Processing equipment for toothpaste production
By designing toothpaste production processing equipment, using the rotation and rotation of the container and the stirring body, the problem of reducing mixing efficiency caused by material stratification in toothpaste production is solved, and a more efficient mixing and stirring effect is achieved.
Patent Information
- Application Number
- CN202510472234.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-04-16
AI Technical Summary
During the production process of toothpaste, the initial materials are prone to form a layered state, resulting in a decrease in mixing efficiency.
A processing equipment for toothpaste production is designed, including a support body, a container, a drive part, a transmission part, a rotary part and a stirring mechanism. Through the rotation of the container and the rotation of the agitator, the material can be turned over and stirred, ensuring that the solid and liquid materials are contacted and mixed quickly, and constantly changing the stirring point to improve mixing efficiency.
It effectively solves the problem of material layering and improves the mixing efficiency and stirring quality in the toothpaste production process.
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Figure CN119971840A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of mixers, in particular to processing equipment for toothpaste production. Background Art
[0002] A mixer is required during the production and processing of toothpaste. The raw materials are added into the mixer and mixed and stirred to form a paste-like substance.
[0003] In the initial stage of mixing, the solid ingredients (such as abrasives, thickeners) and liquid ingredients (such as moisturizers, water) need to be mixed separately.
[0004] The requirements for stirring and mixing of materials are different in different states. For example, when the material is still solid, it needs to be stirred at a low speed to avoid excessive friction in some areas. When the material is in the process of being mixed to a paste, the viscosity and fluidity of the material will also change during the stirring process. When the fluidity of the material is improved, it is suitable for high-speed stirring.
[0005] In the mixing process, the mixing of the powdered solid component and the liquid component in the initial stage is extremely important. However, since the two substances are generally added separately, a stratified state will be formed in the initial stage, resulting in a decrease in the initial mixing efficiency. For this reason, the present invention proposes a processing equipment for toothpaste production. Summary of the invention
[0006] In view of the problem in the above or prior art that the initial materials may form a stratified state, resulting in reduced initial mixing efficiency, the present invention is proposed.
[0007] Therefore, the object of the present invention is to provide a processing equipment for toothpaste production.
[0008] In order to solve the above technical problems, the present invention provides the following technical solutions: a processing equipment for toothpaste production, comprising: a support body; a accommodating member, the accommodating member is provided with a support shaft rotatably connected to the support body, and the support shaft is provided with an external gear; a driving member, the output end of the driving member is provided with a driving gear; a transmission member, which includes a turntable rotatably arranged on the support shaft, and a side tooth block arranged on the turntable, the turntable is provided with a protruding ring, and also includes an internal tooth block arranged in the protruding ring; a rotating member, which includes a rotating shaft rotatably arranged on the accommodating member, and a pinion arranged on the rotating shaft, and the rotating shaft is provided with a spiral groove; a stirring mechanism, which includes a sliding member slidably arranged on the spiral groove, and a stirring body arranged on the sliding member.
[0009] As a preferred solution of the processing equipment for toothpaste production of the present invention, wherein: the sliding member is provided with a first sliding rod and a second sliding rod, and the first sliding rod and the second sliding rod are both slidably connected to the spiral groove; there are two stirring mechanisms, and the two stirring mechanisms are symmetrically arranged on the outer wall of the rotating shaft; the support shaft is arranged deviating from the center line of the accommodating member.
[0010] As a preferred solution of the processing equipment for toothpaste production of the present invention, wherein: a fixed frame is provided on the support body; the driving member includes a driving shaft rotatably arranged on the fixed frame, a sliding rod is slidably arranged on one end of the driving shaft, a limiting sleeve is provided on the fixed frame, the outer wall of the sliding rod is rotatably connected with the sliding sleeve, and also includes a telescopic rod arranged on the fixed frame; the driving shaft is slidably connected to the driving gear through the sliding rod; the sliding sleeve is provided with positioning teeth; the tooth length of the inner gear block is greater than the tooth length of the outer gear.
[0011] As a preferred solution of the processing equipment for toothpaste production of the present invention, wherein: a friction disk is rotatably provided at one end of the driving gear; a circular groove is provided on the rotating disk; and an inner gear is provided on the outer wall of the supporting shaft.
[0012] As a preferred solution of the processing equipment for toothpaste production of the present invention, there are a plurality of circular grooves, and the plurality of circular grooves are distributed on the turntable in a circle with equal spacing.
