A rinsing machine for softening treatment of clothing fabric

By introducing a drive mechanism, a water circulation mechanism, and a bubble assembly into the garment fabric rinsing machine, the problems of insufficient rinsing and water waste have been solved, achieving a highly efficient and environmentally friendly fabric rinsing effect.

CN224313861UActive Publication Date: 2026-06-02ZHOUKOU HUAQI CLOTHING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHOUKOU HUAQI CLOTHING CO LTD
Filing Date
2025-05-13
Publication Date
2026-06-02

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Abstract

The utility model belongs to clothing fabric processing equipment technical field especially relates to a kind of rinsing machine for clothing fabric softening treatment, including assembly box, the assembly box is front side open inside hollow structure, the assembly box's just above fixed installation has liquid storage tank, the liquid storage tank is top open inside hollow structure;By setting water circulation mechanism, filter screen and activated carbon adsorption layer are filtered to rinsing water, use high-pressure water pump and multiple pipelines to transport the water after processing, and by multiple high-pressure spray heads located at the both sides of rinsing net box are sprayed, to realize the recycling of water resources, the water-saving performance of the device is superior, secondary pollution emission is lower, with good applicability, by setting bubble assembly, use bubble to carry out micro-processing to fabric, improve the removal efficiency of fabric surface impurities, compared with traditional soaking type and flushing type rinsing, the rinsing effect of the device on fabric is better, and rinsing efficiency is higher.
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Description

Technical Field

[0001] This utility model belongs to the technical field of garment fabric processing equipment, and in particular relates to a rinsing machine for softening garment fabrics. Background Technology

[0002] In the garment manufacturing industry, especially in trouser production, the softness of the fabric directly affects wearing comfort and product quality. After finishing or other processing steps, the fabric needs to be washed to remove impurities or loose dye. Fabric washing is generally accomplished using fabric rinsing equipment.

[0003] For example, Chinese patent CN221837243U discloses an energy-saving fabric rinsing device for textiles, including a rinsing tank. Support rollers are rotatably connected to both sides of the top of the rinsing tank via bearing seats. Guide rollers are rotatably embedded in both sides of the inner wall of the rinsing tank via bearings. An agitation mechanism is installed on the inner wall of the rinsing tank. The agitation mechanism includes a rotating rod, and a transmission mechanism is installed on the surface of the rotating rod. The transmission mechanism includes two short rods. This invention has the advantage of agitating the rinsing liquid in the rinsing tank and simultaneously cleaning the lint from both sides of the fabric. The motor drives the rotating rod and the agitator to rotate, stirring the rinsing liquid in the rinsing tank to maintain uniformity. The rotation of the rotating rod, under the action of the transmission mechanism, causes two sets of cleaning mechanisms to rotate, allowing the cleaning brushes on the cleaning mechanisms to clean the lint from both sides of the fabric.

[0004] This patent has several drawbacks in its application. For example, while the device uses a stirring roller to agitate the rinsing tank for uniform rinsing, it suffers from insufficient rinsing (the fabric merely passes through the rinsing solution, resulting in poor impact and contact between the solution and fabric, leading to ineffective rinsing). Furthermore, the effectiveness of the rinsing solution decreases after prolonged rinsing (due to the continuous addition of new fabric requiring additional rinsing, the device cannot promptly replace and recycle the old rinsing solution, or recycling requires complex manual replacement, resulting in low efficiency). Finally, it wastes water resources significantly (the rinse water cannot be filtered and reused, and direct discharge is detrimental to environmental protection and wastes water resources). Therefore, we propose a rinsing machine for softening garment fabrics. Utility Model Content

[0005] The purpose of this invention is to provide a rinsing machine for softening garment fabrics, in order to solve the problems mentioned in the background art.

