Water-saving washing device for cashmere textiles
By combining beating and rinsing mechanisms, the problem of low washing effect and efficiency of cashmere textiles is solved, achieving efficient and water-saving washing results and automated control, thus solving the problem of water waste.
Patent Information
- Application Number
- CN202520672531.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-05-15
- Estimated Expiration
- 2035-04-10
AI Technical Summary
Existing cashmere textile washing equipment suffers from poor washing effect and efficiency, as well as serious water waste.
A water-saving washing device for cashmere textiles, including a beating and rinsing mechanism, was designed. Through the cooperation of the beating disc and the electro-hydraulic actuator, the cashmere textiles are beating and rinsed. Combined with the automatic control of the water injection and drainage holes, efficient washing and water conservation are achieved.
It improves the washing effect and efficiency of cashmere textiles, while saving water resources and realizing automated control and efficient wastewater recycling.
Smart Images

Figure CN224243470U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of textile processing, specifically to a water-saving washing device for cashmere textiles. Background Technology
[0002] In the textile processing industry, cashmere textiles are widely loved by consumers for their unique softness, warmth, and elegant appearance. However, the washing process has always been a technical challenge in the production of cashmere textiles. Traditional cashmere textile washing methods mostly involve simple rinsing and agitation, which is not only inefficient and wasteful of water resources, but also fails to thoroughly clean dirt deep within the cashmere fibers, affecting the quality and appearance of the cashmere textiles.
[0003] To address this issue, the industry has undertaken various attempts and improvements. Some technologies enhance washing performance by increasing the type and amount of detergent, but this often leads to increased washing costs and may also damage cashmere fibers. Other technologies improve washing efficiency by modifying the structure of the washing device, but these improvements are mostly limited to localized adjustments such as the shape of the washing chamber and the agitation method, failing to fundamentally solve the problems of limited washing effect and low washing efficiency.
[0004] Furthermore, traditional cashmere textile washing equipment also suffers from water waste. During the washing process, the inability to precisely control water usage and discharge leads to a significant waste of clean water, increasing production costs and contradicting current initiatives advocating for green environmental protection, energy conservation, and emission reduction.
[0005] Therefore, we propose a water-saving washing device for cashmere textiles that can improve the washing effect and efficiency of cashmere textiles while saving water resources. Utility Model Content
[0006] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide a water-saving washing device for cashmere textiles to solve the technical problem of limited washing effect and efficiency of current cashmere textiles.
[0007] To achieve the purpose of this utility model, the technical solution adopted by this utility model is as follows: A water-saving washing device for cashmere textiles is designed, including a washing drum, a washing chamber inside the washing drum, and drain holes evenly distributed on the inner wall of the bottom end of the washing chamber. A tumbling disc is slidably connected inside the washing chamber. The device also includes a tumbling mechanism and a rinsing mechanism. The tumbling mechanism is used for tumbling during the washing process of cashmere textiles. The tumbling mechanism includes a connecting pipe and an electro-hydraulic push rod. The connecting pipe is vertically fixedly installed in the middle of the upper surface of the tumbling disc. A push plate is fixedly installed at one end of the connecting pipe outside the washing drum. The telescopic end of the electro-hydraulic push rod is fixedly connected to the middle of the upper surface of the push plate. The rinsing mechanism is used for rinsing during the washing process of cashmere textiles. The rinsing mechanism includes drain holes evenly distributed on the bottom side of the tumbling disc.
[0008] Preferably, the inside of the pounding disc is provided with a water guide groove, the bottom end of the connecting pipe is connected to the water guide groove, a water injection chamber is provided above the washing chamber, and water injection holes are evenly provided on the outer side of the lower end of the connecting pipe. The water injection chamber is connected to the connecting pipe through the water injection holes.
[0009] Preferably, a connecting groove is provided through the middle of the inner wall of the top and bottom of the water injection cavity, the connecting pipe is slidably connected to the connecting groove, a sealing ring is bonded to the inner wall of the connecting groove, and the sealing ring is fitted to the outer side of the connecting pipe.
[0010] Preferably, a wastewater chamber is provided on the bottom side of the washing chamber, and the washing chamber is connected to the wastewater chamber through a drain hole. A drain pipe is fixedly installed at the bottom end of one side of the washing drum, and the water inlet end of the drain pipe is connected to the bottom end of the inside of the wastewater chamber. A collection port is provided through the lower end of the front side of the washing chamber, and a cover plate is rotatably connected to one side of the collection port via a hinge.