[0013] As a preferred solution of the processing equipment for toothpaste production of the present invention, an expansion cavity is provided in the protruding ring.
[0014] As a preferred solution of the processing equipment for toothpaste production of the present invention, a transmission gear is provided on the outer surface of the accommodating part, the transmission gear is meshed with the pinion gear, and the transmission gear is meshed with the side gear block.
[0015] As a preferred embodiment of the processing equipment for toothpaste production of the present invention, the container comprises an outer shell and an inner shell, and a flow channel is provided between the outer shell and the inner shell; an end cover is provided at one end of the inner shell; the outer wall of the outer shell is connected to the support shaft; and a connecting end is provided at the end of the support shaft.
[0016] As a preferred solution of the processing equipment for toothpaste production of the present invention, wherein: the sliding part includes a first slip ring and a second slip ring slidably arranged on the outer wall of the rotating shaft; the first slip ring is connected to the first sliding rod, and the second slip ring is connected to the second sliding rod; the stirring body is arranged on the first slip ring and the second slip ring.
[0017] As a preferred solution of the processing equipment for toothpaste production of the present invention, the stirring body includes a first scraper arranged on the first slip ring, and a second scraper arranged on the second slip ring, and also includes an arc scraper arranged on the first scraper and the second scraper.
[0018] The beneficial effects of the toothpaste production processing equipment of the present invention: the present invention can make the material fall and flip as the container rotates, and stir it in conjunction with the rotation of the stirring body, so that the solid material can quickly contact and mix with the liquid material, and can also continuously change the stirring point, thereby improving the stirring quality and stirring efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other accompanying drawings can be obtained based on these accompanying drawings without paying creative work.
[0020] Figure 1 This is a schematic diagram of the overall structure of the processing equipment used in toothpaste production.
[0021] Figure 2 A cross-sectional view of processing equipment used in toothpaste production.
[0022] Figure 3 This is a schematic diagram of the structure of the transmission parts of the processing equipment used in toothpaste production.
[0023] Figure 4 This is a schematic diagram of the structure of the rotating parts of the processing equipment for toothpaste production in the upright state.
[0024] Figure 5 This is a schematic diagram of the structure of the stirring mechanism of the processing equipment used in toothpaste production.
[0025] Figure 6 This is a schematic diagram of the structure of the rotating parts of the processing equipment for toothpaste production in an inverted state.
[0026] In the figure: 1, support body; 11, fixing frame; 2, accommodating member; 21, support shaft; 211, external gear; 212, internal gear; 213, connecting end; 22, end cover; 23, outer shell; 24, inner shell; 3, driving member; 31, driving gear; 311, contact plate; 32, driving shaft; 33, sliding rod; 34, limiting sleeve; 35, sliding sleeve; 351, positioning tooth; 36, telescopic rod; 4, transmission member; 41, turntable; 411, circular groove ; 42. Side tooth block; 43. Protruding ring; 431. Expansion cavity; 44. Internal tooth block; 5. Rotating member; 51. Rotating shaft; 511. Spiral groove; 52. Pinion; 53. Transmission gear; 6. Stirring mechanism; 61. Sliding member; 611. First slide rod; 612. Second slide rod; 613. First slide ring; 614. Second slide ring; 62. Stirring body; 621. First scraper rod; 622. Second scraper rod; 623. Arc scraper rod; 624. Fixed ring. DETAILED DESCRIPTION
[0027] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below in conjunction with the accompanying drawings.
[0028] In the following description, many specific details are set forth to facilitate a full understanding of the present invention, but the present invention may also be implemented in other ways different from those described herein, and those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0029] Secondly, the term "one embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The term "in one embodiment" that appears in different places in this specification does not necessarily refer to the same embodiment, nor does it refer to a separate or selective embodiment that is mutually exclusive with other embodiments.
[0030] Example 1, reference Figures 1 to 6 , is the first embodiment of the present invention, which provides a processing equipment for toothpaste production, including a support body 1; the support body 1 is placed on the ground, a receiving part 2, the receiving part 2 is provided with a support shaft 21 rotatably connected to the support body 1, and the support shaft 21 is provided with an external gear 211; the support shaft 21 and the support body 1 are rotatably connected through a bearing, the support body 1 is used to support the support shaft 21, and the receiving part 2 is provided with two coaxial support shafts 21, through the setting of the support shaft 21, the receiving part 2 can be rotated relative to the support body 1, and the external gear 211 is fixed to the outer wall of the support shaft 21.
