Intelligent stainless steel integrated water purification equipment

CN117771769BActive Publication Date: 2026-09-15HUBEI LINSHENG ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202410183509.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-02-19
Publication Date
2026-09-15
Estimated Expiration
2044-02-19

AI Technical Summary

Technical Problem

[0003]现有的净水设备在使用时,过滤装置在过滤一段时间时候需要清理,不及时清理的话,杂质会集中在过滤板外侧,导致过滤效果下降,因此为了避免杂质过多的堆积附着在过滤板外壁,需要一种新的净水设备来解决这一问题

Benefits of technology

[0016] During water purification, wastewater is first discharged through the inlet of the purified water tank. After discharge, the wastewater is filtered through a ceramic filter plate. The filtered wastewater can then be discharged through the sewage outlet. The purified water, after filtration through the ceramic filter plate, flows from the connecting pipe to the collection pipe via a pump. Initially, the valve is open, and the purified water pumped by the pump first fills the buoyancy tank before flowing out through the water pipe. Because the buoyancy tank is full of purified water, it sinks. When it reaches the bottom of the ceramic filter plate, the control valve closes the inlet pipe. At this point, the pump draws out the purified water from the buoyancy tank, emptying it. The buoyancy of the buoyancy tank is now much greater than its weight, causing it to rise. When the buoyancy tank rises to the top of the ceramic filter plate, the control valve closes the inlet pipe. The valve body opens the inlet pipe. Under the action of the extraction pump, and on the other hand, when the buoyancy tank is emptied, there is a certain negative pressure inside. Under the dual action of negative pressure and extraction pump, the purified water in the ceramic filter plate can quickly flow into the collection pipe through the connecting pipe and then into the buoyancy tank through the control valve body. When the buoyancy tank is full, the purified water is then pumped out from the outlet through the outlet pipe. During the process of the buoyancy tank being filled with purified water, the buoyancy tank sinks. After the buoyancy tank sinks, the above operation is repeated to realize the reciprocating up and down movement of the buoyancy tank. During the rising and falling process, the buoyancy tank drives the connecting plate and brush to move, so that the brush cleans this side of the ceramic filter plate, avoiding the accumulation of impurities on the surface of the ceramic filter plate, thereby improving the filtration efficiency.

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Abstract

The application relates to the technical field of water purification treatment, and discloses an intelligent stainless steel integrated water purification equipment, which comprises a water purification tank, a water inlet is arranged at the upper end of the water purification tank, a sewage outlet is arranged at the bottom of the lower end of the water purification tank, a water outlet is further arranged at the upper end of the water purification tank, an extraction pump is connected to the water outlet, a plurality of ceramic filter plates are fixedly arranged in parallel and at intervals in the water purification tank, a water collecting pipe is fixedly arranged above the ceramic filter plates, a connecting pipe is arranged between the ceramic filter plates and the water collecting pipe, a buoyancy tank is arranged outside the ceramic filter plates, water inlets and water outlets are arranged at the opposite ends of the buoyancy tank respectively, the water inlets and the water outlets are connected through connecting hoses, a control valve body is connected to the water inlets, connecting plates are arranged between the adjacent ceramic filter plates, bristles are arranged on the side surfaces of the connecting plates facing the two ceramic filter plates, and the connecting plates are fixedly connected with the buoyancy tank. The water purification equipment has good water purification effect.
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Description

Technical Field

[0001] This invention relates to the field of water purification technology, and in particular to an intelligent integrated stainless steel water purification device. Background Technology

[0002] Wastewater treatment equipment is an industrial device that effectively treats domestic sewage and industrial wastewater in urban areas, preventing sewage and pollutants from directly flowing into water bodies. It plays a vital role in improving the ecological environment, enhancing the city's image, and promoting economic development. Underground wastewater treatment equipment is suitable for residential communities, hospitals, sanatoriums, office buildings, shopping malls, hotels, restaurants, government offices, schools, military units, seafood processing plants, livestock processing plants, dairy processing plants, and other similar industrial organic wastewater, such as organic wastewater from textile, brewing, papermaking, leather, food, and chemical industries. Its main purpose is to treat domestic sewage and similar industrial organic wastewater to meet reuse water quality requirements, enabling the resource utilization of treated wastewater.

