Movable cooling auxiliary device

By designing a mobile cooling auxiliary device, the fabric is cooled on both sides using a frame and air-cooling components. This solves the problem of the inflexible adjustment of cooling devices in existing technologies, achieving a highly efficient and uniform cooling effect, and improving the operating efficiency of the production line and the quality of the fabric.

CN224240651UActive Publication Date: 2026-05-15JIANGSU LONGDA TRANSFER PRINTING TEXTILE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU LONGDA TRANSFER PRINTING TEXTILE
Filing Date
2025-06-03
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

The cooling devices of existing transfer printing machines cannot flexibly adjust the cooling time according to different types of transfer printing fabrics, resulting in poor cooling effect and easily causing problems such as fabric curling, deformation, adhesion and dye migration.

Method used

A mobile cooling auxiliary device is designed, comprising a frame and an air-cooling assembly. It can be flexibly deployed using wheels. The bottom and top surfaces of the fabric are cooled by first and second cooling air components, respectively. The air-cooling assembly is equipped with spaced air supply pipes and air outlets to ensure that the cooling air is blown out evenly, thereby improving cooling efficiency and effect.

Benefits of technology

It enables simultaneous cooling of both sides of the fabric, improving cooling efficiency and uniformity, simplifying the cooling structure, enhancing the operational flexibility and efficiency of the production line, and avoiding fabric quality issues.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a movable cooling auxiliary device which comprises a rack and an air cooling assembly, the rack is arranged in the first direction, the air cooling assembly is arranged on the rack and comprises a first cold air piece, a second cold air piece, at least one first air supply pipe and at least one second air supply pipe, the first cold air piece is connected with the first air supply pipe, and the second cold air piece is connected with the second air supply pipe. The first air supply pipe is arranged on the rack in the first direction, and at least one first air outlet is formed in the top face. The second cold air piece is connected with a second air supply pipe, the second air supply pipe is arranged on the rack in the first direction, at least one second air outlet is formed in the bottom face of the second air supply pipe, the first air supply pipe is located below the second air supply pipe, and a cloth conveying space extending in the second direction is formed between the first air supply pipe and the second air supply pipe. When the to-be-cooled cloth passes through the cloth feeding space, the first cold air piece and the second cold air piece cool the bottom face and the top face of the cloth through the corresponding air outlets respectively, the cooling efficiency is improved, and meanwhile flexible deployment of the device is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of printing equipment technology, and in particular to a mobile cooling auxiliary device. Background Technology

[0002] In industries such as printing and dyeing, and textiles, printed fabrics typically undergo a cooling process after printing and drying to allow the fabric temperature to return to a suitable level, ensuring the smooth progress of subsequent processes (such as fabric rolling, stacking, and packaging). If the fabric temperature is not reduced in time, it can easily cause quality problems such as curling, deformation, and sticking. Especially in high-temperature and high-humidity environments, insufficiently cooled fabric may also lead to dye migration or color differences.

[0003] However, when performing transfer printing operations on different types of transfer printing fabrics, the required cooling time varies for different transfer printing fabrics. The cooling devices of existing transfer printing machines are relatively fixed and cannot be flexibly adjusted according to the type and specifications of the fabric, resulting in poor adaptability. Utility Model Content

[0004] The purpose of this application is to provide a mobile cooling auxiliary device to solve the problem that the prior art cannot demonstrate the flexible cooling of fabrics of different specifications.

[0005] To achieve this objective, the following technical solution is adopted in this application:

[0006] This application provides a mobile cooling auxiliary device, which includes a frame and an air-cooling assembly, wherein:

[0007] The frame is arranged along the first direction, the air-cooling components are mounted on the frame, and several casters are provided at the bottom of the frame;

[0008] The air-cooled assembly includes a first air-cooling component, a second air-cooling component, at least one first air supply pipe and at least one second air supply pipe. The first air-cooling component is connected to the first air supply pipe. The first air supply pipe extends along a first direction and is mounted on a frame. At least one first air outlet is provided on the top surface of the first air supply pipe. The second air-cooling component is connected to the second air supply pipe. The second air supply pipe extends along a first direction and is mounted on a frame. At least one second air outlet is provided on the bottom surface of the second air supply pipe. The first air supply pipe is located below the second air supply pipe. A fabric feeding space extending along a second direction is provided between the first air supply pipe and the second air supply pipe.

