Water vapor multi-angle humidifying mechanism for fabric preshrinking cloth inspecting machine

By designing a multi-angle wet adjustment mechanism in the fabric pre-shrinkage tester, the spray head can swing within a certain angle range, solving the problem of poor pre-shrinkage effect caused by the fixed injection angle of the traditional wet adjustment method, and achieving the accuracy and uniformity of wet adjustment of the fabric.

CN222948623UActive Publication Date: 2025-06-06GUANGDONG KAIDI CLOTHING CO LTD
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Patent Information

Application Number
CN202520734404.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2025-06-06
Estimated Expiration
2035-04-18

AI Technical Summary

Technical Problem

The traditional fabric pre-shrinkage tester has a fixed injection angle of the wet adjustment method, making it difficult to accurately regulate water vapor, resulting in poor pre-shrinkage effect and unable to meet diversified production needs.

Method used

A multi-angle water vapor humidity regulation mechanism for fabric pre-shrinkage inspection machine is designed. The electric drive rod drives the movement of the fixture and the rotating seat. The spray head can swing within a certain angle range, accurately adjust the spray angle, and adapt to the humidity regulation needs of different fabric areas and process requirements.

Benefits of technology

The spray head is swinged at multiple angles, and the precise wetting is adjusted for different parts of the fabric to avoid local overwetting or too dryness, ensuring that the whole fabric is evenly adjusted and meeting diversified production needs.

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Abstract

The utility model discloses a water vapor multi-angle humidity adjusting mechanism for a fabric preshrinking cloth inspecting machine, relates to the technical field of fabric preshrinking cloth inspecting, and aims to solve the problem that the preshrinking effect is influenced by a fixed spraying angle in a traditional humidity adjusting mode. The water vapor multi-angle humidity adjusting mechanism comprises a preshrinking cloth inspecting machine body, and a multi-angle humidity adjusting assembly is arranged on the preshrinking cloth inspecting machine body; the multi-angle humidity adjusting assembly comprises a sliding seat, the bottom end of the sliding seat is fixedly connected with a guiding piece, the bottom end of the guiding piece is fixedly connected with an electric driving rod, the front end of the electric driving rod is fixedly connected with a fixing piece, the inner side of the fixing piece is movably connected with a rotating seat, and the bottom end of the rotating seat is fixedly connected with a connecting frame. According to the water vapor multi-angle humidity adjusting mechanism for the fabric preshrinking cloth inspecting machine, the spraying head can swing at multiple angles, humidity can be accurately adjusted according to different portions of fabric, the edge or the wrinkled portion of the fabric can be adjusted to a proper angle to be evenly sprayed, local over-wet or over-dry is avoided, and it is guaranteed that the humidity of the whole fabric is evenly adjusted.
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Description

Technical Field

[0001] The utility model relates to the technical field of fabric pre-shrinkage and inspection, in particular to a multi-angle moisture regulating mechanism using water vapor for a fabric pre-shrinkage and inspection machine. Background Art

[0002] The fabric pre-shrinkage and fabric inspection machine is a device that integrates the functions of pre-shrinkage and fabric inspection. The purpose of pre-shrinkage is to reduce the shrinkage rate of the fabric through wet heat treatment to ensure dimensional stability; the purpose of fabric inspection is to detect the quality and defects of the fabric to ensure that the fabric meets the production requirements.

[0003] Under traditional humidity control methods, the spray angle is often fixed. This limitation makes it difficult to accurately control the effect of water vapor when processing different fabrics, which in turn has an adverse effect on the pre-shrinkage effect and cannot fully meet diverse production needs. Utility Model Content

