Rapid printing and dyeing device

By designing a rapid printing and dyeing device, using the printing and dyeing liquid circulation tank and heating components, the problem of long sample inspection time in the existing printing and dyeing process has been solved, and the printing and dyeing time has been significantly shortened and the efficiency has been improved.

CN223292797UActive Publication Date: 2025-09-02FUZHOU DESHENG KNITTING & DYEING CO LTD
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Patent Information

Application Number
CN202422152226.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-09-02
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

The existing printing and dyeing processes have a long sample inspection time, which affects production efficiency.

Method used

A rapid printing and dyeing device is designed, including a printing and dyeing box, a printing and dyeing liquid circulation pool, a vertical lifting assembly and heating assembly. The printing and dyeing liquid circulation and heating process are controlled by the controller to shorten the printing and dyeing time.

Benefits of technology

The printing and dyeing liquid circulating and multiple heating is shortened, the printing and dyeing time is improved, and the sample inspection time is reduced by more than 50%.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of textile printing and dyeing, in particular to a rapid printing and dyeing device. A printing and dyeing pool, a vertical lifting assembly and a heating assembly are arranged in the printing and dyeing box, and a printing and dyeing liquid circulating pool is arranged outside; during printing and dyeing testing, the vertical lifting assembly is driven to enable a to-be-printed and dyed sample to be immersed in printing and dyeing liquid for printing and dyeing, timing is conducted at the same time, and when the preset printing and dyeing duration is reached, the vertical lifting assembly is driven to enable the to-be-printed and dyed sample to move to the heating assembly, and meanwhile the heating assembly is started to heat the to-be-printed and dyed sample; and when the preset heating duration is reached, printing and dyeing and heating are repeated, and the whole printing and dyeing process is completed after multiple times, so that the printing and dyeing duration can be greatly shortened, and the printing and dyeing test is facilitated. The printing and dyeing liquid circularly flows between the printing and dyeing pool and the printing and dyeing liquid circulating pool through the self-priming pump, so that the contact probability and uniformity of a medium in the printing and dyeing liquid and the to-be-printed and dyed sample are increased, and the printing and dyeing efficiency is further improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of textile printing and dyeing, in particular to a rapid printing and dyeing device. Background Art

[0002] During the textile fabric production process, printing and dyeing is one of the processing steps. The printing and dyeing process mainly involves physical and chemical treatment of textiles, including dyeing, printing, and related pre-treatment processes. Through the physical or chemical changes between the dye and the fiber, the textile is given a certain color and gloss. However, before mass production, the printing and dyeing effect of the printing and dyeing liquid needs to be sampled and tested. If the existing printing and dyeing process is used, the sample testing time is very long. Utility Model Content

[0003] In view of this, the purpose of the present invention is to provide a fast printing and dyeing device that can greatly shorten the sample inspection time.

[0004] In order to achieve the above purpose, the technical solution adopted by the utility model is:

[0005] A rapid dyeing device comprises a dyeing box with an open top, a dyeing liquid circulation pool, and a dyeing pool, a vertical lifting assembly, and a heating assembly respectively disposed within the dyeing box. The dyeing liquid circulation pool is located on one side of the outside of the dyeing box, and a controller is mounted on the outer wall of the dyeing box; a timing module is integrated into the controller; a self-priming pump and a pipe connected to the self-priming pump are disposed within the dyeing liquid circulation pool, and the pipe is connected to the interior of the dyeing pool to form a closed-loop flow channel;

[0006] The printing and dyeing pool is arranged on the lower bottom surface of the printing and dyeing box, the heating assembly is arranged on the middle side wall of the printing and dyeing box, the two vertical lifting assemblies are respectively vertically installed on the inner side wall of the printing and dyeing box, and the distance between the two vertical lifting assemblies is adapted to the length of the sample to be printed and dyed, the vertical lifting assembly is provided with a connecting arm that can move in the vertical direction, and the free end of the connecting arm is provided with a clamping part, and all the clamping parts are used to jointly clamp a sample to be printed and dyed; the vertical lifting assembly is configured to move the clamping part to the printing and dyeing pool and the installation position of the heating assembly respectively;

[0007] The vertical lifting component, the heating component and the self-priming pump are electrically connected to the controller respectively.

