An energy-saving and environmentally friendly high-efficiency washing machine

By introducing a return water device and an incineration treatment system into the water washing machine, the problem of water resource waste is solved, the recycling and cost reduction of wastewater is achieved, and the application scope is expanded.

CN116641200BActive Publication Date: 2025-08-01ZHEJIANG YINAN PRINTING & DYEING CO LTD
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Patent Information

Application Number
CN202310710615.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-14
Publication Date
2025-08-01
Estimated Expiration
2043-06-14

AI Technical Summary

Technical Problem

Existing water washing machines require a large amount of water resources during the cleaning of fabrics, resulting in waste of wastewater discharge and increase production costs.

Method used

The return water device is adopted, including a return water tank, a filter mechanism, a return water pump and a waste treatment mechanism. By recycling and filtering the waste water, the waste water can be recycled and impurities are incinerated.

Benefits of technology

It reduces water resource waste and production costs, improves the efficiency of water resource utilization, and converts wastewater into reusable warm water, expanding the scope of industrial application.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application relates to an energy-saving and environmentally friendly high-efficiency water washing machine, belonging to the technical field of printing and dyeing machinery. It includes a frame and a water washing machine body arranged on the frame. A water recycling device for recycling the wastewater generated in the water washing machine body is arranged on the frame. The water recycling device includes a water recycling tank, a filtering mechanism, a water recycling pump, and a waste treatment mechanism. In this application, the wastewater generated in the water washing machine is introduced into the water recycling tank through a first water return pipe. The filtering mechanism filters the wastewater entering the water recycling tank to filter out the impurities in the wastewater. The filtered impurities are treated by the waste treatment mechanism. The filtered water body is stored at the bottom of the water recycling tank. Then, the water recycling pump is started to pump the filtered water body back into the interior of the water washing machine body through a second water return pipe for recycling, thereby reducing the waste of water resources and production costs.
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Description

Technical Field

[0001] The present application relates to the technical field of printing and dyeing machinery, and in particular to an energy-saving and environment-friendly high-efficiency water washing machine. Background Art

[0002] A water washing machine is a commonly used machine in the printing and dyeing industry. The main function of the water washing machine is to wash fabrics with water.

[0003] In the related art, reference can be made to the Chinese utility model patent with the authorization announcement number CN208472360U, which discloses a water washing machine including a box body, a water washing box arranged on the lower side of the box body, a fabric guiding roller arranged in the box body, and a driving mechanism arranged on the box body and used for driving the fabric guiding roller to rotate. A water squeezing roller that presses the fabric against the fabric guiding roller is slidably connected above the fabric guiding roller in the box body. A sliding groove is formed in the box body, a sliding block is slidably connected in the sliding groove, and the sliding block is arranged at both ends of the water squeezing roller. A swinging mechanism for driving the sliding block to slide back and forth in the sliding groove is arranged on the side wall of the box body.

[0004] However, during the working process of washing fabrics with the above water washing machine, a large amount of water resources are still required, and a large amount of waste water is generated after the washing work of cleaning the fabrics is completed. The direct discharge of these waste waters causes waste of water resources and increases the production cost. Summary of the Invention

[0005] In order to reduce the waste of water resources during the use of the water washing machine, the present application provides an energy-saving and environment-friendly high-efficiency water washing machine.

[0006] An energy-saving and environment-friendly high-efficiency water washing machine provided by the present application adopts the following technical solutions:

[0007] An energy-saving and environment-friendly high-efficiency water washing machine includes a frame and a water washing machine body arranged on the frame. A water recycling device for recycling the waste water generated in the water washing machine body is arranged on the frame. The water recycling device includes:

[0008] A water recycling tank, the water recycling tank is arranged on the frame. A first water return pipe is arranged at the top end of the water recycling tank, and the other end of the first water return pipe is connected to the water washing machine body. The first water return pipe is communicated with both the inside of the water recycling tank and the inside of the water washing machine body. A second water return pipe is arranged at the bottom end of the water recycling tank, and the other end of the second water return pipe is connected to the water washing machine body. The second water return pipe is communicated with both the inside of the water recycling tank and the inside of the water washing machine body;

[0009] A filtering mechanism, the filtering mechanism is arranged on the water recycling tank and used for filtering the water body entering the water recycling tank; <{

[0010] A return water pump, which is arranged on the second return water pipe and is used to drive the water in the second return water pipe back into the washing machine body;

[0011] A waste treatment mechanism, which is arranged on the return water tank and is used to treat the impurities filtered out of the water body by the filtering mechanism.