[0003] Existing water purification equipment requires cleaning of the filter after a period of time. If it is not cleaned in time, impurities will accumulate on the outside of the filter plate, resulting in a decrease in filtration efficiency. Therefore, in order to avoid excessive accumulation of impurities on the outer wall of the filter plate, a new type of water purification equipment is needed to solve this problem. Summary of the Invention

[0004] The purpose of this invention is to provide an intelligent stainless steel integrated water purification device with good water purification effect.

[0005] The above-mentioned technical objective of the present invention is achieved through the following technical solution:

[0006] An intelligent stainless steel integrated water purification device includes a water purification tank. The water purification tank has an inlet at its upper end and a wastewater outlet at its lower bottom. An outlet is also located at the upper end of the water purification tank and is connected to a pump. Several ceramic filter plates are fixedly arranged parallel to each other inside the water purification tank. A water collection pipe is fixedly installed above each ceramic filter plate. A connecting pipe connects the ceramic filter plate to the water collection pipe. A buoyancy box is located outside each ceramic filter plate. An inlet pipe and an outlet pipe are respectively installed at opposite ends of the buoyancy box. The inlet pipe is connected to the water collection pipe, and the outlet pipe is connected to the outlet via flexible hoses. A control valve is connected to the inlet pipe. A connecting plate is installed between adjacent ceramic filter plates. The connecting plate has bristles on its side facing the two ceramic filter plates, and the connecting plate is fixedly connected to the buoyancy box.

[0007] By adopting the above technical solution, during water purification, wastewater is first discharged through the inlet of the water purification tank. After the wastewater is discharged, it is filtered through a ceramic filter plate. The filtered wastewater can be discharged through the sewage outlet. The purified water, after being filtered by the ceramic filter plate, flows from the connecting pipe to the collection pipe through the action of the pump. In the initial state, the valve body is open, and the purified water pumped by the pump first fills the buoyancy tank, and then flows out through the water pipe. Because the buoyancy tank is full of purified water, it sinks. When it sinks to the bottom of the ceramic filter plate, the control valve body closes the inlet pipe. At this time, the pump draws the purified water from the buoyancy tank, and the purified water in the buoyancy tank is emptied. At this time, the buoyancy of the buoyancy tank is much greater than the weight of the buoyancy tank, causing the buoyancy tank to rise. The buoyancy tank rises to the ceramic filter plate. At the top, the control valve opens the inlet pipe. Under the action of the extraction pump, and on the other hand, when the buoyancy tank is emptied, there is a certain negative pressure inside. Under the dual action of negative pressure and extraction pump, the purified water in the ceramic filter plate can quickly flow into the collection pipe through the connecting pipe and then into the buoyancy tank through the control valve. When the buoyancy tank is full, the purified water is then pumped out from the outlet through the outlet pipe. During the process of the buoyancy tank being filled with purified water, the buoyancy tank sinks. After the buoyancy tank sinks, the above operation is repeated to realize the reciprocating up and down movement of the buoyancy tank. During the rising and falling process, the buoyancy tank drives the connecting plate and brush to move, so that the brush cleans this side of the ceramic filter plate, avoiding the accumulation of impurities on the surface of the ceramic filter plate, thereby improving the filtration efficiency.

[0008] As a further feature of the present invention, the control valve body includes a valve body tube fixedly connected to the water inlet pipe. The valve body tube is vertically arranged, and sleeves are coaxially fixedly arranged at both ends of the valve body tube. A piston is arranged inside the valve body tube, and the height of the piston is greater than the diameter of the water inlet pipe. A push rod is coaxially fixedly connected to both ends of the piston. The push rod is slidably arranged in the sleeve. The purified water tank is provided with push rods directly above and below the push rods, and the push rods are coaxially arranged with the push rods.

[0009] By adopting the above technical solution, when the buoyancy box rises to the top, the upper push rod is inserted into the sleeve to push the top rod and cause the piston to descend, thus opening the water inlet pipe; when the buoyancy box descends to the bottom, the bottom push rod is inserted into the sleeve to push the top rod and cause the piston to rise, thereby closing the water inlet pipe; the opening and closing of the water inlet pipe is adaptively achieved by the rising and falling of the buoyancy box, which is very convenient.

[0010] As a further feature of the present invention, the connecting plate is hollow and is connected to the hollow portion of the buoyancy box.