[0008] Furthermore, a first liquid level sensor is embedded on the inner side of the wall of the printing and dyeing pool, and a second liquid level sensor is embedded on the inner side of the wall of the printing and dyeing liquid circulation pool. The first liquid level sensor and the second liquid level sensor are electrically connected to the controller respectively.

[0009] Furthermore, the heating assembly includes two groups of heating units, one group of the heating units is two fixed heating sources located at the same horizontal height and arranged opposite to each other, and the other group of the heating units is two movable heating sources located at different horizontal heights. When the clamping portion is located at the installation position of the heating assembly, the two movable heating sources are respectively moved above and below the sample to be printed and dyed.

[0010] Furthermore, the fixed heating source and the movable heating source are both electric heating tubes, and are both electrically connected to the controller.

[0011] Furthermore, the heating assembly also includes a horizontally arranged push rod, and a through hole for the push rod to pass through is provided on the side wall of the printing and dyeing box. One end of the push rod is located outside the printing and dyeing box and is provided with a hand-held portion, and the other end of the push rod extends from the through hole into the interior of the printing and dyeing box and is fixedly connected to the movable heating source. The length of the push rod is adapted to the moving range of the movable heating source.

[0012] Furthermore, there are two push rods, which are arranged parallel to each other and spaced apart. One end of the two push rods is fixedly connected by a hand-held part, and the other end of the two push rods is fixedly connected by a movable heating source.

[0013] Furthermore, an indicator light is installed on the outer wall of the printing and dyeing box, and there are multiple indicator lights, which are electrically connected to the controller.

[0014] Furthermore, the printing and dyeing pool is detachably connected to the lower bottom surface of the printing and dyeing box.

[0015] Furthermore, a first magnetic block is provided on the lower surface of the printing and dyeing pool, a second magnetic block that is magnetically attracted to the first magnetic block is provided on the lower bottom surface of the printing and dyeing box, and a handle is provided on the upper end of the printing and dyeing pool.

[0016] The beneficial effects of the utility model are:

[0017] The utility model provides a rapid dyeing device, which comprises a dyeing pool, a vertical lifting component and a heating component arranged in a dyeing box, a dyeing liquid circulation pool arranged outside the dyeing box and a controller installed on the outer wall of the dyeing box; a timing module is integrated on the controller; a self-priming pump and a pipe connected to the self-priming pump are arranged in the dyeing liquid circulation pool, and the pipe is connected to the inside of the dyeing pool to form a closed-loop flow channel; the dyeing pool is arranged on the lower bottom surface of the dyeing box, the heating component is arranged on the middle side wall of the dyeing box, and two The vertical lifting components are respectively installed vertically on the inner wall of the printing and dyeing box and the distance between the two vertical lifting components is adapted to the length of the sample to be printed and dyed. The vertical lifting components are provided with a connecting arm that can move in the vertical direction, and the free end of the connecting arm is provided with a clamping part, and all the clamping parts are used to clamp a sample to be printed and dyed together; the vertical lifting components are configured to move the clamping part to the printing and dyeing pool and the heating component installation location respectively; the vertical lifting components, heating components and self-priming pump are respectively electrically connected to the controller. Through the above structural design, when it is necessary to perform a printing and dyeing test on the printing and dyeing sample, the printing and dyeing liquid is first poured into the printing and dyeing pool, and then the printing and dyeing sample is installed on the clamping part. By driving the vertical lifting component, the printing and dyeing sample is immersed in the printing and dyeing liquid for printing and dyeing, and the timing module is started at the same time for timing. When the preset printing and dyeing time is reached, the vertical lifting component is driven again to move the printing and dyeing sample to the heating component and the heating component is started at the same time to heat the printing and dyeing sample, shortening the color fixing time. At the same time, the timing module is started again for timing. When the preset heating time is reached, the printing and dyeing and heating are repeated. After multiple times, the whole printing and dyeing process is completed, which can greatly reduce the printing and dyeing time and is conducive to the use of printing and dyeing testing. And the printing and dyeing liquid is circulated between the printing and dyeing pool and the printing and dyeing liquid circulation pool by the self-priming pump, increasing the contact probability and uniformity between the medium in the printing and dyeing liquid and the printing and dyeing sample, thereby further improving the printing and dyeing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 The figure shows a schematic structural diagram of a rapid printing and dyeing device according to the present invention from one angle;