[0006] In view of this, the present invention provides a rinsing machine for softening garment fabrics, comprising:

[0007] An assembly box is provided, which has a front opening and a hollow interior. A liquid storage tank is fixedly installed on the top of the assembly box. The liquid storage tank has a top opening and a hollow interior. Support frames are symmetrically fixed on the bottom surface of the liquid storage tank. A rinsing screen is rotatably installed between the two support frames. A flip cover is rotatably installed on the rinsing screen via a hinge. The other side of the flip cover is engaged with the rinsing screen via a buckle. A rectangular groove is provided on the bottom surface of the assembly box between the two support frames.

[0008] A drive mechanism is provided on the assembly box and the storage tank, and is used to drive the rinsing mesh box to rotate inside the storage tank.

[0009] A water circulation mechanism is installed inside the assembly box and is used to filter and reuse the water in the storage tank.

[0010] A bubbling assembly is disposed in the inner cavity of the assembly box and is used to generate bubbles to improve the rinsing effect.

[0011] In this technical solution, the driving mechanism includes:

[0012] A side cover is fixedly installed on the side wall of the assembly box and the storage tank. A motor is fixedly installed at the bottom of the inner cavity of the assembly box, and the output shaft of the motor passes through the assembly box and extends to the inner cavity of the side cover. A bevel gear one is coaxially connected to the output shaft of the motor. A rotating shaft is provided in the inner cavity of the side cover, and the two ends of the rotating shaft are coaxially connected to bearing seats fixed to the inner wall of the assembly box. A bevel gear two is coaxially fixed at the lower part of the rotating shaft, and the bevel gear two meshes with the bevel gear one.

[0013] In this technical solution, the driving component further includes:

[0014] A drive shaft is rotatably mounted on the upper part of the support frame. One end of the drive shaft is coaxially connected to the rotating shaft of the rinsing net box. The other end of the drive shaft passes through the liquid storage tank and extends into the side cover. A bevel gear four is coaxially connected to the drive shaft at the position of the inner cavity of the side cover. A bevel gear three is coaxially fixed on the upper part of the rotating shaft, and the bevel gear three meshes with the bevel gear four.

[0015] In this technical solution, the water circulation mechanism includes a spray assembly for rinsing the fabric and a circulation assembly for filtering and circulating the water. The spray assembly includes:

[0016] Four symmetrically arranged support rods are fixedly installed on the base of the support frame. A fixing frame is fixedly installed between the front and rear sets of support rods. A spray pipe is fixedly installed on the lower surface of the fixing frame. Multiple high-pressure nozzles are fixedly installed on the spray pipe, and the nozzles of the high-pressure nozzles are inclined towards the rinsing net box.

[0017] In this technical solution, the loop component includes:

[0018] A filter box is fixedly installed inside the assembly box. From left to right, a filter screen and an activated carbon adsorption layer are sequentially installed inside the filter box. The filter screen and activated carbon adsorption layer divide the filter box into a raw pulp chamber, a filtration chamber, and a purified water chamber from left to right. A drain hole is provided on the bottom surface of the storage tank. A pipe is fixedly installed at the drain hole, and the outlet of the pipe is located directly above the raw pulp chamber. A control valve is installed on the pipe.

[0019] In this technical solution, the circulation component further includes:

[0020] A high-pressure water pump is fixedly installed in the inner cavity of the water purification chamber in the filter box. A water pipe is fixedly installed at the output end of the high-pressure water pump. A horizontally placed water pipe is fixed at the other end of the water pipe. Both ends of the water pipe are fixed to the upper surface of the filter box by fixing blocks. A water pipe is fixed at both ends of the water pipe, and the other end of the water pipe passes through the assembly box and extends into the inner cavity of the liquid storage tank, where it is connected to the corresponding spray pipe.

[0021] In this technical solution, the bubbling assembly includes:

[0022] A bubbling tube is fixedly installed in a rectangular groove. The bubbling tube consists of a horizontal main pipe and multiple secondary pipes that are vertically distributed to the main pipe. The multiple secondary pipes are evenly distributed, and the upper surface of the secondary pipes is provided with multiple evenly distributed air outlets. An air compressor is fixedly installed in the inner cavity of the assembly box. An air supply pipe is fixed to the output end of the air compressor, and the other end of the air supply pipe passes through the assembly box and extends into the liquid storage tank, connecting with the main pipe of the bubbling tube.

