Stirring device for automobile brake fluid production

By setting up a vibration crushing and circulating reflux mechanism, combined with the rotation of the stirring rod, the problem of raw materials clustering in the brake fluid stirring device is solved, and a more uniform mixing effect is achieved.

CN120393833APending Publication Date: 2025-08-01SHANGHAI DELIAN CHEM
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Patent Information

Application Number
CN202510791996.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-13
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

The existing brake fluid stirring device has poor longitudinal flow effect, resulting in agglomeration of raw materials and uneven stirring.

Method used

The vibration crushing mechanism, circulating reflux mechanism, agitating storage mechanism, vibration driving mechanism and agitating and mixing mechanism are adopted to crush the clumping raw materials through vibration and circulating reflux, and achieve uniform mixing with the rotation of the mixing rod.

Benefits of technology

The mixing uniformity of the brake fluid is improved, the raw materials are fully crushed and mixed, and the phenomenon of clumping is avoided.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of automobile brake fluid production, and discloses an automobile brake fluid production stirring device which comprises a vibration crushing mechanism, a circulation backflow mechanism is arranged on the surface of the vibration crushing mechanism, and a stirring storage mechanism is arranged on the surface of the circulation backflow mechanism. A vibration driving mechanism is arranged at the top of the stirring and storing mechanism, and a stirring and mixing mechanism is arranged between the vibration driving mechanism and the stirring and storing mechanism. According to the stirring device for producing the automobile brake fluid, through the arrangement of the vibration crushing mechanism, the circulating reflux mechanism, the stirring storage mechanism, the vibration driving mechanism and the stirring mixing mechanism, materials below can be continuously and circularly pumped upwards through the circulating reflux mechanism during use, and continuous vibration is generated through the vibration crushing mechanism; and the clotted raw materials are crushed and mixed through vibration of the vibration crushing mechanism, so that the material mixing uniformity is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of automotive brake fluid production, and specifically relates to a stirring device for automotive brake fluid production. Background Art

[0002] Automotive brake fluid is the hydraulic medium of the automotive braking system, also known as brake fluid or brake oil. Since liquids cannot be compressed, the pressure output from the master cylinder will be directly transmitted to the slave cylinder through the brake fluid, which has four functions: transmitting energy, dissipating heat, anti-corrosion and rust prevention, and lubrication.

[0003] During the production of brake fluid, it is generally necessary to stir and mix it. Most general brake fluid stirring devices simply use stirring rods for stirring and mixing, which has the best stirring effect in the horizontal direction, but has a poor effect on the longitudinal flow of the liquid. It is very easy to cause some agglomerated raw materials to stay in a certain layer for a long time without being impacted and broken, resulting in relatively poor stirring uniformity. Summary of the Invention

[0004] In view of the deficiencies of the prior art, the present invention provides a stirring device for automotive brake fluid production, which solves the problems mentioned in the above background.

[0005] The present invention provides the following technical solutions: A stirring device for automotive brake fluid production, comprising: a vibration crushing mechanism, a circulation and reflux mechanism is arranged on the surface of the vibration crushing mechanism, a stirring and storage mechanism is arranged on the surface of the circulation and reflux mechanism, a vibration driving mechanism is arranged on the top of the stirring and storage mechanism, a stirring and mixing mechanism is arranged between the vibration driving mechanism and the stirring and storage mechanism. The vibration crushing mechanism includes a screen, a frame ring, an elastic material clamping plate and a vibration plate. The frame ring is fixedly sleeved on the surface of the screen, the elastic material clamping plate is fixedly connected to the inner wall of the frame ring, the vibration plate is located above the elastic material clamping plate, and the elastic material clamping plate is located between the vibration plate and the screen.

[0006] Preferably, the vibration crushing mechanism further includes a first connection sleeve and a buffer one-way seal ring. The first connection sleeve is fixedly inserted in the middle of the screen. A limiting inner ring is arranged on the top of the frame ring. The buffer one-way seal ring is fixedly connected to the bottom of the limiting inner ring, and the surface of the buffer one-way seal ring is slidably connected to the upper surface of the vibration plate.

[0007] Preferably, the vibration crushing mechanism further includes a second connection sleeve, a diversion strengthening edge and vibration material holes. The second connection sleeve is fixedly inserted in the middle of the vibration plate. The diversion strengthening edge is integrally arranged on the edge of the lower surface of the vibration plate. The vibration material holes are penetrated and opened on the surface of the vibration plate, and the number of the vibration material holes is multiple, and the multiple vibration material holes are evenly distributed.

