Emulsifying equipment for producing emulsifiable paste

By introducing three-dimensional dynamic stirring and efficient circulation systems into the emulsification equipment, the problems of poor emulsification effect and low circulation efficiency are solved, and better emulsification effect and material dispersion are achieved.

CN120459876AInactive Publication Date: 2025-08-12YANGZHOU ZHONGHUI BIOTECH
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Patent Information

Application Number
CN202510819941.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-19
Publication Date
2025-08-12
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing emulsification equipment has the problem of poor emulsification effect and low circulation efficiency, especially when stirring, the materials at the edges and corners of the emulsification tank cannot be fully stirred, and the circulation pipe is prone to clogging.

Method used

An emulsified tank consisting of an upper end cover and a lower box is adopted. The first and second rotating shafts are provided on the turntable to drive the stirring parts to carry out three-dimensional dynamic movement, and efficient circulation of materials is achieved through the dispersion parts and the pump parts, including the design of arc-shaped blades and dispersion wheels to improve the stirring effect and circulation efficiency.

Benefits of technology

The emulsification effect and circulation efficiency are improved, and the materials at the edges and corners of the emulsification tank can be better mixed, avoiding the circulation pipe blockage, and meeting different production needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of emulsification, in particular to emulsification equipment for producing emulsifiable paste, the equipment comprises an emulsification tank, a turntable, at least two first rotating shafts annularly arranged along the edge of the turntable, a second rotating shaft rotatably mounted at one end, far away from the first rotating shafts, of a strip-shaped plate, and a stirring part fixedly mounted on the second rotating shaft; a plurality of circulating inlets are annularly formed in the edge of a bottom plate of the lower box body, a dispersing part which can ascend and descend and can disperse materials and enable the materials to flow back into the lower box body in the ascending state is installed at the center of the bottom plate of the lower box body in a sliding and penetrating mode, and the circulating inlets communicate with the dispersing part through hoses correspondingly; the hoses are jointly provided with pump parts used for sucking materials in the lower box body into the hoses, existing emulsifying equipment has the problems that the emulsifying effect is poor and the circulating efficiency is low, and the equipment is good in emulsifying effect and high in circulating efficiency.
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Description

Technical Field

[0001] The invention relates to the field of emulsification, and in particular to an emulsification device for producing cream. Background Art

[0002] Skin care products such as hand cream, body lotion, face cream, and prickly heat cream, as well as cosmetics such as concealer, blush, and highlighter, are widely used in daily life. The production process of these cream-textured skin care products and cosmetics usually includes emulsification. Emulsification refers to the phenomenon in which one liquid is evenly dispersed in another immiscible liquid in the form of extremely tiny droplets. A stable emulsion can be obtained by emulsifying the various raw materials using emulsifiers and other emulsification equipment.

[0003] Existing emulsification equipment usually includes an emulsification tank with a liquid inlet pipe at the top and a liquid discharge pipe at the bottom. The emulsification tank is provided with a stirring rod for stirring the raw materials into materials. The stirring rod is usually a rod with multiple stirring blades vertically mounted on one or more rods. A circulation pipe is usually provided between the top and bottom of the emulsification tank to facilitate the extraction of materials at the bottom of the emulsification tank and recirculation from the top of the emulsification tank to be stirred in the emulsification tank.

[0004] Due to the simple structure of the stirring rod, materials at the edges and corners of the emulsification tank cannot be fully stirred during actual mixing, resulting in uneven emulsification. The shear force generated by the stirring blade is also generally weak, which affects the emulsification effect. In addition, in the early stages of emulsification, the material often contains solid particles or clumps, which can easily cause blockage in the circulation pipe, affecting the normal operation of the equipment and reducing circulation.

[0005] Therefore, existing emulsification equipment has the problems of poor emulsification effect and low circulation efficiency. Summary of the Invention

[0006] The technical problem to be solved by the present invention is to overcome the shortcomings of the above-mentioned prior art and provide an emulsifying device for producing cream with good emulsification effect and high circulation efficiency.

[0007] The top of the discharging opening is connected with the up-down knob of the mixing cylinder, and the bottom of the discharging opening is connected with the up-down knob of the mixing cylinder, and the bottom of the mixing cylinder is connected with the up-down knob of the mixing cylinder.