[0009] The moving wheels rotate to move the frame to a preset position. When the fabric to be cooled passes through the fabric feeding space, the first cooling air component provides cooling air to the first air supply pipe to cool the bottom surface of the fabric through the first air outlet. The second cooling air component provides cooling air to the second air supply pipe to cool the top surface of the fabric through the second air outlet.

[0010] Optionally, the casters can be set to omnidirectional wheels.

[0011] Optionally, the air-cooled assembly includes two first air supply pipes and two second air supply pipes. The two first air supply pipes are spaced apart along a first direction, and the two second air supply pipes are respectively located at both ends of the fabric delivery space along a second direction. The second air supply pipes are located diagonally above the first air supply pipes.

[0012] Optionally, the first air supply pipe is provided with a number of first air outlets, and the number of first air outlets are evenly spaced along the first direction;

[0013] The second air supply duct has several second air outlets, which are evenly spaced along the first direction.

[0014] Optionally, a first air outlet is provided on the first air supply pipe, and the first air outlet extends along a first direction; a second air outlet is provided on the second air supply pipe, and the second air outlet extends along the first direction.

[0015] Optionally, at least one support rod is provided on the frame, the support rod is arranged along a first direction, the top surface of the support rod is located in the fabric feeding space, and the support rod is configured to support the fabric passing through the fabric feeding space.

[0016] Optionally, a receiving space is provided inside the frame extending along the first direction, the first cold air component and the second cold air component are disposed in the receiving space, and the first air supply pipe and the second air supply pipe are disposed at the upper end of the frame.

[0017] Optionally, the frame is provided with an upward-facing first notch at both ends along the first direction, and the end of the first air supply pipe is installed in the first notch. The first notch is configured to limit the first air supply pipe.

[0018] Compared with the prior art, the mobile cooling auxiliary device proposed in this application has the following advantages:

[0019] 1) By combining the frame and air-cooling components, and using casters to enable flexible movement of the frame, the cooling auxiliary devices can be deployed flexibly, effectively avoiding the problems of space resource occupation and location restrictions. This improves the overall flexibility and efficiency of the production line while achieving the technical effect of simultaneous cooling of both sides of the fabric, thus enhancing cooling efficiency.

[0020] 2) By setting air outlets spaced apart along the first direction, cold air can be blown out evenly from multiple points, which improves the uniformity of air cooling and the cooling effect, while also enhancing the controllability of the overall cooling capacity of the device.

[0021] 3) By setting a long strip-shaped air outlet extending along the first direction, the cooling structure is simplified while effectively improving the cooling continuity of the fabric in motion, ensuring thorough cooling of the fabric. Attached Figure Description

[0022] To more clearly illustrate and understand the technical solutions in the embodiments of this application, the accompanying drawings used in the background technology and embodiment descriptions of this application will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the content of the embodiments of this application and these drawings without creative effort.

[0023] Figure 1 This is a side view of the mobile cooling auxiliary device provided in the embodiments of this application;

[0024] Figure 2 This is a front view of the mobile cooling auxiliary device provided in the embodiments of this application;

[0025] Figure 3 This is a top view of one embodiment of the first air duct of the mobile cooling auxiliary device provided in this application;

[0026] Figure 4 This is a top view of another embodiment of the first air duct of the mobile cooling auxiliary device provided in this application. Detailed Implementation