[0008] Preferably, the vibration crushing mechanism further includes elastic pressing sheets, clamping grooves, limiting slip rings and limiting ring grooves. The elastic pressing sheets are integrally arranged in the middle of the elastic clamping disc, and the number of the elastic pressing sheets is multiple. The free ends of the multiple elastic pressing sheets all tilt upward. The clamping grooves are formed between every two elastic pressing sheets. The limiting slip ring is arranged in the middle of the multiple elastic pressing sheets. The limiting ring groove is formed on the surface of the limiting slip ring, and the inner wall of the limiting ring groove is slidably connected with the surface of the free end of the elastic pressing sheet.

[0009] Preferably, the circulating and refluxing mechanism includes a diversion bin, a baffle hole, an inner impact port and a diversion pipe. The diversion bin is fixedly sleeved on the surface of the frame ring. The baffle hole is recessed and formed at the bottom of the diversion bin. The inner impact port is formed on the inner wall of the diversion bin, and the inner impact port is communicated with the baffle hole. The diversion pipe is fixedly inserted into the bottom of the diversion bin through the baffle hole, and the number of the diversion pipes is multiple. The multiple diversion pipes all extend downward.

[0010] Preferably, the circulating and refluxing mechanism further includes a diversion shell, an upper diversion port, a centrifugal fan blade, a diversion top plate, an isolation net, a drainage hopper and an electromagnetic switch valve. The diversion shell is arranged at the bottom end of the diversion pipe. The upper diversion port is formed through the surface of the diversion shell, and the upper diversion port penetrates through the inner wall of the diversion shell and extends to the upper surface of the diversion shell. The diversion shell is fixedly connected with the bottom end of the diversion pipe through the upper diversion port. The centrifugal fan blade is arranged inside the diversion shell. The diversion top plate is fixedly connected to the inner wall of the diversion shell. The isolation net is fixedly connected to the inside of the diversion top plate near the middle. The drainage hopper is fixedly connected to the inner bottom wall of the diversion shell. The electromagnetic switch valve is fixedly installed at the bottom end of the drainage hopper.

[0011] Preferably, the stirring and storage mechanism includes a mixing kettle, an electric heating block, a protection plate, a top cover, a feeding port and a lower edge cylinder. The mixing kettle is fixedly sleeved on the surfaces of the diversion bin and the diversion shell. The electric heating block is fixedly installed inside the mixing kettle. The protection plate is fixedly connected to the surface of the electric heating block. The top cover is fixedly installed on the top of the mixing kettle. The feeding port is integrally arranged on the surface of the electric heating block. The lower edge cylinder is integrally arranged in the middle of the bottom of the top cover.

[0012] Preferably, the vibration driving mechanism includes an outer frame base, heat dissipation fins, an upper buffer sheet, a lower buffer sheet and an electromagnet. The outer frame base is fixedly installed on the top of the top cover. The heat dissipation fins are integrally arranged on the surface of the outer frame base. The upper buffer sheet is fixedly attached to the inner bottom wall of the outer frame base. The lower buffer sheet is fixedly attached to the inner top wall of the outer frame base. The electromagnet is fixedly installed on the inner side wall of the outer frame base.

[0013] Preferably, the vibration drive mechanism also includes a bottom connecting ring, a vibration extension column, a first sliding sealing ring, a docking sleeve, a magnet ring and a through hole. The bottom connecting ring is fixedly inserted on the top of the second connecting sleeve and the limiting sliding ring, the vibration extension column is fixedly inserted on the top of the bottom connecting ring, the first sliding sealing ring is fixedly connected to the inside of the lower edge tube, and the surface of the first sliding sealing ring is slidingly connected to the surface of the vibration extension column, the docking sleeve is fixedly sleeved on the top of the vibration extension column, and the docking sleeve is located inside the outer frame seat, the magnet ring is fixedly sleeved on the surface of the docking sleeve, and the magnet ring is located inside the electromagnet, and the through hole is opened on both sides of the docking sleeve.

