3 This is a structural schematic diagram of the swing mechanism in this application, in which the side wall of the adjusting block is shown in cross section.

[0044] Reference numerals: 1. Frame; 11. Heating box; 2. Drying device; 21. First air duct; 22. Second air duct; 23. Rotating mechanism; 24. First rotating shaft; 25. First bevel gear; 26. Rotating motor; 27. Second bevel gear; 3. Adjusting mechanism; 31. Adjusting block; 32. Adjusting column; 33. Fixed column; 34. Return spring; 35. Adjusting shaft; 36. First sliding groove; 37. Second sliding groove; 4. Swinging mechanism; 41. First swing rod; 42. Swing block; 43. Second swing rod; 44. Rotating assembly; 45. First swing groove; 46. Second swing groove; 47. First swing column; 48. Second swing column; 51. First limiting block; 52. Second limiting block; 53. First gear; 54. Second gear. Detailed Implementation

[0045] The following is in conjunction with the appendix Figure 1 -Appendix Figure 3 This application will be described in further detail.

[0046] This application discloses a textile fabric drying and setting machine.

[0047] Reference Figure 1 The textile fabric drying and setting machine includes a frame 1 and a heating box 11 set on the frame 1. The heating box 11 has a fabric inlet and a fabric outlet. The fabric enters the heating box 11 from the fabric inlet and is discharged through the fabric outlet. The frame 1 is equipped with a drying device 2 for drying the outer wall of the heating box 11.

[0048] Reference Figure 1 The drying device 2 includes a first air pipe 21, a second air pipe 22, and a rotating mechanism 23. The first air pipe 21 is vertically slidable and rotatably mounted on the frame 1. The second air pipe 22 is fixedly mounted on the frame 1 and blows air onto the fabric outlet of the heating box 11. An adjustment mechanism 3 is provided on the frame 1, through which the first air pipe 21 is vertically slidable and mounted on the frame 1. The rotating mechanism 23 is mounted on the frame 1 and is used to drive the first air pipe 21 to rotate.

[0049] Reference Figure 1 and Figure 2 The adjusting mechanism 3 includes an adjusting block 31, an adjusting column 32, a fixed column 33, a return spring 34, and an adjusting shaft 35. The adjusting block 31 is vertically slidably mounted on the frame 1. The first air pipe 21 and the rotating mechanism 23 are both mounted on the adjusting block 31. The adjusting column 32 is rotatably mounted on the adjusting block 31. The side wall of the adjusting column 32 has a first oblique sliding groove 36 and a second vertical sliding groove 37 that communicates with both ends of the first sliding groove 36. One end of the fixed column 33 is fixedly mounted on the frame 1, and the other end of the fixed column 33 extends into the first sliding groove 36 or the second sliding groove 37 of the adjusting column 32. The return spring 34 is fixedly mounted on the frame 1 and is vertically positioned, with its top end fixedly connected to the lower surface of the adjusting block 31. The adjusting shaft 35 is fixedly mounted on the upper surface of the adjusting column 32 and is vertically positioned.

[0050] Reference Figure 1 and Figure 3 The rotating mechanism 23 includes a first rotating shaft 24, a first bevel gear 25, a rotating motor 26, and a second bevel gear 27. The first rotating shaft 24 is rotatably mounted on the adjusting block 31. The first bevel gear 25 is fixedly mounted on the first rotating shaft 24. The rotating motor 26 is fixedly mounted on the upper surface of the adjusting block 31. The second bevel gear 27 is fixedly mounted on the output shaft of the rotating motor 26 and meshes with the first bevel gear 25. The top end of the adjusting shaft 35 is also connected to the output shaft of the rotating motor 26.

[0051] Reference Figure 1 and Figure 3An oscillating mechanism 4 is provided on the adjusting block 31, and the first air pipe 21 is connected to the first rotating shaft 24 through the oscillating mechanism 4. The first rotating shaft 24 drives the first air pipe 21 to reciprocate under the action of the oscillating mechanism 4. The oscillating mechanism 4 includes a first oscillating rod 41, an oscillating block 42, a second oscillating rod 43, and a rotating assembly 44. The first oscillating rod 41 is fixedly mounted on the first rotating shaft 24. The oscillating block 42 is rotatably mounted on the outer wall of the adjusting block 31. The first air pipe 21 is fixedly mounted on the oscillating block 42. The second oscillating rod 43 is rotatably mounted on the side wall of the adjusting block 31 and is located at the end of the oscillating block 42 away from the first oscillating rod 41.

[0052] Reference Figure 3 The surface of the swing block 42 has a horizontal first swing groove 45 and a second swing groove 46. The first swing groove 45 and the second swing groove 46 are located on both sides of the center of the swing block 42. A first swing column 47 and a second swing column 48 are fixedly installed on the first swing rod 41 and the second swing rod 43, respectively. The rotating assembly 44 is mounted on the frame 1 and is used to drive the second swing rod 43 to rotate. Under the action of the rotating assembly 44, the second swing column 48 enters the second swing groove 46. The rotating assembly 44 drives the second swing rod 43 to rotate in the opposite direction to the first swing rod 41. The second swing column 48 and the first swing column 47 alternately enter the first swing groove 45 and the second swing groove 46 in sequence.