[0019] Figure 2 Shown is a structural schematic diagram of a rapid printing and dyeing device of the present invention from another angle;

[0020] Figure 3 Shown Figure 1 A top view of

[0021] Figure 4 Shown Figure 3 Cross-sectional view at AA in the middle;

[0022] Description of Figure Numbers:

[0023] 1-Dyeing box; 2-Dyeing tank; 3. Vertical lifting assembly; 31-Connecting arm; 32-Clamping part; 4-Heating assembly; 41-Fixed heating source; 42-Movable heating source; 43-Push rod; 44-Handheld part; 5-Dyeing liquid circulation tank; 51-Self-priming pump; 52-Pipeline. DETAILED DESCRIPTION

[0024] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:

[0025] like Figures 1-4 As shown, the utility model provides a rapid dyeing device, comprising a dyeing box with an open top, a dyeing liquid circulation pool, and a dyeing pool, a vertical lifting assembly, and a heating assembly respectively arranged inside the dyeing box. The dyeing liquid circulation pool is located on the outside of the dyeing box, and a controller is installed on the outer wall of the dyeing box; a timing module is integrated on the controller; a self-priming pump and a pipe connected to the self-priming pump are arranged in the dyeing liquid circulation pool, and the pipe is connected to the interior of the dyeing pool to form a closed-loop flow channel;

[0026] The printing and dyeing pool is arranged on the lower bottom surface of the printing and dyeing box, the heating assembly is arranged on the middle side wall of the printing and dyeing box, the two vertical lifting assemblies are respectively vertically installed on the inner side wall of the printing and dyeing box, and the distance between the two vertical lifting assemblies is adapted to the length of the sample to be printed and dyed, the vertical lifting assembly is provided with a connecting arm that can move in the vertical direction, and the free end of the connecting arm is provided with a clamping part, and all the clamping parts are used to jointly clamp a sample to be printed and dyed; the vertical lifting assembly is configured to move the clamping part to the printing and dyeing pool and the installation position of the heating assembly respectively;

[0027] The vertical lifting component, the heating component and the self-priming pump are electrically connected to the controller respectively.

[0028] From the above description, it can be seen that the present invention has the following beneficial effects:

[0029] The utility model provides a rapid dyeing device, which comprises a dyeing pool, a vertical lifting component and a heating component arranged in a dyeing box, a dyeing liquid circulation pool arranged outside the dyeing box and a controller installed on the outer wall of the dyeing box; a timing module is integrated on the controller; a self-priming pump and a pipe connected to the self-priming pump are arranged in the dyeing liquid circulation pool, and the pipe is connected to the inside of the dyeing pool to form a closed-loop flow channel; the dyeing pool is arranged on the lower bottom surface of the dyeing box, the heating component is arranged on the middle side wall of the dyeing box, and two The vertical lifting components are respectively installed vertically on the inner wall of the printing and dyeing box and the distance between the two vertical lifting components is adapted to the length of the sample to be printed and dyed. The vertical lifting components are provided with a connecting arm that can move in the vertical direction, and the free end of the connecting arm is provided with a clamping part, and all the clamping parts are used to clamp a sample to be printed and dyed together; the vertical lifting components are configured to move the clamping part to the printing and dyeing pool and the heating component installation location respectively; the vertical lifting components, heating components and self-priming pump are respectively electrically connected to the controller. Through the above structural design, when it is necessary to perform a printing and dyeing test on the printing and dyeing sample, the printing and dyeing liquid is first poured into the printing and dyeing pool, and then the printing and dyeing sample is installed on the clamping part. By driving the vertical lifting component, the printing and dyeing sample is immersed in the printing and dyeing liquid for printing and dyeing, and the timing module is started at the same time for timing. When the preset printing and dyeing time is reached, the vertical lifting component is driven again to move the printing and dyeing sample to the heating component and the heating component is started at the same time to heat the printing and dyeing sample, shortening the color fixing time. At the same time, the timing module is started again for timing. When the preset heating time is reached, the printing and dyeing and heating are repeated. After multiple times, the whole printing and dyeing process is completed, which can greatly reduce the printing and dyeing time and is conducive to the use of printing and dyeing testing. And the printing and dyeing liquid is circulated between the printing and dyeing pool and the printing and dyeing liquid circulation pool by the self-priming pump, increasing the contact probability and uniformity between the medium in the printing and dyeing liquid and the printing and dyeing sample, thereby further improving the printing and dyeing efficiency.