[0014] Preferably, the stirring and mixing mechanism includes a mixing motor, a second sealing ring, a stirring shaft and a stirring rod, the mixing motor is fixedly mounted on the surface of the outer frame seat, the second sealing ring is fixedly connected to the inside of the lower tube, the stirring shaft is fixedly mounted on the output end of the mixing motor through a coupling, and the bottom end of the stirring shaft is rotatably connected to the inner wall of the guide top plate through a bearing, and the bottom end of the stirring shaft passes through the top of the guide top plate and extends to the inside of the guide shell, and the surface of the guide top plate is fixedly connected to the inner wall of the centrifugal fan blade, and the surface of the guide top plate is slidably connected to the surface of the second sealing ring, and the surface of the stirring shaft is rotatably connected to the inner wall of the first connecting sleeve through a bearing, and the surface of the stirring shaft is slidably connected to the inner wall of the bottom ring, and the stirring rod is fixedly connected to the surface of the stirring shaft.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] 1. The stirring device for automobile brake fluid production is equipped with a vibration crushing mechanism, a circulation reflux mechanism, a stirring storage mechanism, a vibration driving mechanism and a stirring and mixing mechanism. When in use, the circulation reflux mechanism can continuously pump the lower material upward in a circulation manner, and the vibration crushing mechanism generates continuous vibration. The vibration of the vibration crushing mechanism is used to crush and mix the agglomerated raw materials, thereby improving the uniformity of the mixture.

[0017] 2. The stirring device for automobile brake fluid production, through the arranged screen, frame ring, elastic clamping plate, vibration plate, first connecting sleeve, buffer one-way sealing ring, second connecting sleeve, guide reinforcement edge, vibration hole, elastic pressing sheet, clamping groove, limit slip ring and limit ring groove, can continuously vibrate and impact the incoming material through the vibrating vibration plate during use, and continuously crush the material through the clamping groove that continuously opens and closes due to vibration, thereby achieving the breakage of agglomerated materials and ensuring the uniformity of the mixing.

[0018] 3. The stirring device for producing automotive brake fluid can continuously pump the materials at the bottom upward through the centrifugal fan blades during use, so that the materials form an up-and-down cycle, and ensure that the materials are continuously conveyed to the vibration crushing mechanism for crushing by setting the diversion bin, baffle holes, internal impact ports, diversion pipes, diversion shells, upper diversion ports, centrifugal fan blades, diversion top plates, isolation nets, drainage hoppers and electromagnetic switching valves.

[0019] 4. The stirring device for producing automotive brake fluid can carry the materials through the mixing kettle during use and heat the materials through the electric heating block when needed by setting the mixing kettle, electric heating block, protective plate, top seal cover, feeding port and lower edge cylinder.

[0020] 5. The stirring device for producing automotive brake fluid can drive the magnet ring to form a vibration effect through the electromagnet during use, so as to ensure that the elastic material clamping plate and the vibrating plate can vibrate by setting the outer frame seat, heat dissipation fins, upper buffer piece, lower buffer piece, electromagnet, bottom connecting ring, vibration extension column, first sliding seal ring, docking sleeve, magnet ring and through holes.

[0021] 6. The stirring device for producing automotive brake fluid can realize the mixing and stirring of materials by the rotation of the stirring rod by setting the mixing motor, second sealing ring, stirring shaft and stirring rod. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a schematic structural diagram of the present invention;

[0023] Figure 2 is a side sectional view of the present invention;

[0024] Figure 3 is the present invention Figure 2 schematic enlarged structural diagram at A in;

[0025] Figure 4 is a schematic structural diagram at the position of the circulation and reflux mechanism of the present invention;

[0026] Figure 5 is a schematic connection structure diagram of the vibration crushing mechanism and the circulation and reflux mechanism of the present invention;

[0027] Figure 6 is a schematic exploded structural diagram at the position of the diversion shell of the present invention;

[0028] Figure 7 is a schematic exploded structural diagram inside the frame ring of the present invention;

[0029] Figure 8 is a schematic exploded structural diagram at the position of the elastic material clamping plate of the present invention;

[0030] Figure 9 is a schematic exploded structural diagram at the position of the vibrating plate of the present invention;

[0031] Figure 10 Cross-sectional view of the vibration drive mechanism of the present invention;

[0032] Figure 11 Schematic diagram of the structure at the position of the stirring shaft of the present invention.

