An emulsifying machine for improving emulsification efficiency

By introducing the stirring blades and auxiliary stirring parts into the tank body into the emulsifier, combined with the rotary driving of the tank body and the heating of the heat conducting medium, the problem of low emulsification and dispersion efficiency of the emulsifier is solved, and more efficient material dispersion and cleaning are achieved.

CN119771229BActive Publication Date: 2025-07-25广东金宗机械有限公司
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Patent Information

Application Number
CN202510265290.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2025-07-25
Estimated Expiration
2045-03-07

AI Technical Summary

Technical Problem

The emulsification and dispersion efficiency of existing emulsifiers is relatively limited, and it is difficult to meet the production needs of the biological industry.

Method used

By introducing the stirring blades and auxiliary stirring parts into the tank body into the emulsifier, combined with the rotary driving of the tank body and the heating of the heat conducting medium, the fluidity and dispersion effect of the material are improved.

Benefits of technology

It significantly improves the emulsification efficiency of the emulsifier, reduces material residue and cleaning difficulties, and achieves more complete material contact and dispersion effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to the technical field of emulsifying equipment. Aiming at the problem of limited emulsifying efficiency of traditional emulsifiers, an emulsifier with improved emulsifying efficiency is proposed, which includes a frame, a jacket, a tank body, a tank cover, and an emulsifying and stirring device; the jacket is supported on the frame; the tank body is coaxially embedded in the jacket; the tank body is supported at the top opening of the jacket for blocking the top opening of the jacket; the emulsifying and stirring device is installed on the tank cover, and the emulsifying and stirring device extends to the bottom of the inner cavity of the tank body; a plurality of stirring blades are convexly provided on the peripheral wall of the inner cavity of the tank body, and a rotary driving member is provided on the jacket corresponding to the tank body, and the rotary driving member is drivingly connected to the tank body for driving the tank body to rotate axially around its own rotation axis. This application has the effect of improving the emulsifying efficiency of the emulsifier.
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Description

Technical Field

[0001] This application relates to the field of emulsifying equipment, and in particular to an emulsifier for improving emulsification efficiency. Background Art

[0002] In the daily production process of the biological industry, an emulsifier is usually required to disperse, shear, and emulsify materials to form an emulsion required for the production process.

[0003] The emulsifying and shearing of materials by the emulsifier is mainly completed by an emulsifying and stirring device. In the related art, the emulsifying and stirring device includes a stator, a rotor, and a driving motor. Among them, the rotor is rotatably connected inside the stator; the driving motor is drivingly connected to the rotor to drive the rotor to rotate; when shearing materials through the emulsifying and stirring device, the driving motor drives the rotor to continuously rotate at a high speed, and the centrifugal force generated by the high-speed rotation of the rotor causes the materials to enter the narrow gap between the stator and the rotor, and the stator and the rotor cooperate to perform strong and reciprocating hydraulic shearing, friction, and collision on the materials, and finally complete emulsification.

[0004] In the related art, currently, the emulsifier usually only emulsifies and disperses materials through the emulsifying and stirring device, and the overall emulsifying and dispersing efficiency is relatively limited. Therefore, there is room for improvement. Summary of the Invention

[0005] In order to improve the emulsifying and dispersing efficiency of the emulsifier for materials, this application provides an emulsifier for improving emulsification efficiency.

[0006] An emulsifier for improving emulsification efficiency provided by this application adopts the following technical solutions:

[0007] An emulsifier for improving emulsification efficiency includes a frame, a jacket, a tank body, a tank cover, and an emulsifying and stirring device;

[0008] The jacket is supported on the frame;

[0009] The tank body is coaxially embedded in the jacket;

[0010] The tank body is supported at the top opening of the jacket to block the top opening of the jacket;

[0011] The emulsifying and stirring device is installed on the tank cover, and the emulsifying and stirring device extends to the bottom of the inner cavity of the tank body;

[0012] A plurality of stirring blades are convexly provided on the peripheral wall of the inner cavity of the tank body, and the jacket is provided with a rotary driving member corresponding to the tank body. The rotary driving member is drivingly connected to the tank body to drive the tank body to rotate around its own axis of rotation.

