Homogenizer suitable for various materials
By using an automatic stator replacement and a dual-station homogenization mechanism, the problem of low efficiency in existing homogenizers when processing solutions of different concentrations is solved, realizing automated replacement and continuous homogenization, and improving overall efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 焙科智能装备科技(无锡)有限公司
- Filing Date
- 2026-02-03
- Publication Date
- 2026-04-17
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing homogenizers require manual stator replacement when processing solutions of different concentrations, resulting in low efficiency.
A homogenizer suitable for various materials was designed. It adopts an automatic stator replacement mechanism and a dual-station homogenization mechanism to realize automatic stator replacement and container sealing, and supports continuous homogenization of multiple containers.
This technology enables stator replacement without manual intervention, improving processing efficiency, preventing liquid splashing, and enhancing homogenization efficiency.
Smart Images

Figure CN121869131A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of homogenizer technology, and more specifically to a homogenizer suitable for a variety of materials. Background Technology
[0002] Laboratory homogenizers are specialized equipment designed for processing small batches of samples in laboratories. Their core function is to break down and refine heterogeneous solid-liquid or liquid-liquid mixtures and mix them thoroughly using high-pressure impact, shearing, grinding, or ultrasonic vibration, so that the materials form a stable and uniform dispersion system. They are widely used in sample pretreatment in fields such as biological experiments and pharmaceutical research and development, providing a uniform and consistent base sample for subsequent analysis and research.
[0003] Chinese patent CN223287986U discloses a homogenizer, including a base plate, a vertical plate, an electric slide table, and a homogenizer body. The vertical plate is fixed to the top of the base plate, the electric slide table is installed on the outer wall of one side of the vertical plate, the homogenizer body is installed on the sliding component of the electric slide table, and a bent plate is fixedly installed on the other side of the vertical plate. After homogenizing two different solutions using the homogenizer body, the bottom of the homogenizer head can be thoroughly rinsed by nozzles arranged in a ring, achieving high rinsing efficiency and removing residual solution from the head. After rinsing, a motor drives gears to rotate, causing the annular shell and annular tube to interchange heights, allowing the annularly arranged air outlets to surround the head. Hot air is then used to dry the head, achieving high drying efficiency and automatically cleaning and drying the head. The rinsing position does not need to be adjusted during the cleaning process, making it more convenient. However, this device still has the following problems.
[0004] When homogenizing solutions of different concentrations, different stators need to be replaced, and the device still requires manual replacement, which is quite time-consuming when homogenizing solutions of different concentrations.
[0005] Based on this, the present invention designs a homogenizer suitable for a variety of materials to solve the above problems. Summary of the Invention
[0006] In view of the above-mentioned shortcomings of the existing technology, the present invention provides a homogenizer suitable for a variety of materials.
[0007] To achieve the above objectives, the present invention provides the following technical solution: A homogenizer suitable for various materials, comprising a substrate and a homogenizer body; The substrate is fixedly connected to the lower end of the second fixing rod; the second fixing rod is fixedly connected to the linear module; the homogenizer body is fixedly connected to the drive end of the linear module. An automatic stator replacement mechanism for automatically replacing the stator is mounted on the substrate. The substrate is also equipped with a dual-station homogenization mechanism for sealing the container during homogenization. The automatic stator replacement mechanism includes a rotary drive assembly, a stator replacement assembly, a transmission ring reset assembly, a T-block reset assembly, and a stator mounting assembly. The base plate, stator replacement assembly, and stator mounting assembly are all connected to the rotary drive assembly. The transmission ring reset assembly, stator mounting assembly, and second fixing rod are all connected to the stator replacement assembly. The T-block reset assembly is connected to the homogenizer body. The rotary drive assembly is used to automatically disassemble the stator that needs to be replaced; the transmission ring reset assembly and the T-block reset assembly are used to limit the movement of the stator replacement assembly during stator installation and removal; the stator mounting assembly is used to install the stator. Furthermore, the rotary drive assembly includes a first motor, a first gear, a second gear, a rotating sleeve, and a rotating disk; the first