Horizontal magnetic filter based on strong magnetic assembly

By combining a reciprocating lead screw and a magnetic shield, the problems of thermal fatigue of powerful magnets and inconvenient impurity cleaning are solved, achieving heat loss-free sewage discharge and efficient impurity cleaning, thus improving the performance and lifespan of the horizontal magnetic filter.

CN122444286APending Publication Date: 2026-07-24JIANGXI AVONFLOW HVAC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JIANGXI AVONFLOW HVAC TECH CO LTD
Filing Date
2026-05-21
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

When using strong magnetic components for filtration, existing horizontal magnetic filters are prone to thermal fatigue due to repeated heating of the strong magnets, resulting in performance degradation. Furthermore, the removal of impurities is inconvenient, affecting equipment efficiency and lifespan.

Method used

A horizontal magnetic filter based on a strong magnetic component was designed. It uses a reciprocating screw to drive the magnetic chamber shell to rotate and a strong magnet block to move back and forth. Combined with a magnetic shield, it achieves heat loss-free sewage discharge. It is also equipped with a waste residue cleaning component and a pressurizing component to improve the efficiency of impurity removal and water flow stability.

Benefits of technology

It enables the removal of impurities without heating equipment, extends the service life of powerful magnets, improves filtration efficiency and water flow stability, and simplifies the impurity cleaning process.

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Abstract

The application discloses a horizontal magnetic filter based on a strong magnetic assembly and belongs to the technical field of magnetic filters. The horizontal magnetic filter based on the strong magnetic assembly comprises a three-way pipe, a magnetic filter shell is fixedly connected to the left side of the three-way pipe, a filter screen is fixedly connected to the inside of the magnetic filter shell, a water outlet bin is arranged in the inside of the magnetic filter shell, and a blowdown port is arranged at the bottom of the left side of the magnetic filter shell. The application is provided with reciprocating screw rod I and a magnetic shielding cover. When the equipment starts to pass water, the reciprocating screw rod I drives the magnetic bin shell to rotate, so that the magnetic bin shell can fully suck out the magnetic impurities in the water body. Meanwhile, the reciprocating screw rod I drives the strong magnet block to move back and forth, so that the magnetic impurities in the water body are more completely absorbed. When it is necessary to discharge sewage, a heating device is not needed. When the strong magnet block moves to the inside of the magnetic shielding cover, the magnetic bin shell loses magnetism, and the heat loss of the strong magnet block is reduced.
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Description

Technical Field

[0001] This invention belongs to the field of magnetic filter technology, specifically relating to a horizontal magnetic filter based on a strong magnetic component. Background Technology

[0002] Magnetic filters, installed upstream of the boiler's water supply valve, are part of the HVAC system and are responsible for circulating water within the system. Because the water contains impurities and has a slightly acidic nature, it can corrode the inner walls of radiators and pipes. Magnetic filters are characterized by their small size, light weight, and ease of installation and operation.

[0003] Chinese patent CN115193582A discloses a horizontal magnetic filter, including a horizontally placed cylinder connected to a multi-port fitting on a pipeline via a connecting cap. The multi-port fitting has an internal guide wall, and the cylinder contains a positioning sleeve and a filter screen. It also includes: multiple permanent magnets, which are magnetic rings, isolated from each other by spacers; a protective sleeve with one open end that contacts the cylinder wall to isolate the inside of the sleeve from the fluid, and a closed end extending into the filter screen, containing a permanent magnet; a heating element that heats up when energized, raising the temperature of the permanent magnet's inner cavity above the Curie point; and a receiving plate located below the protective sleeve, with the vertical projection of the protective sleeve onto the receiving plate falling completely onto it. In the aforementioned application, when the device uses a strong magnetic component for filtration, the strong magnet contains various rare earth elements. Repeated heating by the heating device can easily cause thermal fatigue in the strong magnet, potentially degrading the performance of the magnetic filter. Summary of the Invention

[0004] To address the shortcomings of existing technologies, this invention provides a horizontal magnetic filter based on a strong magnetic component, which solves the problems mentioned in the background section.