[0013] By adopting the above technical solution, while emulsifying and dispersing the materials in the tank body through the emulsifying and stirring device, the rotary drive mechanism drives the tank body to drive a plurality of stirring blades on the inner circumference of the tank body to reciprocate in the positive and negative directions along the axial direction of the tank body. The rotating tank body cooperates with the stirring blades to stir the materials in the tank body, so as to accelerate the collision and friction of the materials inside the tank body, which is beneficial to the further dispersion and refinement of the materials inside the tank body. At the same time, the rotating tank body cooperates with the stirring blades to improve the fluidity of the materials inside the tank body, so that the materials in the tank body can contact the emulsifying and stirring device more fully, thereby effectively improving the emulsifying efficiency of the emulsifier.

[0014] Preferably, an auxiliary stirring part is supported at the bottom of the tank cover, and the auxiliary stirring part extends to the bottom of the inner cavity of the tank body.

[0015] By adopting the above technical solution, by supporting the auxiliary stirring part at the bottom of the tank cover, while emulsifying and dispersing the materials in the tank body through the emulsifying and stirring device subsequently, the auxiliary stirring part can be used to assist in stirring the materials in the tank body, which is beneficial to further improving the fluidity of the materials inside the tank body.

[0016] Preferably, the auxiliary stirring part includes a first connection section and two second connection sections, and the two second connection sections are respectively connected to both ends of the first connection section; the first connection section is located at the bottom of the inner cavity of the tank body, and one end of the second connection section far from the first connection section extends to the top of the tank body.

[0017] By adopting the above technical solution, the mutual cooperation of the first connection section and the second connection section is beneficial to the full contact of the auxiliary stirring part with the materials in the upper and lower parts of the tank body, facilitating the auxiliary stirring part to better stir the materials in the tank body, and is beneficial to reducing the generation of dead corners of material flow inside the tank body.

[0018] Preferably, the stirring blades are connected to the tank body through connecting pieces.

[0019] By adopting the above technical solution, the stirring blades are fixed in the tank body by using the connecting pieces. On the one hand, it is beneficial for the tank body to drive the stirring blades to rotate more stably. On the other hand, it realizes the detachable installation of the stirring blades inside the tank body, which is convenient for the subsequent cleaning of the stirring blades and the disassembly and replacement after the stirring blades are worn.

[0020] Preferably, the first connection section is in close contact with the bottom wall of the inner cavity of the tank body, and the second connection section is in close contact with the peripheral wall of the inner cavity of the tank body;

[0021] A support pipe is coaxially supported at the bottom of the tank cover corresponding to the auxiliary stirring part, a support ring is rotatably connected to the outer periphery of the support pipe, and the top ends of the second connection sections are all connected to the support ring through connecting pieces.

[0022] By adopting the above technical solution, the auxiliary stirring part is rotatably connected to the bottom of the tank cover. While the rotary driving part drives the tank body to drive the stirring blades to rotate, the auxiliary stirring part can be driven by the stirring blades to rotate around the support pipe, which is beneficial to the auxiliary stirring part to better stir and shear the materials in the tank body, and then is convenient to better improve the emulsification effect of the materials inside the tank body.

[0023] Preferably, a number of limit bolts are threadedly penetrated through the outer periphery of the support ring, and a number of limit holes corresponding to the limit bolts are provided on the outer periphery of the support pipe for the corresponding limit bolts to be inserted into.

[0024] By adopting the above technical solution, before cleaning the tank body, the stirring blades can be removed from the tank body, and the support ring is rotated until the limit bolts on the support ring are opposite to the corresponding limit holes on the support pipe, and then the limit bolts are screwed into the corresponding limit holes to limit the rotation of the support ring around the support pipe; when cleaning the residual materials inside the tank body, the rotary driving part can be used to drive the tank body to rotate, and the auxiliary stirring part abutted against the inner wall of the tank cavity can be used to scrape the materials adhered to the inner circumference of the tank body, which is beneficial to reducing the residue of the materials in the tank cavity and reducing the cleaning difficulty of the residual materials inside the tank body.

[0025] Preferably, the frame is provided with a lifting driving part for driving the tank cover to lift vertically.