motor is fixedly connected to the base plate; the drive end of the first motor is fixedly connected to the first gear; the first gear and the second gear are meshed; the second gear is fixedly connected to the rotating sleeve; the rotating sleeve is sleeved on the outside of the second fixed rod; the rotating sleeve is rotatably connected to the second fixed rod; the upper end of the rotating sleeve is fixedly connected to the rotating disk; the stator replacement assembly and the stator mounting assembly are both connected to the rotating disk. Furthermore, the stator replacement assembly includes a drive wedge, a transmission ring, a first transmission block, a T-shaped locking block, and a detachable stator; multiple drive wedges are fixedly mounted in a circumferential array on the upper end of the rotating disk; the transmission ring is connected to a transmission ring reset assembly; multiple first transmission blocks are fixedly connected in a circumferential array on the inner side of the transmission ring; the T-shaped locking block is connected to a T-shaped block reset assembly; the T-shaped locking block corresponds one-to-one with the first transmission block; multiple positioning slots for positioning the detachable stator are formed in a circumferential array on the detachable stator. Furthermore, the outer side of the transmission ring is provided with a first inclined surface that cooperates with the drive inclined block; the inner side of the first transmission block is provided with a second inclined surface that cooperates with the T-shaped locking block; the upper end of the T-shaped locking block is provided with a third inclined surface that cooperates with the second inclined surface; and the lower end of the T-shaped locking block is provided with a fourth inclined surface that cooperates with the detachable stator for installation. Furthermore, the transmission ring reset assembly includes a first limiting rod and a first spring. The upper end of each first transmission block is fixedly connected to a first limiting rod. The first limiting rod is slidably connected to the lower end of the homogenizer body. The first spring is sleeved on the outside of the first limiting rod. The lower end of the first spring is fixedly connected to the homogenizer body. The upper end of the first spring is fixedly connected to the first limiting rod. Furthermore, the T-block reset assembly includes a second limiting rod and a second spring; one end of the second limiting rod is fixedly connected to the T-block; the other end of the second limiting rod is slidably connected to the homogenizer body; a second spring is sleeved on the outside of the second limiting rod; one end of the second spring is fixedly connected to the T-block; the other end of the second spring is fixedly connected to the homogenizer body. Furthermore, the stator mounting assembly includes a first electric push cylinder, a stator placement bucket, and a connecting plate; the first electric push cylinder is fixedly connected to the rotating disk; the drive end of the first electric push cylinder is fixedly connected to the connecting plate; the outer wall of the stator placement bucket is slidably connected to the rotating disk; the connecting plate is fixedly connected to the stator placement bucket; multiple positioning blocks are fixedly installed inside the stator placement bucket for positioning the detachable stator in conjunction with positioning slots; the multiple positioning blocks are arranged in a circumferential array, and the adjacent sides of the positioning blocks and positioning slots are provided with rounded corners for guidance; Furthermore, the dual-station homogenization mechanism includes a dual-station switching component and a container cap assembly; the dual-station switching component is used to switch the container to be homogenized; the container cap assembly is used to seal the upper end of the container; both the dual-station switching component and the container cap assembly are connected to the base plate; the container cap assembly is connected to the homogenizer body. Furthermore, the dual-station switching assembly includes a moving plate and a second electric cylinder; a limiting groove is formed on the base plate; the lower end of the moving plate is slidably connected to the base plate through the limiting groove; two container placement slots are formed on the upper end of the moving plate; the moving plate is fixedly connected to the driving end of the second electric cylinder; the second electric cylinder is fixedly connected to the base plate. Furthermore, the container cap assembly includes a drive plate, a cover plate, a first fixing rod, and a third spring; the drive plate is fixedly connected to the homogenizer body; the lower end of the first fixing rod is fixedly connected to the base plate; the upper end of the first fixing rod is slidably connected to the cover plate, and the cover plate has an avoidance hole for avoiding the drive end of the homogenizer body; the upper end of the first fixing rod is fitted with the third spring; the upper end of the third spring is fixedly connected to the cover plate, and the lower end of the third spring is fixedly connected to the first fixing rod.