[0033] In the figure: 101, sieve mesh; 102, frame ring; 103, elastic material clamping plate; 104, vibrating plate; 105, first connecting sleeve; 106, buffer one-way sealing ring; 107, second connecting sleeve; 108, flow guiding and strengthening edge; 109, material vibrating hole; 110, elastic material pressing piece; 111, material clamping groove; 112, limit sliding ring; 113, limit ring groove; 201, flow guiding bin; 202, baffle hole; 203, inner impact port; 204, flow guiding pipe; 205, flow guiding shell; 206, upper guiding port; 207, centrifugal fan blade; 208, flow guiding top plate; 209, isolation net; 210, drainage hopper; 211, electromagnetic switching valve; 301, mixing kettle; 302, electric heating block; 303, protective plate; 304, top sealing cover; 305, feeding port; 306, lower edge cylinder; 401, outer frame base; 402, heat sink; 403, upper buffer piece; 404, lower buffer piece; 405, electromagnet; 406, bottom connecting ring; 407, vibration extension column; 408, first sliding sealing ring; 409, docking sleeve; 410, magnet ring; 411, through hole; 501, mixing motor; 502, second sealing ring; 503, stirring shaft; 504, stirring rod. Specific embodiments

[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0035] Please refer to Figures 1-11, a stirring device for automobile brake fluid production, comprising: a vibration crushing mechanism, a circulation reflux mechanism provided on the surface of the vibration crushing mechanism, a stirring and storing mechanism provided on the surface of the circulation reflux mechanism, a vibration driving mechanism provided on the top of the stirring and storing mechanism, a stirring and mixing mechanism provided between the vibration driving mechanism and the stirring and storing mechanism, the vibration crushing mechanism comprising a screen 101, a frame ring 102, an elastic clamping plate 103 and a vibration plate 104, the frame ring 102 is fixedly sleeved on the surface of the screen 101, the elastic clamping plate 103 is fixedly connected to the inner wall of the frame ring 102, the vibration plate 104 is located above the elastic clamping plate 103, and the elastic clamping plate 103 is located between the vibration plate 104 and the screen 101, through the vibration crushing mechanism, circulation reflux mechanism, stirring and storing mechanism, vibration driving mechanism and stirring and mixing mechanism, the material below can be continuously pumped upward through the circulation reflux mechanism during use, and continuous vibration is generated through the vibration crushing mechanism, and the vibration of the vibration crushing mechanism is used to crush and mix the agglomerated raw materials, thereby improving the uniformity of the mixture.

[0036] Among them, the vibration crushing mechanism also includes a first connecting sleeve 105 and a buffer one-way sealing ring 106. The first connecting sleeve 105 is fixedly inserted in the middle of the screen 101. A limiting inner ring is provided on the top of the frame ring 102. The buffer one-way sealing ring 106 is fixedly connected to the bottom of the limiting inner ring, and the surface of the buffer one-way sealing ring 106 is slidingly connected to the upper surface of the vibration disk 104.

[0037] Among them; the vibration crushing mechanism also includes a second connecting sleeve 107, a guide reinforcement edge 108 and a vibration hole 109. The second connecting sleeve 107 is fixedly inserted in the middle of the vibration disk 104, and the guide reinforcement edge 108 is integrally arranged on the edge of the lower surface of the vibration disk 104. The vibration hole 109 is opened through the surface of the vibration disk 104, and the number of the vibration holes 109 is multiple, and the multiple vibration holes 109 are evenly distributed.

[0038] Among them, the vibration crushing mechanism further includes an elastic pressing piece 110, a material clamping groove 111, a limiting sliding ring 112 and a limiting ring groove 113. The elastic pressing piece 110 is integrally arranged in the middle of the elastic material clamping disc 103, and the number of the elastic pressing pieces 110 is multiple. The free ends of the multiple elastic pressing pieces 110 all tilt upward. The material clamping groove 111 is formed between every two elastic pressing pieces 110. The limiting sliding ring 112 is arranged in the middle of the multiple elastic pressing pieces 110. The limiting ring groove 113 is formed on the surface of the limiting sliding ring 112, and the inner wall of the limiting ring groove 113 is slidably connected with the surface of the free end of the elastic pressing piece 110. By providing the screen 101, the frame ring 102, the elastic material clamping disc 103, the vibrating disc 104, the first connecting sleeve 105, the buffer one-way sealing ring 106, the second connecting sleeve 107, the flow guiding reinforcing edge 108, the material vibrating holes 109, the elastic pressing pieces 110, the material clamping grooves 111, the limiting sliding ring 112 and the limiting ring grooves 113, during use, the vibrating disc 104 can continuously vibrate and impact the incoming materials, and the continuously opening and closing material clamping grooves 111 formed due to vibration can continuously crush the materials, so as to realize the crushing of the agglomerated materials and ensure the uniformity of the mixed materials.

