Raw material grinding equipment for biological reagent development

By designing biological reagent grinding equipment with pouring and scraping functions, the problems of difficult raw material pouring and cleaning are solved, automated raw material transfer and cleaning are achieved, and the efficiency of biological reagent development is improved.

CN223337463UActive Publication Date: 2025-09-16YISHENGYUAN TESTING TECH SERVICE (TIANJIN) CO LTD
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Patent Information

Application Number
CN202422715688.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-07
Publication Date
2025-09-16
Estimated Expiration
2034-11-07

AI Technical Summary

Technical Problem

In the current biological reagent development process, it is difficult to pour and clean the raw materials after grinding, making it difficult for workers to complete the task alone, affecting development efficiency.

Method used

A raw material grinding equipment for the development of biological reagents was designed, which includes a grinding jar with dumping and scraping functions. The grinding jar is dumped by a handle and a cylinder, and is equipped with a scraper cleaning device to achieve automated raw material transfer and cleaning.

Benefits of technology

It realizes the automated transfer and cleaning of raw materials, improves work efficiency, reduces manpower requirements, and improves research and development efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides raw material grinding equipment for biological reagent development, which relates to the technical field of biological reagent development and comprises a machine base, a bottom shell is fixedly mounted at the top of the machine base, a grinding tank is movably mounted on the inner side of the bottom shell, and a tank cover is movably mounted at the top of the grinding tank. And a driving motor is fixedly installed at the top of the tank cover, the output end of the driving motor movably penetrates through the top of the tank cover, a grinding piece is fixedly installed at the output end of the driving motor, and the grinding piece is located on the inner side of the grinding tank. According to the grinding device, the grinding tank is moved upwards through the handle, the clamping block is driven to be clamped with the side shell for fixation under the support of the first spring, and raw materials ground in the grinding tank are transferred into a developed container by rotating the grinding tank and toppling the grinding tank, so that workers can conveniently and independently complete the transfer work of the ground raw materials, and the working efficiency of development is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of biological reagent development, in particular to raw material grinding equipment for biological reagent development. Background Art

[0002] In the development process of biological reagents, raw material grinding is one of the key steps. Its main purpose is to process the raw materials to the required particle size and uniformity to ensure the effectiveness and consistency of the final product. Raw material grinding equipment plays a vital role in the development of biological reagents to improve the quality and production efficiency of biological reagents and lay the foundation for subsequent purification and formulation optimization.

[0003] After the raw materials are ground using raw material grinding equipment, the ground raw materials need to be poured into a container for subsequent research and development. The staff needs to pour the grinding container while scraping the raw materials in the container, which makes it difficult for the staff to complete the work alone, resulting in low research and development efficiency. There is no facility to support the grinding container.

[0004] In view of this, this application is hereby filed. Utility Model Content

[0005] The purpose of the utility model is to solve the shortcomings of the prior art and to propose a raw material grinding device for the development of biological reagents.

[0006] In order to solve the above technical problems, the technical solutions of the present utility model are as follows:

[0007] The embodiment of the present utility model provides a raw material grinding device for the development of biological reagents, comprising a machine base, a bottom shell fixedly mounted on the top of the machine base, a grinding jar movably mounted on the inner side of the bottom shell, a jar cover movably mounted on the top of the grinding jar, a driving motor fixedly mounted on the top of the jar cover, and the output end of the driving motor movably passes through the top of the jar cover, a grinding piece fixedly mounted on the output end of the driving motor, and the grinding piece is located on the inner side of the grinding jar, two side shells fixedly mounted on the machine base, the side shells A slider is movably installed on the inner side of the shell, a shaft block is fixedly installed on the top of the slider, a semicircular block is movably installed on the shaft block, a round rod is fixedly installed on the top of the semicircular block, and the slider, shaft block, semicircular block and round rod are located on the inner side of the side shell, a card shell is fixedly installed on the top of the round rod, and the card shell is located on the inner side of the side shell, a connecting block is fixedly installed on the top of the round rod and the card shell, an arc rod is fixedly installed on the connecting block, a supporting arc plate is fixedly installed on the two arc rods, and the supporting arc plate fits with the grinding jar.

[0008] Furthermore, two handles are symmetrically fixedly mounted on the grinding jar, and each handle is provided with a circular hole.