[0012] By adopting the above technical solution, the wastewater generated in the washing machine is introduced into the return water tank through the first return water pipe. The filtering mechanism filters the wastewater entering the return water tank, filters out the impurities in the wastewater, and the filtered impurities are treated by the waste treatment mechanism. The filtered water body is stored at the bottom of the return water tank, and then the return water pump is started to pump the filtered water body back into the washing machine body through the second return water pipe for reuse, thereby reducing the waste of water resources and production costs.

[0013] Optionally, the filtering mechanism includes:

[0014] A filter plate. A horizontal sliding hole is formed in the side wall of the return water tank. The center of the filter plate is rotatably arranged on the return water tank and is located in the sliding hole. Half of the filter plate is located inside the return water tank, and the other half of the filter plate is located outside the return water tank;

[0015] A waste blocking plate, which is arranged on the return water tank and is located in the sliding hole. The waste blocking plate is located on one side of the center of the filter plate close to the side where the filter plate rotates into the return water tank;

[0016] A rotating assembly, which is arranged on the return water tank and is used to drive the filter plate to rotate.

[0017] By adopting the above technical solution, after the filter plate filters out the impurities in the wastewater onto the surface of the filter plate, the rotating assembly is started to drive the filter plate to rotate. The filter plate rotates to move the part of the filter plate with impurities out of the return water tank through the sliding hole, and when it is about to move into the return water tank again, the waste blocking plate scrapes off the impurities accumulated on the filter plate, so that while realizing the filtering work of the wastewater, the probability of the impurities blocking the filter plate due to accumulation on the filter plate is reduced, and the continuous working effect of the filter plate is ensured.

[0018] Optionally, the rotating assembly includes:

[0019] A rotating shaft, which is rotatably arranged on the return water tank;

[0020] A runner, which is arranged on the rotating shaft and is located below the water outlet of the first return water pipe;

[0021] A water receiving plate, and a plurality of water receiving plates are arranged. The plurality of water receiving plates are evenly distributed on the side wall of the runner;

[0022] A first bevel gear, which is arranged on the filter plate;

[0023] The second bevel gear is arranged on the rotating shaft and meshes with the first bevel gear.

[0024] By adopting the above technical solution, after the wastewater is discharged from the nozzle of the first return water pipe, it flows onto the water receiving plate. The water receiving plate moves under the action of the wastewater flow. The movement of the water receiving plate drives the rotating wheel to rotate. The rotation of the rotating wheel drives the rotating shaft to rotate. The rotation of the rotating shaft drives the second bevel gear to rotate. The rotation of the second bevel gear drives the first bevel gear to rotate. The rotation of the first bevel gear drives the filter plate to rotate. Thus, the filter plate can rotate when the wastewater enters the return water tank, which is convenient and fast, and has high working efficiency.

[0025] Optionally, the waste disposal mechanism includes:

[0026] A waste disposal box is arranged on the outer side wall of the return water tank. A moving hole communicating with the sliding hole is opened on one side wall of the waste disposal box connected to the return water tank. The other half of the filter plate located outside the return water tank is located inside the waste disposal box;

[0027] A push plate is horizontally slidably arranged on the waste disposal box, and the bottom of the push plate abuts against the surface of the filter plate;

[0028] A pushing component is arranged on the waste disposal box and is used to push the push plate to move;

[0029] An incineration component is arranged on the waste disposal box and is used to incinerate the impurities accumulated at the bottom of the waste disposal box.