[0030] Furthermore, a first liquid level sensor is embedded on the inner side of the wall of the printing and dyeing pool, and a second liquid level sensor is embedded on the inner side of the wall of the printing and dyeing liquid circulation pool. The first liquid level sensor and the second liquid level sensor are electrically connected to the controller respectively.

[0031] From the above description, it can be seen that setting a liquid level sensor can detect the current printing liquid height in the printing pool and the printing liquid circulation pool to control the movement stroke of the vertical lifting component and judge whether the current printing liquid is excessive or insufficient, so as to facilitate timely addition.

[0032] Furthermore, a concentration sensor is embedded on the inner side of the wall of the printing and dyeing pool, and the concentration sensor is electrically connected to the controller.

[0033] As can be seen from the above description, by providing a concentration sensor for detecting the concentration of the dyeing liquid, the concentration can be avoided from being too high or too low, and the concentration can be adjusted in time.

[0034] Furthermore, the number of the concentration sensors is more than two, and the more than two concentration sensors are electrically connected to the controller respectively and are evenly arranged on the inner side of the wall of the printing and dyeing pool.

[0035] From the above description, it can be seen that the above method can improve the concentration detection accuracy and avoid misjudgment.

[0036] Furthermore, the clamping portion is made of stainless steel.

[0037] From the above description, it can be seen that stainless steel is used to avoid corrosion, rust, etc. during long-term use, which may affect the test results.

[0038] Furthermore, the heating assembly includes two groups of heating units, one group of the heating units is two fixed heating sources located at the same horizontal height and arranged opposite to each other, and the other group of the heating units is two movable heating sources located at different horizontal heights. When the clamping portion is located at the installation position of the heating assembly, the two movable heating sources are respectively moved above and below the sample to be printed and dyed.

[0039] From the above description, it can be seen that through the above structure, not only can the heating operation of the sample to be printed and dyed be realized, but also the heating efficiency can be controlled. Specifically, the movable heating source is moved above and below the sample to be printed and dyed, thereby adjusting the distance from the heating source to the sample to be printed and dyed, thereby achieving different heating efficiencies.

[0040] Furthermore, the fixed heating source and the movable heating source are both electric heating tubes, and are both electrically connected to the controller.

[0041] Furthermore, the heating assembly also includes a horizontally arranged push rod, and a through hole for the push rod to pass through is provided on the side wall of the printing and dyeing box. One end of the push rod is located outside the printing and dyeing box and is provided with a hand-held portion, and the other end of the push rod extends from the through hole into the interior of the printing and dyeing box and is fixedly connected to the movable heating source. The length of the push rod is adapted to the moving range of the movable heating source.

[0042] From the above description, it can be seen that the above structure can realize the movement of the movable heating source. By manually pushing the push rod, the horizontal position of the movable heating source can be moved, thereby adjusting the heating efficiency.

[0043] Furthermore, there are two push rods, which are arranged parallel to each other and spaced apart. One end of the two push rods is fixedly connected by a hand-held part, and the other end of the two push rods is fixedly connected by a movable heating source.

[0044] Furthermore, an indicator light is installed on the outer wall of the printing and dyeing box, and there are multiple indicator lights, which are electrically connected to the controller.

[0045] From the above description, it can be seen that by setting indicator lights, the current operating status can be displayed, and the user can judge the printing and dyeing progress through customized identification methods such as different colors and different numbers of indicator lights.

[0046] Furthermore, the printing and dyeing pool is detachably connected to the lower bottom surface of the printing and dyeing box.