[0008] As a further improvement of the present invention: a connecting column is fixedly installed on the top of the turntable, a vertical motor is fixedly installed on the top of the upper end cover, and the motor and the connecting column are connected through a first transmission member.

[0009] As a further improvement of the present invention: each first rotating shaft is transmission-connected to the connecting column.

[0010] As a further improvement of the present invention: the second rotating shaft is drivingly connected to the connecting column.

[0011] As a further improvement of the present invention: the stirring member includes three arc-shaped blades circumferentially arranged at the bottom of the second rotating shaft, and the arc-shaped blades include a small cross bar and three curved long small blades vertically fixedly installed at the bottom of the small cross bar.

[0012] Preferably, the dispersion component includes a fifth rotating shaft that can be raised and lowered and is detachably connected to the motor, a dispersion wheel is fixedly mounted on the fifth rotating shaft, a dispersion sleeve matching the dispersion wheel is connected to the outer surface of the dispersion wheel, the top of the fifth rotating shaft rotates through the top of the dispersion sleeve, a plurality of strip holes are provided on the outer surface of the dispersion sleeve corresponding to the dispersion wheel, a dispersion inlet column is provided below the dispersion wheel, the dispersion inlet column is fixedly mounted in the dispersion sleeve, an inlet matching the number of hoses is provided at the bottom of the dispersion inlet column, an outlet the same in number as the inlet is provided at the top of the dispersion inlet column, each inlet is connected to each outlet by a plurality of inclined arc channels respectively, the outlet end of each hose is connected to each inlet respectively, and the bottom of the fifth rotating shaft rotates through the dispersion inlet column.

[0013] Preferably, the pump element comprises an annular groove body fixedly mounted on the bottom of the lower box body, and an impeller capable of rotating in the up-down direction along with the rotation of the fifth rotating shaft is provided in the annular groove body.

[0014] Preferably, a short cylindrical spur gear is fixedly sleeved on the outside of the fifth rotating shaft, a long cylindrical spur gear meshing with the short cylindrical spur gear is arranged next to the short cylindrical spur gear, the top of the gear shaft of the long cylindrical spur gear passes through the top of the annular groove body and extends into the annular groove body, an eleventh gear is fixedly sleeved on the top of the gear shaft of the long cylindrical spur gear, and a third inner ring gear meshing with the eleventh gear is fixedly mounted on the impeller.