[0008] To better achieve the objectives of this invention, this invention also provides a homogenizer suitable for a variety of materials to solve the above-mentioned problems.
[0009] Compared with the prior art, the beneficial effects of this invention are: 1. This invention can automatically replace the stator without manual intervention, thus improving processing efficiency; 2. The present invention can also achieve the simultaneous homogenization of the container and sealing of the upper part of the container to prevent liquid from splashing out during homogenization. 3. The present invention can also achieve continuous homogenization of multiple containers during homogenization by using a dual-station system, thereby improving homogenization efficiency. Attached Figure Description
[0010] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0011] Figure 1 This invention provides a three-dimensional homogenizer suitable for various materials. Figure 1 ; Figure 2 This is a front view of a homogenizer applicable to various materials according to the present invention; Figure 3 This invention provides a three-dimensional homogenizer suitable for various materials. Figure 2 ; Figure 4 This invention provides a three-dimensional homogenizer suitable for various materials. Figure 3 ; Figure 5 This invention relates to a partial three-dimensional homogenizer suitable for various materials. Figure 1 ; Figure 6 This invention relates to a partial three-dimensional homogenizer suitable for various materials. Figure 2 ; Figure 7 For along Figure 2 A partial 3D view after a portion of the AA direction has been removed; Figure 8 for Figure 7 Enlarged view of point B in the middle.
[0012] The labels in the diagram represent: 1. Base plate; 2. Automatic stator replacement mechanism; 21. Rotary drive assembly; 211. First motor; 212. First gear; 213. Second gear; 214. Rotating sleeve; 215. Rotating disk; 22. Stator replacement assembly; 221. Drive wedge; 222. Transmission ring; 2221. First inclined surface; 223. First transmission block; 2231. Second inclined surface; 224. T-shaped locking block; 2241. Third inclined surface; 2242. Fourth inclined surface; 225. Demountable stator; 226. Positioning slot; 23. Transmission ring reset assembly; 231. First limit rod; 232. First spring; 2 4. T-block reset assembly; 241. Second limit rod; 242. Second spring; 25. Stator mounting assembly; 251. First electric push cylinder; 252. Stator placement bucket; 253. Connecting plate; 254. Positioning block; 3. Dual-station homogenizing mechanism; 31. Dual-station switching assembly; 311. Moving plate; 312. Second electric cylinder; 313. Limiting slide groove; 314. Container placement groove; 32. Container cap assembly; 321. Drive plate; 322. Cover plate; 323. Clearance hole; 324. First fixing rod; 325. Third spring; 4. Homogenizer body; 5. Linear module; 6. Second fixing rod. Detailed Implementation
[0013] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0014] The terms "left," "right," "front," "back," "up," and "down" used in the following description refer to the orientation from the perspective of the front view.
[0015] Example 1: In some embodiments, please refer to the accompanying drawings. Figures 1-8 A homogenizer suitable for various materials, comprising a substrate 1 and a homogenizer body 4; The substrate 1 is fixedly connected to the lower end of the second fixing rod 6; the second fixing rod 6 is fixedly connected to the linear module 5; the homogenizer body 4 is fixedly connected to the drive end of the linear module 5. The base plate 1 is equipped with an automatic stator replacement mechanism 2 for automatically replacing the stator; The substrate 1 is also equipped with a dual-station homogenization mechanism 3 for sealing the container during homogenization. The automatic stator replacement mechanism 2 includes a rotary drive assembly 21, a stator replacement assembly 22, a transmission ring reset assembly 23, a T-block reset assembly 24, and a stator mounting assembly 25. The base plate 1, the stator replacement assembly 22, and the stator mounting assembly 25 are all connected to the rotary drive assembly 21. The transmission ring reset assembly 23, the stator mounting assembly 25, and the second fixing rod 6 are all connected to the stator replacement assembly 22. The T-block reset assembly 24 is connected to the homogenizer body 4. The rotary drive assembly 21 is used to automatically disassemble the stator that needs to be replaced. The transmission ring reset assembly 23 and the T-block reset assembly 24 are used to limit the stator replacement assembly 22 when disassembling and assembling the stator. The stator mounting assembly 25 is used to install the stator.