[0047] Furthermore, a first magnetic block is provided on the lower surface of the printing and dyeing pool, a second magnetic block that is magnetically attracted to the first magnetic block is provided on the lower bottom surface of the printing and dyeing box, and a handle is provided on the upper end of the printing and dyeing pool.

[0048] From the above description, it can be seen that a detachable connection between the printing and dyeing pool and the printing and dyeing box can be realized. Through the magnetic attraction cooperation between the first magnetic block and the second magnetic block, rapid positioning and fixation can be achieved. The handle can be used to facilitate the removal of the printing and dyeing pool for cleaning, replacement and other operations.

[0049] Several preferred embodiments or application examples are listed below to help those skilled in the art better understand the technical content of the present invention and the technical contribution made by the present invention relative to the prior art:

[0050] Preferred embodiment one:

[0051] The utility model provides a rapid dyeing device, comprising a dyeing box 1 with an open top, a dyeing liquid circulation pool 5, and a dyeing pool 2, a vertical lifting component 3, and a heating component 4 respectively arranged inside the dyeing box 1. The dyeing box 1 is in the shape of a rectangular parallelepiped, and the dyeing pool 2 is also in the shape of a rectangular parallelepiped; the dyeing box 1 is 100 cm long, 50 cm wide, and 50 cm high. The dyeing liquid circulation pool 5 is located on one side outside the dyeing box 1. The dyeing liquid circulation pool 5 is equipped with a self-priming pump 51 and a pipe 52 connected to the self-priming pump. The pipe 52 is connected to the inside of the dyeing pool 2 to form a closed-loop flow channel;

[0052] A controller (not shown) is mounted on the outer wall of the dyeing chamber 1. The controller integrates a timing module and a storage module. The timing module is used for timing, and the storage module is used to store preset dyeing and heating times. The controller, timing module, and storage module can all be existing products, and their electrical connections can also be implemented using existing methods. The vertical lift assembly 3, heating assembly 4, and self-priming pump 51 are each electrically connected to the controller.

[0053] Specifically, the printing and dyeing pool 2 is provided on the lower bottom surface of the printing and dyeing box 1, the heating component 4 is provided on the middle side wall of the printing and dyeing box 1, the two vertical lifting components 3 are respectively installed vertically on the inner side wall of the printing and dyeing box, and the distance between the two vertical lifting components 3 is adapted to the length of the sample to be printed and dyed, and the vertical lifting component 3 is provided with a connecting arm 31 that can move in the vertical direction. The connecting arm 31 is L-shaped, and the connecting arm 31 is connected to the vertical lifting component 3 corresponding to the short side of the L-shape. The connecting arm 31 corresponds to the long side of the L-shape as the free end of the connecting arm, and a stainless steel clamping part 32 is provided on the free end. The stainless steel material is used to avoid corrosion, rust, etc. caused by long-term use, thereby affecting the test results. In this embodiment, the number of clamping parts is four, and they are distributed at the four top corners of the rectangle. All clamping parts 32 are used to clamp the four corners of a sample to be printed and dyed together; wherein the clamping part is formed by the cooperation of a U-shaped buckle and a locking screw.

[0054] The vertical lifting assembly 3 is configured to move the clamping portion 32 to the printing and dyeing pool and the heating assembly installation location, respectively. The vertical lifting assembly 3 adopts an existing structure in which a screw rod, a track, and a moving block cooperate.