[0015] The present invention has the following beneficial effects: The emulsifying device provided by the present invention for producing creams has excellent emulsification effect and high circulation efficiency. When the turntable of the device rotates, the first rotating shaft and the strip plate rotate along with the turntable while rotating. The second rotating shaft rotates along with the strip plate and rotates vertically within the strip plate. As a result, the arc-shaped blades driven by the second rotating shaft have a three-dimensional dynamic motion trajectory similar to a spiral and sweeping motion. This not only expands the stirring coverage, stirring to locations that are blind spots of traditional stirring, but also generates high-frequency directional shearing with continuously changing shear directions, breaking the material into smaller particles, thereby achieving a better emulsification effect. The bottom plate of the lower housing of the device is circumferentially provided with multiple circulation inlets. Under the action of the pump, the material flows into the hose and then into the disperser, where it is dispersed and then flows back into the lower housing in a smaller state. Therefore, the material at the edge enters the disperser, where it is dispersed and then sprayed into the center of the lower housing, achieving dispersion of the material at different locations. The arrangement of the pump and disperser can improve the circulation efficiency of the device. At the same time, the equipment can emulsify only or disperse simultaneously to meet different production needs. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the overall structure of the present invention without the base frame, columns, and first telescopic member; Figure 3 This is an assembly diagram of the upper end cover, lower box, base frame, column, and first telescopic member in the present invention; Figure 4 This is an assembly diagram of the turntable, connecting column, motor, first transmission member, second transmission member, third transmission member, and stirring member in the present invention; Figure 5 A side view of the turntable, connecting column, motor, first transmission member, second transmission member, third transmission member, and stirring member in the present invention; Figure 6 This is a schematic diagram of the overall structure of the turntable, connecting column, motor, first transmission member, etc. in the present invention; Figure 7 It is a partial cross-sectional schematic diagram of the overall structure of the turntable, connecting column, second transmission member, etc. in the present invention; Figure 8Schematic diagram of the overall structure of the turntable, the third transmission member, etc. in the present invention; Figure 9 This is a schematic diagram of the overall structure of the turntable, the third transmission member, etc. from another angle in the present invention; Figure 10 Schematic diagram of the overall structure of the turntable, connection, third transmission member, etc. in the present invention; Figure 11 This is a schematic diagram of the overall structure of the turntable, connection, third transmission member, etc. from another angle in the present invention; Figure 12 Schematic diagram of the positional relationship between the motor and the disperser in the present invention; Figure 13 This is an assembly diagram of the disperser and the lower box body from a top view of the present invention; Figure 14 This is an assembly diagram of the fifth rotating shaft, driven clamping block, dispersion wheel, and dispersion inlet column in the present invention; Figure 15 It is a perspective diagram of the overall structure of the dispersion sleeve in the present invention; Figure 16 It is a perspective diagram of the overall structure of the dispersed inlet column in the present invention; Figure 17 This is a schematic diagram of the overall structure of the fifth rotating shaft, dispersion wheel, and short cylindrical spur gear in the present invention; Figure 18 This is an assembly diagram of the second telescopic member and the short cylindrical spur gear in the present invention; Figure 19 It is a partial structural diagram of the pump component in the present invention; Figure 20 Schematic diagram of the positional relationship among the lower box, pump, hose and dispersion member in the present invention; Figure 21 Schematic diagram of the positional relationship among the annular tank, the hose, the dispersion member, etc. in the present invention; The names of the components corresponding to the respective marks in the above drawings are: 101, upper end cover; 102, lower box body; 103, column; 104, base frame; 105, first telescopic member; 201, turntable; 202, connecting column; 203, first gear; 204, second gear; 205, third gear; 206, motor; 207, fourth gear; 301, first rotating shaft; 302, strip plate; 303, support arm; 304, first inner ring gear; 305, fifth gear; 306, sixth gear; 307, seventh gear; 401, second rotating shaft; 402, arc-shaped blade; 403, second inner ring gear; 404, eighth gear; 405, ninth gear; 406, tenth gear; 5. Hose; 6. Disperser; 601. Fourth rotating shaft; 602. Active clamping block; 603. Fifth rotating shaft; 604. Driven clamping block; 605. Disperser wheel; 606. Disperser sleeve; 607. Disperser inlet column; 608. Second telescopic member; 7. Pump components; 701. Annular groove body; 702. Impeller; 703. Short cylindrical spur gear; 704. Long cylindrical spur gear; 705. Eleventh gear; 706. Third inner ring gear. DETAILED DESCRIPTION

[0017] The specific embodiments of the present invention will be further described in detail below with reference to the accompanying drawings: A vertical telescopic member means that the telescopic end of the telescopic member is perpendicular to the ground, and a vertical motor means that the output shaft of the motor is perpendicular to the ground.

[0018] like Figure 1 、 Figure 2 、 Figure 3 As shown, the present invention provides an emulsifying device for producing cream, including an emulsifying tank consisting of an upper end cover 101 and a lower box body 102 that can be raised and lowered; the upper end cover 101 is fixedly mounted on the top of a base frame 104 through three columns 103, and two vertical first telescopic members 105 are fixedly mounted on the base frame 104, and the top ends of the telescopic ends of the two vertical first telescopic members 105 are fixedly connected to the lower box body 102, and the lower box body 102 is provided with sliders that can slide up and down on the three columns 103 respectively, and the columns 103 not only support the upper end cover 101, but also limit the sliding of the lower box body 102.