[0011] Preferably, a bracket is fixedly connected to the upper surface of the washing drum, and vertically symmetrical sliding grooves are formed on the inner walls of both sides of the bracket. The two ends of the push plate are slidably connected to the sliding grooves on both sides of the bracket, the electro-hydraulic push rod is fixedly connected to the middle of the upper surface of the bracket, and the connecting pipe is matched with the size of the washing chamber.
[0012] Preferably, a water injection pipe is fixedly installed above one side of the washing drum, the water outlet of the water injection pipe is connected to the upper end of the water injection chamber, and a solenoid valve is installed inside the water injection pipe.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0014] 1. This utility model, through the combination of a water injection pipe, a water injection chamber, and a water injection hole, can guide clean water into the connecting pipe, then into the water guide groove inside the pounding disc, and finally discharge it through the drainage holes evenly opened on the bottom side of the pounding disc. It can perform rinsing operations on cashmere textiles inside the washing chamber. By controlling the operation of the electro-hydraulic push rod, the connecting pipe can be moved downward through the push plate, thereby driving the pounding disc to repeatedly pound the cashmere textiles inside the washing chamber, further and quickly discharging the wastewater generated by the dissolution of dirt inside the cashmere textiles, which can effectively improve the washing effect and washing efficiency of cashmere textiles.
[0015] 2. In this invention, when the electro-hydraulic actuator pushes the beating disc at the bottom of the connecting pipe downwards to beat the cashmere textile, the water injection hole at the bottom of the connecting pipe moves out of the water injection chamber, preventing water from entering the connecting pipe. The drain hole stops spraying water, automatically stopping the rinsing of the cashmere textile, thus saving water resources. Conversely, when the electro-hydraulic actuator moves the beating disc upwards to reset, the connecting pipe moves upwards, connecting the water injection hole with the water injection chamber, and the drain hole automatically sprays water, thus rinsing the beaten cashmere textile again. This invention features a high degree of automation. Attached Figure Description
[0016] Figure 1 This is the front view of the present invention;
[0017] Figure 2 This is a cross-sectional view of the present invention;
[0018] Figure 3 This is a schematic diagram of part A of the present invention;
[0019] Figure 4 This is a schematic diagram of the hammering disc of this utility model;
[0020] In the diagram: 1. Washing drum; 11. Washing chamber; 12. Drain hole; 13. Beating disc; 14. Drain hole; 15. Water guide groove; 16. Connecting pipe; 17. Water injection chamber; 18. Water injection hole; 2. Electro-hydraulic actuator; 21. Push plate; 22. Support; 23. Slide groove; 24. Connecting groove; 25. Sealing ring; 3. Collection port; 31. Cover plate; 32. Sewage chamber; 33. Drain pipe; 34. Water injection pipe; 35. Solenoid valve. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments:
[0022] A water-saving washing device for cashmere textiles, see [link / reference] Figures 1 to 4The washing drum 1 includes a washing chamber 11 inside the washing drum 1. Drainage holes 12 are evenly distributed on the inner wall of the bottom end of the washing chamber 11. A tumbling plate 13 is slidably connected inside the washing chamber 11. The washing drum 11 also includes a tumbling mechanism and a rinsing mechanism. The tumbling mechanism is used for tumbling during the washing process of cashmere textiles. The tumbling mechanism includes a connecting pipe 16 and an electro-hydraulic push rod 2. The connecting pipe 16 is vertically fixedly installed in the middle of the upper surface of the tumbling plate 13. A push plate 21 is fixedly installed at one end of the connecting pipe 16 outside the washing drum 1. The telescopic end of the electro-hydraulic push rod 2 is fixedly connected to the middle of the upper surface of the push plate 21. A bracket 22 is fixedly connected to the upper surface of the washing drum 1. Sliding grooves 23 are vertically and symmetrically distributed on the inner walls of both sides of the bracket 22. The two ends of the push plate 21 are slidably connected to the sliding grooves 23 on both sides of the bracket 22. The electro-hydraulic push rod 2 is fixedly connected to the middle of the upper surface of the bracket 22. The connecting pipe 16 is matched with the size of the washing chamber 11.