[0027] To facilitate understanding of this application, a more complete description of the application will be provided below with reference to the accompanying drawings. Preferred embodiments of the application are shown in the drawings. However, the application can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure of this application. It should be noted that when a component is referred to as being "fixed to" another component, it can be directly on the other component or there may be an intermediate component. When a component is referred to as being "connected to" another component, it can be directly connected to the other component or there may be an intermediate component. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementations. Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein in the specification of this application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0028] Please see Figures 1 to 4 As shown in the embodiment of this application, a mobile cooling auxiliary device is provided, which includes a frame 10 and an air-cooling assembly 20, wherein: the frame 10 is along a first direction ( Figure 1The air-cooling assembly 20 is mounted on the frame 10, and the bottom of the frame 10 is provided with several casters 11. The air-cooling assembly 20 includes a first air-cooling component 21, a second air-cooling component 22, at least one first air supply pipe 23, and at least one second air supply pipe 24. The first air-cooling component 21 is connected to one end of the first air supply pipe 23, which extends along the first direction and is mounted on the frame 10. The top surface of the first air supply pipe 23 has at least one first air outlet 230. The second air-cooling component 22 is connected to one end of the second air supply pipe 24, which extends along the first direction and is mounted on the frame 10. The bottom surface of the second air supply pipe 24 has at least one second air outlet (not shown in the figure). The first air supply pipe 23 is located below the second air supply pipe 24, and a space is provided between the first air supply pipe 23 and the second air supply pipe 24 along the second direction. Figure 2 The fabric feeding space 12 extends in the Y direction; the moving wheel 11 rotates to drive the frame 10 to move to a preset position. When the fabric to be cooled passes through the fabric feeding space 12, the first cold air component 21 provides cooling air to the first air supply pipe 23 to cool the bottom surface of the fabric through the first air outlet 230, and the second cold air component 22 provides cooling air to the second air supply pipe 24 to cool the top surface of the fabric through the second air outlet.

[0029] Specifically, the first air-cooling component 21 and the second air-cooling component 22 are respectively provided with air inlets, which are connected to the air inlet pipe 250. Air enters the air-cooling component through the air inlet so that the air is turned into cooling air and delivered to the air supply pipe.

[0030] Specifically, the other end of the first air supply pipe 23 and the other end of the second air supply pipe 34 are both sealed.

[0031] Specifically, the first air outlet 230 and the second air outlet have the same structure.

[0032] With the cooperation of the frame 10 and the air-cooling component 20, the frame 10 can be moved flexibly by the casters 11, which facilitates the flexible deployment of the cooling auxiliary device, effectively avoids the problems of space resource occupation and position restriction, improves the overall flexibility and efficiency of the production line, and achieves the technical effect of cooling both sides of the fabric at the same time, thus improving the cooling efficiency.

[0033] In one embodiment, the movable wheel 11 is configured as a swivel wheel.

[0034] By setting the movable wheel 11 as a universal wheel, the entire device can move and be positioned in all directions within the workshop, improving the device's mobility and adaptability.

[0035] In one embodiment, the air-cooled assembly 20 includes two first air supply pipes 23 and two second air supply pipes 24. The two first air supply pipes 23 are spaced apart along a first direction, and the two second air supply pipes 24 are respectively disposed at both ends of the fabric delivery space 12 along a second direction. The second air supply pipes 24 are located obliquely above the first air supply pipes 23.

[0036] By staggering the first air supply pipe 23 and the second air supply pipe 24, the cooling air is prevented from forming convection in the vertical direction, which effectively improves the cooling efficiency and cooling effect.

[0037] In one embodiment, the first air supply pipe 23 is provided with a plurality of first air outlets 230, which are evenly spaced along a first direction; the second air supply pipe 24 is provided with a plurality of second air outlets, which are evenly spaced along a first direction.

[0038] By setting air outlets spaced apart along the first direction, cold air can be blown out evenly from multiple points, improving the uniformity and cooling effect of air cooling while enhancing the controllability of the overall cooling capacity of the device.

[0039] In one embodiment, a first air outlet 230 is provided on the first air supply pipe 23, and the first air outlet 230 extends along a first direction; a second air outlet is provided on the second air supply pipe 24, and the second air outlet extends along the first direction.

[0040] By setting up a long strip-shaped air outlet extending along the first direction, the cooling structure is simplified while ensuring comprehensive cooling of the fabric in the width direction, effectively improving the continuity and comprehensiveness of cooling of the fabric in motion.

[0041] In one embodiment, at least one support rod 13 is provided on the frame 10. The support rod 13 is arranged along a first direction, and the top surface of the support rod 13 is located within the fabric feeding space 12. The support rod 13 is configured to support the fabric passing through the fabric feeding space 12.

[0042] Specifically, the frame 10 is provided with two support rods 13, which are located on both sides of the first air supply pipe 23 extending in the first direction.

[0043] By setting the support rod 13, the movement of the fabric in the fabric feeding space 12 is supported, so that the fabric is kept at a preset distance from the first air outlet and the second air outlet in the fabric feeding space 12, thus avoiding the fabric from sagging and wrinkling and affecting the cooling effect.