[0005] To achieve the above objectives, the present invention provides a horizontal magnetic filter based on a strong magnetic component, comprising a three-way pipe, an outlet at the top of the three-way pipe, a magnetic filter housing fixedly connected to the left side of the three-way pipe, a heat preservation device fixedly connected to the left side of the magnetic filter housing, a filter screen fixedly connected inside the magnetic filter housing, an outlet chamber inside the magnetic filter housing, a drain port at the bottom left side of the magnetic filter housing, and a drain valve installed inside the drain port;

[0006] The top left side of the magnetic filter housing is movably connected to a rotating shaft via a fixing bracket. A motor is fixedly connected to the top of the rotating shaft, and a pulley is fixedly connected to the outer side of the rotating shaft. The right side of the magnetic filter housing is movably connected to a rotating shaft via a fixing block. A pulley is fixedly connected to the top of the rotating shaft, and a belt is movably connected to the pulley via a belt. A bevel gear is fixedly connected to the bottom of the rotating shaft. A fixing ring is fixedly connected to the right side of the insulation device. A magnetic shield is fixedly connected to the outer side of the right end of the insulation device. A magnetic chamber housing is movably connected to the right side of the fixing ring via a movable bearing. A reciprocating screw is fixedly connected inside the magnetic chamber housing. A bevel gear is fixedly connected to the left side of the reciprocating screw, and the bevel gear meshes with the bevel gear. A powerful magnet is movably connected to the outer side of the reciprocating screw, and the outer side of the powerful magnet is coated with a wear-resistant coating. The system is equipped with a reciprocating screw and a magnetic shield. When water is introduced into the equipment, the motor is started, causing the reciprocating screw to rotate the outer shell of the magnetic chamber. This allows the outer shell of the magnetic chamber to fully extract magnetic impurities from the water. At the same time, the reciprocating screw, in conjunction with the fixed rod, drives the powerful magnet to move back and forth, further enhancing the absorption of magnetic impurities in the water. When sewage discharge is required, there is no need to use heating equipment. When the powerful magnet moves into the magnetic shield, the outer shell of the magnetic chamber loses its magnetism, making it easy for the sewage outlet to discharge both magnetic and non-magnetic impurities from the equipment, thus reducing heat loss to the powerful magnet.

[0007] Preferably, the outer diameter of the powerful magnet block is the same as the inner diameter of the magnetic chamber shell, the length of the magnetic shield is greater than the length of the powerful magnet block, two fixing rods are fixedly connected to the right side surface of the fixing ring, and the inside of the powerful magnet block is movably connected to the outside of the fixing rods.

[0008] Preferably, the outer side of the second rotating shaft is movably connected to the inner right side of the magnetic filter housing, and the outer sides of the first bevel gear and the second bevel gear are coated with an anti-corrosion and wear-resistant coating.

[0009] Preferably, a sealing ring is fixedly connected to the left side of the filter screen, the interior of the water outlet chamber is connected to the upper side of the interior of the three-way pipe, and a waste residue cleaning component is movably connected to the interior of the magnetic filter shell.

[0010] Preferably, the waste residue cleaning assembly includes a bevel gear three, a bevel gear four, a reciprocating screw two, a gear, an annular rack, an annular groove, a limiting block, a flexible annular plate, an inner ring scraper, an outer ring scraper, a water inlet one, and a fixing plate. The bottom of the rotating shaft one is fixedly connected to the bevel gear three. Two reciprocating screws two are movably connected to the left side of the magnetic filter housing. A bevel gear four is fixedly connected to the left side of the upper reciprocating screw two. The bevel gear three meshes with the bevel gear four. The outer side of the reciprocating screw two is movably connected to the inside of the flexible annular plate. The outer side of each reciprocating screw two near the magnetic chamber housing is fixed. The magnetic filter housing is connected to gears. Multiple limiting blocks are fixedly connected to the left side of the housing. A ring-shaped rack is movably connected to the inner side of each limiting block. An annular groove is formed on the left surface of the ring-shaped rack, and the inside of the groove is movably connected to the outside of the limiting blocks. The ring-shaped rack meshes with gears. An inner ring scraper is fixedly connected to the inner side of the flexible annular plate, and an outer ring scraper is fixedly connected to the outer side. Multiple water inlets are formed inside the flexible annular plate. A fixing plate is fixedly connected to one right end of the filter screen, and the inside of the fixing plate is movably connected to the right end of a reciprocating screw. A waste residue cleaning component is provided. When the equipment is running, a large amount of magnetic impurities are adsorbed on the surface of the magnetic chamber housing, while a large amount of non-magnetic impurities are adsorbed on the inner surface of the filter screen. Water flow alone cannot completely clean these impurities. At this time, the reciprocating screw rotates, causing the flexible annular plate to move left and right, thereby scraping the magnetic and non-magnetic impurities to the left drain port, making subsequent sewage discharge more convenient and extending the service life of the filter screen.