[0004] The utility model discloses a multi-angle humidity control mechanism for a fabric pre-shrinking and inspecting machine using water vapor, aiming to solve the technical problems that the traditional humidity control method has a fixed spray angle and is difficult to accurately control the water vapor when processing different fabrics, resulting in poor pre-shrinking effect and failure to meet various production needs.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a fabric preshrinkage and inspection machine uses a multi-angle humidity control mechanism with water vapor, including a fabric preshrinkage and inspection body, a multi-angle humidity control component is arranged on the fabric preshrinkage and inspection body, the multi-angle humidity control component includes a sliding seat, and the bottom end of the sliding seat is fixedly connected to a guide member, the bottom end of the guide member is fixedly connected to an electric drive rod, the front end of the electric drive rod is fixedly connected to a fixing member, the inner side of the fixing member is movably connected to a rotating seat, the bottom end of the rotating seat is fixedly connected to a connecting frame, and the bottom end of the connecting frame is fixedly connected to a spray head, symmetrical arc grooves are provided on both sides of the connecting frame, and cylinders are movably connected inside the arc grooves, and the two symmetrical cylinders are fixedly connected to a symmetrical frame at one end away from the connecting frame, and the top end of the symmetrical frame is fixedly connected to the bottom end of the sliding seat.

[0006] By providing a preshrinkage and inspection machine body and a multi-angle humidity control component, during the preshrinkage of the fabric, the electric drive rod performs telescopic movement. When the electric drive rod is extended or shortened, it drives the fixing part fixedly connected to its front end to move linearly in space. Because the fixing part is connected to the front end of the electric drive rod, the extension and retraction of the electric drive rod directly determines the position change of the fixing part in the front and rear directions. A rotating seat is movably connected to the inside of the fixing part. When the fixing part moves with the electric drive rod, the rotating seat can rotate inside the fixing part. Since the bottom end of the rotating seat is fixedly connected to the connecting frame and the spray head, the rotation of the rotating seat can drive the spray head to swing within a certain angle range. When the fixing part moves to different positions under the action of the electric drive rod, the rotating seat can flexibly rotate inside the fixing part according to actual needs, thereby changing the angle of the spray head relative to the fabric. Symmetrical arc grooves are provided on both sides of the connecting frame, and the cylinder is movably connected inside. The outer side of the cylinder is connected to the symmetrical frame, and the top of the symmetrical frame is fixedly connected to the bottom end of the sliding seat. When the rotating seat drives the connecting frame to rotate, the connecting frame will slide along the cylinder with the arc groove and swing within a certain range. On the one hand, this structure limits the rotation range of the connecting frame and the spray head, and on the other hand, it also plays a role of auxiliary support and guidance, ensuring that the spray head remains stable during the rotation process, so that the spray head can accurately adjust the spray angle within a relatively controllable angle range to meet the humidity control needs of different areas and different process requirements during the fabric preshrinkage process. During the process, the spray head can swing at multiple angles, and can accurately control the humidity of different parts of the fabric. For the edges or folds of the fabric, it can be adjusted to a suitable angle for uniform spraying to avoid local over-wetting or over-drying, thereby ensuring uniform humidity control of the entire fabric.

[0007] In a preferred solution, a winding column is fixedly connected to the inner side of the front end of the pre-shrinkage and inspection body, a plurality of guide columns are fixedly connected to the inner side of the pre-shrinkage and inspection body, and a fixed column is fixedly connected to the top of the pre-shrinkage and inspection body, a steam frame is fixedly connected to the top of the pre-shrinkage and inspection body, a conveyor belt is movably connected to the inner side of the pre-shrinkage and inspection body, the conveyor belt is located below the steam frame, a water pipe is fixedly connected to the top of the spray head, a circular hole is provided on the connecting frame, the outer side of the water pipe is arranged inside the circular hole, a hole is provided on one side of the steam frame, the outer side of the water pipe is arranged inside the hole, an end of the water pipe away from the spray head is fixedly connected to a water tank, the outer side of the water tank is fixedly connected to a fixing frame, and one side of the fixing frame is fixedly connected to one side of the pre-shrinkage and inspection body.

[0008] The cam is connected with the transmission gear of the driving motor through the gear shifting mechanism, and the cam is connected with the transmission gear of the driving motor through the gear shifting mechanism.

