Formula rapid reaction vacuum emulsification device
By introducing structures such as extrusion blocks, snap-fit components, and electro-hydraulic rods into the vacuum emulsification tank, the issues of sealing and stability are solved, achieving more efficient emulsification and easier cleaning.
Patent Information
- Application Number
- CN202520049000.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-09
AI Technical Summary
Existing vacuum emulsification tanks have poor sealing performance during operation, are prone to shaking, and lack stability.
It adopts a structure with extrusion blocks, snap-fit components and electro-hydraulic rods, and improves sealing and stability through the fixed connection and adjustment components of the can lid, and enhances emulsification efficiency through the stirring and shearing components.
It improves the sealing and stability of the vacuum emulsification tank, reduces shaking, and enhances emulsification efficiency and ease of cleaning.
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Figure CN223683460U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of vacuum emulsification, and specifically, it mainly relates to a formula quick reaction vacuum emulsification device. BACKGROUND
[0002] The vacuum emulsification machine utilizes the strong kinetic energy brought by the machine to make the material bear tens of thousands of times of liquid shear in the narrow gap of the stator and rotor every minute. At the same time, it is accompanied by comprehensive effects such as centrifugal extrusion, impact tearing, etc., so that the material is instantaneously uniformly dispersed and emulsified. After high-frequency cyclic reciprocation, a high-quality product without air bubbles, delicate and stable is finally obtained.
[0003] For example, the existing patent CN219252333U discloses a vacuum emulsification tank, which comprises an arc-shaped reinforcing rod. When in use, the whole device is provided with reliable support and anti-skid structure, i.e. four supports are arranged at the bottom of the tank body, and an arc-shaped reinforcing rod is arranged between the four supports. Meanwhile, an anti-skid base is fixedly connected to the bottom of each support. When the vacuum emulsification tank is used for long-time stirring work, even if the whole vacuum emulsification tank vibrates a lot, the tank body support of the support mechanism is still reliable. The sealing cover can be pulled down by holding two handles, so that the sealing ring at the bottom of the sealing cover is separated from the emulsification tank, the opening above the emulsification tank is opened, and the emulsification processing work in the emulsification tank is carried out by rotating the stirring paddle. The air pressure in the emulsification tank can be controlled by the air pressure controller. In addition, the whole vacuum emulsification tank adopts a structure design that is beneficial to cleaning, i.e. the stirring structure is arranged at the bottom of the sealing cover. After the stirring work in the vacuum emulsification tank is completed, the sealing cover structure can be removed to clean the stirring structure, and then the inside of the vacuum emulsification tank body can be cleaned. The cleaning convenience of the whole vacuum emulsification tank is good.
[0004] The above-mentioned device can directly remove the sealing cover by holding two handles, but the sealing performance is poor, and the device is prone to shaking during the work of the vacuum emulsification tank, so the stability needs to be improved. UTILITY MODEL CONTENTS
[0005] In view of the deficiencies of the prior art, the utility model provides a formula quick reaction vacuum emulsification device.
[0006] The utility model discloses a formula quick reaction vacuum emulsification device, including vacuum tank and setting at the top of vacuum tank's tank lid, the tank lid bottom fixedly connected with not less than four extrusion blocks, the top of vacuum tank is seted up with the extrusion groove for cooperation extrusion block carding.
[0007] The clamping assembly comprises a clamping groove and a clamping block, the clamping groove is opened in the bottom of the inner wall of the extrusion groove, the clamping block is slidably connected in the clamping groove, the bottom of the clamping block is connected with the bottom of the inner wall of the clamping groove through a spring, the top of the clamping block is rotatably connected with a rotating plate, one side of the rotating plate is fixedly connected with a fixed block, one side of the vacuum tank is provided with a fixed groove for matching the clamping of the fixed block, for fixing the extrusion block;
[0008] The support frame is arranged on both sides of the vacuum tank.
[0009] The adjusting assembly is installed on the support frame and is used for adjusting the rotation angle of the vacuum tank.
[0010] The stirring assembly is arranged in the tank cover and is used for stirring and mixing the liquid to be emulsified.
[0011] The two groups of electric hydraulic rods are installed on the support frame and are used for moving the tank cover up and down.