[0011] Preferably, the bottom of the inner ring scraper contacts the outer surface of the magnetic chamber shell, and the top of the outer ring scraper contacts the inner surface of the filter screen.

[0012] Preferably, the outer diameter of the flexible annular plate is the same as the inner diameter of the filter screen, and a pressurizing component is movably connected inside the water outlet.

[0013] Preferably, the pressurizing assembly includes pulley three, belt two, pulley four, rotating shaft three, fixed frame two, water inlet two, fixed round shaft, and turbine blades. Pulley three is fixedly connected to the outer side of rotating shaft two. The inside of the water outlet is movably connected to rotating shaft three via fixed frame two. Pulley four is fixedly connected to the bottom of rotating shaft three. Pulley four is movably connected to the outer side of pulley three via belt two. A fixed round shaft is fixedly connected to the top of rotating shaft three. A speed-changing gear set is movably connected inside the fixed round shaft. Multiple turbine blades are fixedly connected to the outer side of the fixed round shaft. Multiple water inlets two are opened inside the fixed frame two. By setting up the pressurizing assembly, due to the small diameter of the water outlet and the large number of transmission components inside the equipment, the water pressure at the outlet is relatively low. Therefore, when water is urgently needed, rotating shaft two rotates in conjunction with pulley three, belt two, and pulley four, causing the turbine blades to rotate, thus maintaining a constant water flow rate at the outlet, improving the equipment's filtration efficiency, and preventing backflow from the outlet from impacting the filter screen.

[0014] Preferably, the outer side of the turbine blade is tangent to the inner surface of the water outlet, and the diameter of the second fixing bracket is the same as the inner diameter of the water outlet.

[0015] Preferably, the third pulley is located inside the water outlet chamber, and the outer sides of the third pulley and the second belt do not contact the inner surface of the water outlet chamber.

[0016] The advantages of this application are:

[0017] (1) When the equipment starts to flow water, the motor is started, and the reciprocating screw drives the magnetic chamber shell to rotate, so that the magnetic chamber shell can fully absorb the magnetic impurities in the water. At the same time, the reciprocating screw, together with the fixed rod, drives the strong magnet block to move back and forth, so that the magnetic impurities in the water are absorbed more completely. At the same time, when sewage needs to be discharged, there is no need to use heating equipment. When the strong magnet block moves into the magnetic shield, the magnetic chamber shell can lose its magnetism, so that the sewage outlet can discharge magnetic and non-magnetic impurities from the equipment and reduce the heat loss of the strong magnet block.

[0018] (2) When the equipment is running, a large number of magnetic impurities are adsorbed on the surface of the magnetic chamber shell, and a large number of non-magnetic impurities are adsorbed on the inner surface of the filter screen. The water inlet flow alone cannot completely clean them. At this time, the reciprocating screw rotates and drives the flexible ring plate to move left and right, so that the magnetic and non-magnetic impurities are scraped to the left drain port, making the subsequent sewage discharge process more convenient and extending the service life of the filter screen.

[0019] (3) When the equipment is running, the water outlet is small in diameter and there are a lot of transmission parts inside the equipment, so the water pressure at the outlet is small. When water is urgently needed, the rotating shaft 2 rotates in conjunction with the pulley 3, belt 2, and pulley 4 to make the turbine fan blades rotate, so that the water flow at the outlet always maintains a certain speed, thereby improving the filtration efficiency of the equipment and preventing backflow at the outlet from impacting the filter screen. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0021] Figure 2 This is an internal sectional view of the entire invention;

[0022] Figure 3 This is a schematic diagram of some components of the present invention;

[0023] Figure 4 This is the present invention. Figure 3 Enlarged structural diagram at point A in the middle;

[0024] Figure 5 This is a schematic diagram of the waste residue cleaning component structure of the present invention;

[0025] Figure 6 This is the present invention. Figure 5 Enlarged structural diagram at point B;

[0026] Figure 7 This is a schematic diagram of the pressurization component structure of the present invention;

[0027] Figure 8 This is the present invention. Figure 7 Enlarged structural diagram at point C.