[0009] By providing a guide adjustment component, when adjustment is needed to adapt to fabrics of different widths, the driving motor is turned on to drive the rotating shaft to rotate. When the rotating shaft rotates, the pulling rope wrapped around its outside begins to retract and release, and the moving rope moves toward or away from the driving motor under the auxiliary guidance of the roller (the roller moves on the fixed round rod to ensure smooth movement of the rope). Since one end of the pulling rope is fixedly connected to the sliding seat, it will drive the sliding seat to move along the guide round rod. The guide round rod passes through the perforation on the inner side of the sliding seat to guide and limit the movement trajectory of the sliding seat, so that it can only move in a straight line along the direction of the rod. During the movement of the sliding seat, the multi-angle humidity control component is driven to move, thereby changing the range of action and achieving adaptation to fabrics of different widths. When the fabric is wider, the driving The motor causes the rotating shaft to rotate in the forward direction, pulling the rope to contract, pulling the sliding seat and related components toward the direction of the driving motor to increase the range of action; if the fabric is narrow, the rotating shaft rotates in the opposite direction, and the sliding seat moves away from the driving motor under the elastic force of the compression spring (one end of the compression spring is connected to the inner wall of the steam frame, and the other end is connected to the sliding seat), reducing the range of action. The telescopic rod and the compression spring play a buffering and stabilizing role. During the movement of the sliding seat, the compression spring can absorb vibration and impact force to prevent components from being damaged by sudden pulling or pushing force; the telescopic rod assists in maintaining the stability of the sliding seat movement and limits its displacement in the non-guided direction. During the process, it can be flexibly adjusted to adapt to fabrics of different widths and materials, thereby increasing the scope of application of the equipment and improving the versatility of the equipment.

[0010] From the above, it can be seen that the fabric pre-shrinkage and inspection machine provided by the utility model uses a multi-angle moisture-adjusting mechanism with water vapor, which can make the spray head swing at multiple angles, and can accurately adjust the moisture of different parts of the fabric. For the edges or folds of the fabric, it can be adjusted to a suitable angle for uniform spraying, avoiding local over-wetting or over-drying, and ensuring the technical effect of uniform moisture adjustment of the entire fabric. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 This is a schematic diagram of the overall structure of the multi-angle moisture-adjusting mechanism of the fabric pre-shrinking and inspection machine using water vapor proposed by the utility model;

[0012] Figure 2 It is a schematic diagram of the upper structure of the pre-shrinkage and inspection machine body of the fabric pre-shrinkage and inspection machine proposed by the utility model using a multi-angle moisture adjustment mechanism of water vapor;

[0013] Figure 3 This is a schematic diagram of the internal structure of the steam frame of the fabric pre-shrinking and inspection machine proposed by the utility model using a multi-angle moisture-adjusting mechanism of water vapor;

[0014] Figure 4 This is a schematic diagram of the structure of the multi-angle humidity control component of the fabric pre-shrinking and inspection machine using water vapor multi-angle humidity control mechanism proposed by the utility model;

[0015] Figure 5 The utility model discloses a structural schematic diagram of a guide adjustment component of a multi-angle moisture control mechanism using water vapor for a fabric pre-shrinking and inspecting machine.

[0016] In the attached drawings: 1. pre-shrinking and inspecting cloth body; 2. winding column; 3. guide column; 4. conveyor belt; 5. steam frame; 6. multi-angle humidity control component; 601. sliding seat; 602. guide member; 603. electric drive rod; 604. fixing member; 605. rotating seat; 606. connecting frame; 607. spray head; 608. cylinder; 609. symmetrical frame; 7. water pipe; 8. water tank; 9. guide adjustment component; 901. driving motor; 902. rotating shaft; 903. pulling rope; 904. fixed round rod; 905. roller; 906. guide round rod; 907. telescopic rod; 908. compression spring; 10. fixed column; 11. fixed frame. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.

[0018] The fabric pre-shrinkage and inspection machine disclosed in the utility model uses a multi-angle humidity control mechanism with water vapor, which is mainly used in the traditional humidity control method with a fixed spray angle. It is difficult to accurately control the water vapor when processing different fabrics, resulting in poor pre-shrinkage effect and unable to meet the scenarios of various production needs.