[0009] Furthermore, a telescopic cylinder is fixedly installed on the top of the machine base, and the telescopic cylinder is located on one side of the bottom shell, a round shell is fixedly installed on the telescopic end of the telescopic cylinder, a rotating block is movably installed on the inner side of the round shell, a top frame is fixedly installed on the rotating block, and the top frame is located on the top of the round shell, and the top frame is fixed to the tank cover.

[0010] Furthermore, two movable grooves are symmetrically opened on the slider, and a first spring is connected to the inner wall of one side of each movable groove. A clamping block is fixedly installed on the end of the first spring, and a part of the clamping block is located on the inner side of the movable groove.

[0011] Furthermore, a fixing bolt is threadedly installed on the housing, and two straight rods are fixedly installed on the supporting arc plate.

[0012] Furthermore, an annular shell is fixedly mounted on the grinding jar, a moving block is movably mounted on the inner side of the annular shell, an edge block is fixedly mounted on one side of the moving block, and the edge block is located on one side of the annular shell, two short bolts are movably mounted on the inner side of the edge block, a bracket is fixedly mounted between the two short bolts, an outer scraper shell and a second spring are fixedly mounted on the bracket, an inner scraper is fixedly mounted on the end of the second spring, and the second spring and the inner scraper are located on the inner side of the outer scraper shell.

[0013] Furthermore, a positioning bolt is threadedly installed on the bracket, a threaded block is threadedly installed on the outer side of the positioning bolt, and the threaded block is located at the top of the bracket, and an outer shell is fixedly installed on the threaded block, and the outer shell is located on the outer side of the outer scraper shell and the inner scraper.

[0014] The above solution of the utility model includes at least the following beneficial effects:

[0015] 1. In the utility model, the grinding jar is moved upward by the handle, and the handle drives the slider to move upward along the inner side of the side shell through the fixing bolt, the card shell, the round rod, the semicircular block and the shaft block, and drives the card block to engage the side shell for fixing under the support of the first spring. By rotating the grinding jar, the grinding jar is tilted, and the ground raw materials in the grinding jar are transferred to the research container, so that the staff can independently complete the transfer of the ground raw materials and improve the research work efficiency.

[0016] 2. In the utility model, after the raw materials in the grinding jar are transferred, the outer shell is removed by twisting the positioning bolt, the inner scraper is pressed and the bracket is rotated so that the outer scraper shell and the inner scraper fit the inner wall of the grinding jar, and the bracket is moved so that the bracket drives the moving block to move along the inner side of the annular shell, so that the outer scraper shell and the inner scraper cooperate with each other to scrape and clean the raw material residue adhering to the inner wall of the grinding jar, thereby facilitating the cleaning of the grinding jar. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the three-dimensional structure of a raw material grinding device for developing biological reagents according to the present invention;

[0018] Figure 2 This is a schematic diagram of the three-dimensional structure of a tank cover of a raw material grinding device for developing biological reagents according to the present invention;

[0019] Figure 3 This is a schematic diagram of the exploded three-dimensional structure of the side shell of a raw material grinding device for developing biological reagents in the present utility model;

[0020] Figure 4 for Figure 3 A schematic diagram of the enlarged structure at point A;

[0021] Figure 5 This is a schematic diagram of the exploded three-dimensional structure of the shell of a raw material grinding device for developing biological reagents in the present utility model;

[0022] Figure 6 The utility model is a schematic diagram of the exploded three-dimensional structure of the edge block of a raw material grinding device for the development of biological reagents.

[0023] Description of reference numerals:

[0024] 1. Machine base; 2. Bottom shell; 3. Grinding jar; 301. Handle; 4. Telescopic cylinder; 5. Round shell; 6. Rotating block; 7. Top frame; 8. Jar cover; 9. Driving motor; 10. Grinding part; 11. Side shell; 12. Slider; 13. First spring; 14. Block; 15. Shaft block; 16. Semicircular block; 17. Round rod; 18. Block; 19. Fixing bolt; 20. Connecting block; 21. Arc rod; 22. Support arc plate; 23. Straight rod; 24. Ring shell; 25. Moving block; 26. Side block; 27. Short bolt; 28. Bracket; 29. ​​Outer scraper shell; 30. Second spring; 31. Inner scraper; 32. Positioning bolt; 33. Threaded block; 34. Outer shell. DETAILED DESCRIPTION

[0025] The following describes exemplary embodiments of the present invention in more detail with reference to the accompanying drawings. Although exemplary embodiments of the present invention are shown in the accompanying drawings, it should be understood that the present invention can be implemented in various forms and should not be limited by the embodiments described herein. Rather, these embodiments are provided to enable a more thorough understanding of the present invention and to fully convey the scope of the present invention to those skilled in the art.