[0053] Reference Figure 3 A first limiting block 51 and a second limiting block 52 are fixedly installed on the first swing rod 41 and the second swing rod 43, respectively. When the first swing column 47 moves out of the first swing groove 45, the first limiting block 51 abuts against the outer wall of the swing block 42. When the second swing column 48 moves out of the second swing groove 46, the second limiting block 52 abuts against the outer wall of the swing block 42.

[0054] Reference Figure 1 and Figure 3 The rotating assembly 44 includes a first gear 53 and a second gear 54. The first gear 53 is fixedly mounted on the first rotating shaft 24. The second gear 54 is fixedly mounted on the second swing rod 43 and meshes with the first gear 53. When the first rotating shaft 24 rotates, it drives the first swing rod 41 to rotate. Simultaneously, the rotation of the first rotating shaft 24 drives the first gear 53 to rotate, which in turn drives the second gear 54 to rotate. The rotation of the second gear 54 then drives the first swing rod 41 to rotate, thus achieving synchronous and opposite rotation of the first swing rod 41 and the second swing rod 43.

[0055] Reference Figure 1The second air blower 22 blows air to the outlet of the heating box 11, thereby forming an air wall at the outlet of the heating box 11, which isolates most of the hot air inside the heating box 11, reducing the probability of hot air escaping from the heating box 11, and thus greatly reducing the probability of condensation on the outer wall of the heating box 11.

[0056] Reference Figure 1 The first air blower 21 blows air evenly onto the outer wall of the heating box 11, thereby blowing away the hot air near the outer wall of the heating box 11, making it difficult for water vapor in the hot air to condense on the outer wall of the heating box 11. Even if water vapor condenses, the first air blower 21 can dry the condensate in time.

[0057] Reference Figure 1 and Figure 3 The rotating motor 26 starts and drives the second bevel gear 27 to rotate. The rotation of the second bevel gear 27 drives the first bevel gear 25 to rotate. The rotation of the first bevel gear 25 drives the first rotating shaft 24 to rotate. The rotation of the first rotating shaft 24 drives the first gear 53 and the second gear 54 to rotate on the one hand, and drives the first bevel gear 25 to rotate on the other hand, so that while driving the first blower pipe 21 to rotate, it can also move vertically.

[0058] The working principle of this application embodiment is as follows:

[0059] A first air pipe 21 and a second air pipe 22 are installed on the frame 1 outside the heating box 11. The first air pipe 21 blows air evenly onto the outer wall of the heating box 11, thereby blowing away the hot air near the outer wall of the heating box 11. This makes it difficult for water vapor in the hot air to condense on the outer wall of the heating box 11. Even if water vapor does condense, the first air pipe 21 can dry the condensate in time. At the same time, the second air pipe 22 blows air onto the outlet of the heating box 11, thereby forming an air wall at the outlet of the heating box 11. This isolates most of the hot air inside the heating box 11, reducing the probability of hot air escaping from the heating box 11, and thus greatly reducing the probability of condensation on the outer wall of the heating box 11.

[0060] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A textile fabric drying and setting machine characterized by: The utility model relates to a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device.

2. A textile fabric drying and setting machine as claimed in claim 1 wherein: The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device.

3. A textile fabric drying and setting machine as claimed in claim 2 wherein: The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device.

4. A textile fabric drying and setting machine as claimed in claim 3 wherein: The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. The utility model discloses a drying device for the outer wall of a heating box, and belongs to the field of drying device. 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5. A textile fabric drying and setting machine as claimed in claim 4 wherein: The first swing lever (41) and the second swing lever (43) are respectively provided with a first limiting block (51) and a second limiting block (52), when the first swing column (47) moves out of the first swing groove (45), the first limiting block (51) abuts against the outer sidewall of the swing block (42), when the second swing column (48) moves out of the second swing groove (46), the second limiting block (52) abuts against the outer sidewall of the swing block (42).

6. A textile fabric drying and setting machine as claimed in claim 5 wherein: The rack (1) is provided with an adjusting mechanism (3) for adjusting the height of the first blowing pipe (21), the adjusting mechanism (3) comprises: An adjusting block (31) is vertically slidingly installed on the rack (1), the first blowing pipe (21), the rotating mechanism (23) and the swing mechanism (4) are all arranged on the adjusting block (31); An adjusting column (32) is rotatably arranged on the adjusting block (31), a first sliding groove (36) obliquely extending and a second sliding groove (37) vertically extending communicated with both ends of the first sliding groove (36) are formed in the sidewall of the adjusting column (32); A fixing column (33) is arranged on the rack (1), one end of the fixing column (33) extends into the sliding groove; A reset spring (34) is arranged on the rack (1) and connected with the adjusting block (31); An adjusting rotating shaft (35) is arranged on the adjusting column (32) and connected with the output shaft of the rotating motor (26).

Citation Information

Patent Citations

  • Setting machine

    CN215710490U