[0019] Reference Figure 1-Figure 5The fabric pre-shrinking and inspection machine uses a multi-angle moisture-control mechanism using water vapor, including a pre-shrinking and inspection body 1, on which a multi-angle moisture-control component 6 is arranged, the multi-angle moisture-control component 6 includes a sliding seat 601, and the bottom end of the sliding seat 601 is connected to a guide member 602 by bolts, the bottom end of the guide member 602 is connected to an electric drive rod 603 by bolts, the front end of the electric drive rod 603 is connected to a fixing member 604 by bolts, the inner side of the fixing member 604 is connected to a rotating seat 605 by rotation, the bottom end of the rotating seat 605 is connected to a connecting frame 606 by bolts, and the bottom end of the connecting frame 606 is connected to a spray head 607 by bolts, symmetrical arc grooves are provided on both sides of the connecting frame 606, and cylinders 608 are movably connected inside the arc grooves, and the two symmetrical cylinders 608 are fixedly connected to a symmetrical frame 609 at one end away from the connecting frame 606, and the top of the symmetrical frame 609 is connected to the bottom end of the sliding seat 601 by bolts.

[0020] Reference Figure 1 , Figure 2 and Figure 3 In a preferred embodiment, a winding column 2 is connected to the inner side of the front end of the pre-shrinkage inspection body 1 by bolts, a plurality of guide columns 3 are connected to the inner side of the pre-shrinkage inspection body 1 by bolts, and a fixing column 10 is connected to the top of the pre-shrinkage inspection body 1 by bolts, a steam frame 5 is connected to the top of the pre-shrinkage inspection body 1 by bolts, a conveyor belt 4 is connected to the inner side of the pre-shrinkage inspection body 1 by rotation, and the conveyor belt 4 is located below the steam frame 5, a water pipe 7 is connected to the top of the spray head 607 by bolts, a circular hole is opened on the connecting frame 606, and the outer side of the water pipe 7 is arranged inside the circular hole, a hole is opened on one side of the steam frame 5, and the outer side of the water pipe 7 is arranged inside the hole, and the end of the water pipe 7 away from the spray head 607 is connected to a water tank 8 by bolts, and the outer side of the water tank 8 is connected to a fixing frame 11 by bolts, and one side of the fixing frame 11 is connected to one side of the pre-shrinkage inspection body 1 by bolts.

[0021] Reference Figure 2 , Figure 3 and Figure 5In a preferred embodiment, a guide adjustment component 9 is arranged above the multi-angle humidity control component 6, and the guide adjustment component 9 includes a driving motor 901, and the power output shaft of the driving motor 901 is connected to the rotating shaft 902 through a coupling, and the outer side of the rotating shaft 902 is connected to a pulling rope 903 through rotation, and the end of the pulling rope 903 away from the driving motor 901 is connected to the side of the sliding seat 601 away from the driving motor 901 through bolts, and the outer side of the pulling rope 903 is connected to a roller 905 through rotation, and the inner side of the roller 905 is connected to a fixed round rod 904 through rotation, and the top of the fixed round rod 904 is connected to the steam frame 5. The inner sides near the water tank 8 are connected by bolts, a guide round rod 906 is arranged below the rotating shaft 902, a through hole is opened on the inner side of the sliding seat 601, the outer side of the guide round rod 906 is located inside the through hole and is connected by sliding, and the two sides of the guide round rod 906 are connected to the two sides of the interior of the steam frame 5 by bolts, the side of the sliding seat 601 near the driving motor 901 is connected to the telescopic rod 907 by bolts, the side of the sliding seat 601 near the driving motor 901 is connected to the compression spring 908 by bolts, and one end of the compression spring 908 and the telescopic rod 907 is connected to the inner wall of the steam frame 5 near the driving motor 901 by bolts.