[0030] By adopting the above technical solution, the pushing component is started to drive the push plate to move. The push plate moves to push the impurities blocked by the waste blocking plate from the filter plate onto the bottom of the waste disposal box. Then the incineration component is started to incinerate the impurities accumulated at the bottom of the waste disposal box, thus completing the treatment work of the impurities.

[0031] Optionally, the pushing component includes:

[0032] A pushing lead screw is rotatably arranged on the waste disposal box and is threadedly connected to the push plate;

[0033] A pushing motor is arranged on the waste disposal box and the output shaft thereof is connected to the pushing lead screw.

[0034] By adopting the above technical solution, the pushing motor is started to drive the pushing lead screw to rotate. The rotation of the pushing lead screw drives the push plate to move, thus realizing the movement of the push plate by controlling the pushing motor.

[0035] Optionally, the incineration component includes:

[0036] A heat insulation plate is horizontally slidably arranged on the waste disposal box and is located below the filter plate;

[0037] A flamethrower, wherein the flamethrower is arranged on the waste box, and the flame nozzle of the flamethrower is located below the heat insulation board;

[0038] The vent pipe is arranged on the waste box and the air outlet is connected with the waste receiving box, and the vent pipe is connected with the air source.

[0039] By adopting the above technical solution, when a large amount of impurities accumulate at the bottom of the waste disposal box, the heat insulation plate is moved to isolate the impurities from the filter plate, and then the flamethrower is started to burn the impurities. At the same time, the ventilation pipe provides the waste disposal box with oxygen required for the combustion of impurities, thereby completing the incineration of impurities, reducing the space occupied by impurities in the waste disposal box, and improving the waste disposal box's ability to collect and process impurities.

[0040] Optionally, a waste discharge pipe is provided on the waste disposal box, the waste discharge pipe is connected to the bottom of the waste disposal box, and the pipe opening where the waste discharge pipe is connected to the waste disposal box is arranged opposite to the air outlet of the ventilation pipe.

[0041] By adopting the above technical solution, after the impurities are burned, the ventilation pipe increases the wind force to blow the residue left after the impurities are burned into the waste pipe for discharge, thereby completing the treatment of the residue after the impurities are burned.

[0042] Optionally, an arc-shaped guide plate is provided on the waste box at the outlet of the waste pipe, and the air outlet of the vent pipe is arranged toward the outlet of the waste pipe.

[0043] By adopting the above technical solution, a guide plate is fixed on the bottom wall of the waste box. After the ventilation pipe blows the residue onto the guide plate, the guide plate guides the residue so that the residue can smoothly enter the waste pipe, thereby improving the waste discharge effect of the waste pipe.

[0044] Optionally, a heating box is provided at the bottom of the waste tank, and the second return water pipe is spirally arranged in the heating box.

[0045] By adopting the above technical solution, a heating box is fixed at the bottom of the waste disposal box, and the second return water pipe is located in the heating box. When impurities are incinerated in the waste disposal box, the heat generated by the incineration is transferred to the heating box, and the heating box heats the water in the second return water pipe, thereby utilizing the energy during incineration and converting the recycled water into warm water with a certain temperature, which has a wider range of industrial applications.

[0046] Optionally, an observation hole communicating with the interior of the waste disposal box is provided on the waste disposal box, and an observation window is provided on the observation hole.

[0047] By adopting the above technical solution, the staff can understand the accumulation of impurities in the waste disposal box through the observation window and decide whether to incinerate it without opening the waste disposal box, thereby improving work efficiency.

[0048] In summary, the present application includes at least one of the following beneficial technical effects:

[0049] 1. The wastewater generated in the washing machine is introduced into the return water tank through the first return water pipe. The filtering mechanism filters the wastewater entering the return water tank, filters out the impurities in the wastewater, and the filtered impurities are processed by the waste disposal mechanism. The filtered water body is stored at the bottom of the return water tank. Then, the return water pump is started to pump the filtered water body back into the washing machine body through the second return water pipe for reuse, thereby reducing the waste of water resources and production costs;