[0026] like Figures 1 to 6As shown, the embodiment of the present utility model provides a raw material grinding equipment for the development of biological reagents, comprising a machine base 1, a bottom shell 2 is fixedly mounted on the top of the machine base 1, a grinding jar 3 is movably mounted on the inner side of the bottom shell 2, two handles 301 are symmetrically fixedly mounted on the grinding jar 3, each of the handles 301 is provided with a circular hole, a jar cover 8 is movably mounted on the top of the grinding jar 3, a driving motor 9 is fixedly mounted on the top of the jar cover 8, and the output end of the driving motor 9 movably passes through the top of the jar cover 8, a grinding member 10 is fixedly mounted on the output end of the driving motor 9, and the grinding member 10 is located on the inner side of the grinding jar 3, a telescopic cylinder 4 is fixedly mounted on the top of the machine base 1, and the telescopic cylinder 4 is located on one side of the bottom shell 2, a round shell 5 is fixedly mounted on the telescopic end of the telescopic cylinder 4, a rotating block 6 is movably mounted on the inner side of the round shell 5, a top frame 7 is fixedly mounted on the rotating block 6, and the top frame 7 is located on the top of the round shell 5, and the top frame 7 is fixed to the jar cover 8;

[0027] After the jar 3 is lifted up, the grinding wheel 10 is rotated and the grinding wheel 10 is turned to the bottom of the grinding wheel 3. The grinding wheel 10 is turned to the bottom of the grinding wheel 3 and the grinding wheel 10 is turned to the bottom of the grinding wheel 3.

[0028] When the grinding work is completed, the telescopic end of the telescopic cylinder 4 is controlled to extend, driving the jar cover 8 to move upward, so that the grinding piece 10 is moved out of the inner side of the grinding jar 3, and the jar cover 8 is turned away from the top of the grinding jar 3. The grinding jar 3 is moved out of the inner side of the bottom shell 2 through the handle 301 and moved to the top of the container for subsequent grinding. The grinding jar 3 is tilted and the raw materials are poured into the inner side of the container for subsequent grinding.

[0029] Figures 1 to 6As shown, two side shells 11 are fixedly installed on the machine base 1, and two snap-in holes are symmetrically provided on the side shell 11. A slider 12 is movably installed on the inner side of the side shell 11, and two movable grooves are symmetrically provided on the slider 12. A first spring 13 is connected to the inner wall of one side of each movable groove, and a clamping block 14 is fixedly installed on the end of the first spring 13, and a part of the clamping block 14 is located on the inner side of the movable groove. A shaft block 15 is fixedly installed on the top of the slider 12, and a semicircular block 16 is movably installed on the shaft block 15. A round rod is fixedly installed on the top of the semicircular block 16 17, and the slider 12, the shaft block 15, the semicircular block 16 and the round rod 17 are located on the inner side of the side shell 11, and the top of the round rod 17 is fixedly installed with a card shell 18, and the card shell 18 is located on the inner side of the side shell 11, the top of the round rod 17 and the card shell 18 are jointly fixedly installed with a connecting block 20, and an arc rod 21 is fixedly installed on the connecting block 20, and a supporting arc plate 22 is jointly fixedly installed on the two arc rods 21, and the supporting arc plate 22 is fitted with the grinding jar 3, a fixing bolt 19 is threadedly installed on the card shell 18, and two straight rods 23 are fixedly installed on the supporting arc plate 22.