[0012] And
[0013] The shearing assembly is arranged at the bottom of the inner wall of the vacuum tank.
[0014] Preferably, the adjusting assembly comprises two groups of rotating rods and a rotating disc, the two groups of rotating rods are fixedly connected on both sides of the vacuum tank respectively, the rotating disc is fixedly connected on the end of the rotating rod away from the vacuum tank, the rotating rod is rotatably connected on one side of the support frame, the rotating disc is provided with a through hole, the support frame is provided with a plurality of groups of positioning holes corresponding to the through hole, and a group of positioning rods are screwed in the through hole and the corresponding positioning hole.
[0015] Preferably, the stirring assembly comprises a stirring rod and a stirring frame, the stirring rod is rotatably connected at the top of the inner wall of the tank cover, the stirring frame is fixedly connected on the stirring rod, and a first motor for driving the stirring rod to rotate is installed at the top of the tank cover.
[0016] Preferably, the two groups of electric hydraulic rods are installed on the top of the support frame, and the power output end piston rod of the electric hydraulic rod is fixedly connected on the top of the tank cover.
[0017] Preferably, the shearing assembly comprises a shearing head, the shearing head is rotatably connected at the bottom of the inner wall of the vacuum tank, and a second motor for driving the shearing head to rotate is installed at the bottom of the vacuum tank.
[0018] Preferably, the rotating direction of the stirring rod is opposite to the rotating direction of the shearing head, and the bottom of the stirring rod is not in contact with the shearing head.
[0019] Preferably, a feeding hopper is installed on the tank cover, and the cover body of the feeding hopper is made of glass.
[0020] Preferably, a base is fixedly connected on the bottom of the support frame.
[0021] Preferably, one side of the rotating plate is in sliding fit with one side of the inner wall of the extrusion groove.
[0022] Preferably, a plurality of groups of positioning hole arrays are arranged around the rotating rod
[0023] The beneficial effects of the present application are:
[0024] In the utility model, through the tank cover, extrusion block, extrusion groove, clamping assembly and electric hydraulic rod, the electric hydraulic rod starts to work, drives the tank cover to move downwards, the tank cover drives the extrusion block to move downwards, makes the extrusive block card into the extrusion groove, and presses the clamping block downwards, the clamping block moves downwards under stress and extrudes the spring, the clamping block drives the rotating plate to move in the extrusion groove, one side of the rotating plate is in sliding fit with one side of the inner wall of the extrusion groove, makes the rotating plate rotate, drives the fixed block to card into the fixed groove, fixes the tank cover, can improve the sealing property and stability, reduces the situation that the tank cover shakes when working.
[0025] In the utility model, through setting adjusting assembly, the angle of vacuum tank can be adjusted, makes the vacuum tank be inclined, facilitates the staff to the liquid after emulsification in the vacuum tank and discharges, simultaneously facilitates the cleaning to the vacuum tank and stirring assembly. BRIEF DESCRIPTION OF DRAWINGS
[0026] The drawings described herein are used to provide further understanding of the present application, constitute a part of the present application, the illustrative embodiments of the present application and the description thereof are used to explain the present application, and do not constitute improper limitation to the present application.In the drawings:
[0027] Figure 1 It is the structural schematic diagram of the utility model;
[0028] Figure 2 It is the structural schematic diagram of the utility model where the support frame is;
[0029] Figure 3 It is the structural schematic diagram of the utility model where the stirring rod is;
[0030] Figure 4 It is the structural schematic diagram of the utility model where the spring is.
[0031] In the drawings, 11, vacuum tank;12, tank cover;13, extrusion block;14, extrusion groove;15, clamping assembly;16, support frame;17, adjusting assembly;18, stirring assembly;19, electric hydraulic rod;20, shearing assembly;
[0032] 151, clamping groove;152, clamping block;153, spring;154, rotating plate;155, fixed block;156, fixed groove;
[0033] 171, rotating rod; 172, rotating disc; 173, through hole; 174, positioning hole; 175, positioning rod;
[0034] 181, stirring rod; 182, stirring frame; 183, first motor;
[0035] 201, shearing head; 202, second motor. DETAILED DESCRIPTION
[0036] In the following, a plurality of embodiments of the present application will be disclosed with reference to the drawings. For the purpose of clear illustration, a plurality of practical details will be described in the following description. However, it should be understood that these practical details should not be used to limit the present application. That is, in some embodiments of the present application, these practical details are not necessary. In addition, for the purpose of simplifying the drawings, some conventional structures and components will be shown in a simple schematic manner in the drawings.