[0039] Among them, the circulating reflux mechanism includes a diversion bin 201, a diversion hole 202, an inner impact port 203 and a diversion pipe 204. The diversion bin 201 is fixedly sleeved on the surface of the frame ring 102. The diversion hole 202 is embedded and formed at the bottom of the diversion bin 201. The inner impact port 203 is formed on the inner wall of the diversion bin 201, and the inner impact port 203 is communicated with the diversion hole 202. The diversion pipe 204 is fixedly inserted into the bottom of the diversion bin 201 through the diversion hole 202, and the number of the diversion pipes 204 is multiple, and the multiple diversion pipes 204 all extend downward.

[0040] Among them, the circulating reflux mechanism further includes a diversion shell 205, an upper diversion port 206, a centrifugal fan blade 207, a diversion top plate 208, an isolation net 209, a drainage hopper 210, and an electromagnetic switch valve 211. The diversion shell 205 is arranged at the bottom end of the diversion pipe 204. The upper diversion port 206 is penetrated and opened on the surface of the diversion shell 205, and the upper diversion port 206 penetrates the inner wall of the diversion shell 205 and extends to the upper surface of the diversion shell 205. The diversion shell 205 is fixedly connected to the bottom end of the diversion pipe 204 through the upper diversion port 206. The centrifugal fan blade 207 is arranged inside the diversion shell 205. The diversion top plate 208 is fixedly connected to the inner wall of the diversion shell 205. The isolation net 209 is fixedly connected to the inside of the diversion top plate 208 near the middle. The drainage hopper 210 is fixedly connected to the inner bottom wall of the diversion shell 205. The electromagnetic switch valve 211 is fixedly installed at the bottom end of the drainage hopper 210. By providing the diversion chamber 201, the baffle holes 202, the inner impact port 203, the diversion pipe 204, the diversion shell 205, the upper diversion port 206, the centrifugal fan blade 207, the diversion top plate 208, the isolation net 209, the drainage hopper 210, and the electromagnetic switch valve 211, during use, the centrifugal fan blade 207 can continuously pump the materials at the bottom upward, so that the materials form an up-and-down cycle, and ensure that the materials are continuously conveyed to the vibration crushing mechanism for crushing.

[0041] Among them, the stirring and storage mechanism includes a mixing kettle 301, an electric heating block 302, a protection plate 303, a top cover 304, a feeding port 305, and a lower edge cylinder 306. The mixing kettle 301 is fixedly sleeved on the surfaces of the diversion chamber 201 and the diversion shell 205. The electric heating block 302 is fixedly installed inside the mixing kettle 301. The protection plate 303 is fixedly connected to the surface of the electric heating block 302. The top cover 304 is fixedly installed on the top of the mixing kettle 301. The feeding port 305 is integrally arranged on the surface of the electric heating block 302. The lower edge cylinder 306 is integrally arranged in the middle of the bottom of the top cover 304. By providing the mixing kettle 301, the electric heating block 302, the protection plate 303, the top cover 304, the feeding port 305, and the lower edge cylinder 306, during use, the mixing kettle 301 can carry the materials, and when needed, the electric heating block 302 can heat the materials.

[0042] Among them, the vibration driving mechanism includes an outer frame base 401, heat dissipation fins 402, an upper buffer sheet 403, a lower buffer sheet 404, and an electromagnet 405. The outer frame base 401 is fixedly installed on the top of the top cover 304. The heat dissipation fins 402 are integrally arranged on the surface of the outer frame base 401. The upper buffer sheet 403 is fixedly attached to the inner bottom wall of the outer frame base 401. The lower buffer sheet 404 is fixedly attached to the inner top wall of the outer frame base 401. The electromagnet 405 is fixedly installed on the inner side wall of the outer frame base 401.