[0023] The beneficial effects of this utility model are:

[0024] 1. This rinsing machine for softening garment fabrics, by setting a drive mechanism, allows the rinsing mesh box to rotate within the storage tank, thereby enabling the fabric located within the rinsing mesh box to have more thorough contact with the rinsing water, effectively improving rinsing efficiency and rinsing effect.

[0025] 2. This rinsing machine for softening garment fabrics uses a water circulation mechanism to filter the rinsing water using a filter screen and an activated carbon adsorption layer. The treated water is then transported using a high-pressure water pump and multiple pipelines and sprayed out through multiple high-pressure nozzles located on both sides of the rinsing net box, thus achieving water resource recycling. This device has excellent water-saving performance, low secondary pollution emissions, and good applicability.

[0026] 3. This garment fabric softening rinsing machine, by setting up a bubble assembly, uses bubbles to micro-treat the fabric, accelerating the removal efficiency of impurities on the fabric surface. Compared with traditional soaking and rinsing rinsing, this device has a better rinsing effect and higher rinsing efficiency. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0028] Figure 2 This is a schematic diagram of the internal structure of the assembly box and the liquid storage tank in this utility model;

[0029] Figure 3 This is a schematic diagram of the rinsing net cage in this utility model;

[0030] Figure 4 This is a schematic diagram of the bubbling assembly in this utility model;

[0031] Figure 5 This is a schematic diagram of the water circulation mechanism of this utility model.

[0032] The markings in the diagram are as follows:

[0033] 1. Assembly box; 2. Liquid storage tank; 3. Support frame; 4. Rinse screen box; 5. Flip-top; 6. Side cover; 7. Motor; 8. Bevel gear one; 9. Rotating shaft; 10. Bearing seat; 11. Bevel gear two; 12. Bevel gear three; 13. Bevel gear four; 14. Drive shaft; 15. Support rod; 16. Fixing frame; 17. Spray pipe; 18. High-pressure nozzle; 19. Filter box; 20. Through pipe; 21. Filter screen; 22. Activated carbon adsorption layer; 23. High-pressure water pump; 24. Water pipe one; 25. Water pipe two; 26. Water pipe three; 27. Rectangular trough; 28. Bubble tube; 29. ​​Air outlet; 30. Air compressor; 31. Air supply pipe; 32. Front cover plate. Detailed Implementation

[0034] The technical solutions of the embodiments of this application will be clearly described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application are within the scope of protection of this application.

[0035] In the description of this application, it should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. For ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values ​​should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items, and therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.

[0036] It should be noted that the terms "first," "second," etc., used in the specification and claims of this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such use of data can be interchanged where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first," "second," etc., are generally of the same class and are not limited in number; for example, a first object can be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.

[0037] It should be noted that in the description of this application, the directional terms such as "front, back, up, down, left, right", "horizontal, vertical, horizontal" and "top, bottom" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this application. The directional terms "inner" and "outer" refer to the inner and outer contours relative to the outline of each component itself.

[0038] It should be noted that, in this application, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element. Furthermore, it should be noted that the scope of the methods and apparatuses in the embodiments of this application is not limited to performing functions in the order shown or discussed, but may also include performing functions substantially simultaneously or in the reverse order, depending on the functions involved. For example, the described methods may be performed in a different order than described, and various steps may be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.