[0055] The heating assembly 4 includes two groups of heating units, one of which is composed of two fixed heating sources 41 located at the same horizontal height and arranged opposite to each other, and the other of which is composed of two movable heating sources 42 located at different horizontal heights. When the clamping portion is located at the installation position of the heating assembly, the two movable heating sources 42 are respectively moved to the top and bottom of the sample to be printed and dyed. Through the above structure, not only can the heating operation of the sample to be printed and dyed be realized, but also the heating efficiency can be controlled. Specifically, the movable heating source is moved to the top and bottom of the sample to be printed and dyed, thereby adjusting the distance from the heating source to the sample to be printed and dyed, thereby achieving different heating efficiencies. In this embodiment, both the fixed heating source and the movable heating source adopt existing electric heating tubes, and are electrically connected to the controller to control their start and stop states. Among them, the movable heating source is moved to the corresponding heating position, such as the top and bottom of the sample to be printed and dyed, by the push rod of the peripheral device fixedly connected thereto. The heating assembly also includes a horizontally arranged push rod 43. A through hole is provided on the side wall of the printing and dyeing box for the push rod 43 to pass through. One end of the push rod 43 is located outside the printing and dyeing box 1 and is provided with a handheld portion 44. The other end of the push rod 43 extends from the through hole into the interior of the printing and dyeing box 1 and is fixedly connected to the movable heating source 42. The length of the push rod 43 is adapted to the moving range of the movable heating source 42. There are two push rods 43, and the two push rods 43 are arranged parallel to each other and spaced apart. One end of the two push rods 43 is fixedly connected by the handheld portion 44, and the other end of the two push rods 43 is fixedly connected by the movable heating source 42. Through the above structure, the movement of the movable heating source is realized. By manually pushing the push rod, the horizontal position of the movable heating source can be moved, thereby adjusting the heating efficiency.

[0056] A first liquid level sensor (not shown) is embedded in the inner wall of the dyeing tank 2, and a second liquid level sensor (not shown) is embedded in the inner wall of the dyeing liquid circulation tank 5. The first and second liquid level sensors are electrically connected to a controller. The liquid level sensors detect the current level of the dyeing liquid in the dyeing tank and the dyeing liquid circulation tank, controlling the travel of the vertical lift assembly and determining whether the dyeing liquid is excessive or insufficient, thereby facilitating timely addition of the liquid. In this embodiment, the liquid level sensors can be existing products.

[0057] A concentration sensor (not shown) is embedded in the inner side of the wall of the dyeing tank 2 and is electrically connected to the controller. There are two or more concentration sensors, each electrically connected to the controller and evenly distributed on the inner side of the wall of the dyeing tank. Providing a concentration sensor to detect the concentration of the dyeing liquid prevents over-concentration or over-dilutement and facilitates timely concentration adjustment. This approach improves concentration detection accuracy and avoids misjudgments. In this embodiment, the concentration sensor can be an existing product.

[0058] Multiple indicator lights (not shown) are mounted on the outer wall of the printing and dyeing box 1 and are electrically connected to a controller. The indicator lights display the current operating status, allowing the user to determine the progress of the printing and dyeing process using customized identification methods such as the color and number of the indicator lights. In this embodiment, the three indicator lights are readily available.

[0059] The printing and dyeing pool 2 is detachably connected to the lower bottom surface of the printing and dyeing box 1. Specifically, a first magnetic block is provided on the lower surface of the printing and dyeing pool, a second magnetic block is provided on the lower bottom surface of the printing and dyeing box, and a handle is provided at the upper end of the printing and dyeing pool. The magnetic attraction between the first and second magnetic blocks enables rapid positioning and fixation, and the handle facilitates removal of the printing and dyeing pool for cleaning, replacement, and other operations. The number of first and second magnetic blocks is equal, both being four, corresponding to the four vertices of the rectangle.

[0060] The working principle of a rapid printing and dyeing device provided by the utility model is:

[0061] When it is necessary to conduct a printing and dyeing test on the printing and dyeing sample, first pour the printing and dyeing liquid into the printing and dyeing pool, start the self-priming pump to circulate the printing and dyeing liquid, then install the printing and dyeing sample on the clamping part, drive the vertical lifting component to immerse the printing and dyeing sample in the printing and dyeing liquid for printing and dyeing, and start the timing module at the same time to start timing. When the preset printing and dyeing time is reached, drive the vertical lifting component again to move the printing and dyeing sample to the heating component and start the heating component to heat the printing and dyeing sample at the same time, shorten the color fixing time, and at the same time start the timing module again to start timing. When the preset heating time is reached, repeat the printing and dyeing and heating. After several times, the whole printing and dyeing process is completed, which can greatly reduce the printing and dyeing time and is conducive to the use of printing and dyeing testing. The printing and dyeing time using this solution saves more than 50% of the time required for the traditional printing and dyeing process. If it is necessary to adjust the heating efficiency, the position of the movable heating source can be adjusted by the push rod to adjust the heating efficiency.