[0043] Among them, the vibration drive mechanism also includes a bottom connecting ring 406, a vibration extension column 407, a first sliding seal ring 408, a docking sleeve 409, a magnet ring 410 and a through hole 411, the bottom connecting ring 406 is fixedly plugged into the top of the second connecting sleeve 107 and the limiting slip ring 112, the vibration extension column 407 is fixedly plugged into the top of the bottom connecting ring 406, the first sliding seal ring 408 is fixedly connected to the inside of the lower tube 306, and the surface of the first sliding seal ring 408 is slidably connected to the surface of the vibration extension column 407, the docking sleeve 409 is fixedly sleeved on the top of the vibration extension column 407, and the docking sleeve 409 is located at the outer frame seat 401 Internally, the magnet ring 410 is fixedly sleeved on the surface of the docking sleeve 409, and the magnet ring 410 is located inside the electromagnet 405, and the through hole 411 is opened on both sides of the docking sleeve 409. Through the outer frame seat 401, heat sink 402, upper buffer plate 403, lower buffer plate 404, electromagnet 405, bottom connecting ring 406, vibration extension column 407, first sliding seal ring 408, docking sleeve 409, magnet ring 410 and through hole 411, the magnet ring 410 can be driven by the electromagnet 405 to form a vibration effect during use, thereby ensuring that the elastic clamping plate 103 and the vibration plate 104 can vibrate.

[0044] Wherein; the stirring and mixing mechanism includes a mixing motor 501, a second sealing ring 502, a stirring shaft 503 and a stirring rod 504, the mixing motor 501 is fixedly mounted on the surface of the outer frame seat 401, the second sealing ring 502 is fixedly connected to the inside of the lower cylinder 306, the stirring shaft 503 is fixedly mounted on the output end of the mixing motor 501 through a coupling, and the bottom end of the stirring shaft 503 is rotatably connected to the inner wall of the guide top plate 208 through a bearing, and the bottom end of the stirring shaft 503 passes through the top of the guide top plate 208 and extends to the inside of the guide shell 205, and the guide top plate 2 08 is fixedly connected to the inner wall of the centrifugal fan blade 207, and the surface of the guide top plate 208 is slidingly connected to the surface of the second sealing ring 502, and the surface of the stirring shaft 503 is rotationally connected to the inner wall of the first connecting sleeve 105 through a bearing, and the surface of the stirring shaft 503 is slidingly connected to the inner wall of the bottom ring 406, and the stirring rod 504 is fixedly connected to the surface of the stirring shaft 503. Through the setting of the mixing motor 501, the second sealing ring 502, the stirring shaft 503 and the stirring rod 504, the materials can be mixed and stirred by the rotation of the stirring rod 504.

[0045] Working principle:

[0046] When in use, the electromagnetic switch valve 211 is closed, the material is introduced into the mixing kettle 301, and then the mixing motor 501 is started. The mixing motor 501 drives the stirring shaft 503 to rotate, and the stirring shaft 503 drives the stirring rod 504, so that the stirring rod 504 can achieve stirring and mixing.

[0047] Then, an alternating current is applied to the electromagnet 405. After the electromagnet 405 is energized with an alternating current, a magnetic field with a continuously changing direction is formed. The magnetic force of the changing magnetic field continuously pushes and pulls the magnet ring 410, causing the magnet ring 410 to continuously jump up and down. The jumping magnet ring 410 drives the bottom connection ring 406 through the docking sleeve 409 and the vibration extension column 407, thereby causing the second connection sleeve 107 and the limit sliding ring 112 to vibrate. When the second connection sleeve 107 vibrates, it drives the vibrating disk 104 to vibrate. When the limit sliding ring 112 vibrates, it periodically presses down and lifts the elastic pressing piece 110, causing the elastic pressing piece 110 to bounce periodically, thereby causing the material clamping groove 111 to close and open periodically.

[0048] When the stirring shaft 503 rotates, it drives the centrifugal fan blade 207 to rotate. The rotation of the centrifugal fan blade 207 pushes the liquid to be pumped outwards, causing the liquid at the bottom of the mixing kettle 301 to continuously enter the interior of the diversion shell 205 through the isolation net 209, and then discharge successively along the upper diversion port 206, the diversion pipe 204, the baffle hole 202, and the inner impact port 203. Then, the liquid reaches above the vibrating disk 104 and is attracted downward, thereby causing the liquid to circulate continuously. When the liquid reaching above the vibrating disk 104 is vibrated by the vibrating disk 104, the agglomerates inside are broken by the vibration. The broken agglomerates pass through the vibrating material holes 109 and reach below the vibrating disk 104. The stubborn agglomerates bypass the edge of the vibrating disk 104 and reach below it. Then, the material passes through the material clamping groove 111. When the material passes through the material clamping groove 111, the stubborn agglomerates inside will be crushed by the periodically opening and closing material clamping groove 111. Then, the broken agglomerates pass through the sieve mesh 101 and are stirred and mixed by the stirring rod 504 below. The large particle agglomerates will be disturbed between the vibrating disk 104 and the sieve mesh 101, and thus are continuously crushed by the material clamping groove 111 and the vibrating disk 104 until they can pass through the sieve mesh 101 and reach below, thereby realizing the uniformity of mixing.