[0022] Working principle: During the fabric pre-shrinkage process, the electric drive rod 603 performs telescopic movement. When the electric drive rod 603 is extended or shortened, it will drive the fixing piece 604 fixedly connected to its front end to move linearly in space. Because the fixing piece 604 is connected to the front end of the electric drive rod 603, the extension and retraction of the electric drive rod 603 directly determines the position change of the fixing piece 604 in the front-back direction. The fixing piece 604 is movably connected with a rotating seat 605 on the inside. When the fixing piece 604 moves with the electric drive rod 603, the rotating seat 605 can rotate on the inside of the fixing piece 604. Since the bottom end of the rotating seat 605 is fixedly connected to the connecting frame 606 and the spray head 607, the rotating seat 605 Rotation can drive the spray head 607 to swing within a certain angle range. When the fixing part 604 moves to different positions under the action of the electric drive rod 603, the rotating seat 605 can flexibly rotate inside the fixing part 604 according to actual needs, so as to change the angle of the spray head 607 relative to the fabric. Symmetrical arc grooves are opened on both sides of the connecting frame 606, and the cylinder 608 is movably connected inside. The outer side of the cylinder 608 is connected to the symmetrical frame 609, and the top of the symmetrical frame 609 is fixedly connected to the bottom of the sliding seat 601. When the rotating seat 605 drives the connecting frame 606 to rotate, the connecting frame 606 will slide along the cylinder 608 with the arc groove and swing within a certain range. This structure limits On the other hand, it also plays the role of auxiliary support and guidance, ensuring that the spray head 607 remains stable during the rotation process, so that the spray head 607 can accurately adjust the spray angle within a relatively controllable angle range to meet the humidity control needs of different areas and different process requirements during the fabric preshrinkage process; when adjustment is required to adapt to fabrics of different widths, the drive motor 901 is turned on to drive the rotating shaft 902 to rotate. When the rotating shaft 902 rotates, the pulling rope 903 wrapped around its outer side begins to be retracted and released. The pulling rope is guided by the roller 905 (the roller 905 moves on the fixed round rod 904 to ensure smooth movement of the rope). Move toward or away from the driving motor 901. Since one end of the pulling rope 903 is fixedly connected to the sliding seat 601, the sliding seat 601 will be driven to move along the guide round rod 906. The guide round rod 906 passes through the perforation on the inner side of the sliding seat 601 to guide and limit the movement trajectory of the sliding seat 601, so that it can only move in a straight line along the direction of the rod. During the movement of the sliding seat 601, the multi-angle humidity control component 6 is driven to move, thereby changing the range of action and achieving adaptation to fabrics of different widths. When the fabric is wider, the driving motor 901 causes the rotating shaft 902 to rotate in the positive direction, and the pulling rope 903 is contracted to pull the sliding seat 601 and related components toward the driving motor 901 to increase the range of action.If the fabric is narrow, the rotating shaft 902 is rotated in the opposite direction, and the sliding seat 601 moves away from the driving motor 901 under the elastic force of the compression spring 908 (one end of the compression spring 908 is connected to the inner wall of the steam frame 5, and the other end is connected to the sliding seat 601), reducing the range of action. The telescopic rod 907 and the compression spring 908 play a buffering and stabilizing role. During the movement of the sliding seat 601, the compression spring 908 can absorb vibration and impact force to prevent parts from being damaged due to sudden pulling or pushing force; the telescopic rod 907 assists in maintaining the stability of the movement of the sliding seat 601 and limits its displacement in the non-guided direction. ;

[0023] The above is only a preferred specific implementation of the utility model, but the protection scope of the utility model is not limited to this. The replacement can be a replacement of part of the structure, device, method step, or a complete technical solution. Equivalent replacement or change based on the technical solution of the utility model and its utility model concept should be included in the protection scope of the utility model.