[0019] like Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8As shown, the upper end cover 101 includes a cylinder with a single-side opening facing downward, and a horizontally arranged circular ring plate fixedly mounted in the cylinder. A turntable 201 capable of rotating in the vertical direction is rotatably mounted in the circular ring plate of the upper end cover 101. The turntable 201 includes a plate arranged above the circular ring plate, and a plug capable of rotating in the vertical direction is rotatably mounted in the center hole of the circular ring plate. The top of the plug is fixedly connected to the bottom of the plate, and the plate and the plug constitute the turntable 201. The edge of the bottom of the plate is provided with multiple universal ball bearings, and the top of the circular ring plate is provided with an annular groove for the sliding of the multiple universal ball bearings. The rest of the bottom of the plate is in contact with the top of the circular ring plate, which plays a certain sealing role. At least two first rotating shafts 301 are circumferentially arranged along the edge of the turntable 201, capable of rotating up and down as the turntable 201 rotates. The bottom of the first rotating shaft 301 is fixedly connected to one end of a horizontally arranged strip plate 302. A second rotating shaft 401 is rotatably mounted on the end of the strip plate 302 away from the first rotating shaft 301, capable of rotating up and down as the turntable 201 rotates. A stirring member for stirring the material in the lower box 102 is fixedly mounted on the bottom of the second rotating shaft 401. The stirring member includes three arcuate blades 402 circumferentially arranged at the bottom of the second rotating shaft 401. The arcuate blades 402 include a small crossbar and three curved long blades fixed vertically at the bottom of the small crossbar. The three long blades are evenly distributed along the length of the small crossbar. A connecting column 202 is fixedly mounted on the top of the turntable 201, and a vertical motor 206 is fixedly mounted on the top of the upper end cover 101. The motor 206 is connected to the connecting column 202 via a first transmission member. The first transmission member includes a first gear 203 fixedly sleeved on the top of the connecting column 202. A second gear 204 is disposed adjacent to the first gear 203 and meshes with the first gear 203. A third gear 205 is fixedly sleeved on the top of the gear shaft of the second gear 204. A fourth gear 207 is fixedly sleeved on the top of the output shaft of the motor 206 and meshes with the third gear 205. The diameter of the third gear 205 is larger than the diameters of the fourth gear 207 and the second gear 204. The diameter of the first gear 203 is larger than the diameters of the fourth gear 207 and the second gear 204.

[0020] like Figure 2 、 Figure 3 、 Figure 7 、 Figure 8 、 Figure 9 、 Figure 10 、 Figure 11As shown, each first rotating shaft 301 is transmission-connected to the connecting column 202 in the first transmission member via a second transmission member. The second transmission member includes a first internal gear ring 304 fixedly mounted on the bottom of the top of the upper end cover 101. One end of a support arm 303 is rotatably mounted on each first rotating shaft 301. The end of each support arm 303, away from the first rotating shaft 301, is fixedly mounted on the connecting column 202. A fifth gear 305 is rotatably mounted on the top of the support arm 303, meshing with the first internal gear ring 304. The gear shaft of the fifth gear 305 rotates through the support arm 303 and extends below the support arm 303. A sixth gear 306 is fixedly sleeved on the bottom of the gear shaft of the fifth gear 305, located below the support arm 303. A seventh gear 307 is fixedly sleeved on the outside of the first rotating shaft 301 in each support arm 303, meshing with the sixth gear 306 in each support arm 303. The second rotating shaft 401 is transmission-connected to the connecting column 202 in the first transmission member via a third transmission member. The third transmission member includes a second inner gear ring 403 fixedly mounted on the bottom of the top of the upper end cover 101, and an eighth gear 404 meshing with the second inner gear ring 403 is rotatably mounted on the top of each first rotating shaft 301. The gear shaft of the eighth gear 404 passes through the first rotating shaft 301 and extends to the bottom of the first rotating shaft 301. The gear shaft of the eighth gear 404 is located at the bottom below the first rotating shaft 301 and is fixedly sleeved with a ninth gear 405. The bottom of the second rotating shaft 401 passes through the strip plate 302 and extends to the bottom of the strip plate 302. The second rotating shaft 401 is located at the bottom below the strip plate 302 and is fixedly sleeved with a tenth gear 406 meshing with the ninth gear 405.