[0028] Explanation of key figure labels:

[0029] 100. Tee pipe; 200. Water outlet; 300. Magnetic filter housing; 400. Insulation equipment; 500. Filter screen; 600. Water outlet chamber; 700. Drain outlet; 800. Drain valve;

[0030] 901. Rotating shaft one; 902. Fixing frame one; 903. Belt pulley one; 904. Belt one; 905. Belt pulley two; 906. Rotating shaft two; 907. Fixing block one; 908. Bevel gear one; 909. Bevel gear two; 910. Reciprocating lead screw one; 911. Magnetic chamber outer shell; 912. Fixing ring; 913. Movable bearing; 914. Magnetic shielding cover; 915. Strong magnet block;

[0031] 1000. Waste residue cleaning component; 1001. Bevel gear three; 1002. Bevel gear four; 1003. Reciprocating screw two; 1004. Gear; 1005. Annular rack; 1006. Annular groove; 1007. Limiting block; 1008. Flexible circular plate; 1009. Inner ring scraper; 1010. Outer ring scraper; 1011. Water inlet one; 1012. Fixing plate;

[0032] 1100. Pressurization assembly; 1101. Belt pulley three; 1102. Belt two; 1103. Belt pulley four; 1104. Shaft three; 1105. Fixing frame two; 1106. Water inlet two; 1107. Fixed round shaft; 1108. Turbine fan blade. Detailed Implementation

[0033] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are merely some, not all, of the embodiments of the present application. All other embodiments obtained by those skilled in the art based on the embodiments of the present application without creative effort should fall within the scope of protection of the present application.

[0034] Example 1, as Figures 1-4 As shown, a horizontal magnetic filter based on a strong magnetic component includes a three-way pipe 100, with an outlet 200 at the top of the three-way pipe 100. A magnetic filter housing 300 is fixedly connected to the left side of the three-way pipe 100, and a heat preservation device 400 is fixedly connected to the left side of the magnetic filter housing 300. The heat preservation device 400 is set to keep the strong magnetic block 915 at the optimal working temperature. A filter screen 500 is fixedly connected inside the magnetic filter housing 300. The filter screen 500 is set to filter out non-magnetic impurities in the water. An outlet chamber 600 is opened inside the magnetic filter housing 300. A drain port 700 is opened at the bottom left side of the magnetic filter housing 300. The drain port 700 is set to discharge the filtered magnetic and non-magnetic impurities from the drain port 700. A drain valve 800 is installed inside the drain port 700.

[0035] The top left side of the magnetic filter housing 300 is movably connected to the rotating shaft 901 via a fixing bracket 902. A motor is fixedly connected to the top of the rotating shaft 901, and a pulley 903 is fixedly connected to the outer side of the rotating shaft 901. The right side of the magnetic filter housing 300 is movably connected to the rotating shaft 906 via a fixing block 907. A pulley 905 is fixedly connected to the top of the rotating shaft 906. The outer side of the pulley 903 is movably connected to the pulley 905 via a belt 904. The belt 904 is configured to transmit the power of the pulley 903 to the pulley 905. A bevel gear 908 is fixedly connected to the bottom of the rotating shaft 906. A retaining ring is fixedly connected to the right side of the insulation device 400. 912. A magnetic shield 914 is fixedly connected to the outer side of the right end of the insulation equipment 400. The right side of the fixed ring 912 is movably connected to the magnetic chamber shell 911 through a movable bearing 913. The movable bearing 913 allows the magnetic chamber shell 911 to rotate. A reciprocating screw 910 is fixedly connected inside the magnetic chamber shell 911. The reciprocating screw 910 causes the powerful magnet block 915 to move back and forth under the action of the reciprocating screw 910. A bevel gear 909 is fixedly connected to the left side of the reciprocating screw 910. The bevel gear 908 meshes with the bevel gear 909. A powerful magnet block 915 is movably connected to the outer side of the reciprocating screw 910. The outer surface of the powerful magnet block 915 is coated with a wear-resistant coating.