[0050] 2. By starting the pushing component to drive the push plate to move, the push plate moves to push the impurities blocked by the waste blocking plate from the filter plate to the bottom of the waste disposal box. Then, the incineration component is started to incinerate the impurities accumulated at the bottom of the waste disposal box, thereby completing the treatment of the impurities;

[0051] 3. By fixing a heating box at the bottom of the waste disposal box and the second return water pipe is located inside the heating box. When the impurities are incinerated in the waste disposal box, the heat generated by the incineration is transferred into the heating box, and the heating box heats the water body in the second return water pipe, thereby utilizing the energy during incineration and turning the recycled water into warm water with a certain temperature, and the industrial application range is wider. BRIEF DESCRIPTION OF THE DRAWINGS

[0052] Figure 1 is a three-dimensional structural schematic diagram of the present application;

[0053] Figure 2 is a structural schematic diagram of the return water device in the present application, in which the side walls of the return water tank, the waste disposal box and the heating box are sectioned.

[0054] Reference numerals: 1, frame; 11, washing machine body; 12, heating box; 13, observation window; 2, return water device; 21, return water tank; 22, filtering mechanism; 23, return water pump; 24, waste disposal mechanism; 25, first return water pipe; 26, second return water pipe; 31, filter plate; 32, waste blocking plate; 33, rotating component; 34, rotating shaft; 35, runner; 36, water receiving plate; 37, first bevel gear; 38, second bevel gear; 41, waste disposal box; 42, push plate; 43, pushing component; 431, pushing lead screw; 432, pushing motor; 44, incineration component; 45, heat insulation plate; 46, blowtorch; 47, ventilation pipe; 48, waste discharge pipe; 49, diversion plate. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0055] The following will be further described in detail with reference to the attached Figure 1 - attached Figure 2 drawings to the present application.

[0056] An embodiment of the present application discloses an energy-saving and environmentally friendly high-efficiency washing machine.

[0057] Referring to Figure 1 , the energy-saving and environmentally friendly high-efficiency washing machine includes a frame 1 and a washing machine body 11 fixedly connected to the frame 1. A water return device 2 for recycling the wastewater generated in the washing machine body 11 is provided on the frame 1.

[0058] Referring to Figure 1 and Figure 2 , the water return device 2 includes a water return tank 21, a filtering mechanism 22, a water return pump 23 and a waste treatment mechanism 24. The water return tank 21 is fixedly connected to the frame 1 on one side of the washing machine body 11. A first water return pipe 25 is fixedly connected to the upper surface of the water return tank 21. One end of the first water return pipe 25 away from the water return tank 21 is connected to the washing machine body 11, and the first water return pipe 25 is in communication with the inside of both the washing machine body 11 and the water return tank 21. A second water return pipe 26 is fixedly connected to the lower surface of the water return tank 21. One end of the second water return pipe 26 away from the water return tank 21 is connected to the washing machine body 11, and the second water return pipe 26 is in communication with the inside of both the washing machine body 11 and the water return tank 21. The water return pump 23 is fixedly connected to the second water return pipe 26 and is in communication with the inside of the second water return pipe 26.

[0059] Referring to Figure 1 and Figure 2 , the wastewater generated in the washing machine body 11 enters the water return tank 21 through the first water return pipe 25. After being filtered by the filtering mechanism 22, the wastewater is pumped into the second water return pipe 26 by the water return pump 23 and then guided back into the washing machine body 11 for recycling.

[0060] Referring to Figure 1 and Figure 2 , the filtering mechanism 22 includes a filter plate 31, a waste blocking plate 32 and a rotating assembly 33. A horizontal sliding hole is formed in a side wall of the water return tank 21 away from the washing machine body 11. The filter plate 31 is rotatably installed on the water return tank 21 and is located in the sliding hole. Half of the filter plate 31 is located inside the water return tank 21, and the other half of the filter plate 31 is located outside the water return tank 21. The waste blocking plate 32 is fixedly connected to the top wall inside the sliding hole and is located on one side of the center of the filter plate 31 close to the side where the filter plate 31 rotates into the water return tank 21. The lower surface of the waste blocking plate 32 abuts against the upper surface of the filter plate 31.