[0031] The driving member 3 has a driving gear 31 at its output end. The driving member 3 is disposed on the supporting body 1 . After the driving member 3 is connected to the driving motor, the driving gear 31 can be controlled to rotate.
[0032] The transmission member 4 includes a turntable 41 rotatably arranged on the support shaft 21, and a side tooth block 42 arranged on the turntable 41. The turntable 41 is provided with a protruding ring 43, and also includes an inner tooth block 44 arranged in the protruding ring 43; a plurality of side tooth blocks 42 distributed in a circle are arranged on the side of the turntable 41 close to the accommodating member 2, the protruding ring 43 is arranged on the side of the turntable 41 away from the accommodating member 2, and a plurality of inner tooth blocks 44 are distributed in a circle along the inner wall of the protruding ring 43, and the inner tooth block 44 can be meshed with the driving gear 31, and the rotation of the driving gear 31 can drive the inner tooth block 44 to move, thereby causing the turntable 41 to rotate, and the driving gear 31 can be meshed with the outer gear 211, and the rotation of the driving gear 31 can drive the outer gear 211 to rotate, thereby causing the accommodating member 2 to rotate.
[0033] The rotating member 5 includes a rotating shaft 51 rotatably arranged on the accommodating member 2, and a pinion 52 arranged on the rotating shaft 51, and a spiral groove 511 is arranged on the rotating shaft 51; the rotating shaft 51 passes through the accommodating member 2, and when the turntable 41 rotates, the side gear block 42 transmits power to enable the pinion 52 to rotate, thereby causing the rotating shaft 51 to rotate.
[0034] The stirring mechanism 6 includes a sliding member 61 slidingly arranged on the spiral groove 511 and a stirring body 62 arranged on the sliding member 61. The sliding member 61 can generate a spiral upward and downward sliding along the spiral groove 511, and the stirring body 62 can mix and stir the materials in the container 2.
[0035] When in use, the driving gear 31 engages the inner gear block 44 and the outer gear 211 at the same time. When the driving gear 31 rotates, it can drive the support shaft 21 and the turntable 41 to rotate. Therefore, when the driving gear 31 rotates, the accommodating part 2 will rotate, and under the rotation of the turntable 41, the rotating shaft 51 can be rotated, and then the stirring body 62 can be rotated to stir the internal material.
[0036] Since the solid material and liquid material in the container 2 will produce stratification after being added, during the stirring process of the device, the rotation of the container 2 can make the material fall and flip as the container 2 rotates, and the stirring body 62 is coordinated for rotation to stir, so that the solid material can quickly contact and mix with the liquid material, and the stirring point can be continuously changed to improve the stirring quality and efficiency.
[0037] Furthermore, since the sliding member 61 is slidingly arranged, during the rotation of the accommodating member 2, the stirring body 62 will slide on the outer wall of the rotating shaft 51 as the direction of gravity changes, thereby changing the position of the stirring body 62 and moving together with the material, thereby further improving the stirring quality and efficiency.
[0038] It should be noted that, refer to Figure 4 and Figure 6 After the receiving member 2 rotates to 180 degrees, the rotation direction of the rotating shaft 51 will be switched, for example, Figure 4 In the embodiment, when the rotating shaft 51 rotates clockwise, the stirring body 62 can increase the stirring force during stirring under the action of the spiral groove 511, and after the receiving part 2 rotates 180 degrees, referring to Figure 6 After the receiving part 2 rotates to one hundred and eighty degrees, the rotating shaft 51 will turn into counterclockwise rotation. At this time, the stirring body 62 can reduce the stirring force during stirring under the action of the spiral groove 511, and realize dynamic adjustment of the stirring force to ensure that excessive force is avoided during the stirring process to cause material deterioration, and to ensure the stirring efficiency.
[0039] Since the driving gear 31 is located inside the protruding ring 43 and meshes with the internal gear block 44, the rotation direction of the driving gear 31 is the same as the rotation direction of the turntable 41, and the driving gear 31 and the external gear 211 are meshed through the outer wall, so the rotation directions of the external gear 211 and the driving gear 31 are opposite. When the rotation angle of the accommodating component 2 is fixed, this transmission method can increase the rotation speed of the rotating shaft 51, and then increase the number of rotations of the rotating shaft 51 when the accommodating component 2 rotates slowly. The diameter of the turntable 41 is large, so the rotation speed of the rotating shaft 51 can also be increased.