[0039] Example 1:

[0040] Please see Figure 1 - Figure 5 As shown, this embodiment provides a rinsing machine for softening garment fabrics, including:

[0041] Assembly box 1 has a front opening and a hollow interior. A liquid storage tank 2 is fixedly installed on the top of the assembly box 1. The liquid storage tank 2 has a top opening and a hollow interior. A support frame 3 is symmetrically fixed on the bottom surface of the liquid storage tank 2. A rinsing screen box 4 is rotatably installed between the two support frames 3. A flip cover 5 is rotatably installed on the rinsing screen box 4 through a hinge. The other side of the flip cover 5 is snapped into the rinsing screen box 4 through a buckle. A rectangular groove 27 is opened on the bottom surface of the assembly box 1 at the position between the two support frames 3.

[0042] The drive mechanism is installed on the assembly box 1 and the liquid storage tank 2, and is used to drive the rinsing mesh box 4 to rotate in the inner cavity of the liquid storage tank 2.

[0043] A water circulation mechanism is installed inside the assembly box 1 and is used to filter and reuse the water in the storage tank 2.

[0044] A bubbling assembly is disposed in the inner cavity of the assembly box 1 and is used to generate bubbles to improve the rinsing effect.

[0045] To perform the process, open the latch between the flip cover 5 and the rinsing mesh box 4, place the fabric to be rinsed inside the rinsing mesh box 4, then close the flip cover 5 again and secure it. Next, start the drive mechanism, water circulation mechanism, and bubbling assembly to rinse the fabric inside the rinsing mesh box 4. After rinsing, close all mechanisms and components, and then remove the fabric from the rinsing mesh box 4.

[0046] Example 2:

[0047] This embodiment provides a rinsing machine for softening garment fabrics. In addition to the technical solutions described in the above embodiments, it also has the following technical features, including a driving mechanism comprising:

[0048] Side cover 6 is fixedly installed on the side wall of assembly box 1 and liquid storage tank 2. Motor 7 is fixedly installed at the bottom of the inner cavity of assembly box 1, and the output shaft of motor 7 passes through assembly box 1 and extends to the inner cavity of side cover 6. Bevel gear 8 is coaxially connected to the output shaft of motor 7. Rotating shaft 9 is provided in the inner cavity of side cover 6, and bearing seats 10 fixed to the inner wall of assembly box 1 are coaxially connected to both ends of rotating shaft 9. Bevel gear 11 is coaxially fixed to the lower part of rotating shaft 9, and bevel gear 11 meshes with bevel gear 8.

[0049] The driver components also include:

[0050] The drive shaft 14 is rotatably mounted on the upper part of the support frame 3. One end of the drive shaft 14 is coaxially connected to the rotating shaft of the rinsing net box 4, and the other end of the drive shaft 14 passes through the liquid storage tank 2 and extends into the side cover 6. The drive shaft 14 is coaxially connected to the bevel gear 13 at the position of the inner cavity of the side cover 6. The upper part of the rotating shaft 9 is coaxially fixed with the bevel gear 12, and the bevel gear 12 meshes with the bevel gear 13.

[0051] When it is necessary to drive the rinsing screen box 4 to rotate inside the liquid storage tank 2, the motor 7 is started. The output shaft of the motor 7 rotates and drives the first bevel gear 8 to rotate. The first bevel gear 8 drives the second bevel gear 11 to rotate. When the second bevel gear 11 rotates, the third bevel gear 12 located at the top will also rotate synchronously. At this time, the third bevel gear 12 drives the fourth bevel gear 13 to rotate, and the fourth bevel gear 13 drives the transmission shaft 14 to rotate. At this time, the rinsing screen box 4 rotates synchronously with the transmission shaft 14.

[0052] By setting a driving mechanism, the rinsing mesh box 4 can rotate inside the liquid storage tank 2, so that the fabric inside the rinsing mesh box 4 can have more full contact with the rinsing water, effectively improving rinsing efficiency and rinsing effect.

