A hanging type titanium alloy water purifying tank with filtering and descaling functions
By using titanium alloy materials and argon laser welding technology to manufacture hanging water tanks, combined with replaceable filter cartridges and anti-surge plate structures, the problems of heavy weight, poor corrosion resistance and scale buildup in water tanks are solved, achieving lightweight and high-efficiency filtration.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-11
- Publication Date
- 2026-04-07
AI Technical Summary
The existing water purification tanks are made of stainless steel, which is heavy, has poor corrosion resistance, and the manufacturing method is prone to stress concentration and is not easy to repair; the high hardness of the water leads to serious scale buildup, which affects the quality of drinking water.
The suspended water tank is made of titanium alloy and uses argon laser protected welding technology. It is designed with replaceable filter elements and anti-surge plates to achieve filtration and descaling functions.
This achieves lightweight water purification tanks, extends service life, improves corrosion resistance, reduces operating costs, and ensures clean water quality.
Smart Images

Figure CN117463045B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of water storage tank technology for high-speed trains, specifically a suspended titanium alloy water tank with filtration and descaling functions. Background Technology
[0002] With the increase in speed and structural upgrades of high-speed trains, higher requirements have been placed on lightweighting of the car body. The clean water tank is one of the main components of the equipment inside a high-speed train. Currently, the tank body is made of stainless steel, resulting in a large empty tank weight and poor corrosion resistance. Its manufacturing method often uses flat straight-seam welding, which easily leads to stress concentration at right-angle welds, reducing service life. The lifting lugs connecting to the car body are directly welded to the outer panel of the tank body; during train operation, the outer panel is subjected to dynamic impact loads, easily leading to fatigue cracks. Compared to stainless steel, titanium alloys have low density, high specific strength, and are resistant to corrosion and extreme temperatures, making them widely used in the aerospace field.
[0003] Using titanium alloy as the material, the specific strength can be more than twice that of stainless steel for the same empty tank weight. Therefore, it is necessary to develop a new type of titanium alloy water tank. However, titanium alloy has poor plastic forming ability and cannot obtain the required parts through conventional room temperature bending and stamping processes. In addition, titanium metal is active and conventional welding methods are prone to absorbing hydrogen and oxygen, resulting in a large heat-affected zone, which cannot guarantee the final quality of the water tank.
[0004] Furthermore, space is often limited on high-speed trains, so water tanks are usually placed outside the train to save space. However, the outside of the train is not convenient for maintenance, observation, and subsequent water filling.
[0005] After the high-speed train arrives at the station, tap water is added to the clean water tank through pipes. Because tap water sources vary from place to place, the content of impurities in the water differs, affecting the final water quality from the water dispenser. In particular, some tap water has high hardness, leading to severe scale buildup in the water heater tank and pipes, thus requiring filtration and descaling. Summary of the Invention
[0006] The purpose of this invention is to provide a suspended titanium alloy water tank with filtration and descaling functions to solve the problems mentioned in the background art.
[0007] To solve the above-mentioned technical problems, the present invention provides the following technical solution: a suspended titanium alloy water purification tank with filtration and descaling function, comprising a water purification tank body, the periphery of which includes a top plate, a bottom plate, multiple sets of first side panels and multiple sets of second side panels, a wave-damping assembly fixedly installed between the top plate, bottom plate, multiple sets of first side panels and multiple sets of second side panels, a lifting lug assembly fixedly connected to the base surface of the wave-damping assembly, a replaceable filter element, a liquid level measuring float and a water inlet cover being connected through the base surface of the top plate, multiple sets of anti-overflow rings fixedly installed at the bottom of the water inlet cover, a protective assembly fixedly installed at the bottom of the bottom plate, multiple sets of first side panels and multiple sets of second side panels, a drain pipe, an exhaust port and a first water inlet being connected through the first side panel, the water inlet end of the drain pipe being located at the bottom of the interior of the water purification tank body, a second water inlet being opened through another set of first side panels, a water outlet pipe being connected through the second side panel, and a solenoid valve being provided at the output end of the drain pipe and the water outlet pipe.