[0026] By adopting the above technical solution, using the lifting driving part to drive the tank cover to lift vertically is convenient for opening and closing the opening at the top of the tank sleeve, which is beneficial to the subsequent feeding and discharging of the materials in the tank body. At the same time, when the lifting driving part drives the tank cover to move upward, the emulsifying and stirring device and the auxiliary stirring part can be taken out of the tank body together, which is convenient for the subsequent cleaning of the emulsifying and stirring device and the auxiliary stirring part.

[0027] Preferably, a gap is left between the inner circumference of the tank sleeve and the outer circumference of the tank body, and the tank sleeve is communicated with a heat-conducting medium inlet pipe and a heat-conducting medium outlet pipe.

[0028] By adopting the above technical solution, the heat-conducting medium can be circulated into the gap between the tank sleeve and the tank body through the cooperation of the heat-conducting medium inlet pipe and the heat-conducting medium outlet pipe to heat the materials inside the tank body, which is beneficial to reducing the intermolecular force of the materials inside the tank body, improving the overall fluidity of the materials, and then being beneficial to the materials to be better emulsified and dispersed by the cooperation of the emulsifying and stirring device and the auxiliary stirring part.

[0029] Preferably, the top of the tank body is rotatably and sealingly connected to the top of the tank sleeve through a first rotary seal.

[0030] By adopting the above technical solution, using the first rotating seal to block the top gap between the tank sleeve and the tank body is conducive to restricting the outflow of the heat-conducting medium between the subsequent tank sleeve and the tank body while reducing the heat loss of the heat-conducting medium, and is conducive to enabling the heat-conducting medium entering the gap between the tank body and the tank sleeve to better heat the materials in the tank body.

[0031] Preferably, a support is provided at the bottom of the inner cavity of the tank sleeve, and a number of universal balls are arranged around the support, and the universal balls are abutted against the bottom of the tank body.

[0032] By adopting the above technical solution, the cooperation of the support and a number of universal balls effectively reduces the friction between the bottom of the tank sleeve and the bottom of the tank body, and at the same time, a gap can be left between the bottom of the tank body and the bottom of the tank body, so that the heat-conducting medium subsequently entering the tank sleeve through the heat-conducting medium inlet pipe can heat the bottom area of the tank body, which is conducive to the uniform heating of the materials inside the tank body.

[0033] In summary, the present application includes at least one of the following beneficial technical effects:

[0034] 1. By driving the tank body to drive the stirring blades in the inner cavity of the tank body to reciprocate forward and reverse by means of a rotary driving member to stir the materials, while improving the fluidity of the materials inside the tank body, promoting the dispersion and refinement of the materials, which is conducive to assisting the emulsifying and stirring device to better emulsify and disperse the materials inside the tank body, and effectively improving the emulsifying efficiency of the emulsifier.

[0035] 2. Through the setting of the auxiliary stirring part at the bottom of the tank cover, while the tank body drives the stirring blades to stir the materials, the stirring blades can drive the auxiliary stirring part to rotate around the supporting ring through the supporting pipe, which is convenient for the auxiliary stirring part to strike and stir the materials inside the tank body, which is conducive to further improving the overall fluidity of the materials inside the tank body and promoting the materials to better contact the emulsifying and stirring device; when cleaning the tank body subsequently, after removing the stirring blades from the tank body, by screwing the limit bolts on the support ring into the corresponding limit holes on the support pipe to limit the rotation of the auxiliary stirring part; driving the tank body to rotate by means of a rotary driving member and cooperating with the auxiliary stirring part abutted against the inner cavity of the tank body is conducive to better scraping the materials adhered to the inner cavity of the tank body.

[0036] 3. When the emulsifier emulsifies the materials, by cooperating the heat-conducting medium inlet pipe and the heat-conducting medium outlet pipe on the tank sleeve to circulate and introduce the heat-conducting medium into the gap between the tank body and the tank sleeve to heat the materials inside the tank body, which is conducive to improving the fluidity of the materials inside the tank body.