[0036] The outer diameter of the powerful magnet block 915 is the same as the inner diameter of the magnetic chamber shell 911. The length of the magnetic shield 914 is greater than the length of the powerful magnet block 915. Two fixing rods are fixedly connected to the right side surface of the fixing ring 912. The inside of the powerful magnet block 915 is movably connected to the outside of the fixing rods.

[0037] The outer side of the rotating shaft 906 is movably connected to the inner right side of the magnetic filter housing 300. The outer sides of the bevel gear 908 and bevel gear 909 are coated with an anti-corrosion and wear-resistant coating. A sealing ring is fixedly connected to the left side of the filter screen 500. The interior of the water outlet chamber 600 is connected to the upper interior of the three-way pipe 100. The waste residue cleaning assembly 1000 is movably connected to the interior of the magnetic filter housing 300.

[0038] The system is equipped with a reciprocating lead screw 910 and a magnetic shield 914. When the equipment starts to flow water, the motor is started, causing the reciprocating lead screw 910 to drive the magnetic chamber shell 911 to rotate. This allows the magnetic chamber shell 911 to fully extract magnetic impurities from the water. At the same time, the reciprocating lead screw 910, in conjunction with the fixed rod, drives the powerful magnet block 915 to move back and forth, making the absorption of magnetic impurities in the water more complete. Furthermore, when sewage discharge is required, there is no need to use heating equipment. When the powerful magnet block 915 moves into the magnetic shield 914, the magnetic chamber shell 911 loses its magnetism, thus facilitating the discharge port 700 to discharge magnetic and non-magnetic impurities from the equipment and reducing heat loss to the powerful magnet block 915.

[0039] In practical use, when the above-mentioned equipment is started, water is introduced from the bottom of the three-way pipe 100. At this time, the water enters the magnetic filter housing 300. The strong magnet block 915 attracts magnetic impurities in the water, while non-magnetic impurities in the water are filtered out through the filter screen 500. The filtered water is discharged from the outlet chamber 600 back into the three-way pipe 100, and finally discharged from the outlet 200. During the filtration process, the motor is started, causing the rotating shaft 901 to rotate. This causes the pulley 903 to rotate with the rotating shaft 901. The pulley 903 drives the pulley 905 to rotate via the belt 904, causing the rotating shaft 906 to rotate. This causes the bevel gear 908 to rotate with the rotating shaft 906, and the bevel gear 909 to rotate. The rotation causes the reciprocating screw 910 to rotate, which in turn causes the magnetic chamber shell 911 to rotate with the reciprocating screw 910. This allows magnetic impurities in the water to be evenly distributed on the surface of the magnetic chamber shell 911. At the same time, the powerful magnet 915 moves back and forth along the horizontal direction of the reciprocating screw 910, making the absorption of magnetic impurities in the water more complete. In addition, when sewage discharge is required, there is no need to use heating equipment. When the powerful magnet 915 moves into the magnetic shield 914, the magnetic chamber shell 911 loses its magnetism, which facilitates the discharge port 700 to discharge magnetic and non-magnetic impurities from the equipment, reducing heat loss to the powerful magnet 915. At the same time, the motor is moved away from the powerful magnet 915, thereby avoiding the influence of the powerful magnet 915 on the internal coil of the motor.