[0008] Furthermore, the wave-damping assembly includes multiple sets of wave-damping plates and multiple sets of connecting wave-damping plates. The wave-damping plates are welded perpendicularly to both ends of the connecting wave-damping plates. The connecting wave-damping plates are bent profile structures. Both the wave-damping plates and the connecting wave-damping plates have multiple sets of circular holes. A guide space is provided between the wave-damping plates and the connecting wave-damping plates. A replaceable filter element is slidably installed between the wave-damping plates and the connecting wave-damping plates. The replaceable filter element is located inside the water tank body, in the path from the water inlet end to the water outlet pipe. The replaceable filter element includes a handle, a limiting block, and a filter element. The handle is fixedly installed on one end of the limiting block, and the filter element is fixedly installed on the other end of the limiting block. The filter element is located inside the water tank body, in the path from the water inlet end to the water outlet pipe. The limiting block covers the upper base surface where the replaceable filter element penetrates the top plate.
[0009] Furthermore, the circular holes on the wave deflector plate are equidistant from each other, while the circular holes on the connecting wave deflector plate are not equidistant from each other.
[0010] Furthermore, the first side panel and the second side panel are fixedly connected at their adjacent ends, and one end face of the first side panel and the second side panel are respectively fixedly connected to the edge of the base surface on the bottom plate. The base surface of the first side panel and the second side panel is fixedly connected to the top plate. Multiple sets of first mounting grooves are respectively opened at the upper end of the first side panel, and multiple sets of second mounting grooves are respectively opened at both ends of the top plate. A lifting lug assembly is fixedly connected between the first mounting groove and the second mounting groove.
[0011] Furthermore, both the first and second water inlets are equipped with water inlet pipes, one end of which passes through multiple sets of equidistant circular holes on the baffle plate; acting within the guide space, the vent is equipped with an vent pipe, the other end of which passes through multiple sets of equidistant circular holes on the baffle plate; acting within the guide space, the vent pipe is located at one end inside the guide space on the top surface of the main body of the water purifier tank, and the end of the water inlet pipe near the top surface of the main body of the water purifier tank is located inside the anti-overflow ring. Both the vent pipe and the water inlet pipe are also equipped with solenoid valves at their outer ends.
[0012] Furthermore, the outer surface of the liquid level survey buoy is provided with multiple sets of equidistant liquid level graduations, and limit rings are fixedly installed at the upper and lower ends of the liquid level survey buoy, the diameter of which is larger than the diameter of the liquid level survey buoy penetrating the top plate.
[0013] Furthermore, the lifting lug assembly includes an L-shaped folding plate and a lifting lug. The outer surface of the L-shaped folding plate is fixedly connected to the first mounting groove and the second mounting groove, respectively. The inner surface of the L-shaped folding plate is fixedly connected to the wave deflector and the connecting wave deflector. A lifting lug is fixedly connected to the outer bend of the L-shaped folding plate. A through hole is provided on the base surface of the lifting lug.
[0014] Furthermore, the protective component includes a protective shell and a sealing rubber ring. The sealing rubber ring is fitted onto the bottom circumferential surface of the fixing component. The protective shell is fitted onto the sealing rubber ring and the outer circumferential surface of the fixing component. The opening of the protective shell is fixedly connected to the contact point of the fixing component. Multiple sets of rubber blocks are fixedly adhered to the bottom of the protective shell.
[0015] Furthermore, multiple sets of the rubber blocks are equidistantly bonded to the bottom of the protective shell.
[0016] Compared with the prior art, the beneficial effects achieved by this invention are as follows: When using this invention, the operator first needs to pass multiple sets of hooks through the perforations on the device's lifting lugs. Then, the operator can inject the water to be filtered into the main body of the water purifier tank through the water inlet pipe and the water inlet cap. The liquid will then cause the level float to rise. The operator can then monitor the water level inside the main body of the water purifier tank by observing the level markings on the level float. Simultaneously, all the liquid that has just entered the main body of the water purifier tank will be discharged into the guide space, and then flow from the guide space into the main body of the water purifier tank. The rest of the water flows through multiple sets of equidistant and unequally spaced circular holes. As the water repeatedly passes through these holes, the baffles and connecting baffles prevent the water from sloshing and impacting the tank. The baffles and connecting baffles also prevent the liquid from sloshing around inside the device with the train. If the water wants to be discharged, it needs to pass through a replaceable filter element for further filtration, making the water discharged from the outlet pipe clearer and with fewer impurities. After that, the remaining liquid inside can be discharged through the drain pipe, thus completing the whole process.