[0037] 4. The setting of the bottom support of the tank sleeve and several universal balls can, on the one hand, assist in supporting the tank body through the cooperation of the support and the universal balls, reduce the friction between the tank body and the tank sleeve, and facilitate the smooth rotation of the tank body; on the other hand, it can achieve a gap between the bottom of the tank body and the tank sleeve, enabling the heat-conducting medium that subsequently enters the gap between the tank sleeve and the tank body to enter the bottom of the tank body and heat the materials at the bottom of the tank body, which is beneficial to the uniform heating of the materials inside the tank body. Brief Description of the Drawings

[0038] Figure 1 is a schematic diagram showing the overall structure of the emulsifying machine of the present application.

[0039] Figure 2 is a schematic diagram showing the internal structures of the tank sleeve, the tank body, and the tank cover of the present application.

[0040] Figure 3 is a schematic diagram showing the structures of the tank cover and the emulsifying stirrer of the present application.

[0041] Figure 4 is Figure 2 an enlarged schematic diagram of part A in

[0042] Figure 5 is a schematic diagram showing the structures of the heat-conducting medium inlet pipe and the heat-conducting medium outlet pipe on the outer periphery of the tank sleeve of the present application.

[0043] Figure 6 is Figure 2 an enlarged schematic diagram of part B in

[0044] Figure 7 is a schematic diagram showing the state when the lifting driving member lifts the tank cover upward of the present application.

[0045] Figure 8 is an exploded schematic diagram showing the auxiliary stirring part of the present application.

[0046] Description of the Reference Numerals:

[0047] 1. Frame; 11. Connecting arm; 12. Lifting driving part; 13. Flipping driving part; 2. Tank sleeve; 20. First annular limiting groove; 201. First rotary seal; 21. First flange; 211. Third annular limiting groove; 212. Annular sealing ring; 22. Heat-conducting medium inlet pipe; 23. Heat-conducting medium outlet pipe; 24. Support; 25. Universal ball; 3. Tank body; 32. Rotary driving part; 31. Stirring blade; 311. Connecting lug; 312. Connecting bolt; 4. Tank cover; 41. Second flange; 411. Fourth annular limiting groove; 42. Support pipe; 420. Inner flange; 421. Annular support plate; 422. Limiting hole; 43. Support ring; 431. Limiting bolt; 44. Connecting bearing; 45. Annular PTFE plate; 5. Emulsifying and stirring device; 50. Stirring seat; 51. Stator; 52. Rotor; 53. Driving motor; 6. Auxiliary stirring part; 61. First connecting section; 62. Second connecting section; 621. Connecting piece. Detailed implementation mode

[0048] The following is further described in detail with reference to the attached Figure 1-8 drawings of the present application.

[0049] The embodiment of the present application discloses an emulsifying machine for improving emulsifying efficiency. Refer to Figure 1 and Figure 2 , which includes a frame 1, a tank sleeve 2, a tank body 3, a tank cover 4 and an emulsifying and stirring device 5. The tank sleeve 2 is supported on the frame 1, and the tank body 3 is coaxially embedded in the tank sleeve 2; the tank cover 4 is coaxially supported at the top opening of the tank sleeve 2 to block the top openings of both the tank sleeve 2 and the tank body 3; the emulsifying and stirring device 5 is installed on the tank cover 4, and the emulsifying and stirring device 5 extends to the bottom of the inner cavity of the tank body 3; a number of stirring blades 31 are evenly arranged on the peripheral side of the inner cavity of the tank body 3; the tank sleeve 2 is provided with a rotary driving part 32 corresponding to the tank body 3, and the rotary driving part 32 is drivingly connected to the tank body 3 to drive the tank body 3 to rotate axially around its own rotation axis, so as to drive the stirring blades 31 to assist in stirring the material to be emulsified inside the tank body 3, improving the fluidity of the material while promoting the dispersion and refinement of the material.

[0050] Refer to Figure 2 and Figure 3 , the emulsifying and stirring device 5 includes a stirring seat 50, a stator 51, a rotor 52 and a driving motor 53; the stirring seat 50 is coaxially penetrated and fixed on the tank cover 4; the stator 51 is connected to the bottom of the stirring seat 50 through a bracket, a number of through grooves are formed on the outer periphery of the stator 51, the rotor 52 is rotatably connected to the inner periphery of the stator 51, a number of shearing parts are convexly arranged on the outer periphery of the rotor 52, and the driving motor 53 is installed on the top of the stirring seat 50 and the output end of the driving motor 53 is drivingly connected to the rotor 52 for driving the rotor 52 to rotate.