[0053] Example 3:

[0054] This embodiment provides a rinsing machine for softening garment fabrics. In addition to the technical solutions of the above embodiments, it also has the following technical features: the water circulation mechanism includes a spray assembly for rinsing the fabric and a circulation assembly for filtering and circulating the water. The spray assembly includes:

[0055] Four symmetrically arranged support rods 15 are fixedly installed on the base of the support frame 3. A fixed frame 16 is fixedly installed between the front and rear sets of support rods 15. A spray pipe 17 is fixedly installed on the lower surface of the fixed frame 16. Multiple high-pressure nozzles 18 are fixedly installed on the spray pipe 17 in a uniformly distributed manner, and the nozzles of the high-pressure nozzles 18 are inclined towards the side of the rinsing net box 4.

[0056] The loop component includes:

[0057] The filter box 19 is fixedly installed in the inner cavity of the assembly box 1. The filter screen 21 and the activated carbon adsorption layer 22 are installed sequentially from left to right in the inner cavity of the filter box 19. The filter screen 21 and the activated carbon adsorption layer 22 divide the inner cavity of the filter box 19 into the raw pulp chamber, the filtration chamber and the purified water chamber from left to right. The bottom surface of the storage tank 2 is provided with a drain hole. A pipe 20 is fixedly installed at the drain hole, and the water outlet at the bottom end of the pipe 20 is located directly above the raw pulp chamber. A control valve is installed on the pipe 20.

[0058] The loop component also includes:

[0059] A high-pressure water pump 23 is fixedly installed in the clean water chamber of the filter box 19. A water pipe 24 is fixedly installed at the output end of the high-pressure water pump 23. A horizontally placed water pipe 25 is fixed at the other end of the water pipe 24. Both ends of the water pipe 25 are fixed to the upper surface of the filter box 19 by fixing blocks. A water pipe 26 is fixed at both ends of the water pipe 25. The other end of the water pipe 26 passes through the assembly box 1 and extends into the inner cavity of the liquid storage tank 2, where it is connected to the corresponding spray pipe 17.

[0060] When it is necessary to filter and circulate the rinsing solution inside the storage tank 2, the connecting pipe 20 is opened. At this time, the wastewater enters the raw slurry chamber in the filter box 19 through the connecting pipe 20. Then, the wastewater passes through the filter screen 21 and is initially filtered by the filter screen 21. Then, the wastewater passes through the activated carbon adsorption layer 22 and is filtered a second time by the activated carbon adsorption layer 22. At this time, the water in the high-pressure water pump 23 is relatively clean water. The high-pressure water pump 23 is then started, and the high-pressure water pump 23 can deliver the clean water to the first water pipe 24, and then into the second water pipe 25. The water flows from both ends of the second water pipe 25. Water is supplied to two water pipes 26. The clean water in the water pipes 26 then enters the corresponding spray pipe 17 and is sprayed out through multiple high-pressure nozzles 18 to generate high-pressure water jets, thereby spraying and rinsing the fabric in the rinsing net box 4. It is worth mentioning that a drain pipe is provided on the side of the filter box 19 near the pulp chamber. A drain valve is installed on the drain pipe. Impurities in the pulp chamber of the filter box 19 can be centrally discharged through the drain pipe. In addition, the filter screen 21 and the activated carbon adsorption layer 22 can be pulled upward to remove them from the filter box 19 and clean them.

[0061] By setting up a water circulation mechanism, the rinsing water is filtered using a filter screen 21 and an activated carbon adsorption layer 22. The treated water is transported using a high-pressure water pump 23 and multiple pipelines, and sprayed out through multiple high-pressure nozzles 18 located on both sides of the rinsing net box 4, thereby realizing the recycling of water resources. This device has excellent water-saving performance, low secondary pollution emissions, and good applicability.