[0021] like Figure 2 、 Figure 12 、 Figure 13 、 Figure 14 、 Figure 15 、 Figure 16 、 Figure 17 、 Figure 18As shown, a plurality of circulation inlets are provided in a circumferential direction along the edge of the bottom plate of the lower box body 102, and a dispersion member 6 which can be raised and lowered and can disperse the material and make the material flow back into the lower box body 102 when in the rising state is slidably installed at the center of the bottom plate of the lower box body 102, each circulation inlet is connected to the dispersion member 6 through a hose 5, and the dispersion member 6 includes a fifth rotating shaft 603 which can be raised and lowered and is detachably connected to the motor 206, and when the turntable 201 rotates, the fifth rotating shaft 603 can rotate in the up and down directions. A dispersion wheel 605 is fixedly mounted on the fifth rotating shaft 603. The dispersion wheel 605 includes a capped barrel fixedly sleeved on the outside of the fifth rotating shaft 603. The capped barrel includes a plate-shaped cap body and a barrel with double-sided openings vertically mounted on the bottom of the plate-shaped cap body. A plurality of inclined curved shear blades are vertically mounted along the annular direction of the bottom of the cap body of the capped barrel. A dispersion sleeve 606 matching the dispersion wheel 605 is connected to the outer surface of the dispersion wheel 605. The top of the fifth rotating shaft 603 rotates through the top of the dispersion sleeve 606 and extends into the lower box 102. A plurality of inclined curved shear blades are provided on the outer surface of the dispersion sleeve 606 corresponding to the dispersion wheel 605. The inclined strip holes are in opposite directions, and multiple curved shear blades can divide an inclined strip hole into multiple diamond-shaped holes. A dispersion inlet column 607 is provided below the dispersion wheel 605, and the dispersion inlet column 607 is fixedly installed in the dispersion sleeve 606. The bottom of the dispersion inlet column 607 is provided with an inlet that matches the number of hoses 5, and the top of the dispersion inlet column 607 is provided with an outlet that is consistent with the inlet. Each inlet is connected to each outlet through a plurality of inclined arc channels, and the outlet end of each hose 5 is connected to each inlet, and the bottom of the fifth rotating shaft 603 rotates through the dispersion inlet column 607. The output shaft of the motor 206 is coaxially connected to the fourth rotating shaft 601, and holes for the fourth rotating shaft 601 to pass through are provided on the connecting column 202 and the turntable 201. An active clamping block 602 is fixedly installed at the bottom of the fourth rotating shaft 601, and the fifth rotating shaft 603 is located directly below the active clamping block 602. A driven clamping block 604 is fixedly installed on the top of the fifth rotating shaft 603, which can be clamped with the active clamping block 602 and can rotate in the up and down directions when the active clamping block 602 rotates. The contact parts of the active clamping block 602 and the driven clamping block 604 are respectively provided with matching serrated patterns that can be clamped together; the bottom plate of the lower box body 102 is fixedly installed with a vertical second telescopic member 608 through the shelf, and the top of the telescopic end of the second telescopic member 608 passes through the bottom of the shelf and extends into the shelf, and the short cylindrical spur gear 703 is rotatably installed on the top of the telescopic end of the second telescopic member 608.

[0022] like Figure 2 、 Figure 3 、 Figure 17 、 Figure 18 、 Figure 19 、 Figure 20 、 Figure 21As shown, each hose 5 is commonly provided with a pump member 7 for sucking material from the lower housing 102 into each hose 5. The top of the annular groove 701 in the pump member 7 is fixedly connected to the bottom plate of the lower housing 102. The pump member 7 includes an annular groove 701 fixedly mounted on the bottom of the lower housing 102. The annular groove 701 is provided with an impeller 702 that can rotate in the vertical direction along with the rotation of the fifth rotating shaft 603. A short cylindrical spur gear 703 is fixedly sleeved on the outside of the fifth rotating shaft 603, and a long cylindrical spur gear 704 is provided next to the short cylindrical spur gear 703 and meshed with the short cylindrical spur gear 703. The top of the gear shaft of the long cylindrical spur gear 704 passes through the top of the annular groove body 701 and extends into the annular groove body 701. An eleventh gear 705 is fixedly sleeved on the top of the gear shaft of the long cylindrical spur gear 704, and a third inner ring gear 706 meshing with the eleventh gear 705 is fixedly mounted on the impeller 702.