[0040] Example 2, as Figures 1-6As shown, based on Embodiment 1, the waste residue cleaning assembly 1000 includes a bevel gear three 1001, a bevel gear four 1002, a reciprocating screw two 1003, a gear 1004, an annular rack 1005, an annular groove 1006, a limiting block 1007, a flexible annular plate 1008, an inner ring scraper 1009, an outer ring scraper 1010, a water inlet one 1011, a fixing plate 1012, and a bevel gear three 1001 fixedly connected to the bottom of the rotating shaft one 901. The magnetic filter housing 300... Two reciprocating lead screws 1003 are internally connected on the left side. These reciprocating lead screws 1003 cause the flexible annular plate 1008 to move back and forth under their action. The two reciprocating lead screws 1003 are completely synchronized, thus preventing obstruction of the flexible annular plate 1008's movement. A bevel gear 1002 is fixedly connected to the left side of the upper reciprocating lead screw 1003. The bevel gear 1001 meshes with the bevel gear 1002. The outer side of the reciprocating lead screw 1003 is connected to the flexible annular plate 1008. The internal movable connection of the ring plate 1008 is such that a gear 1004 is fixedly connected to the outer side of one end of each reciprocating screw 1003 near the magnetic chamber housing 911. Multiple limiting blocks 1007 are fixedly connected to the left side of the magnetic filter housing 300. An annular rack 1005 is movably connected to the inner side of each limiting block 1007. An annular groove 1006 is formed on the left surface of the annular rack 1005. The interior of the annular groove 1006 is movably connected to the outer side of the limiting block 1007. 6. The annular rack 1005 can rotate and mesh with the gear 1004. An inner ring scraper 1009 is fixedly connected to the inner side of the flexible annular plate 1008, and an outer ring scraper 1010 is fixedly connected to the outer side of the flexible annular plate 1008. Multiple water inlets 1011 are opened inside the flexible annular plate 1008. A fixing plate 1012 is fixedly connected to one end of the right side of the filter screen 500. The interior of the fixing plate 1012 is movably connected to the right end of the reciprocating screw 1003.

[0041] The bottom of the inner ring scraper 1009 contacts the outer surface of the magnetic chamber housing 911, and the top of the outer ring scraper 1010 contacts the inner surface of the filter screen 500. The outer diameter of the flexible circular plate 1008 is the same as the inner diameter of the filter screen 500, and the pressurization assembly 1100 is movably connected inside the outlet 200.

[0042] The waste cleaning component 1000 is installed. When the equipment is running, a large number of magnetic impurities are adsorbed on the surface of the magnetic chamber shell 911, and a large number of non-magnetic impurities are adsorbed on the inner surface of the filter screen 500. The water inlet flow alone cannot completely clean them. At this time, the reciprocating screw 1003 rotates and drives the flexible ring plate 1008 to move left and right, so that the magnetic and non-magnetic impurities are scraped to the left drain port 700, making the subsequent sewage discharge process more convenient and extending the service life of the filter screen 500.

[0043] In practical use, when the rotating shaft 901 rotates, it drives the bevel gear 1001 to rotate, which in turn drives the bevel gear 1002 to rotate. This causes the upper reciprocating screw 1003 to rotate, and the upper gear 1004 to follow the bevel gear 1002. The upper gear 1004 then drives the ring rack 1005 to rotate along the annular groove 1006, which in turn drives the lower gear 1004 to rotate. The lower gear 1004 then drives the lower reciprocating screw 1003 to rotate, thereby causing the flexible annular plate 1008 to rotate along the reciprocating screw 1006. The horizontal reciprocating motion of the blade 3 causes the inner ring scraper 1009 to scrape off the magnetic impurities adsorbed on the outer surface of the magnetic chamber shell 911, and the outer ring scraper 1010 to scrape off the non-magnetic impurities accumulated on the inner surface of the filter screen 500. When cleaning is required, the powerful magnet block 915 is moved into the magnetic shield 914. At this time, the magnetic and non-magnetic impurities scraped by the flexible ring plate 1008 will be more easily discharged from the equipment through the drain port 700 with the water flow, thereby avoiding manual cleaning of the filter screen 500 and the magnetic chamber shell 911, making the equipment more convenient to use and extending its service life.