[0037] It should be noted that all directional references, such as upper, lower, left, right, front, rear, etc., are in relation to the specific embodiment shown in the drawing and are used only for the purpose of illustration and explanation, and are not to be construed as limiting the present application. If the specific embodiment is changed, the directional references will also change accordingly.
[0038] In addition, in the present application, the description such as "first", "second", etc. is only for the purpose of description, and does not mean to particularly indicate the order or sequence, nor to limit the present application. It is merely for the purpose of distinguishing the components or operations described by the same technical terms, and cannot be understood as indicating or implying the relative importance of the technical features indicated or the number of technical features indicated. Therefore, the features limited by "first" and "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of a person skilled in the art. When the combination of technical solutions contradicts each other or cannot be realized, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.
[0039] In order to further understand the utility model content, characteristics and effects of the present application, the following embodiments are given, and are described in detail as follows with reference to the drawings:
[0040] Referring to Figure 1 and Figure 4 The non-woven fabric high-speed slitting device in the embodiment includes a vacuum tank 11 and a tank cover 12 arranged at the top of the vacuum tank 11, the bottom of the tank cover 12 is fixedly connected with not less than four extrusion blocks 13, and the top of the vacuum tank 11 is provided with extrusion grooves 14 for matching the extrusion blocks 13;
[0041] A clamping assembly 15, comprising a clamping groove 151 and a clamping block 152, the clamping groove 151 is arranged on the bottom of the inner wall of the extrusion groove 14, the clamping block 152 is slidably connected in the clamping groove 151, the bottom of the clamping block 152 is connected with the bottom of the inner wall of the clamping groove 151 through a spring 153, the top of the clamping block 152 is rotatably connected with a rotating plate 154, one side of the rotating plate 154 is fixedly connected with a fixed block 155, one side of the vacuum tank 11 is provided with a fixed groove 156 for matching the clamping of the fixed block 155, for fixing the extrusion block 13;
[0042] A support frame 16 is arranged on both sides of the vacuum tank 11;
[0043] An adjusting assembly 17 is installed on the support frame 16, for adjusting the rotation angle of the vacuum tank 11;
[0044] A stirring assembly 18 is arranged in the tank cover 12, for stirring and mixing the liquid to be emulsified;
[0045] Two groups of electric hydraulic rods 19 are installed on the support frame 16, for moving the tank cover 12 up and down;
[0046] And
[0047] A shearing assembly 20 is arranged on the bottom of the inner wall of the vacuum tank 11.
[0048] Referring to Figure 2 , the adjusting assembly 17 comprises two groups of rotating rods 171 and a rotating disc 172, the two groups of rotating rods 171 are fixedly connected on both sides of the vacuum tank 11, the rotating disc 172 is fixedly connected on the end of the rotating rod 171 away from the vacuum tank 11, the rotating rod 171 is rotatably connected on one side of the support frame 16, the rotating disc 172 is provided with a through hole 173, the support frame 16 is provided with a plurality of groups of positioning holes 174 corresponding to the through hole 173, and a group of positioning rods 175 are threadedly connected in the through hole 173 and the corresponding positioning hole 174, rotating the positioning rod 175 to make the positioning rod 175 disengage from the positioning hole 174, rotating the rotating disc 172 to drive the rotating rod 171 to rotate, and rotating the rotating rod 171 to drive the vacuum tank 11 to rotate, so that the emulsified liquid can be discharged, and the vacuum tank 11, the stirring rod 181 and the stirring frame 182 can be conveniently cleaned.