[0011] By adopting the above technical solution, the connecting plate is also designed to be hollow, which can further enhance the buoyancy of the buoyancy box, making the buoyancy box rise and fall more effectively.

[0012] As a further feature of the present invention, connecting rod one is hinged to both sides of the water collection pipe, and connecting rod two is hinged to both sides of the buoyancy box, and connecting rod one and connecting rod two are hinged together.

[0013] By adopting the above technical solution and setting up connecting rod one and connecting rod two, the buoyancy box becomes more stable.

[0014] As a further feature of the present invention, the water purification tank is made of stainless steel.

[0015] The beneficial effects of this invention are:

[0016] During water purification, wastewater is first discharged through the inlet of the purified water tank. After discharge, the wastewater is filtered through a ceramic filter plate. The filtered wastewater can then be discharged through the sewage outlet. The purified water, after filtration through the ceramic filter plate, flows from the connecting pipe to the collection pipe via a pump. Initially, the valve is open, and the purified water pumped by the pump first fills the buoyancy tank before flowing out through the water pipe. Because the buoyancy tank is full of purified water, it sinks. When it reaches the bottom of the ceramic filter plate, the control valve closes the inlet pipe. At this point, the pump draws out the purified water from the buoyancy tank, emptying it. The buoyancy of the buoyancy tank is now much greater than its weight, causing it to rise. When the buoyancy tank rises to the top of the ceramic filter plate, the control valve closes the inlet pipe. The valve body opens the inlet pipe. Under the action of the extraction pump, and on the other hand, when the buoyancy tank is emptied, there is a certain negative pressure inside. Under the dual action of negative pressure and extraction pump, the purified water in the ceramic filter plate can quickly flow into the collection pipe through the connecting pipe and then into the buoyancy tank through the control valve body. When the buoyancy tank is full, the purified water is then pumped out from the outlet through the outlet pipe. During the process of the buoyancy tank being filled with purified water, the buoyancy tank sinks. After the buoyancy tank sinks, the above operation is repeated to realize the reciprocating up and down movement of the buoyancy tank. During the rising and falling process, the buoyancy tank drives the connecting plate and brush to move, so that the brush cleans this side of the ceramic filter plate, avoiding the accumulation of impurities on the surface of the ceramic filter plate, thereby improving the filtration efficiency. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This is a schematic diagram of the overall structure of this embodiment;

[0019] Figure 2 This is a schematic diagram of the internal structure of the water purification tank in this embodiment;

[0020] Figure 3 This is a schematic diagram of the external structure of the control valve body in this embodiment;

[0021] Figure 4 This is a cross-sectional view of the control valve body in this embodiment;

[0022] In the diagram, 1. Clean water tank, 11. Inlet, 12. Sewage outlet, 13. Outlet, 2. Ceramic filter plate, 3. Water collection pipe, 4. Connecting pipe, 5. Buoyancy box, 51. Inlet pipe, 52. Outlet pipe, 6. Control valve body, 61. Valve body pipe, 62. Sleeve, 63. Piston, 64. Push rod, 65. Push rod, 7. Connecting plate, 81. Connecting rod one, 82. Connecting rod two. Detailed Implementation

[0023] The technical solution of the present invention will now be clearly and completely described with reference to specific embodiments. Obviously, the described embodiments are merely some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0024] Example

[0025] An intelligent stainless steel integrated water purification device includes a water purification tank 1. The water purification tank 1 has an inlet 11 at the top and a wastewater outlet 12 at the bottom. The water purification tank 1 also has an outlet 13 at the top, which is connected to a pump. Several ceramic filter plates 2 are fixedly arranged in parallel at intervals inside the water purification tank 1. A water collection pipe 3 is fixedly arranged above the ceramic filter plates 2. A connecting pipe 4 is arranged between the ceramic filter plates 2 and the water collection pipe 3. A buoyancy box 5 is arranged on the outside of the ceramic filter plates 2. An inlet pipe 51 and an outlet pipe 52 are respectively arranged at opposite ends of the buoyancy box 5. The inlet pipe 51 is connected to the water collection pipe 3, and the outlet pipe 52 is connected to the outlet 13 through connecting hoses. The inlet pipe 51 is connected to a control valve body 6. A connecting plate 7 is arranged between adjacent ceramic filter plates 2. The connecting plate 7 has bristles on the side facing the two ceramic filter plates 2. The connecting plate 7 is fixedly connected to the buoyancy box 5.