[0017] Therefore, the present invention has the following beneficial effects;
[0018] 1. All components of the water tank body of this invention are made of titanium alloy material, and the load-bearing structure is optimized. Under the same capacity and strength, the weight of the tank body is reduced by more than 50%, realizing the lightweighting of materials for high-speed rail tank body parts and reducing unit energy consumption during the life cycle of high-speed rail trains.
[0019] 2. The water purification tank body of the present invention uses titanium alloy material, which improves the corrosion resistance of the water purification tank, extends the maintenance cycle, and reduces operating costs compared with stainless steel.
[0020] 3. The butt welds of the top plate, bottom plate, multiple sets of first side panels and multiple sets of second side panels of the water purification tank of the present invention are transferred from the right angle of the tank body to the plane of the side panel, which effectively reduces the impact of the welds on the strength of the tank body, reduces stress concentration, and extends the service life.
[0021] 4. The wave-damping and hanging load-bearing integrated structure composed of the titanium alloy profile wave-damping plate and the lifting lugs of the present invention directly transfers the weight of the tank body and the weight of the water load to the lifting lugs. The tank body panel only bears the weight of the water, making the load-bearing and force transmission structure of the hanging titanium alloy water purification tank more reasonable. Compared with the traditional tank body, it increases the fatigue life and achieves lightweighting from a structural point of view.
[0022] 5. The welding assembly of the present invention is an argon-laser protected welding process, which ensures the welding quality of butt welding of titanium alloy thin plates and achieves lightweighting from the manufacturing process perspective.
[0023] 6. The titanium alloy water tank of the present invention is designed with a replaceable filter element, which can filter impurities and achieve the purpose of cleaning and descaling. Attached Figure Description
[0024] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof.
[0025] In the attached diagram:
[0026] Figure 1 This is a schematic diagram of the overall disassembled structure of the present invention;
[0027] Figure 2 This is a schematic diagram of the top plate, bottom plate, multiple sets of first side panels, and multiple sets of second side panels of the present invention.
[0028] Figure 3 This is a schematic diagram of the top plate structure of the present invention;
[0029] Figure 4 This is a schematic diagram of the front structure of the present invention;
[0030] Figure 5 This is a schematic diagram of the wave-damping component structure of the present invention;
[0031] Figure 6 This is a schematic diagram of the lifting lug assembly structure of the present invention;
[0032] Figure 7 This is a schematic diagram of the protective component structure of the present invention;
[0033] Figure 8 This is a schematic diagram of the anti-overflow ring and water inlet pipe position structure inside the water inlet box cover of the present invention;
[0034] In the diagram: 1. Main body of the water tank; 2. Top plate; 21. Replaceable filter element; 211. Handle; 212. Limiting block; 213. Filter element; 22. Liquid level buoy; 221. Liquid level scale; 222. Limiting ring; 23. Water inlet cover; 231. Anti-overflow ring; 24. Second mounting groove; 3. Base plate; 4. First side panel; 41. Drain pipe; 42. Vent; 421. Vent pipe; 4 3. First water inlet; 44. Second water inlet; 45. First mounting groove; 46. Water inlet pipe; 5. Second side panel; 51. Water outlet pipe; 6. Wave-damping assembly; 61. Wave-damping plate; 62. Connecting wave-damping plate; 63. Round hole; 7. Lifting lug assembly; 71. L-shaped folding plate; 72. Lifting lug; 721. Perforation; 8. Protective assembly; 81. Protective housing; 82. Sealing rubber ring; 83. Rubber block. Detailed Implementation
[0035] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0036] This invention provides a technical solution: a suspended titanium alloy water purification tank with filtration and descaling functions, comprising a water purification tank body 1. The water purification tank body 1 includes a top plate 2, a bottom plate 3, multiple sets of first side panels 4, and multiple sets of second side panels 5 on its periphery. A wave-damping assembly 6 is fixedly installed between the top plate 2, the bottom plate 3, the multiple sets of first side panels 4, and the multiple sets of second side panels 5. A lifting lug assembly 7 is fixedly connected to the base surface of the wave-damping assembly 6. A replaceable filter element 21, a liquid level monitoring float 22, and a water inlet cover 23 are connected through the base surface of the top plate 2. Multiple anti-overflow rings 231 are fixedly installed at the bottom of the water inlet cover 23. A protective assembly 8 is fixedly installed at the bottom of the bottom plate 3, the multiple sets of first side panels 4, and the multiple sets of second side panels 5. A drain pipe 41, an exhaust port 42, and a first water inlet 43 are connected through the first side panel 4. The water inlet end of the drain pipe 41 is located at the water purification tank. Inside the bottom of the main body 1, another set of first side panels 4 is provided with a second water inlet 44, and the second side panel 5 is provided with a water outlet pipe 51. The output ends of the drain pipe 41 and the water outlet pipe 51 are equipped with solenoid valves. The circumference of the main body 1 of the water purification tank includes a top plate 2, a bottom plate 3, multiple sets of first side panels 4 and multiple sets of second side panels 5. The top plate 2, bottom plate 3, multiple sets of first side panels 4 and multiple sets of second side panels 5 are used to protect the device and prevent leakage. The lifting lug assembly 7 is mainly used to connect with external hooks to lift the main body 1 of the water purification tank, so that the main body 1 of the water purification tank is suspended in the air, thereby reducing the footprint. The protective assembly 8 is mainly used to protect the main body 1 of the water purification tank. The solenoid valve of the device can control whether the drain pipe 41 and the water outlet pipe 51 drain water or empty the liquid inside the main body 1 of the water purification tank.