[0016] In this invention, when the operator needs to replace the stator, the dual-station homogenizing mechanism 3 is first used to replace the container filled with clean water and move it to the bottom of the homogenizer body 4. The linear module 5 drives the drive end of the homogenizer body 4 into the container and seals the container through the dual-station homogenizing mechanism 3 to prevent liquid from splashing out. Then, the drive end of the homogenizer body 4 starts to perform self-cleaning in clean water. After cleaning, the homogenizer body 4 is reset. The dual-station homogenizing mechanism 3 drives the container of clean water to the unloading position. Then, the rotary drive assembly 21 is started, and the stator replacement assembly 22 is driven to automatically disassemble the stator of the homogenizer body 4 under the limit of the transmission ring reset assembly 23 and the T-block reset assembly 24. After the stator is disassembled, the rotary drive assembly 21 and the stator installation assembly 25 cooperate to install the stator corresponding to the concentration of the solution to be mixed.
[0017] Example 2: In some embodiments, such as Figures 1-8 As shown, in a preferred embodiment of the present invention, the rotary drive assembly 21 includes a first motor 211, a first gear 212, a second gear 213, a rotating sleeve 214, and a rotating disk 215; the first motor 211 is fixedly connected to the base plate 1; the drive end of the first motor 211 is fixedly connected to the first gear 212; the first gear 212 is meshed with the second gear 213; the second gear 213 is fixedly connected to the rotating sleeve 214; the rotating sleeve 214 is sleeved on the outside of the second fixed rod 6; the rotating sleeve 214 is rotatably connected to the second fixed rod 6; the upper end of the rotating sleeve 214 is fixedly connected to the rotating disk 215; the stator replacement assembly 22 and the stator mounting assembly 25 are both connected to the rotating disk 215. The stator replacement assembly 22 includes a drive wedge 221, a transmission ring 222, a first transmission block 223, a T-shaped locking block 224, and a detachable stator 225; multiple drive wedges 221 are fixedly mounted in a circumferential array on the upper end of the rotating disk 215; the transmission ring 222 is connected to the transmission ring reset assembly 23; the outer side of the transmission ring 222 has a first inclined surface 2221 that cooperates with the drive wedge 221; multiple first transmission blocks 223 are fixedly connected in a circumferential array on the inner side of the transmission ring 222; the inner side of the first transmission block 223... A second inclined surface 2231 is provided to cooperate with the T-shaped locking block 224; the T-shaped locking block 224 is connected to the T-shaped block reset assembly 24; the T-shaped locking block 224 corresponds one-to-one with the first transmission block 223; a third inclined surface 2241 is provided at the upper end of the T-shaped locking block 224 to cooperate with the second inclined surface 2231; a fourth inclined surface 2242 is provided at the lower end of the T-shaped locking block 224 to cooperate with the detachable stator 225; a plurality of positioning slots 226 for positioning the detachable stator 225 are provided in a circumferential array on the detachable stator 225. The transmission ring reset assembly 23 includes a first limiting rod 231 and a first spring 232. The upper end of each first transmission block 223 is fixedly connected to a first limiting rod 231. The first limiting rod 231 is slidably connected to the lower end of the homogenizer body 4. The first spring 232 is sleeved on the outside of the first limiting rod 231. The lower end of the first spring 232 is fixedly connected to the homogenizer body 4. The upper end of the first spring 232 is fixedly connected to the first limiting rod 231. The T-block reset assembly 24 includes a second limiting rod 241 and a second spring 242; one end of the second limiting rod 241 is fixedly connected to the T-block 224; the other end of the second limiting rod 241 is slidably connected to the homogenizer body 4; the second spring 242 is sleeved on the outside of the second limiting rod 241; one end of the second spring 242 is fixedly connected to the T-block 224; the other end of the second spring 242 is fixedly connected to the homogenizer body 4. The stator mounting assembly 25 includes a first electric push cylinder 251, a stator placement bucket 252, and a connecting plate 253; the first electric push cylinder 251 is fixedly connected to the rotating disk 215; the driving end of the first electric push cylinder 251 is fixedly connected to the connecting plate 253; the outer wall of the stator placement bucket 252 is slidably connected to the rotating disk 215; the connecting plate 253 is fixedly connected to the stator placement bucket 252; a plurality of positioning blocks 254 are fixedly installed inside the stator placement bucket 252 for positioning the detachable stator 225 in cooperation with the positioning slot 226; the plurality of positioning blocks 254 are arranged in a circumferential array, and the adjacent side of the positioning blocks 254 and the positioning slot 226 are provided with rounded corners for guidance.