[0023] The electro-hydraulic push rod 2 is controlled by the corresponding controller to drive the push plate 21 to move smoothly up and down inside the bracket 22. The push plate 21 is fixedly connected to the pounding disc 13 through the connecting pipe 16. During the up and down reciprocating movement of the push plate 21, it can push the pounding disc 13 to repeatedly pound the cashmere textiles inside the washing chamber 11, and further quickly discharge the wastewater generated by the dissolution of dirt inside the cashmere textiles. This solves the problem that the existing cashmere textile washing method, which only uses rinsing and stirring, has limited washing effect and washing efficiency.
[0024] For details, see Figures 1 to 4 The rinsing mechanism is used for rinsing cashmere textiles during the washing process. The rinsing mechanism includes drain holes 14, which are evenly distributed on the bottom side of the beating disc 13. A water guide groove 15 is provided inside the beating disc 13. The bottom end of the connecting pipe 16 is connected to the water guide groove 15. A water injection chamber 17 is provided above the washing chamber 11. Water injection holes 18 are evenly distributed on the outer side of the lower end of the connecting pipe 16. The water injection chamber 17 is connected to the connecting pipe 16 through the water injection holes 18. A water injection pipe 34 is fixedly installed on the upper side of one side of the washing drum 1.
[0025] Clean water can be introduced into the water injection chamber 17 through the water injection pipe 34. The water injection chamber 17 is connected to the connecting pipe 16 through the water injection hole 18, allowing clean water to be introduced into the connecting pipe 16 and then into the water guide groove 15 inside the beating plate 13. Finally, the water is discharged through the drain holes 14 evenly distributed on the bottom side of the beating plate 13, which can perform rinsing operations on the cashmere textiles inside the washing chamber 11. When the electro-hydraulic actuator 2 pushes the beating plate 13 at the bottom end of the connecting pipe 16 to move downward, the cashmere textiles are beating during the process. When the water injection hole 18 at the lower end of the connector 16 moves out of the water injection chamber 17, the water in the water injection chamber 17 cannot enter the connecting pipe 16, and the drain hole 14 stops spraying water, automatically stopping the rinsing operation of the cashmere textiles, thus saving water resources. Conversely, when the electro-hydraulic push rod 2 drives the hammering plate 13 to move upward and reset, the connecting pipe 16 moves upward, making the water injection hole 18 connected to the water injection, and the drain hole 14 automatically sprays water, thus rinsing the hammered cashmere textiles again, with a high degree of automation.
[0026] Further, see Figures 1 to 4 A wastewater chamber 32 is provided on the bottom side of the washing chamber 11. The washing chamber 11 is connected to the wastewater chamber 32 through the drain hole 12. A drain pipe 33 is fixedly installed on the bottom side of the washing drum 1. The water inlet end of the drain pipe 33 is connected to the bottom end inside the wastewater chamber 32. A collection port 3 is provided through the lower front side of the washing chamber 11. A cover plate 31 is rotatably connected to one side of the collection port 3 via a hinge.
[0027] Wastewater generated from beating and washing cashmere textiles can be guided into the wastewater chamber 32 through the drain hole 12 at the bottom of the washing chamber, and discharged into the corresponding wastewater collection mechanism for recycling through the drain pipe 33 (not shown in the figure). By opening the cover plate 31, the cashmere textiles to be washed can be easily placed into the washing chamber 11 through the collection port 3, and the washed cashmere textiles can be taken out of the washing chamber 11.
[0028] It is worth noting that, see Figures 1 to 4 A connecting groove 24 is provided through the middle of the inner wall of the top and bottom of the water injection cavity 17. The connecting pipe 16 is slidably connected to the connecting groove 24. A sealing ring 25 is bonded to the inner wall of the connecting groove 24. The sealing ring 25 is attached to the outer side of the connecting pipe 16.
[0029] The sliding connection between the connecting pipe 16 and the connecting groove 24 improves the stability of the movement of the connecting pipe 16, thereby improving the stability of the hammering disc 13. The sealing ring 25 bonded to the inner wall of the connecting groove 24 improves the sealing performance of the connection between the connecting pipe 16 and the connecting groove 24, preventing water in the water injection chamber 17 from being discharged through the gap between the connecting pipe 16 and the connecting groove 24.