[0061] Referring to Figure 2, the rotating assembly 33 is used to drive the filter plate 31 to rotate. The rotating assembly 33 includes a rotating shaft 34, a runner 35, a water receiving plate 36, a first bevel gear 37, and a second bevel gear 38. The rotating shaft 34 is rotatably installed on the side wall of the return water tank 21. The runner 35 is fixedly connected to the rotating shaft 34 and is located below the water outlet of the first return water pipe 25. A plurality of water receiving plates 36 are provided, and the plurality of water receiving plates 36 are evenly and fixedly connected to the outer side wall of the runner 35. The first bevel gear 37 is fixedly connected to the upper surface of the filter plate 31 and is located at the center of the filter plate 31. The second bevel gear 38 is fixedly connected to the rotating shaft 34 and meshes with the first bevel gear 37.

[0062] Referring to Figure 2 , after the wastewater is discharged from the first return water pipe 25, it flows onto the water receiving plate 36. The water receiving plate 36 moves under the action of the wastewater flow. The movement of the water receiving plate 36 drives the runner 35 to rotate. The rotation of the runner 35 drives the rotating shaft 34 to rotate. The rotation of the rotating shaft 34 drives the second bevel gear 38 to rotate. The rotation of the second bevel gear 38 drives the first bevel gear 37 to rotate. The rotation of the first bevel gear 37 drives the filter plate 31 to rotate, thus realizing the work of the filter plate 31 rotating while the wastewater enters the return water tank 21.

[0063] Referring to Figure 1 and Figure 2 , the waste disposal mechanism 24 includes a waste disposal box 41, a push plate 42, a pushing assembly 43, and an incineration assembly 44. The waste disposal box 41 is fixedly connected to the side wall of the return water tank 21 away from the washing machine body 11. A moving hole communicating with the sliding hole is opened on the side wall of the waste disposal box 41 connected to the return water tank 21. The other half of the filter plate 31 located outside the return water tank 21 is inside the waste disposal box 41.

[0064] Referring to Figure 1 and Figure 2 , the push plate 42 is horizontally slidably arranged on the waste disposal box 41 through the pushing assembly 43 and is located on the side of the waste blocking plate 32 close to the waste disposal box 41. The lower surface of the push plate 42 abuts against the upper surface of the filter plate 31. The pushing assembly 43 includes a pushing lead screw 431 and a pushing motor 432. The pushing lead screw 431 is rotatably installed on the inner side wall of the waste disposal box 41 and is threadedly connected to the push plate 42. The pushing motor 432 is fixedly connected to the outer side wall of the waste disposal box 41 and the output shaft is fixedly connected to the pushing lead screw 431.

[0065] Referring to Figure 1 and Figure 2 , when the pushing motor 432 is started, it drives the pushing lead screw 431 to rotate. The rotation of the pushing lead screw 431 drives the push plate 42 to move. The movement of the push plate 42 scrapes off the impurities blocked by the waste blocking plate 32 from the filter plate 31, so that the impurities fall into the inner bottom wall of the waste disposal box 41 for centralized collection and treatment.

[0066] Referring to the figures, the incineration assembly 44 is used to incinerate the impurities accumulated on the inner bottom wall of the waste disposal box 41. The incineration assembly 44 includes a heat insulation plate 45, a blowtorch 46, and a ventilation pipe 47. A horizontal installation hole is formed on the outer side wall of the waste disposal box 41, and the heat insulation plate 45 is horizontally slidably installed on the installation hole. The heat insulation plate 45 is located below the filter plate 31, and the heat insulation plate 45 separates the filter plate 31 from the bottom space of the waste disposal box 41. A plurality of blowtorches 46 are provided, and the plurality of blowtorches 46 are evenly fixedly connected to the side wall of the waste disposal box 41. The flame outlets of the blowtorches 46 face the inside of the waste disposal box 41 to spray fire on the impurities accumulated on the inner bottom wall of the waste disposal box 41 for incineration.