[0049] Referring to Figure 3The stirring assembly 18 comprises a stirring rod 181 and a stirring frame 182, the stirring rod 181 is rotationally connected to the top of the inner wall of the tank cover 12, the stirring frame 182 is fixedly connected to the stirring rod 181, the first motor 183 is installed on the top of the tank cover 12 and used to drive the stirring rod 181 to rotate, the first motor 183 starts to work, drives the stirring rod 181 to rotate, and the stirring rod 181 drives the stirring frame 182 to rotate, so that the liquid is mixed and stirred, and the emulsification efficiency can be improved.
[0050] With reference to Figure 2 The two groups of electric hydraulic rods 19 are installed on the top of the support frame 16, the power output end piston rod of the electric hydraulic rod 19 is fixedly connected to the top of the tank cover 12, the electric hydraulic rod 19 can be arranged to move the tank cover 12 up and down, and the discharge and cleaning of the vacuum tank 11 are facilitated.
[0051] With reference to Figure 3 The shearing assembly 20 comprises a shearing head 201, the shearing head 201 is rotationally connected to the bottom of the inner wall of the vacuum tank 11, the second motor 202 is installed on the bottom of the vacuum tank 11 and used to drive the shearing head 201 to rotate, the second motor 202 starts to work, drives the shearing head 201 to rotate, and the liquid is subjected to high-speed shearing emulsification.
[0052] Further, the rotating direction of the stirring rod 181 is opposite to that of the shearing head 201, the bottom of the stirring rod 181 is not in contact with the shearing head 201, and the rotating direction of the stirring rod 181 is opposite to that of the shearing head 201, so that the liquid mixing and emulsification time can be accelerated, and the emulsification efficiency is improved.
[0053] With reference to Figure 1 The tank cover 12 is provided with a feeding hopper, the cover of the feeding hopper is made of glass, and the cover made of glass can facilitate the observation of the emulsification of the liquid in the vacuum tank 11 by the staff.
[0054] With reference to Figure 1 The bottom of the support frame 16 is fixedly connected with a base, and the base can make the support frame 16 more stable.
[0055] With reference to Figure 4 One side of the rotating plate 154 is in sliding fit with one side of the inner wall of the extrusion groove 14, the one side of the rotating plate 154 is in sliding fit with the one side of the inner wall of the extrusion groove 14, so that the rotating plate 154 drives the fixed block 155 to be clamped into the fixed groove 156.
[0056] With reference to Figure 2Several sets of positioning holes 174 are arranged in an array around the rotating rod 171. By setting the positioning holes 174, the tilt angle of the vacuum tank 11 can be positioned, which facilitates the unloading and cleaning of materials by the staff.
[0057] In summary: When the vacuum tank 11 needs to be used, the electric hydraulic rod 19 starts working, moving the tank cover 12 downwards. The tank cover 12 moves the stirring assembly 18 downwards into the vacuum tank 11. The tank cover 12 moves the extrusion block 13 downwards, causing the extrusion block 13 to engage in the extrusion groove 14 and press down on the locking block 152. The locking block 152 moves downwards under force and compresses the spring 153. The locking block 152 moves the rotating plate 154 within the extrusion groove 14. One side of the rotating plate 154 slides against one side of the inner wall of the extrusion groove 14, causing the rotating plate 154 to rotate. This causes the fixing block 155 to engage in the fixing groove 156, fixing the tank cover 12 and improving the sealing performance. The liquid to be emulsified is then poured into the vacuum tank through the feed hopper. Inside the first motor 183, the first motor 183 starts working, driving the stirring rod 181 to rotate. The stirring rod 181 drives the stirring frame 182 to rotate, mixing and stirring the liquid. The second motor 202 starts working, driving the shear head 201 to rotate, performing high-speed shearing and emulsification of the liquid. After completion, the electric hydraulic rod 19 drives the tank cover 12 to move upward. The tank cover 12 drives the stirring assembly 18 to move upward. The positioning rod 175 is rotated to disengage from the positioning hole 174. The rotating turntable 172 drives the rotating rod 171 to rotate. The rotating rod 171 drives the vacuum tank 11 to rotate, which can discharge the emulsified liquid and facilitate the cleaning of the vacuum tank 11, stirring rod 181 and stirring frame 182 by the staff.
[0058] The above description is merely an embodiment of this utility model and is not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of this utility model should be included within the scope of the claims of this utility model.