[0037] In this embodiment, specifically, the anti-wave assembly 6 includes multiple sets of anti-wave plates 61 and multiple sets of connecting anti-wave plates 62. The anti-wave plates 61 are welded perpendicularly to the two end faces of the connecting anti-wave plates 62. The connecting anti-wave plates 62 are bent profile structures. Both the anti-wave plates 61 and the connecting anti-wave plates 62 have multiple sets of circular holes 63. A guide space is provided between the anti-wave plates 61 and the connecting anti-wave plates 62. A replaceable filter element 21 is slidably installed between the anti-wave plates 61 and the connecting anti-wave plates 62. The replaceable filter element 21 is located in the path of the liquid flowing from the water inlet end to the water outlet pipe 51 inside the water tank body 1. The replaceable filter element 21 includes a handle 211, a limiting block 212, and a filter element 213. The limiting block 211... A handle 211 is fixedly installed on one end face of the 12, and a filter element 213 is fixedly installed on the other side of the limiting block 212. The filter element 213 is located in the path of the liquid flowing from the water inlet end to the water outlet pipe 51 inside the main body 1 of the water purification tank. The limiting block 212 covers the upper base surface of the replaceable filter element 21 that penetrates the top plate 2. The replaceable filter element 21 can filter the liquid flowing from the guide space to the water outlet pipe 51 and make dirt adhere to the filter element 213. When using the replaceable filter element 21, the limiting block 212 and the filter element 213 can be pulled up by lifting the handle 211, so that the dirt attached to the filter element 213 can be carried out of the main body 1 of the water purification tank, thereby achieving the function of filtration and descaling.
[0038] In this embodiment, specifically, the circular holes 63 on the baffle plate 61 are equidistantly connected to the baffle plate 61, while the circular holes 63 on the connecting baffle plate 62 are not equidistantly connected to the connecting baffle plate 62. The equidistant circular holes 63 facilitate the installation of subsequent pipes, while the non-equidistant circular holes 63 can filter the liquid in layers. Thus, when the liquid passes through the equidistant and non-equidistant circular holes 63 respectively, it can prevent the liquid from swaying back and forth inside the device with the train and causing impact on the box.
[0039] In this embodiment, specifically, the first side panel 4 and the second side panel 5 are fixedly connected at their adjacent ends. One end face of the first side panel 4 and the second side panel 5 are respectively fixedly connected to the edge of the base surface on the bottom plate 3. The base surfaces of the first side panel 4 and the second side panel 5 are fixedly connected to the top plate 2. Multiple sets of first mounting grooves 45 are respectively opened at the upper end of the first side panel 4. Multiple sets of second mounting grooves 25 are respectively opened at both ends of the top plate 2. A lifting lug assembly 7 is fixedly connected between the first mounting groove 45 and the second mounting groove 25. Thus, the first mounting groove 45 and the second mounting groove 25 can better provide support for the lifting lug assembly 7. When the lifting lug assembly 7 is lifted, the weight of the water tank body 1 and the weight of the water load are directly transferred to the lifting lug. The enclosure of the water tank body 1 only bears the weight of the water. This makes the load-bearing and force transmission structure of the suspended titanium alloy water tank more reasonable. Compared with the traditional tank body, it increases the fatigue life and achieves lightweighting from a structural perspective.