[0067] Referring to Figure 1 and Figure 2 , the ventilation pipe 47 is fixedly connected to the side wall of the waste disposal box 41 located below the heat insulation plate 45 and is communicated with the inside of the waste disposal box 41. The ventilation pipe 47 is communicated with a gas source. A waste discharge pipe 48 is fixedly connected to the side wall of the waste disposal box 41 on the side opposite to the side wall of the waste disposal box 41 where the ventilation pipe 47 is connected. The pipe orifice of the waste discharge pipe 48 is arranged opposite to the pipe orifice of the ventilation pipe 47. Two arc-shaped guide plates 49 are fixedly connected to the inner bottom wall of the waste disposal box 41 on both sides in the horizontal direction of the pipe orifice of the waste discharge pipe 48. An observation hole communicated with the inside of the waste disposal box 41 is formed on the outer side wall of one side of the waste disposal box 41, and an observation window 13 is installed on the observation hole.

[0068] Referring to Figure 1 and Figure 2 , the staff observes the accumulation amount of impurities in the waste disposal box 41 through the observation window 13. After finding that there is a large accumulation of impurities in the waste disposal box 41, the heat insulation plate 45 is moved to isolate the bottom space of the waste disposal box 41, and then the blowtorch 46 is started to incinerate the impurities. At the same time, the ventilation pipe 47 continuously ventilates the inside of the waste disposal box 41 to ensure sufficient incineration of the impurities. After the impurities are incinerated, the ventilation pipe 47 increases the air flow to blow the residue into the waste discharge pipe 48 for discharge.

[0069] Referring to Figure 1 and Figure 2 , a heating box 12 is fixedly connected to the lower surface of the waste disposal box 41. The second return water pipe 26 spirally passes through the inside of the heating box 12. When the blowtorch 46 incinerates the impurities in the waste disposal box 41, the heating box 12 heats the second return water pipe 26.

[0070] The working principle of the embodiment of the present application is as follows:

[0071] After the wastewater is discharged from the first water return pipe 25, it flows onto the water receiving plate 36. The water receiving plate 36 moves under the action of the wastewater flow. The movement of the water receiving plate 36 drives the filter plate 31 to rotate. The filter plate 31 filters the wastewater and filters out the impurities in the wastewater on the surface of the filter plate 31. The movement of the filter plate 31 inputs the impurities into the waste box 41 for collection and incineration. The filtered water body is guided back into the water washing machine body 11 through the second water return pipe 26 for reuse.

[0072] The above are all preferred embodiments of this application, and the protection scope of this application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of this application shall be covered within the protection scope of this application.