[0044] Example 3, as Figures 1-8 As shown, based on Embodiment 1 or Embodiment 2, the pressurizing assembly 1100 includes a third pulley 1101, a second belt 1102, a fourth pulley 1103, a third rotating shaft 1104, a second fixing frame 1105, a second water outlet 1106, a fixed round shaft 1107, and a turbine fan blade 1108. The third pulley 1101 is fixedly connected to the outer side of the second rotating shaft 1106. The inside of the water outlet 200 is movably connected to the third rotating shaft 1104 through the second fixing frame 1105. The fourth pulley 1103 is fixedly connected to the bottom of the third rotating shaft 1104. The outer side of the third pulley 1101 is connected to the fourth belt 1103 through the second fixing frame 1105. Belt 1102 is movably connected to pulley 1103. Belt 1102 is provided so that the power of pulley 1101 is transmitted to the inside of pulley 1103 through belt 1102. A fixed round shaft 1107 is fixedly connected to the top of shaft 1104. A gear set is movably connected inside the fixed round shaft 1107. Multiple turbine blades 1108 are fixedly connected to the outside of the fixed round shaft 1107. Multiple water inlets 1106 are provided inside the fixed frame 1105. The water inlets 1106 are provided so that the fixed frame 1105 will not block the outlet 200.

[0045] The outer side of the turbine blade 1108 is tangent to the inner surface of the outlet 200, and the diameter of the fixing bracket 1105 is the same as the inner diameter of the outlet 200. The pulley 1101 is located inside the outlet chamber 600, and the outer sides of the pulley 1101 and the belt 1102 are not in contact with the inner surface of the outlet chamber 600.

[0046] The pressurization component 1100 is set up. Due to the small diameter of the water outlet 600 and the large number of transmission components inside the equipment, the water pressure at the water outlet 200 is relatively low. Therefore, when water is urgently needed, the rotating shaft 2 906 rotates in conjunction with the pulley 3 1101, belt 2 1102, and pulley 4 1103 to rotate the turbine fan blade 1108, so that the water flow at the water outlet 200 always maintains a certain speed, thereby improving the filtration efficiency of the equipment and preventing backflow at the water outlet 200 from impacting the filter screen 500.

[0047] In practical use, when the second shaft 906 rotates, the third pulley 1101 rotates with the second shaft 906. The third pulley 1101 drives the fourth pulley 1103 to rotate via the second belt 1102, causing the third shaft 1104 to rotate. The fixed round shaft 1107 rotates with the third shaft 1104, causing the turbine blade 1108 to rotate. When the water inlet decreases, the water pressure at the outlet 200 decreases. At this time, the turbine blade 1108 increases the water flow velocity at the outlet, thereby increasing the water pressure at the outlet 200. The speed of the turbine blade 1108 can be changed by electrically adjusting the ratio of the gear set according to the water inlet, so that the water flow at the outlet 200 always maintains a certain speed, thereby improving the filtration efficiency of the equipment and preventing backflow at the outlet 200 from impacting the filter screen 500.

[0048] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A horizontal magnetic filter based on a strong magnetic component, comprising a three-way pipe, characterized in that, The top of the three-way pipe has a water outlet, the left side of the three-way pipe is fixedly connected to a magnetic filter housing, the left side of the magnetic filter housing is fixedly connected to a heat preservation device, the inside of the magnetic filter housing is fixedly connected to a filter screen, the inside of the magnetic filter housing has a water outlet chamber, the bottom left side of the magnetic filter housing has a drain port, and the inside of the drain port is equipped with a drain valve. The top left side of the magnetic filter housing is movably connected to a rotating shaft via a fixing bracket. A motor is fixedly connected to the top of the rotating shaft, and a pulley is fixedly connected to the outer side of the rotating shaft. The right side of the magnetic filter housing is movably connected to a rotating shaft via a fixing block. A pulley is fixedly connected to the top of the rotating shaft, and a belt is movably connected to the pulley via a belt. A bevel gear is fixedly connected to the bottom of the rotating shaft. A fixing ring is fixedly connected to the right side of the insulation device. A magnetic shield is fixedly connected to the outer side of the right end of the insulation device. A magnetic chamber housing is movably connected to the right side of the fixing ring via a movable bearing. A reciprocating screw is fixedly connected inside the magnetic chamber housing. A bevel gear is fixedly connected to the left side of the reciprocating screw, and the bevel gear meshes with the bevel gear. A powerful magnet is movably connected to the outer side of the reciprocating screw, and the outer side of the powerful magnet is coated with a wear-resistant coating.