[0049] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A stirring device for producing automotive brake fluid, characterized in that, include: A vibration crushing mechanism, wherein a circulation reflux mechanism is provided on the surface of the vibration crushing mechanism, a stirring and storing mechanism is provided on the surface of the circulation reflux mechanism, a vibration driving mechanism is provided on the top of the stirring and storing mechanism, and a stirring and mixing mechanism is provided between the vibration driving mechanism and the stirring and storing mechanism; The vibration crushing mechanism comprises a screen (101), a frame ring (102), an elastic clamping disc (103) and a vibration disc (104); the frame ring (102) is fixedly sleeved on the surface of the screen (101); the elastic clamping disc (103) is fixedly connected to the inner wall of the frame ring (102); the vibration disc (104) is located above the elastic clamping disc (103); and the elastic clamping disc (103) is located between the vibration disc (104) and the screen (101).

2. The stirring device for producing automotive brake fluid according to claim 1, characterized in that, The vibration crushing mechanism further comprises a first connecting sleeve (105) and a buffering one-way sealing ring (106); the first connecting sleeve (105) is fixedly inserted in the middle of the screen (101); a limiting inner ring is provided on the top of the frame ring (102); the buffering one-way sealing ring (106) is fixedly connected to the bottom of the limiting inner ring; and the surface of the buffering one-way sealing ring (106) is slidably connected to the upper surface of the vibration plate (104).

3. A stirring device for producing automotive brake fluid according to claim 1, characterized in that, The vibration crushing mechanism further comprises a second connecting sleeve (107), a flow-guiding reinforcement edge (108) and a vibration material hole (109); the second connecting sleeve (107) is fixedly plugged into the middle of the vibration disk (104); the flow-guiding reinforcement edge (108) is integrally arranged on the edge of the lower surface of the vibration disk (104); the vibration material hole (109) is opened through the surface of the vibration disk (104); and the number of the vibration material holes (109) is multiple, and the multiple vibration material holes (109) are evenly distributed.

4. A stirring device for producing automotive brake fluid according to claim 1, characterized in that, The vibration crushing mechanism further comprises an elastic pressing piece (110), a clamping groove (111), a limiting sliding ring (112) and a limiting ring groove (113); the elastic pressing piece (110) is integrally arranged in the middle of the elastic clamping disc (103); and there are multiple elastic pressing pieces (110), and the free ends of the multiple elastic pressing pieces (110) are all tilted upward; the clamping groove (111) is opened between every two elastic pressing pieces (110); the limiting sliding ring (112) is set in the middle of the multiple elastic pressing pieces (110); the limiting ring groove (113) is opened on the surface of the limiting sliding ring (112), and the inner wall of the limiting ring groove (113) is slidably connected to the surface of the free end of the elastic pressing piece (110).

5. A stirring device for producing automotive brake fluid according to claim 1, characterized in that, The circulation and reflux mechanism includes a diversion bin (201), a baffle hole (202), an inner impact port (203), and a diversion pipe (204). The diversion bin (201) is fixedly sleeved on the surface of the frame ring (102). The baffle hole (202) is recessed and opened at the bottom of the diversion bin (201). The inner impact port (203) is opened on the inner wall of the diversion bin (201), and the inner impact port (203) communicates with the baffle hole (202). The diversion pipe (204) is fixedly inserted into the bottom of the diversion bin (201) through the baffle hole (202), and the number of the diversion pipes (204) is multiple, and multiple diversion pipes (204) all extend downward.