[0051] Refer to Figure 2 and Figure 4, the tops of the stirring blades 31 are all connected to the top of the tank body 3 through connecting pieces. This is beneficial for the tank body 3 to stably drive the stirring blades 31 to rotate. At the same time, when the stirring blades 31 need to be replaced or cleaned later, the stirring blades 31 can be removed from the tank body 3, which is convenient for the replacement and cleaning of the stirring blades 31.

[0052] The connecting piece includes a connecting convex block 311 protruding from the top of the stirring blade 31. The connecting convex blocks 311 are all lapped on the top end face of the tank body 3 and the connecting convex blocks 311 are fixed on the top end face of the tank body 3 through connecting bolts 312, so as to realize the fastening connection of the stirring blade 31 in the tank body 3.

[0053] Refer to Figure 2 and Figure 5 , there is a gap between the inner circumference of the tank sleeve 2 and the outer circumference of the tank body 3; a heat-conducting medium inlet pipe 22 and a heat-conducting medium outlet pipe 23 are connected to the outer circumference of the tank sleeve 2. The heat-conducting medium inlet pipe 22 is located at the bottom of the tank sleeve 2, and the heat-conducting medium outlet pipe 23 is located at the top of the tank sleeve 2. Through the above settings, when emulsifying materials by the emulsifying machine, the heat-conducting medium such as steam, hot water or heat-conducting oil can be circulated into the gap between the tank sleeve 2 and the tank body 3 through the heat-conducting medium inlet pipe 22 in cooperation with the heat-conducting medium outlet pipe 23 to heat the materials in the tank body 3. This is beneficial to reducing the intermolecular force of the materials inside the tank body 3, improving the overall fluidity of the materials, and further facilitating the better emulsification and dispersion of the materials under the action of the emulsifying and stirring device 5.

[0054] Refer to Figure 2 and Figure 4 , the top end of the tank sleeve 2 and the top end of the tank body 3 are rotationally and sealingly connected through a first rotary seal 201. This is beneficial to reducing the heat loss of the heat-conducting medium entering the gap between the tank sleeve 2 and the tank body 3 later, while restricting the leakage of the heat-conducting medium. A first annular limiting groove 20 and a second annular limiting groove 30 are coaxially provided on the outer circumference of the top end of the tank sleeve 2 and the outer circumference of the top end of the tank body 3 respectively. The inner peripheral edge and the outer peripheral edge of the rotary seal are respectively embedded in the first annular limiting groove 20 and the second annular limiting groove 30, so as to realize the stable installation of the first rotary seal 201 between the tank sleeve 2 and the tank body 3.

[0055] Refer to Figure 2 and Figure 6 , a support 24 is arranged at the bottom of the inner cavity of the tank sleeve 2. The support 24 is fixedly welded to the inner wall of the bottom of the tank sleeve 2 through a plurality of legs; a plurality of universal balls 25 are circumferentially installed on the upper surface of the support 24, and the universal balls 25 all abut against the bottom of the tank body 3. The support 24 and the universal balls 25 are used to assist in supporting the tank body 3. While effectively reducing the friction between the tank body 3 and the tank sleeve 2, a gap is left between the bottom of the tank sleeve 2 and the bottom of the tank body 3. Furthermore, it is convenient for the heat-conducting medium entering the gap between the tank sleeve 2 and the tank body 3 to flow to the bottom of the tank body 3 to heat the materials at the bottom of the inner cavity of the tank body 3, which is beneficial to the uniform heating of the materials inside the tank body 3.

[0056] A connecting shaft is coaxially connected to the bottom of the tank body 3. The connecting shaft passes through the support 24 and the tank sleeve 2, and the connection between the connecting shaft and the tank sleeve 2 is rotationally sealed through a second rotary seal. A mounting seat is welded and fixed to the bottom of the tank sleeve 2 corresponding to the connecting shaft. The slewing drive 32 includes a slewing reduction motor mounted on the mounting seat, and the output end of the slewing reduction motor is connected to the connecting shaft through a coupling, realizing the driving connection between the slewing drive 32 and the tank body 3.