Claims
1. A formulation rapid reaction vacuum emulsification device, characterized in that, The utility model relates to a kind of emulsification device, including Vacuum tank (11) and the tank cover (12) being arranged at the top of vacuum tank (11), the bottom of the tank cover (12) is fixedly connected with not less than four groups of extrusion block (13), the top of the vacuum tank (11) is equipped with extrusion slot (14) for cooperating with extrusion block (13) and is inserted; Clamping assembly (15), it includes clamping groove (151) and clamping block (152), the bottom of the inner wall of extrusion slot (14) is equipped with clamping groove (151), the clamping block (152) is slidably connected in clamping groove (151), the bottom of the clamping block (152) is connected with the bottom of the inner wall of clamping groove (151) by spring (153), the top of the clamping block (152) is rotatably connected with rotating plate (154), one side of the rotating plate (154) is fixedly connected with fixed block (155), one side of the vacuum tank (11) is equipped with fixed slot (156) for cooperating with fixed block (155) and is inserted, for the extrusion block (13) is fixed; Support frame (16) is arranged at the two sides of vacuum tank (11); Adjusting assembly (17) is installed on support frame (16), for adjusting the rotation angle of vacuum tank (11); Stirring assembly (18) is arranged in tank cover (12), for the liquid that needs to be emulsified is stirred and mixed; Two groups of electric hydraulic rods (19) are installed on support frame (16), for the up and down movement of tank cover (12); And Shearing assembly (20) is arranged at the bottom of the inner wall of vacuum tank (11).
2. The rapid response in-line vacuum emulsification device of claim 1, wherein, The adjusting assembly (17) includes two groups of rotating rods (171) and a rotating disc (172), two groups of the rotating rods (171) are fixedly connected at the two sides of the vacuum tank (11), the rotating disc (172) is fixedly connected at the end of the rotating rod (171) away from the vacuum tank (11), the rotating rod (171) is rotatably connected at one side of the support frame (16), the rotating disc (172) is provided with a through hole (173), the support frame (16) is provided with a plurality of groups of positioning holes (174) corresponding to the through hole (173), and a group of positioning rods (175) are screwed in the through hole (173) and the corresponding positioning hole (174).
3. The rapid response in-line vacuum emulsification device of claim 1, wherein, The stirring assembly (18) includes a stirring rod (181) and a stirring frame (182), the stirring rod (181) is rotatably connected at the top of the inner wall of the tank cover (12), the stirring frame (182) is fixedly connected on the stirring rod (181), and the first motor (183) for driving the stirring rod (181) to rotate is installed at the top of the tank cover (12).
4. The rapid response in-line vacuum emulsification device of claim 1, wherein, Two groups of the electric hydraulic rods (19) are installed at the top of the support frame (16), and the power output end piston rod of the electric hydraulic rod (19) is fixedly connected at the top of the tank cover (12).
5. The rapid response in-line vacuum emulsification device of claim 1, wherein, The shearing assembly (20) includes a shearing head (201), the shearing head (201) is rotatably connected at the bottom of the inner wall of the vacuum tank (11), and the second motor (202) for driving the shearing head (201) to rotate is installed at the bottom of the vacuum tank (11).
6. The rapid response in-line vacuum emulsification device of claim 3, wherein, The rotating direction of the stirring rod (181) is opposite to the rotating direction of the shearing head (201), and the bottom of the stirring rod (181) is not in contact with the shearing head (201).
7. The rapid response in-line vacuum emulsification device of claim 1, wherein, The feeding hopper is installed on the tank cover (12), and the cover body of the feeding hopper is made of glass.
8. The rapid response in-line vacuum emulsification device of claim 1, wherein, The support frame (16) is fixedly connected with the base at the bottom.
9. The rapid response in-line vacuum emulsification device of claim 1, wherein, One side of the rotating plate (154) is in sliding fit with one side of the inner wall of the extrusion groove (14).
10. The rapid response in-line vacuum emulsification device of claim 2, wherein, A plurality of groups of positioning holes (174) are arranged around the rotating rod (171).
Citation Information
Patent Citations
Vacuum emulsification tank
CN219252333U