Reaction cavity positioning clamp

Through the multi-cylinder driven slide table and slide column structure, combined with the slide rail and carriage design, the rapid and stable clamping of the reaction chamber and the rapid disassembly and assembly of the bracket are achieved, solving the problem of unstable clamping of traditional fixtures, and improving the controllability and consistency of production and experiments.

CN223265469UActive Publication Date: 2025-08-26SICHUAN LIDENG TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421716143.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-19
Publication Date
2025-08-26
Estimated Expiration
2034-07-19

AI Technical Summary

Technical Problem

The use of a single clamping mechanism in traditional reaction chamber positioning fixtures results in instability of clamping, reducing controllability and consistency in industrial production and experimental processes.

Method used

The sliding table and slide column structure driven by multiple cylinders is adopted, combined with the slide rail and carriage design, to achieve rapid fixation and stable clamping of the reaction chamber, and to achieve rapid disassembly and assembly of the bracket and waste collection through spring-driven sliders and turntable mechanisms.

Benefits of technology

It improves the controllability and consistency of the reaction chamber during the experiment or production process, ensures clamping stability, and optimizes the production environment, improving operating flexibility and production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of reaction cavity positioning clamps, and discloses a reaction cavity positioning clamp which comprises a base, a plurality of air cylinders are fixedly connected to the top of the base, the output end of each air cylinder is fixedly connected with a sliding table, a plurality of sliding rails are fixedly connected to the upper surface of the base, and the bottoms of the sliding tables are slidably connected to the tops of the sliding rails. A plurality of fixing tables are fixedly connected to the upper surface of the base, sliding columns are slidably connected to the interiors of the fixing tables, connecting rings are fixedly connected to the outer walls of the sliding columns, sliding frames are rotatably connected to the outer walls of the connecting rings, the bottoms of the sliding frames are rotatably connected to the outer walls of the sliding tables, and clamping plates are fixedly connected to one ends of the sliding columns. A collecting assembly is arranged on the top of the base. According to the utility model, through the cooperation of the sliding table, the connecting ring, the sliding column and other structures, the clamping stability is ensured while the reaction cavity is rapidly fixed, and the controllability and consistency of the reaction cavity in an experiment or production process are ensured.
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Description

Technical Field

[0001] The utility model relates to the field of reaction cavity positioning fixtures, in particular to a reaction cavity positioning fixture. Background Art

[0002] A reaction chamber is typically a device used to conduct chemical reactions or experiments. It can be a closed container or system used to conduct chemical reactions or other scientific experiments under controlled conditions. These chambers can come in various shapes, materials, and designs to accommodate different reaction requirements and experimental conditions. A reaction chamber positioning fixture is a tool used to precisely position and secure a reaction chamber, typically used in laboratories or industrial production. It is designed to ensure that the reaction chamber remains stable and accurately positioned during operation, ensuring accuracy and repeatability of the experimental or production process.

[0003] In traditional reaction chamber positioning fixtures, the base is the bottom support part of the positioning fixture, which is used to place and support the entire fixture system. The positioning system is designed so that the reaction chamber can automatically find the correct position when inserted and ensure that it remains stable during the entire operation. The clamping device is usually a mechanism controlled by screws or handles to clamp and fix the reaction chamber. The slide or guide rail allows the positioning components inside the fixture to be translated or fine-tuned when necessary to ensure precise alignment of the reaction chamber.

[0004] However, traditional reaction chamber positioning fixtures usually use screws or handles for control. This single clamping mechanism often cannot clamp the reaction chamber more stably, reducing the controllability and consistency of production results during industrial production or experiments. Utility Model Content

[0005] In order to make up for the above shortcomings, the utility model provides a reaction chamber positioning fixture, which aims to improve the traditional reaction chamber positioning fixture that usually uses screws or handles for control. This single clamping mechanism often cannot clamp the reaction chamber more stably, reducing the controllability and consistency of production results during industrial production or experiments.

[0006] In order to achieve the above-mentioned purpose, the present invention adopts the following technical solutions: a reaction chamber positioning fixture, comprising a base, a plurality of cylinders fixedly connected to the top of the base, each of the cylinder output ends fixedly connected to a slide, a plurality of slide rails fixedly connected to the upper surface of the base, the bottom of the slide is slidably connected to the top of the slide rail, a plurality of fixed tables fixedly connected to the upper surface of the base, a sliding column slidably connected to the inside of the fixed table, a connecting ring fixedly connected to the outer wall of the sliding column, a slide rotatably connected to the outer wall of the connecting ring, the bottom of the slide is rotatably connected to the outer wall of the slide, one end of the sliding column is fixedly connected to a splint, and a collection component is provided on the top of the base, and the collection component is used to collect production waste.

[0007] Furthermore, the collecting assembly includes a support platform, which is arranged on the top of the base.

[0008] Furthermore, connecting columns are fixedly connected to both sides of the support platform, and a plurality of bottom plates are fixedly connected to the top of the base.

[0009] Furthermore, a slider is slidably connected to the upper surface of the bottom plate, and a fixed block 1 is fixedly connected to the top of the slider.

[0010] Furthermore, a second fixing block is fixedly connected to the upper surface of the bottom plate, and a sliding shaft is fixedly connected to one side wall of the fixing block.

[0011] Furthermore, a spring is sleeved on the outer wall of the sliding shaft, and the outer wall of the sliding shaft is slidably connected to the interior of the second fixed block.