[0062] Example 4:

[0063] This embodiment provides a rinsing machine for softening garment fabrics. In addition to the technical solutions described in the above embodiments, it also has the following technical features: the bubbling assembly includes:

[0064] Bubble tube 28 is fixedly installed in rectangular groove 27. Bubble tube 28 consists of a horizontal main pipe and multiple secondary pipes that are vertically distributed to the main pipe. The multiple secondary pipes are evenly distributed. Multiple evenly distributed air outlets 29 are provided on the upper surface of the secondary pipes. An air compressor 30 is fixedly installed in the inner cavity of assembly box 1. An air supply pipe 31 is fixed at the output end of the air compressor 30, and the other end of the air supply pipe 31 passes through assembly box 1 and extends into liquid storage tank 2 to connect with the main pipe of bubble tube 28.

[0065] When the bubbling assembly is working, the air compressor 30 is started, the air compressor 30 compresses the air and discharges it through the air supply pipe 31. The compressed high-pressure gas enters the main pipe on the bubbling pipe 28 through the air supply pipe 31 and is then distributed to each of the auxiliary pipes in sequence, and discharged through multiple air outlets 29. During the discharge process, dense bubbles can be formed in the rinsing liquid in the inner cavity of the liquid storage tank 2. The bubbles drive the water flow to churn. As the bubbles rise and come into contact with the fabric, the bubbles can carry away the stains, detergent and impurities remaining on the surface of the fabric. It is worth noting that a check valve is installed on the air supply pipe 31 to prevent the solution in the liquid storage tank 2 from entering the air compressor 30 through the pipe.

[0066] By setting up a bubble assembly, the device uses bubbles to micro-treat the fabric, accelerating the removal of impurities from the fabric surface. Compared with traditional soaking and rinsing methods, this device provides better rinsing results and higher rinsing efficiency.

[0067] Example 5:

[0068] This embodiment provides a rinsing machine for softening garment fabrics. In addition to the technical solutions of the above embodiments, it also has the following technical features: a front cover plate 32 is fixedly installed at the front opening of the assembly box 1.

[0069] By setting the front cover plate 32, dust is prevented from entering the inner cavity of the assembly box 1, which plays a certain protective role for the various components inside the assembly box 1.

[0070] Example 6:

[0071] This embodiment provides a rinsing machine for softening garment fabrics. In addition to the technical solutions of the above embodiments, it also has the following technical features: multiple self-locking casters are fixedly installed at the bottom of the assembly box 1 and are evenly distributed; and heat dissipation and ventilation openings are provided on the side wall of the assembly box 1.

[0072] By incorporating self-locking casters, this device becomes easy to move, increasing its convenience.

[0073] The embodiments of this application have been described above with reference to the accompanying drawings. Unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other. This application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of this application without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of this application.

Claims

1. A rinsing machine for softening garment fabrics, characterized in that, include: Assembly box (1), the assembly box (1) is a hollow structure with an opening on the front side, a liquid storage tank (2) is fixedly installed on the top of the assembly box (1), the liquid storage tank (2) is a hollow structure with an opening on the top, a support frame (3) is symmetrically fixed on the inner bottom surface of the liquid storage tank (2), a rinsing screen box (4) is rotatably installed between the two support frames (3), a flip cover (5) is rotatably installed on the rinsing screen box (4) through a hinge, and the other side of the flip cover (5) is snapped into the rinsing screen box (4) through a buckle, and a rectangular groove (27) is opened on the inner bottom surface of the assembly box (1) at the position between the two support frames (3); A drive mechanism is provided on the assembly box (1) and the liquid storage tank (2) and is used to drive the rinsing net box (4) to rotate in the inner cavity of the liquid storage tank (2); A water circulation mechanism is provided in the inner cavity of the assembly box (1) and is used to filter and reuse the water in the storage tank (2). A bubbling assembly is disposed in the inner cavity of the assembly box (1) and is used to generate bubbles to improve the rinsing effect.