[0057] Refer to Figure 1 and Figure 7 , a connecting arm 11 is horizontally connected to the top of the tank cover 4; a lifting drive 12 is provided on the frame 1 corresponding to the connecting arm 11. The lifting drive 12 is drivingly connected to the connecting arm 11 to drive the connecting arm 11 to drive the tank cover 4 to move up and down vertically. In this embodiment, the lifting drive 12 adopts an oil cylinder; through the above settings, the lifting drive 12 is used to drive the tank cover 4 to move up and down vertically, which is convenient for opening and closing the top openings of both the tank body 3 and the tank sleeve 2. At the same time, when cleaning the emulsifying and stirring device 5 subsequently, the lifting drive 12 can be used to drive the tank cover 4 to move up to take out the emulsifying and stirring device 5 from the tank body 3, facilitating the cleaning of the emulsifying and stirring device 5.

[0058] The frame 1 is formed with a mounting groove. The outer periphery of the tank sleeve 2 is horizontally rotatably connected to the mounting groove through a rotating shaft on opposite sides. The frame 1 is provided with a flipping drive 13 corresponding to the tank body 3. The flipping drive 13 is drivingly connected to the rotating shaft on one side of the tank body 3 to drive the tank body 3 to flip around the axial direction of the rotating shaft. In this embodiment, the flipping drive 13 adopts a reduction motor. After the lifting drive 12 drives the tank cover 4 to drive the emulsifying and stirring device 5 out of the tank body 3 subsequently, the flipping drive 13 can be used to drive the tank body 3 to flip, so as to facilitate pouring out the materials in the tank body 3.

[0059] Refer to Figure 2 and Figure 4 , a first flange 21 is coaxially connected to the outer periphery of the top end of the tank sleeve 2; a second flange 41 is coaxially connected to the outer periphery of the bottom end of the tank cover 4; the first flange 21 and the second flange 41 are arranged in a fitting manner; an annular sealing ring 212 is further arranged between the first flange 21 and the second flange 41. Third annular limiting grooves 211 and fourth annular limiting grooves 411 are respectively formed on the fitting sides of the first flange 21 and the second flange 41 corresponding to the annular sealing ring 212. The annular sealing ring 212 is embedded in the third annular limiting groove 211 and the fourth annular limiting groove 411, which is beneficial to improving the sealing performance at the connection between the tank cover 4 and the tank sleeve 2.

[0060] Refer to Figure 2 , Figure 3 and Figure 8, an auxiliary stirring part 6 is arranged at the bottom of the can lid 4, and the bottom of the auxiliary stirring part 6 extends into the inner cavity of the can body 3. Specifically, the auxiliary stirring part 6 includes a first connecting section 61 and two second connecting sections 62. The two second connecting sections 62 are respectively connected to both ends of the first connecting section 61. The auxiliary stirring part 6 formed by the first connecting section 61 and the two second connecting sections 62 is integrally arranged in a U shape. In this embodiment, the first connecting section 61 and the two second connecting sections 62 are made by an integral molding process. The first connecting section 61 is located at the bottom of the emulsifying stirring device 5, and the first connecting section 61 fits and abuts against the bottom wall of the inner cavity of the can body 3. The two second connecting sections 62 are respectively located on opposite sides of the auxiliary stirring device. One end of the second connecting section 62 far from the first connecting section 61 extends to the top of the can body 3, and the second connecting sections 62 both fit and abut against the peripheral wall of the inner cavity of the can body 3.

[0061] A support pipe 42 is coaxially connected to the bottom of the can lid 4 corresponding to the auxiliary stirring part 6. The support pipe 42 is coaxially sleeved on the outer periphery of the stirring seat 50 of the emulsifying stirring device 5. A support ring 43 is coaxially rotatably connected to the outer periphery of the support pipe 42. The tops of the two second connecting sections 62 are both connected to the outer periphery of the support ring 43 through connecting pieces 621, so that the auxiliary stirring part 6 can rotate around the support pipe 42 through the support ring 43.