[0030] It is worth noting that, see Figures 1 to 4The water outlet of the water injection pipe 34 is connected to the upper end of the water injection chamber 17, and a solenoid valve 35 is installed inside the water injection pipe 34.
[0031] Connect the inlet end of the water injection pipe 34 to the outlet of the corresponding water pump, and you can insert your hand into the water injection chamber 17. Control the opening and closing of the solenoid valve 35 through the corresponding controller to control the water injection volume of the water injection chamber 17. After the cashmere textile is cleaned, control the solenoid valve 35 to close, and then continue to control the electro-hydraulic push rod 2 to drive the pounding plate 13 to pound the cashmere textile. At this time, the drain hole 14 will no longer drain water, which can realize the dehydration operation of the cashmere textile.
[0032] In addition, all components designed in this utility model are general standard parts or components known to those skilled in the art. Their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods. Those skilled in the art can fully implement them, so there is no need to elaborate. The content protected by this utility model does not involve improvements to the internal structure and method.
[0033] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.
Claims
1. A water-saving washing device for cashmere textiles, comprising a washing drum (1), characterized in that, The washing drum (1) has a washing chamber (11) inside. The bottom inner wall of the washing chamber (11) is evenly provided with drain holes (12). The washing chamber (11) is slidably connected to a pounding disc (13), and also includes a pounding mechanism and a rinsing mechanism. The pounding mechanism is used for pounding during the washing process of cashmere textiles. The pounding mechanism includes a connecting pipe (16) and an electro-hydraulic push rod (2). The connecting pipe (16) is vertically fixed in the middle of the upper surface of the pounding disc (13). A push plate (21) is fixedly installed at one end of the connecting pipe (16) outside the washing drum (1). The telescopic end of the electro-hydraulic push rod (2) is fixedly connected to the middle of the upper surface of the push plate (21). The rinsing mechanism is used for rinsing cashmere textiles during the washing process. The rinsing mechanism includes drain holes (14), which are evenly distributed on the bottom side of the beating disc (13).
2. The water-saving washing device for cashmere textiles as described in claim 1, characterized in that, The inside of the pounding disc (13) is provided with a water guide groove (15), the bottom end of the connecting pipe (16) is connected to the water guide groove (15), a water injection chamber (17) is provided above the washing chamber (11), and water injection holes (18) are evenly provided on the outer side of the lower end of the connecting pipe (16). The water injection chamber (17) is connected to the connecting pipe (16) through the water injection holes (18).
3. The water-saving washing device for cashmere textiles as described in claim 2, characterized in that, The water injection cavity (17) has a connecting groove (24) through the middle of the inner wall at the top and bottom. The connecting pipe (16) is slidably connected to the connecting groove (24). A sealing ring (25) is bonded to the inner wall of the connecting groove (24). The sealing ring (25) is attached to the outer side of the connecting pipe (16).
4. The water-saving washing device for cashmere textiles as described in claim 1, characterized in that, A sewage chamber (32) is provided on the bottom side of the washing chamber (11). The washing chamber (11) is connected to the sewage chamber (32) through the sewage drain hole (12). A sewage drain pipe (33) is fixedly installed on the bottom side of the washing drum (1). The water inlet end of the sewage drain pipe (33) is connected to the bottom end of the sewage chamber (32). A collection port (3) is provided through the lower end of the front side of the washing chamber (11). A cover plate (31) is rotatably connected to one side of the collection port (3) through a hinge.
5. A water-saving washing device for cashmere textiles as described in claim 1, characterized in that, A bracket (22) is fixedly connected to the upper surface of the washing drum (1). The inner walls on both sides of the bracket (22) are vertically and symmetrically provided with sliding grooves (23). The two ends of the push plate (21) are slidably connected to the sliding grooves (23) on both sides of the bracket (22). The electro-hydraulic push rod (2) is fixedly connected to the middle of the upper surface of the bracket (22). The connecting pipe (16) is matched with the size of the washing chamber (11).
6. A water-saving washing device for cashmere textiles as described in claim 2, characterized in that, A water injection pipe (34) is fixedly installed on the upper side of one side of the washing drum (1). The water outlet of the water injection pipe (34) is connected to the upper end of the water injection chamber (17). A solenoid valve (35) is installed inside the water injection pipe (34).