[0030] In the embodiment of the present invention, the grinding jar 3 is moved upward by the handle 301 so that the grinding jar 3 is moved out of the inner side of the bottom shell 2. The handle 301 drives the slider 12 to move upward along the inner side of the side shell 11 through the fixing bolt 19, the card shell 18, the round rod 17, the semicircular block 16 and the shaft block 15, so that the slider 12 drives the card block 14 to move to the corresponding position of the card hole of the side shell 11 through the first spring 13 under the action of external force. Under the support of the first spring 13, the card block 14 is driven to engage the card hole of the side shell 11 for fixing. The grinding jar 3 is rotated by the handle 301, and the handle Under the action of external force, 301 drives the semicircular block 16 to rotate around the shaft block 15 through the fixing bolt 19, the card shell 18 and the round rod 17, so that the grinding jar 3 is tilted. Under the action of external force, the round rod 17 and the card shell 18 drive the straight rod 23 to move through the connecting block 20, the arc rod 21 and the supporting arc plate 22, so that the straight rod 23 abuts against the bottom shell 2, supports the tilted grinding jar 3, and transfers the ground raw materials in the grinding jar 3 to the research container by dumping and scraping, thereby facilitating the staff to independently complete the transfer of the ground raw materials and improving the research work efficiency.

[0031] Figures 1 to 6As shown, the grinding jar 3 is fixedly mounted with an annular shell 24, and a moving block 25 is movably mounted on the inner side of the annular shell 24. A side block 26 is fixedly mounted on one side of the moving block 25, and the side block 26 is located on one side of the annular shell 24. Two short bolts 27 are movably mounted on the inner side of the side block 26, and a bracket 28 is fixedly mounted between the two short bolts 27. An outer scraping shell 29 and a second spring 30 are fixedly mounted on the bracket 28, and an inner scraper 31 is fixedly mounted on the end of the second spring 30, and the second spring 30 and the inner scraper 31 are located on the inner side of the outer scraping shell 29. A positioning bolt 32 is threadedly mounted on the bracket 28, and a threaded block 33 is threadedly mounted on the outer side of the positioning bolt 32, and the threaded block 33 is located at the top of the bracket 28. A shell 34 is fixedly mounted on the threaded block 33, and the shell 34 is located on the outer side of the outer scraping shell 29 and the inner scraper 31.

[0032] In the embodiment of the present invention, after the raw materials in the grinding jar 3 are transferred, the positioning bolt 32 is screwed so that the positioning bolt 32 moves downward under the support of the threaded block 33 and the bracket 28, so that the positioning bolt 32 moves away from the inner side of the threaded block 33, and the outer shell 34 is no longer fixed by fixing the threaded block 33. The outer shell 34 is removed, the inner scraper 31 is pressed and the bracket 28 is rotated so that the bracket 28 rotates around the short bolt 27 under the action of external force, so that the outer scraper shell 29 and the inner scraper 31 is fitted into the inner wall of the grinding jar 3, and the inner scraper 31 is loosened, so that the second spring 30 can use its elastic force to drive the inner scraper 31 to move along the inner side of the outer scraper shell 29, so that the inner scraper 31 can abut against the inner side of the bottom wall of the grinding jar 3, and the bracket 28 is moved, so that the bracket 28 drives the moving block 25 to move along the inner side of the annular shell 24, so that the outer scraper shell 29 and the inner scraper 31 cooperate with each other to scrape and clean the raw material residue adhering to the inner wall of the grinding jar 3, thereby facilitating the cleaning of the grinding jar 3.

[0033] After the jar lid 8 is lowered, the grinding wheel 10 is rotated to the left of the jar lid 8 and the grinding wheel 10 is rotated to the right of the jar lid 8. After the jar lid 8 is lowered, the grinding wheel 10 is rotated to the right of the jar lid 8 and the grinding wheel 10 is rotated to the left of the jar lid 8. The movable jar cover 8 moves upward to move the grinding piece 10 out of the inner side of the grinding jar 3, and the jar cover 8 is turned away from the top of the grinding jar 3. The grinding jar 3 is moved upward by the handle 301. The handle 301 drives the slider 12 to move upward along the inner side of the side shell 11 through the fixing bolt 19, the card shell 18, the round rod 17, the semicircular block 16 and the shaft block 15. Under the support of the first spring 13, the card block 14 is driven to clamp the side shell 11 for fixing. By rotating the grinding jar 3, the grinding jar 3 is tilted to The ground raw material in the grinding jar 3 is transferred to the grinding container. After the raw material in the grinding jar 3 is transferred, the outer shell 34 is removed by twisting the positioning bolt 32, pressing the inner scraper 31 and rotating the bracket 28 so that the outer scraper shell 29 and the inner scraper 31 are attached to the inner wall of the grinding jar 3, and the bracket 28 is moved so that the bracket 28 drives the moving block 25 to move along the inner side of the annular shell 24, so that the outer scraper shell 29 and the inner scraper 31 cooperate with each other to scrape and clean the raw material residue adhering to the inner wall of the grinding jar 3.