6. The stirring device for producing automotive brake fluid according to claim 5, characterized in that, The circulation and reflux mechanism further includes a diversion shell (205), an upper diversion port (206), a centrifugal fan blade (207), a diversion top plate (208), an isolation net (209), a drainage hopper (210), and an electromagnetic switch valve (211). The diversion shell (205) is arranged at the bottom end of the diversion pipe (204). The upper diversion port (206) is penetrated and opened on the surface of the diversion shell (205), and the upper diversion port (206) penetrates through the inner wall of the diversion shell (205) and extends to the upper surface of the diversion shell (205), and the diversion shell (205) is fixedly connected with the bottom end of the diversion pipe (204) through the upper diversion port (206). The centrifugal fan blade (207) is arranged inside the diversion shell (205). The diversion top plate (208) is fixedly connected to the inner wall of the diversion shell (205). The isolation net (209) is fixedly connected to the inside of the diversion top plate (208) near the middle. The drainage hopper (210) is fixedly connected to the inner bottom wall of the diversion shell (205). The electromagnetic switch valve (211) is fixedly installed at the bottom end of the drainage hopper (210).

7. The stirring device for producing automotive brake fluid according to claim 6, wherein, The stirring and storage mechanism includes a mixing kettle (301), an electric heating block (302), a protection plate (303), a top cover (304), a feeding port (305), and a lower edge cylinder (306). The mixing kettle (301) is fixedly sleeved on the surfaces of the diversion bin (201) and the diversion shell (205). The electric heating block (302) is fixedly installed inside the mixing kettle (301). The protection plate (303) is fixedly connected to the surface of the electric heating block (302). The top cover (304) is fixedly installed on the top of the mixing kettle (301). The feeding port (305) is integrally arranged on the surface of the electric heating block (302). The lower edge cylinder (306) is integrally arranged in the middle of the bottom of the top cover (304).

8. A stirring device for producing automotive brake fluid according to claim 7, characterized in that, The vibration drive mechanism comprises an outer frame seat (401), a heat sink (402), an upper buffer plate (403), a lower buffer plate (404) and an electromagnet (405); the outer frame seat (401) is fixedly mounted on the top of the top cover (304); the heat sink (402) is integrally arranged on the surface of the outer frame seat (401); the upper buffer plate (403) is fixedly attached to the inner bottom wall of the outer frame seat (401); the lower buffer plate (404) is fixedly attached to the inner top wall of the outer frame seat (401); and the electromagnet (405) is fixedly mounted on the inner side wall of the outer frame seat (401).

9. The stirring device for producing automotive brake fluid according to claim 8, characterized in that, The vibration drive mechanism further comprises a bottom connecting ring (406), a vibration extension column (407), a first sliding seal ring (408), a docking sleeve (409), a magnet ring (410) and a through hole (411); the bottom connecting ring (406) is fixedly plugged into the top of the second connecting sleeve (107) and the limiting sliding ring (112); the vibration extension column (407) is fixedly plugged into the top of the bottom connecting ring (406); the first sliding seal ring (408) is fixedly connected to the bottom edge of the cylinder (306); The outer frame seat (401) is provided with a first sliding seal ring (408) and a surface thereof slidingly connected to the surface of the vibration extension column (407). The docking sleeve (409) is fixedly sleeved on the top of the vibration extension column (407), and the docking sleeve (409) is located inside the outer frame seat (401). The magnet ring (410) is fixedly sleeved on the surface of the docking sleeve (409), and the magnet ring (410) is located inside the electromagnet (405). The through hole (411) is opened on both sides of the docking sleeve (409).

10. The stirring device for producing automotive brake fluid according to claim 9, characterized in that, The stirring and mixing mechanism comprises a mixing motor (501), a second sealing ring (502), a stirring shaft (503) and a stirring rod (504); the mixing motor (501) is fixedly mounted on the surface of the outer frame seat (401); the second sealing ring (502) is fixedly connected to the inside of the lower barrel (306); the stirring shaft (503) is fixedly mounted on the output end of the mixing motor (501) via a coupling; and the bottom end of the stirring shaft (503) is rotatably connected to the inner wall of the guide top plate (208) via a bearing; and the bottom end of the stirring shaft (503) is fixedly mounted on the output end of the mixing motor (501) via a coupling; The end passes through the top of the guide top plate (208) and extends to the interior of the guide shell (205), and the surface of the guide top plate (208) is fixedly connected to the inner wall of the centrifugal fan blade (207), and the surface of the guide top plate (208) is slidably connected to the surface of the second sealing ring (502), and the surface of the stirring shaft (503) is rotatably connected to the inner wall of the first connecting sleeve (105) through a bearing, and the surface of the stirring shaft (503) is slidably connected to the inner wall of the bottom ring (406), and the stirring rod (504) is fixedly connected to the surface of the stirring shaft (503).

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