[0026] During water purification, wastewater is first discharged through the inlet 11 of the water purification tank 1. After discharge, the wastewater is filtered through the ceramic filter plate 2. The filtered wastewater can be discharged through the sewage outlet 12. The purified water after filtration through the ceramic filter plate 2 flows from the connecting pipe 4 to the collecting pipe 3 through the action of the pump. In the initial state, the control valve 6 opens the inlet pipe 51, and the purified water drawn by the pump enters the buoyancy tank 5 from the collecting pipe 3 through the inlet pipe 51. The purified water first fills the buoyancy tank 5 and then flows out from the outlet pipe 52. Because the buoyancy tank 5 is full of purified water, it sinks. When it sinks to the bottom of the ceramic filter plate 2, the control valve 6 closes the inlet pipe 51. At this time, the pump draws out the purified water from the buoyancy tank 5, and the purified water in the buoyancy tank 5 is emptied. At this time, the buoyancy of the buoyancy tank 5 is much greater than its weight, causing the buoyancy tank 5 to rise. 5. When the water rises to the top of the ceramic filter plate 2, the control valve 6 opens the inlet pipe 51. Under the action of the pump, and on the other hand, when the buoyancy box 5 is emptied, there is a certain negative pressure inside. Under the dual action of negative pressure and pump, the purified water in the ceramic filter plate 2 can quickly flow into the collection pipe 3 through the connecting pipe 4 and then into the buoyancy box 5 through the control valve 6. After the buoyancy box 5 is filled, the purified water is then pumped out from the outlet 13 through the outlet pipe 52. During the process of the buoyancy box 5 being filled with purified water, the buoyancy box 5 sinks. After the buoyancy box 5 sinks, the above operation is repeated to realize the reciprocating up and down movement of the buoyancy box 5. During the rising and falling process, the buoyancy box 5 drives the connecting plate 7 and the brush to move, so that the brush cleans this side of the ceramic filter plate 2, avoiding the accumulation of impurities on the surface of the ceramic filter plate 2, thereby improving the filtration efficiency.

[0027] Furthermore, the control valve body 6 includes a valve body pipe 61 fixedly connected to the water inlet pipe 51. The valve body pipe 61 is vertically arranged, and sleeves 62 are fixedly arranged coaxially at both ends of the valve body pipe 61. A piston 63 is arranged inside the valve body pipe 61. The height of the piston 63 is greater than the diameter of the water inlet pipe 51. A push rod 64 is fixedly connected coaxially at both ends of the piston 63. The push rod 64 is slidably arranged in the sleeves 62. The water tank 1 is provided with push rods 65 directly above and below the push rods 64. The push rods 65 are coaxially arranged with the push rods 64.

[0028] When the buoyancy tank 5 rises to the top, the upper push rod 65 inserts into the sleeve 62, pushing the top rod 64 to lower the piston 63, thus opening the water inlet pipe 51. When the buoyancy tank 5 descends to the bottom, the bottom push rod 65 inserts into the sleeve 62, pushing the top rod 64 to raise the piston 63, thereby closing the water inlet pipe 51. The opening and closing of the water inlet pipe 51 is adaptively achieved through the rising and falling of the buoyancy tank 5, which is very convenient.

[0029] Furthermore, the connecting plate 7 is hollow, and it is connected to the hollow part of the buoyancy box 5. The hollow design of the connecting plate 7 further enhances the buoyancy of the buoyancy box 5, resulting in better rising and falling performance of the buoyancy box 5.

[0030] Furthermore, connecting rod 1 81 is hinged to both sides of the water collection pipe 3, and connecting rod 2 82 is hinged to both sides of the buoyancy box 5. Connecting rod 1 81 and connecting rod 2 82 are hinged together. The connection rod 1 81 and connecting rod 2 82 make the buoyancy box 5 more stable.

[0031] Furthermore, the water tank 1 is made of stainless steel.