[0034] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles described in the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.

Claims

1. A raw material grinding device for developing biological reagents, comprising a machine base (1), a bottom shell (2) fixedly mounted on the top of the machine base (1), a grinding jar (3) movably mounted on the inner side of the bottom shell (2), a jar cover (8) movably mounted on the top of the grinding jar (3), a driving motor (9) fixedly mounted on the top of the jar cover (8), and an output end of the driving motor (9) movably passing through the top of the jar cover (8), a grinding member (10) fixedly mounted on the output end of the driving motor (9), and the grinding member (10) is located on the inner side of the grinding jar (3), characterized in that: Two side shells (11) are fixedly mounted on the machine base (1), a slider (12) is movably mounted on the inner side of the side shell (11), a shaft block (15) is fixedly mounted on the top of the slider (12), a semicircular block (16) is movably mounted on the shaft block (15), a round rod (17) is fixedly mounted on the top of the semicircular block (16), and the slider (12), the shaft block (15), the semicircular block (16) and the round rod (17) are located on the side shell (1 1), a housing (18) is fixedly mounted on the top of the round rod (17), and the housing (18) is located on the inner side of the side shell (11), a connecting block (20) is fixedly mounted on the top of the round rod (17) and the housing (18), an arc rod (21) is fixedly mounted on the connecting block (20), and a supporting arc plate (22) is fixedly mounted on the two arc rods (21), and the supporting arc plate (22) is in contact with the grinding jar (3).

2. The raw material grinding equipment for biological reagent development according to claim 1, characterized in that: Two handles (301) are symmetrically fixedly mounted on the grinding jar (3), and each handle (301) is provided with a circular hole.

3. The raw material grinding equipment for biological reagent development according to claim 2, characterized in that: A telescopic cylinder (4) is fixedly mounted on the top of the machine base (1), and the telescopic cylinder (4) is located on one side of the bottom shell (2). A round shell (5) is fixedly mounted on the telescopic end of the telescopic cylinder (4), a rotating block (6) is movably mounted on the inner side of the round shell (5), a top frame (7) is fixedly mounted on the rotating block (6), and the top frame (7) is located on the top of the round shell (5). The top frame (7) is fixed to the tank cover (8).

4. The raw material grinding equipment for biological reagent development according to claim 1, characterized in that: Two movable grooves are symmetrically provided on the slider (12), and a first spring (13) is connected to an inner wall of one side of each movable groove. A clamping block (14) is fixedly installed at the end of the first spring (13), and a part of the clamping block (14) is located inside the movable groove.

5. The raw material grinding equipment for biological reagent development according to claim 4, characterized in that: A fixing bolt (19) is threadedly mounted on the housing (18), and two straight rods (23) are fixedly mounted on the supporting arc plate (22).

6. The raw material grinding equipment for biological reagent development according to claim 1, characterized in that: The grinding jar (3) is fixedly mounted with an annular shell (24), a moving block (25) is movably mounted on the inner side of the annular shell (24), a side block (26) is fixedly mounted on one side of the moving block (25), and the side block (26) is located on one side of the annular shell (24), two short bolts (27) are movably mounted on the inner side of the side block (26), a bracket (28) is fixedly mounted between the two short bolts (27), an outer scraping shell (29) and a second spring (30) are fixedly mounted on the bracket (28), an inner scraping plate (31) is fixedly mounted on the end of the second spring (30), and the second spring (30) and the inner scraping plate (31) are located on the inner side of the outer scraping shell (29).

7. The raw material grinding equipment for biological reagent preparation according to claim 6, characterized in that: A positioning bolt (32) is threadedly mounted on the bracket (28), a threaded block (33) is threadedly mounted on the outer side of the positioning bolt (32), and the threaded block (33) is located at the top of the bracket (28), and a shell (34) is fixedly mounted on the threaded block (33), and the shell (34) is located on the outer side of the outer scraper shell (29) and the inner scraper (31).