[0018] In this invention, the first motor 211 starts and drives the rotating disk 215 to rotate via the first gear 212, the second gear 213, and the rotating sleeve 214. The rotating disk 215 drives the driving inclined block 221 to drive the transmission ring 222 to move downward under the limit of the first limiting rod 231 via the first inclined surface 2221. The transmission ring 222 drives the first transmission block 223 to push the T-shaped locking block 224 to compress the second spring 242 under the limit of the second limiting rod 241 via the second inclined surface 2231 and the third inclined surface 2241. This causes the T-shaped locking block 224 to release the locking of the detachable stator 225. The detachable stator 225 falls into the stator placement bucket 252 and is then positioned and locked by the positioning block 254 and the positioning slot 226. At this time, the first spring 232 and the second spring 242 drive the transmission ring 222 and the T-shaped locking block 224 to reset; then the first motor 211 drives the rotating disk 215 to continue rotating, moving the stator placement bucket 252, which is equipped with the replaceable detachable stator 225, to the lower end of the homogenizer body 4. Then the first electric push cylinder 251 drives the connecting plate 253 to move the stator placement bucket 252 upward, pushing the detachable stator 225 upward through the fourth inclined surface 2242 to push the T-shaped locking block 224 to compress the second spring 242 until the T-shaped locking block 224 coincides with the T-shaped groove on the detachable stator 225. The second spring 242 drives the T-shaped locking block 224 to lock into the T-shaped groove and lock the position of the detachable stator 225, realizing the automatic replacement of the detachable stator 225.
[0019] Example 3: In some embodiments, such as Figures 1-4 As shown, in a preferred embodiment of the present invention, the dual-station homogenization mechanism 3 includes a dual-station switching component 31 and a container cap assembly 32; the dual-station switching component 31 is used to switch the container to be homogenized; the container cap assembly 32 is used to seal the upper end of the container; both the dual-station switching component 31 and the container cap assembly 32 are connected to the base plate 1; the container cap assembly 32 is connected to the homogenizer body 4. The dual-station switching assembly 31 includes a moving plate 311 and a second electric cylinder 312; a limiting groove 313 is formed on the base plate 1; the lower end of the moving plate 311 is slidably connected to the base plate 1 through the limiting groove 313; two container placement slots 314 are formed on the upper end of the moving plate 311; the moving plate 311 is fixedly connected to the driving end of the second electric cylinder 312; the second electric cylinder 312 is fixedly connected to the base plate 1. The container cap assembly 32 includes a drive plate 321, a cover plate 322, a first fixing rod 324, and a third spring 325. The drive plate 321 is fixedly connected to the homogenizer body 4. The lower end of the first fixing rod 324 is fixedly connected to the base plate 1. The upper end of the first fixing rod 324 is slidably connected to the cover plate 322. The cover plate 322 has a clearance hole 323 for avoiding the drive end of the homogenizer body 4. The upper end of the first fixing rod 324 is fitted with the third spring 325. The upper end of the third spring 325 is fixedly connected to the cover plate 322, and the lower end of the third spring 325 is fixedly connected to the first fixing rod 324.