[0032] The working principle of this embodiment is as follows:

[0033] During water purification, wastewater is first discharged through the inlet 11 of the water purification tank 1. After the wastewater is discharged, it is filtered through the ceramic filter plate 2. The filtered wastewater can be discharged through the sewage outlet 12. The purified water filtered by the ceramic filter plate 2 flows from the connecting pipe 4 to the collecting pipe 3 through the action of the pump. In the initial state, the control valve body 6 opens the inlet pipe 51, and the purified water drawn by the pump enters the buoyancy tank 5 from the collecting pipe 3 through the inlet pipe 51. The purified water will first fill the buoyancy tank 5. Then, water flows out from the outlet pipe 52. Because the buoyancy box 5 is full of clean water, it sinks. When it reaches the bottom of the ceramic filter plate 2, the push rod 65 at the bottom inserts into the sleeve 62, pushing the top rod 64 to raise the piston 63, thereby closing the inlet pipe 51. The control valve body 6 then closes the inlet pipe 51. At this time, the pump draws out the clean water from the buoyancy box 5, emptying it. Since the buoyancy of the buoyancy box 5 is much greater than its weight, it rises. When the water rises to the top of the ceramic filter plate 2, the upper push rod 65 inserts into the sleeve 62, pushing the top rod 64 to lower the piston 63, causing the piston 63 to open the water inlet pipe 51. The control valve body 6 then opens the water inlet pipe 51. Under the action of the extraction pump, and on the other hand, when the buoyancy box 5 is emptied, it has a certain negative pressure inside. Under the dual action of the negative pressure and the extraction pump, the purified water in the ceramic filter plate 2 can quickly flow through the connecting pipe 4 into the water collection pipe 3 and then into the buoyancy box through the control valve body 6. In step 5, after the buoyancy tank 5 is filled, the purified water is drawn out from the outlet 13 through the outlet pipe 52. During the process of filling the buoyancy tank 5 with purified water, the buoyancy tank 5 sinks. After the buoyancy tank 5 sinks, the above operation is repeated to realize the reciprocating up and down movement of the buoyancy tank 5. During the rising and falling process, the buoyancy tank 5 drives the connecting plate 7 and the brush bristles to move, so that the brush bristles clean this side of the ceramic filter plate 2, avoiding the accumulation of impurities on the surface of the ceramic filter plate 2, thereby improving the filtration efficiency.

Claims

1. An intelligent stainless steel integrated water purification device, characterized in that: The system includes a water purification tank (1), which has an inlet (11) at the top and a wastewater outlet (12) at the bottom. The water purification tank (1) also has an outlet (13) at the top, which is connected to an extraction system. Several ceramic filter plates (2) are fixedly arranged parallel to each other inside the water purification tank (1). A water collection pipe (3) is fixedly arranged above each ceramic filter plate (2). A connecting pipe (4) is provided between the ceramic filter plate (2) and the water collection pipe (3). A [missing information - likely a design element] is provided on the outside of each ceramic filter plate (2). There is a buoyancy box (5), and an inlet pipe (51) and an outlet pipe (52) are respectively provided at opposite ends of the buoyancy box (5). The inlet pipe (51) is connected to the water collection pipe (3), and the outlet pipe (52) is connected to the outlet (13) through a connecting hose. The inlet pipe (51) is connected to a control valve body (6). A connecting plate (7) is provided between adjacent ceramic filter plates (2). The connecting plate (7) has bristles on the side facing the two ceramic filter plates (2). The connecting plate (7) is fixedly connected to the buoyancy box (5). The control valve body (6) includes a valve body tube (61) fixedly connected to the water inlet pipe (51). The valve body tube (61) is vertically arranged. The upper and lower ends of the valve body tube (61) are coaxially fixedly provided with sleeves (62). A piston (63) is provided inside the valve body tube (61). The height of the piston (63) is greater than the diameter of the water inlet pipe (51). The upper and lower ends of the piston (63) are coaxially fixedly connected with push rods (64). The push rods (64) are slidably arranged in the sleeves (62). The water tank (1) is provided with push rods (65) directly above and directly below the push rods (64). The push rods (65) and the push rods (64) are coaxially arranged. The connecting plate (7) is hollow and is connected to the hollow part of the buoyancy box (5); The water collection pipe (3) is hinged to two sides by a first connecting rod (81), and the buoyancy box (5) is hinged to two sides by a second connecting rod (82). The first connecting rod (81) and the second connecting rod (82) are hinged together.

2. The intelligent stainless steel integrated water purification equipment according to claim 1, characterized in that: The water tank (1) is made of stainless steel.

Citation Information

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