[0062] The present invention has been described with reference to the above embodiments and accompanying drawings. However, the above embodiments are merely exemplary embodiments of the present invention. It should be noted that the disclosed embodiments do not limit the scope of the present invention. On the contrary, modifications and equivalents falling within the spirit and scope of the claims are intended to be within the scope of the present invention.

Claims

1. A rapid printing and dyeing device, characterized in that: The invention comprises a dyeing box with an open top, a dyeing liquid circulation pool, and a dyeing pool, a vertical lifting assembly, and a heating assembly respectively arranged inside the dyeing box. The dyeing liquid circulation pool is located on the outside of the dyeing box, and a controller is installed on the outer wall of the dyeing box; a timing module is integrated on the controller; a self-priming pump and a pipe connected to the self-priming pump are arranged in the dyeing liquid circulation pool, and the pipe is connected to the inside of the dyeing pool to form a closed-loop flow channel; The printing and dyeing pool is arranged on the lower bottom surface of the printing and dyeing box, the heating assembly is arranged on the middle side wall of the printing and dyeing box, the two vertical lifting assemblies are respectively vertically installed on the inner side wall of the printing and dyeing box, and the distance between the two vertical lifting assemblies is adapted to the length of the sample to be printed and dyed, the vertical lifting assembly is provided with a connecting arm that can move in the vertical direction, and the free end of the connecting arm is provided with a clamping part, and all the clamping parts are used to jointly clamp a sample to be printed and dyed; the vertical lifting assembly is configured to move the clamping part to the printing and dyeing pool and the installation position of the heating assembly respectively; The vertical lifting component, the heating component and the self-priming pump are electrically connected to the controller respectively.

2. A rapid printing and dyeing device according to claim 1, characterized in that: A first liquid level sensor is embedded on the inner side of the wall of the dyeing pool, and a second liquid level sensor is embedded on the inner side of the wall of the dyeing liquid circulation pool. The first liquid level sensor and the second liquid level sensor are electrically connected to the controller respectively.

3. The rapid dyeing and printing device according to claim 1, characterized in that: The heating assembly includes two groups of heating units, one of the two groups of heating units is two fixed heating sources located at the same horizontal height and arranged opposite to each other, and the other group of heating units is two movable heating sources located at different horizontal heights. When the clamping part is located at the installation position of the heating assembly, the two movable heating sources are respectively moved above and below the sample to be printed and dyed.

4. A rapid printing and dyeing device according to claim 3, characterized in that: The fixed heating source and the movable heating source are both electric heating tubes, and are both electrically connected to the controller.

5. The rapid dyeing and printing device according to claim 3, characterized in that: The heating assembly also includes a horizontally arranged push rod, and a through hole for the push rod to pass through is provided on the side wall of the printing and dyeing box. One end of the push rod is located outside the printing and dyeing box and is provided with a hand-held portion, and the other end of the push rod extends from the through hole into the interior of the printing and dyeing box and is fixedly connected to the movable heating source. The length of the push rod is adapted to the moving range of the movable heating source.

6. A rapid printing and dyeing device according to claim 5, characterized in that: There are two push rods, which are arranged parallel to each other and spaced apart. One end of the two push rods is fixedly connected by a handheld portion, and the other end of the two push rods is fixedly connected by a movable heating source.

7. The rapid dyeing and printing device according to claim 1, characterized in that: An indicator light is installed on the outer side wall of the printing and dyeing box. There are multiple indicator lights, and the multiple indicator lights are electrically connected to the controller.

8. The rapid dyeing and printing device according to claim 1, characterized in that: The printing and dyeing pool is detachably connected to the lower bottom surface of the printing and dyeing box.

9. The rapid printing and dyeing device according to claim 8, characterized in that: A first magnetic block is provided on the lower surface of the printing and dyeing pool, a second magnetic block magnetically attracted to the first magnetic block is provided on the lower bottom surface of the printing and dyeing box, and a handle is provided on the upper end of the printing and dyeing pool.