[0020] In this invention, when homogenization of the solution in the container is required, the linear module 5 drives the homogenizer body 4 to move downward. The driving end of the homogenizer body 4 passes through the clearance hole 323 and enters the container. At the same time, the driving plate 321 moves downward. When the driving plate 321 abuts against the cover plate 322, the driving plate 321 pushes the cover plate 322 to move and compress the third spring 325 until the cover plate 322 moves and abuts against the upper end of the container. At this time, the cover plate 322 and the driving plate 321 cooperate to seal the upper end of the container. Then, the driving end of the homogenizer body 4 starts to uniformly mix the liquid inside the container. At the same time, the operator can place the next container containing the liquid to be homogenized into another container placement slot 314. After homogenization is completed, the linear module 5 drives the homogenizer body 4 to move upward. Then, the second electric cylinder 312 drives the moving plate 311 to slide along the limiting slide groove 313 to drive another container containing the solution to be homogenized into the lower part of the homogenizer body 4 for homogenization.
[0021] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A homogenizer suitable for a plurality of materials, comprising a base plate (1) and a homogenizer body (4), characterized in that: It also includes an automatic stator replacement mechanism (2), a dual-station homogenization mechanism (3), a linear module (5), and a second fixing rod (6); The substrate (1) is fixedly connected to the lower end of the second fixing rod (6); the second fixing rod (6) is fixedly connected to the linear module (5); the homogenizer body (4) is fixedly connected to the drive end of the linear module (5); The base plate (1) is equipped with a stator automatic replacement mechanism (2) for automatically replacing the stator; The substrate (1) is also equipped with a dual-station homogenizing mechanism (3) for sealing the container during homogenization. The automatic stator replacement mechanism (2) includes a rotary drive assembly (21), a stator replacement assembly (22), a transmission ring reset assembly (23), a T-block reset assembly (24), and a stator mounting assembly (25); the base plate (1), the stator replacement assembly (22), and the stator mounting assembly (25) are all connected to the rotary drive assembly (21); the transmission ring reset assembly (23), the stator mounting assembly (25), and the second fixing rod (6) are all connected to the stator replacement assembly (22); the T-block reset assembly (24) is connected to the homogenizer body (4); the rotary drive assembly (21) is used to automatically disassemble the stator that needs to be replaced, the transmission ring reset assembly (23) and the T-block reset assembly (24) are used to limit the stator replacement assembly (22) when disassembling and assembling the stator; the stator mounting assembly (25) is used to install the stator.
2. The homogenizer suitable for a plurality of materials according to claim 1, wherein, The rotary drive assembly (21) includes a first motor (211), a first gear (212), a second gear (213), a rotating sleeve (214), and a rotating disk (215); the first motor (211) is fixedly connected to the base plate (1); the drive end of the first motor (211) is fixedly connected to the first gear (212); the first gear (212) is meshed with the second gear (213); the second gear (213) is fixedly connected to the rotating sleeve (214); the rotating sleeve (214) is sleeved on the outside of the second fixed rod (6); the rotating sleeve (214) is rotatably connected to the second fixed rod (6); the upper end of the rotating sleeve (214) is fixedly connected to the rotating disk (215); the stator replacement assembly (22) and the stator mounting assembly (25) are both connected to the rotating disk (215).
3. The homogenizer suitable for a plurality of materials according to claim 2, wherein, The stator replacement assembly (22) includes a drive wedge (221), a transmission ring (222), a first transmission block (223), a T-shaped locking block (224), and a detachable stator (225). Multiple drive wedges (221) are fixedly installed in a circumferential array on the upper end of the rotating disk (215). The transmission ring (222) is connected to the transmission ring reset assembly (23). Multiple first transmission blocks (223) are fixedly connected in a circumferential array on the inner side of the transmission ring (222). The T-shaped locking block (224) is connected to the T-shaped block reset assembly (24). The T-shaped locking block (224) corresponds one-to-one with the first transmission block (223). Multiple positioning slots (226) for positioning the detachable stator (225) are opened in a circumferential array on the detachable stator (225).