[0040] In this embodiment, specifically, both the first water inlet 43 and the second water inlet 44 are equipped with water inlet pipes 46. One end of the water inlet pipe 46 passes through multiple sets of equidistant circular holes 63 on the baffle plates 61. Acting within the guide space, the vent 42 is equipped with an vent pipe 421. The other end of the vent pipe 421 passes through multiple sets of equidistant circular holes 63 on the baffle plates 61. Acting within the guide space, one end of the vent pipe 421 is located on the top surface inside the water tank body 1, and the end of the water inlet pipe 46 near the top surface inside the water tank body 1 is located inside the anti-overflow ring 231. The ends of the vent pipe 421 and the water inlet pipe 46 located outside the water tank body 1 are also equipped with electrical... A solenoid valve allows for precise control of the water inlet and outlet. Water is injected into the main body 1 of the water tank through the water inlet 46, which is connected to the first water inlet 43 and the second water inlet 44 respectively, and the liquid flows to the guide space. The air entering from the water inlet 46 is discharged through the exhaust pipe 421. At the same time, the output end of the water inlet 46 is located inside the anti-overflow ring 231. The main function of the anti-overflow ring 231 is to prevent gaps between the water inlet 46 and the top plate 2. This seal inside the anti-overflow ring 231 ensures that when water is injected into one end of the water inlet 46, water will only overflow from the exhaust pipe 421 and will not overflow from the top end of the other water inlet 46.
[0041] In this embodiment, specifically, the outer surface of the liquid level measuring buoy 22 is provided with multiple sets of equidistant liquid level scales 221. Limiting rings 222 are fixedly installed at the upper and lower ends of the liquid level measuring buoy 22. The diameter of the limiting rings 222 is larger than the diameter of the liquid level measuring buoy 22 penetrating the top plate 2. Thus, when the device is in use, the liquid level of the water tank body 1 can be observed through the liquid level measuring buoy 22, and the accurate value can be obtained through the liquid level scales 221. The limiting rings 222 can limit the liquid level measuring buoy 22 to prevent it from falling out of the water tank body 1.
[0042] In this embodiment, specifically, the lifting lug assembly 7 includes an L-shaped folding plate 71 and a lifting lug 72. The outer surface of the L-shaped folding plate 71 is fixedly connected to the first mounting groove 45 and the second mounting groove 25, respectively. The inner surface of the L-shaped folding plate 71 is fixedly connected to the baffle plate 61 and the connecting baffle plate 62. The lifting lug 72 is fixedly connected to the outer bend of the L-shaped folding plate 71. A through hole 721 is provided on the base surface of the lifting lug 72. The outer surface of the L-shaped folding plate 71 is welded to the first mounting groove 45 and the second mounting groove 25, while the inner surface of the L-shaped folding plate 71 is welded to the baffle plate 61 and the connecting baffle plate 62. This allows the weight of the tank body and the water load to be directly transferred to the lifting lug. The tank body panels only bear the weight of the water, making the load-bearing and force-transfer structure of the suspended titanium alloy water purifier tank more reasonable. Compared with traditional tank bodies, it increases fatigue life and achieves lightweighting from a structural perspective.
[0043] In this embodiment, specifically, the protective component 8 includes a protective shell 81 and a sealing rubber ring 82. The sealing rubber ring 82 is sleeved on the bottom periphery of the fixing component, and the protective shell 81 is sleeved on the sealing rubber ring 82 and the outer periphery of the fixing component. The opening of the protective shell 81 is fixedly connected to the contact point with the fixing component. Multiple sets of rubber blocks 83 are fixedly adhered to the bottom of the protective shell 81. The main function of the protective component 8 is to protect the device when it is accidentally dropped. The protective shell 81 is fixedly installed on the bottom of the base plate 3, multiple sets of first side panels 4, and multiple sets of second side panels 5. The sealing rubber ring 82 is sleeved between the protective shell 81 and the multiple sets of first side panels 4 and multiple sets of second side panels 5, thereby improving the airtightness between them. The rubber blocks 83 serve as a buffer against the force when the main body of the device falls.
[0044] In this embodiment, specifically, multiple sets of rubber blocks 83 are equidistantly bonded to the bottom of the protective shell 81. When the device is dropped vertically, the force received can be dispersed, while when it is dropped at an angle, the rubber blocks 83 on the side can reduce the force received by the device as a whole.