[0040] Preferably, the support shaft 21 is set to deviate from the center line of the container 2. When the container 2 rotates, the pinion 52 has a larger rotation radius, so the diameter of the turntable 41 can be larger, further increasing the rotation speed of the rotating shaft 51. At the same time, since the support shaft 21 deviates from the center of the container 2, the efficiency of the material falling and moving is different during the rotation of the container 2. The material is located in the area with a large volume on one side of the support shaft 21 in the container 2, and the efficiency of the material falling during rotation will be slowed down. The material is located in the area with a small volume on one side of the support shaft 21 in the container 2, and the efficiency of the material falling during rotation will increase. Therefore, during the rotation process, due to the different material dropping efficiencies, the stirring efficiency can be further improved by cooperating with the stirring of the stirring body 62.
[0041] Since the support shaft 21 is set offset from the center line of the container 2, the height of the two ends of the container 2 from the ground will change during rotation. Therefore, it can also achieve the purpose of facilitating unloading. When unloading, the ends of the container 2 are away from the ground, which is convenient for placing the receiving container.
[0042] Specifically, the sliding member 61 is provided with a first sliding rod 611 and a second sliding rod 612 , and the first sliding rod 611 and the second sliding rod 612 are both slidably connected to the spiral groove 511 ; the first sliding rod 611 and the second sliding rod 612 are distributed in a spiral shape, so the sliding member 61 can slide along the spiral groove 511 .
[0043] Preferably, two stirring mechanisms 6 are provided, and the two stirring mechanisms 6 are symmetrically arranged on the outer wall of the rotating shaft 51 .
[0044] The advantages of two symmetrically arranged stirring mechanisms 6 are as follows: during actual stirring, the material will only fill a partial area of the container 2, preferably half of the capacity of the container 2. After the material is added, the lower stirring mechanism 6 will be buried by the material, and the upper stirring mechanism 6 will be half buried by the material. After the container 2 is flipped over, at least one stirring mechanism 6 can be kept in a buried state, thereby increasing the stirring efficiency. Moreover, when the stirring mechanisms 6 superimposed on each other are in a vertical state, the gravity can be increased, making it easier for them to enter the material for stirring.
[0045] Furthermore, a transmission gear 53 is provided on the outer surface of the accommodating part 2, and the transmission gear 53 is meshed with the pinion 52, and the transmission gear 53 is meshed with the side gear block 42. The setting of the transmission gear 53 can realize transmission of the pinion 52 to increase the rotation speed of the rotating shaft 51.
[0046] Example 2, reference Figure 1 to Figure 6 , which is the second embodiment of the present invention, is different from the previous embodiment in that a fixing frame 11 is provided on the support body 1; the fixing frame 11 is used to support the driving member 3.
[0047] The driving member 3 includes a driving shaft 32 rotatably arranged on the fixed frame 11, a sliding rod 33 is slidably arranged on one end of the driving shaft 32, a limiting sleeve 34 is provided on the fixed frame 11, and the outer wall of the sliding rod 33 is rotatably connected with a sliding sleeve 35, and also includes a telescopic rod 36 arranged on the fixed frame 11; the driving shaft 32 is used to connect with the driving motor, and the end of the sliding rod 33 inserted into the driving shaft 32 can be square or triangular in shape, so that the sliding rod 33 can only slide relative to the driving shaft 32 and cannot rotate relative to each other. The sliding sleeve 35 and the limiting sleeve 34 are slidably connected, and the two can only slide relative to each other and cannot rotate relative to each other; the driving shaft 32 is slidably connected to the driving gear 31 through the sliding rod 33; a positioning tooth 351 is provided on the sliding sleeve 35; the tooth length of the inner gear block 44 is greater than the tooth length of the outer gear 211, and the telescopic rod 36 can be an electric telescopic rod, a cylinder, a hydraulic rod, and a screw telescopic mechanism.
[0048] When in use, since the tooth length of the inner gear block 44 is greater than the tooth length of the outer gear 211, Figure 2, the sliding sleeve 35 is controlled to slide by the telescopic rod 36, so that the driving gear 31 can slide, and the driving gear 31 is kept in meshing state with the inner gear block 44, and the driving gear 31 and the outer gear 211 lose meshing. At this time, the positioning tooth 351 is stuck on the outer gear 211 to limit the outer gear 211. When the driving gear 31 rotates, the accommodating part 2 will not rotate, and the turntable 41 will still keep rotating. Therefore, the accommodating part 2 can remain stationary and the rotating shaft 51 can continue to rotate to stir and mix the materials inside. By locating the accommodating part 2 at different angles, the area of the upper surface of the material when it is stacked can be changed, thereby changing the contact area between the stirring body 62 and the material, so that the force applied to the stirring body 62 during stirring is changed, which is suitable for materials with different viscosities and fluidities, thereby improving the stirring efficiency and effect.