4. The homogenizer suitable for a plurality of materials according to claim 3, wherein, The outer side of the transmission ring (222) is provided with a first inclined surface (2221) that cooperates with the drive inclined block (221); the inner side of the first transmission block (223) is provided with a second inclined surface (2231) that cooperates with the T-shaped locking block (224); the upper end of the T-shaped locking block (224) is provided with a third inclined surface (2241) that cooperates with the second inclined surface (2231); the lower end of the T-shaped locking block (224) is provided with a fourth inclined surface (2242) that cooperates with the detachable stator (225).
5. The homogenizer suitable for various materials according to claim 4, characterized in that, The transmission ring reset assembly (23) includes a first limiting rod (231) and a first spring (232). The upper end of each first transmission block (223) is fixedly connected to a first limiting rod (231). The first limiting rod (231) is slidably connected to the lower end of the homogenizer body (4). The first spring (232) is sleeved on the outside of the first limiting rod (231). The lower end of the first spring (232) is fixedly connected to the homogenizer body (4). The upper end of the first spring (232) is fixedly connected to the first limiting rod (231).
6. The homogenizer suitable for a plurality of materials according to claim 5, wherein, The T-block reset assembly (24) includes a second limiting rod (241) and a second spring (242); one end of the second limiting rod (241) is fixedly connected to the T-block (224); the other end of the second limiting rod (241) is limited and slidably connected to the homogenizer body (4); the second spring (242) is sleeved on the outside of the second limiting rod (241); one end of the second spring (242) is fixedly connected to the T-block (224); the other end of the second spring (242) is fixedly connected to the homogenizer body (4).
7. The homogenizer suitable for a plurality of materials according to claim 6, wherein The stator mounting assembly (25) includes a first electric push cylinder (251), a stator placement bucket (252), and a connecting plate (253); the first electric push cylinder (251) is fixedly connected to the rotating disk (215); the driving end of the first electric push cylinder (251) is fixedly connected to the connecting plate (253); the outer wall of the stator placement bucket (252) is limited and slidably connected to the rotating disk (215); the connecting plate (253) is fixedly connected to the stator placement bucket (252); a plurality of positioning blocks (254) are fixedly installed inside the stator placement bucket (252) for positioning the detachable stator (225) in cooperation with the positioning slot (226); the plurality of positioning blocks (254) are arranged in a circumferential array, and the adjacent side of the positioning block (254) and the positioning slot (226) are provided with rounded corners for guidance.
8. The homogenizer suitable for a plurality of materials according to claim 7, wherein, The dual-station homogenizing mechanism (3) includes a dual-station switching component (31) and a container cap assembly (32); the dual-station switching component (31) is used to switch the container to be homogenized; the container cap assembly (32) is used to seal the upper end of the container; both the dual-station switching component (31) and the container cap assembly (32) are connected to the base plate (1); the container cap assembly (32) is connected to the homogenizer body (4).
9. The homogenizer suitable for a plurality of materials according to claim 8, wherein, The dual-station switching assembly (31) includes a moving plate (311) and a second electric cylinder (312); a limiting groove (313) is provided on the base plate (1); the lower end of the moving plate (311) is slidably connected to the base plate (1) through the limiting groove (313); two container placement slots (314) are provided on the upper end of the moving plate (311); the moving plate (311) is fixedly connected to the driving end of the second electric cylinder (312); the second electric cylinder (312) is fixedly connected to the base plate (1).
10. The homogenizer suitable for a plurality of materials according to claim 9, wherein, The container cap assembly (32) includes a drive plate (321), a cover plate (322), a first fixing rod (324), and a third spring (325); the drive plate (321) is fixedly connected to the homogenizer body (4); the lower end of the first fixing rod (324) is fixedly connected to the base plate (1); the upper end of the first fixing rod (324) is slidably connected to the cover plate (322), and the cover plate (322) is provided with a clearance hole (323) for avoiding the drive end of the homogenizer body (4); the upper end of the first fixing rod (324) is fitted with a third spring (325); the upper end of the third spring (325) is fixedly connected to the cover plate (322), and the lower end of the third spring (325) is fixedly connected to the first fixing rod (324).
Citation Information
Patent Citations
Homogenizer
CN223287986U