[0044] In one embodiment, a receiving space 14 is provided inside the frame 10 extending along a first direction, a first cold air component 21 and a second cold air component 22 are disposed in the receiving space 14, and a first air supply pipe 23 and a second air supply pipe 24 are disposed at the upper end of the frame 10.

[0045] By placing the cooling air unit in the accommodating space 14 inside the rack 10 and placing the first air supply pipe 23 and the second air supply pipe 24 at the upper end of the rack 10, the internal space and upper space of the rack 10 are effectively utilized, improving space utilization while facilitating movement and transportation.

[0046] In one embodiment, the frame 10 is provided with a first notch 15 with an upward opening at both ends along a first direction, and the end of the first air supply pipe 23 is installed in the first notch 15. The first notch 15 is configured to limit the first air supply pipe 23.

[0047] By setting the first notch 15 at both ends of the frame 10, the air supply pipe is kept in accurate position, preventing the device from shifting or loosening during movement and operation, thus improving the stability and reliability of the device operation.

[0048] The above embodiments merely illustrate the basic principles and characteristics of this application. This application is not limited to the above examples. Various changes and modifications can be made to this application without departing from the spirit and scope thereof, and all such changes and modifications fall within the scope of this application as claimed. The scope of protection of this application is defined by the appended claims and their equivalents.

Claims

1. A mobile cooling auxiliary device, characterized in that, The mobile cooling auxiliary device includes a frame and an air-cooling assembly, wherein: The frame is arranged along a first direction, the air-cooling component is mounted on the frame, and a number of casters are provided at the bottom of the frame; The air-cooling assembly includes a first air cooling component, a second air cooling component, at least one first air supply pipe, and at least one second air supply pipe. The first air cooling component is connected to one end of the first air supply pipe. The first air supply pipe extends along the first direction and is mounted on the frame. At least one first air outlet is provided on the top surface of the first air supply pipe. The second air cooling component is connected to one end of the second air supply pipe. The second air supply pipe extends along the first direction and is mounted on the frame. At least one second air outlet is provided on the bottom surface of the second air supply pipe. The first air supply pipe is located below the second air supply pipe. A fabric feeding space extending along the second direction is provided between the first air supply pipe and the second air supply pipe. The moving wheels rotate to move the frame to a preset position. When the fabric to be cooled passes through the fabric feeding space, the first cold air component provides cooling air to the first air supply pipe to cool the bottom surface of the fabric through the first air outlet. The second cold air component provides cooling air to the second air supply pipe to cool the top surface of the fabric through the second air outlet.

2. The mobile cooling auxiliary device according to claim 1, characterized in that, The wheels are configured as omnidirectional wheels.

3. The mobile cooling auxiliary device according to claim 1, characterized in that, The air-cooling assembly includes two first air supply pipes and two second air supply pipes. The two first air supply pipes are spaced apart along the first direction, and the two second air supply pipes are respectively located at both ends of the fabric delivery space along the second direction. The second air supply pipes are located diagonally above the first air supply pipes.

4. The mobile cooling auxiliary device according to claim 1, characterized in that, The first air supply pipe is provided with a plurality of first air outlets, and the plurality of first air outlets are evenly spaced along the first direction; The second air supply pipe has a plurality of second air outlets, which are evenly spaced along the first direction.

5. The mobile cooling auxiliary device according to claim 1, characterized in that, The first air supply pipe has a first air outlet, which extends along the first direction; the second air supply pipe has a second air outlet, which extends along the first direction.

6. The mobile cooling auxiliary device according to claim 1, characterized in that, At least one support rod is provided on the frame, the support rod is arranged along the first direction, the top surface of the support rod is located within the fabric feeding space, and the support rod is configured to support the fabric passing through the fabric feeding space.

7. The mobile cooling auxiliary device according to claim 1, characterized in that, An accommodating space is provided inside the frame extending along the first direction. The first cold air component and the second cold air component are disposed within the accommodating space. The first air supply pipe and the second air supply pipe are disposed at the upper end of the frame.

8. The mobile cooling auxiliary device according to claim 7, characterized in that, The frame is provided with an upward-facing first notch at both ends along the first direction, and the end of the first air supply pipe is installed in the first notch. The first notch is configured to limit the first air supply pipe.