[0045] The working principle of this invention: In use, the operator first needs to pass multiple sets of hooks through the perforations 721 on the device's lifting lugs 72. Then, the operator can inject water to be filtered into the main body 1 of the water purification tank through the water inlet pipe 46 and the water inlet cover 44. The liquid will cause the level float to rise. The operator can then check the water level inside the main body 1 by looking at the level scale 221 on the level float. Simultaneously, all the liquid that has just entered the main body 1 will be discharged into the guide space, and then flow from the guide space to the rest of the main body 1. During this flow, the water will pass through multiple sets of equidistant circular holes 63 and... Multiple sets of unequally spaced circular holes 63 are provided so that when water repeatedly passes through these holes 63, the anti-sloshing plate 61 and the connecting anti-sloshing plate 62 can prevent the liquid from sloshing inside the device with the train, thereby reducing the impact of water sloshing on the tank. If the water wants to be discharged, it also needs to pass through the replaceable filter element 21, so that the water discharged from the outlet pipe 51 is clearer and has fewer impurities. When the replaceable filter element 21 is replaced, the dirt attached to the filter element 213 can be carried out of the main body of the water tank 1, thereby achieving the function of filtration and descaling. After that, the remaining liquid inside can be discharged through the drain pipe 41, thus completing a whole set of processes.
[0046] Therefore, the present invention has the following beneficial effects;
[0047] 1. All components of the water tank body of this invention are made of titanium alloy material, and the load-bearing structure is optimized. Under the same capacity and strength, the weight of the tank body is reduced by more than 50%, realizing the lightweighting of materials for high-speed rail tank body parts and reducing unit energy consumption during the life cycle of high-speed rail trains.
[0048] 2. The water purification tank body of the present invention uses titanium alloy material, which improves the corrosion resistance of the water purification tank, extends the maintenance cycle, and reduces operating costs compared with stainless steel.
[0049] 3. The butt welds of the top plate, bottom plate, multiple sets of first side panels and multiple sets of second side panels of the water purification tank of the present invention are transferred from the right angle of the tank body to the plane of the side panel, which effectively reduces the impact of the welds on the strength of the tank body, reduces stress concentration, and extends the service life.
[0050] 4. The wave-damping and hanging load-bearing integrated structure composed of the titanium alloy profile wave-damping plate and the lifting lugs of the present invention directly transfers the weight of the tank body and the weight of the water load to the lifting lugs. The tank body panel only bears the weight of the water, making the load-bearing and force transmission structure of the hanging titanium alloy water purification tank more reasonable. Compared with the traditional tank body, it increases the fatigue life and achieves lightweighting from a structural point of view.
[0051] 5. The welding assembly of the present invention is an argon-laser protected welding process, which ensures the welding quality of butt welding of titanium alloy thin plates and achieves lightweighting from the manufacturing process perspective.
[0052] 6. The titanium alloy water tank of the present invention is designed with a replaceable filter element, which can filter impurities and achieve the purpose of cleaning and descaling.
[0053] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, 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 process, method, article, or apparatus.
[0054] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A suspended titanium alloy water purifier with filtration and descaling function, comprising a main body (1) of the water purifier, characterized in that: The main body (1) of the water tank includes a top plate (2), a bottom plate (3), multiple sets of first side panels (4) and multiple sets of second side panels (5) on its periphery. A wave-damping assembly (6) is fixedly installed between the top plate (2), the bottom plate (3), the multiple sets of first side panels (4) and the multiple sets of second side panels (5). A lifting lug assembly (7) is fixedly connected to the upper base of the wave-damping assembly (6). A replaceable filter element (21), a liquid level measuring float (22) and a water inlet cover (23) are connected through the upper base of the top plate (2). Multiple overflow prevention devices are fixedly installed at the bottom of the water inlet cover (23). The bottom of the ring (231), the base plate (3), the multiple sets of first side panels (4) and the multiple sets of second side panels (5) are fixedly equipped with protective components (8). The first side panel (4) is connected by a drain pipe (41), an exhaust port (42) and a first water inlet (43). The water inlet end of the drain pipe (41) is located at the bottom of the main body (1) of the water tank. Another set of first side panels (4) is connected by a second water inlet (44). The second side panel (5) is connected by a water outlet pipe (51). The output ends of the drain pipe (41) and the water outlet pipe (51) are equipped with solenoid