[0049] Example 3, reference Figure 1 to Figure 6 , which is the third embodiment of the present invention. Different from the previous embodiment, a contact plate 311 is rotatably provided at one end of the driving gear 31; the contact plate 311 can generate a rotational motion with the end of the driving gear 31, and no displacement can be generated between the two. A circular groove 411 is provided on the turntable 41; the size of the circular groove 411 matches the size of the contact plate 311, and an inner gear 212 is provided on the outer wall of the support shaft 21, and the inner gear 212 can mesh with the driving gear 31.
[0050] Specifically, a plurality of circular grooves 411 are provided, and the plurality of circular grooves 411 are distributed on the rotating disk 41 at equal intervals, so as to facilitate the insertion of the abutment disk 311 into the circular grooves 411 at different positions.
[0051] Furthermore, an expansion cavity 431 is provided in the protruding ring 43 . The provision of the expansion cavity 431 can increase the internal space of the protruding ring 43 to avoid contact with the driving gear 31 .
[0052] When in use, the driving gear 31 is controlled to move by the telescopic rod 36, so that the contact plate 311 is stuck in the circular groove 411, and the turntable 41 is positioned by the contact plate 311 clamping the circular groove 411. At this time, the driving gear 31 and the internal gear 212 are meshed, so that when the driving gear 31 rotates, the rotating shaft 51 does not rotate, and the container 2 rotates. Through the rotation of the container 2, the internal material can be turned over and dropped separately. In the corresponding turning process, if the material adheres to the inner wall of the container 2 and cannot fall off, the container 2 can be controlled to turn over 180 degrees first, and then the stirring mechanism 6 can be controlled to stir. The material will fall in the container 2, and under the action of gravity and the obstruction of the stirring body 62, the material will fall on the stirring body 62, which can break up the material.
[0053] Example 4, reference Figure 1 to Figure 6, which is the fourth embodiment of the present invention. Different from the previous embodiment, the container 2 includes an outer shell 23 and an inner shell 24, and a flow channel is provided between the outer shell 23 and the inner shell 24; an end cover 22 is provided at one end of the inner shell 24; the end cover 22 is installed on the container 2 by bolts or a quick-release structure, and can be disassembled and installed to facilitate unloading and adding of materials.
[0054] The outer wall of the outer shell 23 is connected to the support shaft 21; the end of the support shaft 21 is provided with a connecting end 213, and the connecting end 213 and the support shaft 21 are rotationally connected through a rotating shaft seal.
[0055] When in use, the connection end 213 is connected to the water pipe, and water of suitable temperature is added to the circulation channel through the connection end 213. The water flows into the circulation channel through the connection end 213 and the support shaft 21, and is then discharged from the connection end 213 on the other side. The temperature inside the inner shell 24 can be controlled to change the fluidity of the paste and facilitate stirring.
[0056] Since the water is located in the container 2, during the rotation of the container 2, the water will also flow in the circulation channel, so uniform heating can be achieved. Because the fluidity of the paste or material is relatively poor, the flow rate of the water will be better than that of the material stirred inside, so the setting of water can increase the stability of the container 2 and make its center of gravity more stable.
[0057] Example 5, reference Figure 1 to Figure 6 , which is the fifth embodiment of the present invention. Different from the previous embodiment, the sliding member 61 includes a first sliding ring 613 and a second sliding ring 614 which are slidably arranged on the outer wall of the rotating shaft 51; the first sliding ring 613 is connected to the first sliding rod 611, and the second sliding ring 614 is connected to the second sliding rod 612; the stirring body 62 is arranged on the first sliding ring 613 and the second sliding ring 614.
[0058] Specifically, the stirring body 62 includes a first scraper 621 disposed on the first sliding ring 613 , a second scraper 622 disposed on the second sliding ring 614 , and an arc scraper 623 disposed on the first scraper 621 and the second scraper 622 ; a fixing ring 624 is disposed on the first scraper 621 .