[0023] The present invention operates as follows: After raw materials are added to the lower housing 102, the telescopic end of the first telescopic member 105 is controlled to extend, causing the lower housing 102 to gradually rise until it contacts the upper end cover 101, and the two are closed. At this point, emulsification can begin, and the motor 206 is activated. The output shaft of the motor 206 drives the fourth gear 207 to rotate, which in turn drives the third gear 205 to rotate. The third gear 205 drives the second gear 204 via the gear shaft, which in turn drives the connecting column 202 via the first gear 203, which in turn drives the turntable 201 to rotate. When the connecting column 202 rotates, it drives the arms 303 to rotate. As the arms 303 rotate, the fifth gear 305 on the arms 303 rotates vertically within the arms 303 by meshing with the first inner ring gear 304. The gear shaft of the fifth gear 305 drives the sixth gear 306 to rotate. The sixth gear 306, via the seventh gear 307, drives the first rotating shaft 301 to rotate vertically within the arms 303 and the turntable 201. The first rotating shaft 301 then drives the strip plates 302 to rotate. Simultaneously with the rotation of the arms 303, the eighth gear 404 also meshes with the second inner ring gear 403 and rotates vertically within the first rotating shaft 301, driving the ninth gear 405 to rotate. The ninth gear 405, via the tenth gear 406, drives the second rotating shaft 401, thereby rotating the three curved blades 402 about the central axis of the second rotating shaft 401. When the turntable 201 of the equipment rotates, the first rotating shaft 301 and the strip plate 302 will rotate while following the turntable 201. While the second rotating shaft 401 follows the rotation of the strip plate 302, it will also rotate in the up and down directions in the strip plate 302. In this way, the arc blade 402 driven by the second rotating shaft 401 will have a three-dimensional dynamic motion trajectory similar to "spiral + sweeping". The arc blade 402 has a very high degree of freedom of movement. Through the three-level motion of "turntable 201 revolution → first rotating shaft 301 rotation → second rotating shaft 401 azimuth rotation", the position of the arc blade 402 is constantly changing and the material is pushed to form a three-dimensional mixed flow of "horizontal circular flow + vertical spiral flow + radial radiation flow", which accelerates the circulation of the material and reduces the circulation period. At the same time, the composite motion of the arc blade 402 can also generate high-frequency directional shearing, and the shearing direction will constantly change, which can break the material into particles with smaller particle size.

[0024] Initially, the top of the dispersion sleeve 606 and the top of the bottom plate of the lower box body 102 are located at the same horizontal plane. When the material needs to be dispersed after emulsification for a period of time, the telescopic end of the second telescopic member 608 gradually extends, and the fifth rotating shaft 603 is driven to move upward by the short cylindrical spur gear 703. The dispersion wheel 605 moves upward with the fifth rotating shaft 603, and the dispersion inlet column 607 and the dispersion sleeve 606 move upward with the upward movement of the short cylindrical spur gear 703. The dispersion wheel 605, the dispersion inlet column 607, the dispersion sleeve 606, etc. are initially located in the center hole of the annular groove body 701. After rising, the dispersion wheel 605 and the upper section of the dispersion sleeve 606 gradually pass through The hole at the center of the bottom of the lower box body 102 reaches the lower box body 102; the short cylindrical spur gear 703 slides upward along the outer surface of the long cylindrical spur gear 704 as the fifth rotating shaft 603 rises until the active clamping block 602 is clamped with the driven clamping block 604. At this time, the bottom of the strip hole on the outer surface of the dispersion sleeve 606 is slightly higher than the top of the bottom plate of the lower box body 102. The dispersion sleeve 606 includes an upper section and a lower section. The dispersion wheel 605 is located in the upper section, and the dispersion inlet column 607 is located in the lower section. The diameter of the lower section is slightly larger than the diameter of the upper section. Therefore, the diameter of the lower section is also slightly larger than the diameter of the hole on the bottom plate of the lower box body 102 for the upper section of the dispersion sleeve 606 to pass through. When the motor 206 is in the started state, it drives the connecting column 202 and the turntable 201 to rotate through the first transmission member, and its output shaft drives the fourth shaft 601 to rotate, thereby driving the active clamping block 602 to rotate, and the active clamping block 602 drives the fifth shaft 603 to rotate through the driven clamping block 604. When the fifth shaft 603 rotates, the short cylindrical spur gear 703 rotates with the rotation of the fifth shaft 603, driving the long cylindrical spur gear 704 to rotate, and the long cylindrical spur gear 704 drives the eleventh gear 705 to rotate, and the eleventh gear 705 drives the impeller 702 to rotate through the third inner gear ring 706. When the wheel 702 rotates, the material in the lower box 102 will be sucked into each hose 5 from each circulation inlet. After flowing through the annular groove body 701, it will finally flow into the inlet of the dispersion inlet column 607 from the outlet end of each hose 5. After flowing through the arc channel, it will flow into the upper section of the dispersion sleeve 606 from the outlet of the dispersion inlet column 607. The dispersion wheel 605 rotates in the upper section of the dispersion sleeve 606 as the fifth rotating shaft 603 rotates. The curved shear blade of the dispersion wheel 605 shears the material, and the material will be thrown out from the diamond hole formed by the curved shear blade and the strip hole under the action of centrifugal force, so as to better achieve the purpose of dispersion.