2. The rinsing machine for softening garment fabrics according to claim 1, characterized in that, The drive mechanism includes: Side cover (6), the side cover (6) is fixedly installed on the side wall of the assembly box (1) and the liquid storage tank (2). A motor (7) is fixedly installed at the bottom of the inner cavity of the assembly box (1), and the output shaft of the motor (7) passes through the assembly box (1) and extends to the inner cavity of the side cover (6). The output shaft of the motor (7) is coaxially connected to a bevel gear (8). A rotating shaft (9) is provided in the inner cavity of the side cover (6), and the two ends of the rotating shaft (9) are coaxially connected to bearing seats (10) fixed to the inner wall of the assembly box (1). A bevel gear (11) is coaxially fixed at the lower part of the rotating shaft (9), and the bevel gear (11) meshes with the bevel gear (8).

3. A rinsing machine for softening garment fabrics according to claim 2, characterized in that, The drive mechanism also includes: A drive shaft (14) is rotatably mounted on the upper part of the support frame (3). One end of the drive shaft (14) is coaxially connected to the rotating shaft of the rinsing net box (4). The other end of the drive shaft (14) passes through the liquid storage tank (2) and extends into the side cover (6). A bevel gear four (13) is coaxially connected to the drive shaft (14) at the position of the inner cavity of the side cover (6). A bevel gear three (12) is coaxially fixed on the upper part of the rotating shaft (9), and the bevel gear three (12) meshes with the bevel gear four (13).

4. A rinsing machine for softening garment fabrics according to claim 1, characterized in that, The water circulation mechanism includes a spray assembly for rinsing the fabric and a circulation assembly for filtering and circulating the water. The spray assembly includes: Four symmetrically arranged support rods (15) are fixedly installed on the base of the support frame (3). A fixing frame (16) is fixedly installed between the front and rear sets of support rods (15). A spray pipe (17) is fixedly installed on the lower surface of the fixing frame (16). Multiple high-pressure nozzles (18) are fixedly installed on the spray pipe (17) and are evenly distributed. The nozzles of the high-pressure nozzles (18) are inclined towards the rinsing net box (4).

5. A rinsing machine for softening garment fabrics according to claim 4, characterized in that, The loop component includes: A filter box (19) is fixedly installed in the inner cavity of the assembly box (1). A filter screen (21) and an activated carbon adsorption layer (22) are sequentially installed in the inner cavity of the filter box (19) from left to right. The filter screen (21) and the activated carbon adsorption layer (22) divide the inner cavity of the filter box (19) into a raw pulp chamber, a filter chamber and a purified water chamber from left to right. A drain hole is provided on the inner bottom surface of the storage tank (2). A through pipe (20) is fixedly installed at the drain hole, and the water outlet at the bottom end of the through pipe (20) is located directly above the raw pulp chamber. A control valve is installed on the through pipe (20).

6. A rinsing machine for softening garment fabrics according to claim 5, characterized in that, The loop component also includes: A high-pressure water pump (23) is fixedly installed in the clean water chamber of the filter box (19). A water pipe (24) is fixedly installed at the output end of the high-pressure water pump (23). A horizontally placed water pipe (25) is fixed at the other end of the water pipe (24). Both ends of the water pipe (25) are fixed to the upper surface of the filter box (19) by fixing blocks. A water pipe (26) is fixed at both ends of the water pipe (25). The other end of the water pipe (26) passes through the assembly box (1) and extends into the inner cavity of the liquid storage tank (2) and is connected to the corresponding spray pipe (17).

7. A rinsing machine for softening garment fabrics according to claim 1, characterized in that, The bubbling assembly includes: Bubble tube (28), the bubble tube (28) is fixedly installed in rectangular groove (27), the bubble tube (28) consists of a horizontal main pipe and multiple secondary pipes that are vertically distributed to the main pipe, the multiple secondary pipes are evenly distributed, and the upper surface of the secondary pipes is provided with multiple evenly distributed air outlets (29). An air compressor (30) is fixedly installed in the inner cavity of the assembly box (1), and an air supply pipe (31) is fixed at the output end of the air compressor (30), and the other end of the air supply pipe (31) passes through the assembly box (1) and extends into the liquid storage tank (2) and is connected to the main pipe of the bubble tube (28).