Claims

1. An energy-saving and environmentally friendly high-efficiency washing machine, characterized in that: It includes a frame (1) and a washing machine body (11) arranged on the frame (1). A water return device (2) for recycling the wastewater generated in the washing machine body (11) is arranged on the frame (1). The water return device (2) includes: A water return tank (21) is arranged on the frame (1). A first water return pipe (25) is arranged at the top end of the water return tank (21). The other end of the first water return pipe (25) is connected to the washing machine body (11). The first water return pipe (25) is communicated with both the inside of the water return tank (21) and the inside of the washing machine body (11). A second water return pipe (26) is arranged at the bottom end of the water return tank (21). The other end of the second water return pipe (26) is connected to the washing machine body (11). The second water return pipe (26) is communicated with both the inside of the water return tank (21) and the inside of the washing machine body (11); A filtering mechanism (22) is arranged on the water return tank (21) and is used for filtering the water body entering the water return tank (21); A water return pump (23) is arranged on the second water return pipe (26) and is used for driving the water in the second water return pipe (26) to be guided back into the washing machine body (11); A waste treatment mechanism (24) is arranged on the water return tank (21) and is used for treating the impurities filtered out from the water body by the filtering mechanism (22); The filtering mechanism (22) includes: A filter plate (31). A horizontal sliding hole is formed on the side wall of the water return tank (21). The center of the filter plate (31) is rotatably arranged on the water return tank (21) and is located in the sliding hole. Half of the filter plate (31) is located inside the water return tank (21), and the other half of the filter plate (31) is located outside the water return tank (21); A waste blocking plate (32) is arranged on the water return tank (21) and is located in the sliding hole. The waste blocking plate (32) is located on the side of the center of the filter plate (31) close to the side where the filter plate (31) rotates into the water return tank (21); A rotating assembly (33) is arranged on the water return tank (21) and is used for driving the filter plate (31) to rotate; The rotating assembly (33) includes: A rotating shaft (34) is rotatably arranged on the water return tank (21); A runner (35) is arranged on the rotating shaft (34) and is located below the water outlet of the first water return pipe (25); A plurality of water receiving plates (36) are arranged. The plurality of water receiving plates (36) are evenly distributed on the side wall of the runner (35); A first bevel gear (37) is arranged on the filter plate (31); A second bevel gear (38) is arranged on the rotating shaft (34) and meshes with the first bevel gear (37); The waste treatment mechanism (24) includes: A waste disposal box (41) is provided. The waste disposal box (41) is arranged on the outer side wall of the water return box (21). A moving hole communicating with the sliding hole is formed on one side wall of the waste disposal box (41) connected to the water return box (21). The other half of the filter plate (31) located outside the water return box (21) is located inside the waste disposal box (41). A push plate (42) is provided. The push plate (42) is horizontally slidably arranged on the waste disposal box (41), and the bottom of the push plate (42) abuts against the surface of the filter plate (31). A pushing component (43) is provided. The pushing component (43) is arranged on the waste disposal box (41) and is used to push the push plate (42) to move. An incineration component (44) is provided. The incineration component (44) is arranged on the waste disposal box (41) and is used to incinerate the impurities accumulated at the bottom of the waste disposal box (41). The incineration component (44) includes: A heat insulation plate (45) is provided. The heat insulation plate (45) is horizontally slidably arranged on the waste disposal box (41) and is located below the filter plate (31). A blowtorch (46) is provided. The blowtorch (46) is arranged on the waste disposal box (41), and the flame nozzle of the blowtorch (46) is located below the heat insulation plate (45). An air vent pipe (47) is provided. The air vent pipe (47) is arranged on the waste disposal box (41), and the air outlet is communicated with the inside of the waste receiving box. The air vent pipe (47) is communicated with a gas source.

2. The high-efficiency water washer for energy conservation and environmental protection according to claim 1, characterized in that: The pushing component (43) includes: A pushing lead screw (431) is provided. The pushing lead screw (431) is rotatably arranged on the waste disposal box (41) and is threadedly connected to the push plate (42). A pushing motor (432) is provided. The pushing motor (432) is arranged on the waste disposal box (41), and the output shaft is connected to the pushing lead screw (431).

3. The high-efficiency water washer for energy conservation and environmental protection according to claim 1, characterized in that: A waste discharge pipe (48) is arranged on the waste disposal box (41). The waste discharge pipe (48) is communicated with the bottom of the waste disposal box (41). The pipe orifice of the waste discharge pipe (48) connected to the waste disposal box (41) is oppositely arranged with the air outlet of the air vent pipe (47).

4. An energy-saving and environmentally-friendly high-efficiency water washer according to claim 3, characterized in that: An arc-shaped diversion plate (49) is arranged on the waste disposal box (41) at the pipe orifice of the waste discharge pipe (48). The air outlet of the air vent pipe (47) faces the pipe orifice of the waste discharge pipe (48).

5. An energy-saving and environmentally-friendly high-efficiency washing machine according to claim 1, characterized in that: A heating box (12) is arranged at the bottom of the waste disposal box (41). The second water return pipe (26) is spirally arranged inside the heating box (12).

6. An energy-saving and environmentally friendly high-efficiency washing machine according to claim 1, characterized in that: An observation hole communicating with the inside of the waste disposal box (41) is formed on the waste disposal box (41). An observation window (13) is arranged on the observation hole.

Citation Information

Patent Citations

  • Rinsing machine

    CN208472360U

  • Washing liquid filtering device for rope-shaped washing machine

    CN218357631U