2. A horizontal magnetic filter based on a strong magnetic component according to claim 1, characterized in that, The outer diameter of the powerful magnet block is the same as the inner diameter of the magnetic chamber shell. The length of the magnetic shield is greater than the length of the powerful magnet block. Two fixing rods are fixedly connected to the right side surface of the fixing ring. The inside of the powerful magnet block is movably connected to the outside of the fixing rods.

3. A horizontal magnetic filter based on a strong magnetic component according to claim 2, characterized in that, The outer side of the second rotating shaft is movably connected to the inside of the right side of the magnetic filter housing, and the outer sides of the first and second bevel gears are coated with an anti-corrosion and wear-resistant coating.

4. A horizontal magnetic filter based on a strong magnetic component according to claim 3, characterized in that, A sealing ring is fixedly connected to the left side of the filter screen, the inside of the water outlet chamber is connected to the upper side of the inside of the three-way pipe, and a waste residue cleaning component is movably connected to the inside of the magnetic filter shell.

5. A horizontal magnetic filter based on a strong magnetic component according to claim 4, characterized in that, The waste residue cleaning assembly includes a bevel gear three, a bevel gear four, a reciprocating screw two, a gear, an annular rack, an annular groove, a limiting block, a flexible circular plate, an inner ring scraper, an outer ring scraper, a water inlet one, and a fixing plate. The bottom of the rotating shaft one is fixedly connected to the bevel gear three. Two reciprocating screws two are movably connected inside the left side of the magnetic filter housing. A bevel gear four is fixedly connected to the left side of the upper reciprocating screw two. The bevel gear three meshes with the bevel gear four. The outer side of the reciprocating screw two is movably connected to the inside of the flexible circular plate. The outer side of each reciprocating screw two near the magnetic chamber housing is fixedly connected to... The filter housing has gears. Multiple limiting blocks are fixedly connected to the left side of the magnetic filter housing. A ring-shaped rack is movably connected to the inner side of each limiting block. A ring-shaped groove is formed on the left surface of the ring-shaped rack. The interior of the ring-shaped groove is movably connected to the outer side of the limiting block. The ring-shaped rack meshes with the gears. An inner ring scraper is fixedly connected to the inner side of the flexible ring plate, and an outer ring scraper is fixedly connected to the outer side of the flexible ring plate. Multiple water inlets are formed inside the flexible ring plate. A fixing plate is fixedly connected to one right end of the filter screen. The interior of the fixing plate is movably connected to the right end of a reciprocating screw.

6. A horizontal magnetic filter based on a strong magnetic component according to claim 5, characterized in that, The bottom of the inner ring scraper contacts the outer surface of the magnetic chamber shell, and the top of the outer ring scraper contacts the inner surface of the filter screen.

7. A horizontal magnetic filter based on a strong magnetic component according to claim 6, characterized in that, The outer diameter of the flexible annular plate is the same as the inner diameter of the filter screen, and a pressurizing component is movably connected inside the water outlet.

8. A horizontal magnetic filter based on a strong magnetic component according to claim 7, characterized in that, The pressurizing assembly includes a third pulley, a second belt, a fourth pulley, a third rotating shaft, a second fixed frame, a second water outlet, a fixed round shaft, and turbine blades. The third pulley is fixedly connected to the outer side of the second rotating shaft. The inside of the water outlet is movably connected to the third rotating shaft via the second fixed frame. The fourth pulley is fixedly connected to the bottom of the third rotating shaft. The fourth pulley is movably connected to the outer side of the third pulley via the second belt. The fixed round shaft is fixedly connected to the top of the third rotating shaft. A speed-changing gear set is movably connected inside the fixed round shaft. Multiple turbine blades are fixedly connected to the outer side of the fixed round shaft. Multiple water outlets are provided inside the second fixed frame.

9. A horizontal magnetic filter based on a strong magnetic component according to claim 8, characterized in that, The outer side of the turbine blade is tangent to the inner surface of the water outlet, and the diameter of the second fixing bracket is the same as the inner diameter of the water outlet.

10. A horizontal magnetic filter based on a strong magnetic component according to claim 9, characterized in that, The third pulley is located inside the water outlet chamber, and the outer sides of the third pulley and the second belt do not contact the inner surface of the water outlet chamber.

Citation Information

Patent Citations

  • Horizontal magnetic filter

    CN115193582A