[0059] When in use, the symmetrically arranged stirring mechanism 6 can not only stir the internal material, but also scrape off the material attached to the inner wall of the inner shell 24 through the first scraper rod 621, the second scraper rod 622, and the arc scraper rod 623. When unloading, the rotation of the first scraper rod 621, the second scraper rod 622, and the arc scraper rod 623 can also assist in material dropping.
[0060] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit it. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, which should all be included in the scope of the claims of the present invention.
Claims
1. A processing equipment for toothpaste production, characterized in that: include, Support body (1); A receiving member (2), wherein the receiving member (2) is provided with a support shaft (21) rotatably connected to the support body (1), and the support shaft (21) is provided with an external gear (211); A driving member (3), wherein an output end of the driving member (3) is provided with a driving gear (31); A transmission member (4), comprising a rotating disk (41) rotatably disposed on the support shaft (21), and a side tooth block (42) disposed on the rotating disk (41), wherein the rotating disk (41) is provided with a protruding ring (43), and further comprising an inner tooth block (44) disposed within the protruding ring (43); A rotating member (5), comprising a rotating shaft (51) rotatably arranged on the accommodating member (2), and a pinion (52) arranged on the rotating shaft (51), wherein the rotating shaft (51) is provided with a spiral groove (511); The stirring mechanism (6) comprises a sliding member (61) slidably arranged on the spiral groove (511), and a stirring body (62) arranged on the sliding member (61).
2. The toothpaste production processing equipment according to claim 1, characterized in that: The sliding member (61) is provided with a first sliding rod (611) and a second sliding rod (612), and the first sliding rod (611) and the second sliding rod (612) are both slidably connected to the spiral groove (511); The stirring mechanisms (6) are provided with two, and the two stirring mechanisms (6) are symmetrically arranged on the outer wall of the rotating shaft (51); The support shaft (21) is arranged offset from the center line of the accommodating component (2).
3. The toothpaste production processing equipment according to claim 1 or 2, characterized in that: The support body (1) is provided with a fixing frame (11); The driving member (3) comprises a driving shaft (32) rotatably mounted on the fixing frame (11); a sliding rod (33) is slidably mounted on one end of the driving shaft (32); a limiting sleeve (34) is mounted on the fixing frame (11); a sliding sleeve (35) is rotatably connected to the outer wall of the sliding rod (33); and a telescopic rod (36) is mounted on the fixing frame (11); The driving shaft (32) is slidably connected to the driving gear (31) via a sliding rod (33); The sliding sleeve (35) is provided with positioning teeth (351); The tooth length of the inner gear block (44) is greater than the tooth length of the outer gear (211).
4. The toothpaste production processing equipment according to claim 3, characterized in that: A contact plate (311) is rotatably provided at one end of the driving gear (31); The rotating disk (41) is provided with a circular groove (411); An inner gear (212) is provided on the outer wall of the support shaft (21).
5. The toothpaste production processing equipment according to claim 4, characterized in that: A plurality of the circular grooves (411) are provided, and the plurality of circular grooves (411) are distributed on the rotating disk (41) at equal intervals.
6. The processing equipment for toothpaste production according to claim 5, characterized in that: An expansion cavity (431) is provided in the protruding ring (43).
7. The toothpaste production processing equipment according to claim 6, characterized in that: A transmission gear (53) is provided on the outer surface of the accommodating component (2); the transmission gear (53) is meshed with the pinion gear (52); and the transmission gear (53) is meshed with the side gear block (42).
8. The toothpaste production processing equipment according to claim 7, characterized in that: The accommodating element (2) comprises an outer shell (23) and an inner shell (24), and a flow channel is provided between the outer shell (23) and the inner shell (24); An end cover (22) is provided at one end of the inner shell (24); The outer wall of the outer shell (23) is connected to the support shaft (21); The end of the support shaft (21) is provided with a connecting end (213).
9. The toothpaste production processing equipment according to claim 2, characterized in that: The sliding member (61) comprises a first sliding ring (613) and a second sliding ring (614) which are slidably arranged on the outer wall of the rotating shaft (51); The first slip ring (613) is connected to the first sliding rod (611), and the second slip ring (614) is connected to the second sliding rod (612); The stirring body (62) is arranged on the first slip ring (613) and the second slip ring (614).
10. The toothpaste production processing equipment according to claim 9, characterized in that: The stirring body (62) comprises a first scraper rod (621) provided on the first slip ring (613), a second scraper rod (622) provided on the second slip ring (614), and also comprises an arc-shaped scraper rod (623) provided on the first scraper rod (621) and the second scraper rod (622).
Citation Information
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