Claims

1. An emulsifying device for producing cream, characterized in that, The emulsifying tank comprises an upper end cover (101) and a lower box body (102) capable of being raised and lowered; a turntable (201) capable of rotating in an up-down direction is rotatably mounted in the upper end cover (101); at least two first rotating shafts (301) capable of rotating in an up-down direction along with the rotation of the turntable (201) are circumferentially arranged along the edge of the turntable (201); the bottom of the first rotating shaft (301) is fixedly connected to one end of a horizontally arranged strip plate (302); a second rotating shaft (401) capable of rotating in an up-down direction along with the rotation of the turntable (201) is rotatably mounted on one end of the strip plate (302) away from the first rotating shaft (301); and a stirring member is fixedly mounted on the bottom of the second rotating shaft (401); A plurality of circulation inlets are provided along the edge of the bottom plate of the lower box (102). A dispersion member (6) is installed in a sliding manner through the center of the bottom plate of the lower box (102). The dispersion member (6) is capable of being raised and lowered and can disperse the material and allow the material to flow back into the lower box (102) when in an ascending state. Each circulation inlet is connected to the dispersion member (6) through a hose (5). Each hose (5) is provided with a pump member (7) for sucking the material in the lower box (102) into each hose (5).

2. An emulsifying device for producing cream according to claim 1, characterized in that, A connecting column (202) is fixedly mounted on the top of the turntable (201), and a vertical motor (206) is fixedly mounted on the top of the upper end cover (101). The motor (206) and the connecting column (202) are connected in transmission via a first transmission member.

3. An emulsifying device for producing cream according to claim 2, characterized in that, Each of the first rotating shafts (301) is transmission-connected to the connecting column (202).

4. The emulsifying device for producing cream according to claim 3, characterized in that: The second rotating shaft (401) is in transmission connection with the connecting column (202).

5. An emulsifying device for producing cream according to any one of claims 1 to 4, characterized in that: The stirring member comprises three arc-shaped blades (402) arranged circumferentially at the bottom of the second rotating shaft (401), and the arc-shaped blades (402) comprise a small crossbar and three curved long small blades fixedly mounted vertically at the bottom of the small crossbar.

6. The emulsifying device for producing cream according to claim 2, characterized in that: The dispersing member (6) includes a fifth rotating shaft (603) that can be raised and lowered and is detachably connected to the motor (206). A dispersing wheel (605) is fixedly mounted on the fifth rotating shaft (603). A dispersing sleeve (606) matching the dispersing wheel (605) is connected to the outer surface of the dispersing wheel (605). The top of the fifth rotating shaft (603) rotates through the top of the dispersing sleeve (606). A plurality of strip-shaped holes are opened on the outer surface of the dispersing sleeve (606) corresponding to the dispersing wheel (605). The bottom of the dispersing wheel (605) is provided with a plurality of strip-shaped holes. A dispersion inlet column (607) is provided, and the dispersion inlet column (607) is fixedly installed in the dispersion sleeve (606). The bottom of the dispersion inlet column (607) is provided with inlets matching the number of the hoses (5). The top of the dispersion inlet column (607) is provided with outlets matching the number of the inlets. Each inlet is connected to each outlet through a plurality of inclined arc-shaped channels. The outlet end of each hose (5) is connected to each inlet. The bottom of the fifth rotating shaft (603) rotates and penetrates the dispersion inlet column (607).

7. The emulsifying device for producing cream according to claim 6, characterized in that: The pump component (7) comprises an annular groove body (701) fixedly mounted on the bottom of the lower box body (102), wherein an impeller (702) capable of rotating in an up-down direction along with the rotation of the fifth rotating shaft (603) is provided in the annular groove body (701).

8. The emulsifying device for producing cream according to claim 7, characterized in that: A short cylindrical spur gear (703) is fixedly sleeved on the outside of the fifth rotating shaft (603), a long cylindrical spur gear (704) meshing with the short cylindrical spur gear (703) is provided next to the short cylindrical spur gear (703), the top of the gear shaft of the long cylindrical spur gear (704) passes through the top of the annular groove body (701) and extends into the annular groove body (701), an eleventh gear (705) is fixedly sleeved on the top of the gear shaft of the long cylindrical spur gear (704), and a third inner gear ring (706) meshing with the eleventh gear (705) is fixedly installed on the impeller (702).