[0062] Through the arrangement of the auxiliary stirring part 6, when the subsequent rotary driving part 32 drives the can body 3 to drive the stirring blades 31 to rotate, the stirring blades 31 on the inner periphery of the can body 3 can drive the auxiliary stirring part 6 to rotate around the support pipe 42, so as to use the auxiliary stirring part 6 to assist in stirring and hitting the materials in the can body 3, which is beneficial to further promoting the dispersion and refinement of the materials in the can body 3; at the same time, by using the first connecting section 61 located at the bottom of the inner cavity of the can body 3 and the second connecting section 62 extending to the top of the can body 3, when the auxiliary stirring part 6 rotates, it can better stir the materials in the upper and lower areas of the can body 3, which is beneficial to further improving the fluidity of the materials inside the can body 3, reducing the generation of dead corners in the flow of the materials inside the can body 3, facilitating the better contact of the materials in the can body 3 with the stator 51 and the rotor 52 of the emulsifying stirring device 5, and being beneficial to the better emulsification and dispersion of the materials by the emulsifying stirring device 5.

[0063] An annular support plate 421 is coaxially connected to the outer periphery of the bottom end of the support pipe 42. An annular tetrafluoroethylene plate 45 and a connecting bearing 44 are also sleeved on the outer periphery of the support pipe 42. The annular tetrafluoroethylene plate 45 abuts against the annular support plate 421, and the bottom of the connecting bearing 44 is lapped on the annular tetrafluoroethylene plate 45; the support ring 43 is sleeved on the outer periphery of the connecting bearing 44 and the bottom of the support ring 43 abuts against the annular tetrafluoroethylene plate 45. The annular support plate 421 is used to assist in supporting and limiting the support ring 43 to prevent the support ring 43 from detaching from the support pipe 42. The connecting bearing 44 and the annular tetrafluoroethylene plate 45 are used to effectively reduce the friction between the support ring 43 and the support pipe 42 and the annular support plate 421, which is beneficial to the smooth rotation of the support ring 43 around the support pipe 42.

[0064] A number of limit bolts 431 are threadedly inserted through the outer periphery of the support ring 43, and the number of limit bolts 431 are evenly distributed around the axis of the support ring 43. Corresponding limit holes 422 are provided on the outer periphery of the support pipe 42 for the corresponding limit bolts 431 to be inserted. Before cleaning the tank body 3 subsequently, the lifting drive member 12 is used to drive the tank cover 4 to move upward, so as to move the emulsifying and stirring device 5 and the auxiliary stirring part 6 out of the tank body 3. Then, the stirring blades 31 are removed from the tank sleeve 2. Next, the support ring 43 is rotated until the limit bolts 431 on the support ring 43 are opposite to the corresponding limit holes 422 on the support pipe 42. By rotating the limit bolts 431 on the support ring 43, the limit bolts 431 are inserted into the limit holes 422, thereby restricting the auxiliary stirring part 6 from rotating around the support pipe 42 through the support ring 43. Then, the lifting drive member 12 is used to drive the tank cover 4 to drive the auxiliary stirring part 6 to move back into the tank body 3. When cleaning the tank body 3, the rotary drive member 32 is used to drive the tank body 3 to rotate, and in cooperation with the auxiliary stirring part 6, the materials adhered to the inner cavity of the tank body 3 are scraped off from the inner periphery of the tank body 3, facilitating the cleaning of the residual materials on the inner periphery of the tank body 3.

[0065] The implementation principle of the embodiment of the present application is as follows: While the emulsifying machine emulsifies and disperses the materials inside the tank body 3 through the emulsifying and stirring device 5, the rotary drive member 32 at the bottom of the tank sleeve 2 drives the tank body 3 to drive the stirring blades 31 to reciprocate forward and reverse. During the rotation of the stirring blades 31, the auxiliary stirring part 6 at the bottom of the tank cover 4 is driven to rotate, so as to assist in stirring and shearing the materials, and at the same time improve the fluidity of the materials inside the tank body 3, which is beneficial for the materials inside the tank body 3 to better contact the emulsifying and stirring device 5, effectively improving the emulsifying efficiency of the emulsifying machine.