valves. The wave-damping assembly (6) includes multiple sets of wave-damping plates (61) and multiple sets of connecting wave-damping plates (62). The wave-damping plates (61) are welded perpendicularly to the two end faces of the connecting wave-damping plates (62). The connecting wave-damping plates (62) are bent profile structures. Both the wave-damping plates (61) and the connecting wave-damping plates (62) have multiple sets of circular holes (63). A guide space is provided between the wave-damping plates (61) and the connecting wave-damping plates (62). A replaceable filter element (21) is slidably installed between the wave-damping plates (61) and the connecting wave-damping plates (62). The replaceable filter element (21) is located in the water purification tank. The replaceable filter element (21) includes a handle (211), a limiting block (212), and a filter element (213). The limiting block (212) has a handle (211) fixedly installed on one end face and a filter element (213) fixedly installed on the other side. The filter element (213) is located between the water inlet end of the main body (1) and the water outlet pipe (51). The limiting block (212) covers the upper base surface of the replaceable filter element (21) at the point where it penetrates the top plate (2). The lifting lug assembly (7) includes an L-shaped folding plate (71) and a lifting lug (72). The outer surface of the L-shaped folding plate (71) is fixedly connected to the first mounting groove (45) and the second mounting groove (25) respectively. The inner surface of the L-shaped folding plate (71) is fixedly connected to the wave deflector (61) and the connecting wave deflector (62). The lifting lug (72) is fixedly connected to the outer bend of the L-shaped folding plate (71). A through hole (721) is provided on the base surface of the lifting lug (72).
2. A suspended titanium alloy water purifier with filtration and descaling function according to claim 1, characterized in that: The circular holes (63) on the wave deflector (61) are equidistant from each other, while the circular holes (63) on the connecting wave deflector (62) are not equidistant from each other.
3. A suspended titanium alloy water purifier with filtration and descaling function according to claim 1, characterized in that: The first side panel (4) and the second side panel (5) are fixedly connected at one end. One end face of the first side panel (4) and the second side panel (5) are fixedly connected to the edge of the base surface of the bottom plate (3). The base surface of the first side panel (4) and the second side panel (5) is fixedly connected to the top plate (2). Multiple sets of first mounting grooves (45) are respectively opened at the upper end of the first side panel (4). Multiple sets of second mounting grooves (25) are respectively opened at both ends of the top plate (2). A lifting lug assembly (7) is fixedly connected between the first mounting groove (45) and the second mounting groove (25).
4. A suspended titanium alloy water purifier with filtration and descaling function according to claim 1, characterized in that: Both the first water inlet (43) and the second water inlet (44) are equipped with water inlet pipes (46). One end of the water inlet pipe (46) passes through multiple sets of baffle plates (61) with equidistant circular holes (63). Acting inside the guide space, the exhaust port (42) is equipped with an exhaust pipe (421). The other end of the exhaust pipe (421) passes through multiple sets of baffle plates (61) with equidistant circular holes (63). Acting inside the guide space, one end of the exhaust pipe (421) is located inside the guide space and is located on the top surface inside the main body (1) of the water tank. The end of the water inlet pipe (46) near the top surface inside the main body (1) of the water tank is located inside the anti-overflow ring (231). The exhaust pipe (421) and the water inlet pipe (46) are also equipped with solenoid valves at the ends of the exhaust pipe (421) and the water inlet pipe (46) outside the main body (1) of the water tank.
5. A suspended titanium alloy water purifier with filtration and descaling function according to claim 4, characterized in that: The outer surface of the liquid level survey buoy (22) is provided with multiple sets of equidistant liquid level scales (221). Limiting rings (222) are fixedly installed at the upper and lower ends of the liquid level survey buoy (22). The diameter of the limiting rings (222) is larger than the diameter of the liquid level survey buoy (22) penetrating the top plate (2).
6. A suspended titanium alloy water purifier with filtration and descaling function according to claim 1, characterized in that: The protective component (8) includes a protective shell (81) and a sealing rubber ring (82). The sealing rubber ring (82) is fitted on the bottom periphery of the fixing component. The protective shell (81) is fitted on the sealing rubber ring (82) and the outer periphery of the fixing component. The opening of the protective shell (81) is fixedly connected to the contact point of the fixing component. Multiple sets of rubber blocks (83) are fixedly adhered to the bottom of the protective shell (81).
7. A suspended titanium alloy water purifier with filtration and descaling function according to claim 6, characterized in that: Multiple sets of the rubber blocks (83) are equidistantly bonded to the bottom of the protective shell (81).
Citation Information
Patent Citations
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