Claims

1. A fabric pre-shrinkage inspection machine using water vapor multi-angle humidity control mechanism, comprising a fabric pre-shrinkage inspection machine body (1), characterized in that: The pre-shrinking and inspection machine body (1) is provided with a multi-angle humidity control component (6), the multi-angle humidity control component (6) comprising a sliding seat (601), the bottom end of the sliding seat (601) being fixedly connected to a guide member (602), the bottom end of the guide member (602) being fixedly connected to an electric drive rod (603), the front end of the electric drive rod (603) being fixedly connected to a fixing member (604), the inner side of the fixing member (604) being movably connected to a rotating seat (605), the rotating seat (60 5) is fixedly connected to a connecting frame (606) at the bottom end, and a spray head (607) is fixedly connected to the connecting frame (606) at the bottom end, symmetrical arc grooves are provided on both sides of the connecting frame (606), and cylinders (608) are movably connected inside the arc grooves, and the ends of the two symmetrical cylinders (608) away from the connecting frame (606) are fixedly connected to a symmetrical frame (609), and the top end of the symmetrical frame (609) is fixedly connected to the bottom end of the sliding seat (601).

2. The fabric pre-shrinking and inspection machine using water vapor multi-angle humidity control mechanism according to claim 1 is characterized in that: A winding column (2) is fixedly connected to the inner side of the front end of the pre-shrinkage and inspection machine body (1), a plurality of guide columns (3) are fixedly connected to the inner side of the pre-shrinkage and inspection machine body (1), and a fixing column (10) is fixedly connected to the top end of the pre-shrinkage and inspection machine body (1).

3. The multi-angle humidity control mechanism using water vapor for the fabric pre-shrinking and inspection machine according to claim 1 is characterized in that: The top of the pre-shrinkage and inspection machine body (1) is fixedly connected to a steam frame (5), the inner side of the pre-shrinkage and inspection machine body (1) is movably connected to a conveyor belt (4), the conveyor belt (4) is located below the steam frame (5), the top of the spray head (607) is fixedly connected to a water pipe (7), a circular hole is formed on the connecting frame (606), and the outer side of the water pipe (7) is arranged inside the circular hole.

4. The multi-angle humidity control mechanism using water vapor for the fabric pre-shrinking and inspection machine according to claim 3 is characterized in that: A hole is formed on one side of the steam frame (5); the outer side of the water pipe (7) is arranged inside the hole; one end of the water pipe (7) away from the spray head (607) is fixedly connected to a water tank (8); the outer side of the water tank (8) is fixedly connected to a fixing frame (11); one side of the fixing frame (11) is fixedly connected to one side of the pre-shrinking and testing machine body (1).

5. The multi-angle humidity control mechanism of the fabric pre-shrinking and inspection machine using water vapor according to claim 1 is characterized in that: A guide adjustment component (9) is arranged above the multi-angle humidity control component (6), the guide adjustment component (9) comprising a drive motor (901), wherein a power output shaft of the drive motor (901) is connected to a rotating shaft (902) via a coupling, and a pulling rope (903) is movably connected to the outer side of the rotating shaft (902).

6. The multi-angle moisture control mechanism using water vapor for the fabric pre-shrinking and inspection machine according to claim 5 is characterized in that: One end of the pulling rope (903) away from the driving motor (901) is fixedly connected to a side of the sliding seat (601) away from the driving motor (901); the outer side of the pulling rope (903) is movably connected to a roller (905); the inner side of the roller (905) is movably connected to a fixed round rod (904); and the top end of the fixed round rod (904) is fixedly connected to the inner side of the steam frame (5) close to the water tank (8).

7. The multi-angle humidity control mechanism using water vapor for the fabric pre-shrinking and inspection machine according to claim 6 is characterized in that: A guide round rod (906) is arranged below the rotating shaft (902), a through hole is provided on the inner side of the sliding seat (601), the outer side of the guide round rod (906) is movably connected to the inside of the through hole, and the two sides of the guide round rod (906) are fixedly connected to the two sides inside the steam frame (5), a telescopic rod (907) is fixedly connected to the side of the sliding seat (601) close to the drive motor (901), a compression spring (908) is fixedly connected to the side of the sliding seat (601) close to the drive motor (901), and one end of the compression spring (908) and the telescopic rod (907) is fixedly connected to the inner wall of the steam frame (5) close to the drive motor (901).