[0066] The above are all the preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. An emulsifying machine for improving emulsification efficiency, characterized in that: It includes a frame (1), a tank sleeve (2), a tank body (3), a tank cover (4), and an emulsifying and stirring device (5); The tank sleeve (2) is supported on the frame (1); The tank body (3) is coaxially embedded in the tank sleeve (2); The tank body (3) is supported at the top opening of the tank sleeve (2) for sealing the top opening of the tank sleeve (2); The emulsifying and stirring device (5) is installed on the tank cover (4), and the emulsifying and stirring device (5) extends to the bottom of the inner cavity of the tank body (3); A plurality of stirring blades (31) are convexly provided on the peripheral wall of the inner cavity of the tank body (3), and a rotary driving member (32) is provided on the tank sleeve (2) corresponding to the tank body (3). The rotary driving member (32) is drivingly connected to the tank body (3) for driving the tank body (3) to rotate axially around its own axis; An auxiliary stirring part (6) is supported at the bottom of the tank cover (4), and the auxiliary stirring part (6) extends to the bottom of the inner cavity of the tank body (3); The auxiliary stirring part (6) includes a first connecting section (61) and two second connecting sections (62). The two second connecting sections (62) are respectively connected to both ends of the first connecting section (61); the first connecting section (61) is located at the bottom of the inner cavity of the tank body (3), and one end of the second connecting section (62) far from the first connecting section (61) extends to the top of the tank body (3); The first connecting section (61) is in close contact with the bottom wall of the inner cavity of the tank body (3), and the second connecting section (62) is in close contact with the peripheral wall of the inner cavity of the tank body (3); A support pipe (42) is coaxially supported at the bottom of the tank cover (4) corresponding to the auxiliary stirring part (6). A support ring (43) is rotatably connected to the outer periphery of the support pipe (42), and the top ends of the second connecting sections (62) are both connected to the support ring (43) through connecting pieces (621); The stirring blades (31) are connected to the tank body (3) through connecting pieces; A plurality of limit bolts (431) are threadedly inserted through the outer periphery of the support ring (43), and a plurality of limit holes (422) are provided on the outer periphery of the support pipe (42) corresponding to the plurality of limit bolts (431). The limit holes (422) are used for the corresponding limit bolts (431) to be inserted; through the setting of the auxiliary stirring part (6) at the bottom of the tank cover (4), while the tank body (3) drives the stirring blades (31) to stir the material, the stirring blades (31) can drive the auxiliary stirring part (6) to rotate around the support pipe (42) through the support ring (43), which is convenient for the auxiliary stirring part (6) to strike and stir the material in the tank body (3); when washing the tank body (3), after removing the stirring blades (31) from the tank body (3), by screwing the limit bolts (431) on the support ring (43) into the corresponding limit holes (422) on the support pipe (42), the rotation of the auxiliary stirring part (6) is restricted; driving the tank body (3) to rotate by the rotary driving member (32) and cooperating with the auxiliary stirring part (6) abutted against the inner cavity of the tank body (3) is beneficial to better scrape off the material adhered to the inner cavity of the tank body (3).

2. The emulsifying machine for improving emulsification efficiency according to claim 1, wherein: The frame (1) is provided with a lifting driving member (12) for driving the can lid (4) to lift vertically.

3. The emulsifying machine for improving emulsification efficiency according to claim 2, wherein: A gap is left between the inner circumference of the can sleeve (2) and the outer circumference of the can body (3), and the can sleeve (2) is communicated with a heat-conducting medium inlet pipe (22) and a heat-conducting medium outlet pipe (23).

4. An emulsifying machine for improving emulsification efficiency according to claim 3, characterized in that: The top of the can body (3) is sealingly and rotatably connected to the top of the can sleeve (2) through a first rotary seal (201).

5. An emulsifying machine for improving emulsification efficiency according to claim 3, characterized in that: A support (24) is provided at the bottom of the inner cavity of the can sleeve (2), and a number of universal balls (25) are arranged around the support (24), and the universal balls (25) abut against the bottom of the can body (3).

Citation Information

Patent Citations

  • Lubricating grease blending kettle

    CN107774224A

  • Air purifying agent liquid preparation tank

    CN211274446U

  • Emulsifying tank system

    CN212651722U