[0012] Furthermore, the upper surface of the sliding block is rotatably connected to a rotating plate, and the side wall of the rotating plate is rotatably connected to the upper surface of the bottom plate.

[0013] Furthermore, the side wall of the rotating plate is rotatably connected to a clamping plate, and the clamping plate is slidably connected to the outer wall of the connecting column.

[0014] The utility model has the following beneficial effects:

[0015] 1. In the present invention, the slide at the output end is first pushed by the cylinder to slide on the surface of the slide rail. Finally, the relative movement between the multiple slide columns changes the engagement state of the clamping plate at one end, thereby achieving rapid fixation of the reaction chamber while ensuring clamping stability, and ensuring the controllability and consistency of the reaction chamber during the experiment or production process.

[0016] 2. In the present invention, the displacement of the slider can drive the rotating plate on its surface to rotate and change its angle. At this time, the clamping plate on one side of the rotating plate can be pushed and pulled to change the fixing state of the connecting column, thereby realizing the rapid disassembly and assembly of the support. This mechanism can quickly replace the support, ensure the problem of waste accumulation generated in the reaction chamber during the experiment or production process, and optimize the production environment. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a three-dimensional diagram of a reaction chamber positioning fixture proposed by the present invention;

[0018] Figure 2 This is a schematic diagram of the base structure of a reaction chamber positioning fixture proposed by the present invention;

[0019] Figure 3 This is a schematic diagram of the bottom plate structure of a reaction chamber positioning fixture proposed by the present invention.

[0020] Legend:

[0021] 1. Base; 2. Cylinder; 3. Slide rail; 4. Slide table; 5. Slide frame; 6. Connecting ring; 7. Fixed table; 8. Slide column; 9. Clamp; 10. Support table; 11. Connecting column; 12. Bottom plate; 13. Slider; 14. Fixed block 1; 15. Fixed block 2; 16. Sliding shaft; 17. Spring; 18. Turn plate; 19. Clamp. DETAILED DESCRIPTION

[0022] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0023] Reference Figure 1-Figure 2 The utility model provides an embodiment: a reaction chamber positioning fixture, including a base 1, a plurality of cylinders 2 are fixedly connected to the top of the base 1, and the output end of each cylinder 2 is fixedly connected to a slide 4, the upper surface of the base 1 is fixedly connected to a plurality of slide rails 3, the bottom of the slide 4 is slidably connected to the top of the slide rail 3, and a plurality of fixed platforms 7 are fixedly connected to the upper surface of the base 1. The fixed platform 7 is slidably connected with a slide column 8 inside the fixed platform 7, and the outer wall of the slide column 8 is fixedly connected to a connecting ring 6, and the outer wall of the connecting ring 6 is rotatably connected to a slide 5, the bottom of the slide 5 is rotatably connected to the outer wall of the slide 4, and one end of the slide column 8 is fixedly connected to a splint 9. A collecting component is provided on the top of the base 1, and the collecting component is used to collect production waste.

[0024] Specifically, the function of the cylinder 2 is to push the slide 4 at the output end to slide on the surface of the slide rail 3. The movement of the slide 4 drives the slide 5 on the top to rotate and change its own inclination angle. This design enables the slide 5 to pull the slide column 8 through the connecting ring 6 during the movement, thereby driving the slide column 8 to slide inside the fixed platform 7. The relative movement between multiple slide columns 8 realizes the change of the engaging state of the clamping plate 9 at one end. In this way, the reaction chamber can be fixed quickly and reliably. This mechanism not only ensures the controllability and consistency of the reaction chamber during the experiment or production process, but also ensures the stability of the clamping, so that the parameter control and result reproduction in the reaction process can be more accurate and reliable.

[0025] Reference Figure 3 The collecting component includes a support platform 10, which is arranged on the top of the base 1. Connecting columns 11 are fixedly connected on both sides of the support platform 10. A plurality of bottom plates 12 are fixedly connected to the top of the base 1. A slider 13 is slidably connected to the upper surface of the bottom plate 12. A fixed block 14 is fixedly connected to the top of the slider 13. A fixed block 2 15 is fixedly connected to the upper surface of the bottom plate 12. A sliding shaft 16 is fixedly connected to the side wall of the fixed block 14. A spring 17 is sleeved on the outer wall of the sliding shaft 16. The outer wall of the sliding shaft 16 is slidably connected to the inside of the fixed block 2 15. The upper surface of the slider 13 is rotatably connected to a rotating plate 18. The side wall of the rotating plate 18 is rotatably connected to the upper surface of the bottom plate 12. The side wall of the rotating plate 18 is rotatably connected to a card plate 19, and the card plate 19 is slidably connected to the outer wall of the connecting column 11.

[0026] Specifically, the slider 13 is acted upon by a force and begins to slide on the surface of the bottom plate 12. This action causes the fixed block 14 on the surface of the slider 13 to be displaced, and drives the sliding shaft 16 of its side wall to move at the same time. While the sliding shaft 16 slides inside the fixed block 2 15, it compresses the spring 17. The existence of the spring 17 enables the displacement of the slider 13 to drive the rotating plate 18 on its surface to rotate, thereby changing its angle. The angle change of the rotating plate 18 directly affects the clamping plate 19 on one side, enabling it to change the fixed state of the connecting column 11 through a push-pull action. At the same time, the setting of the spring 17 ensures that it can be quickly reset when it needs to be released, making the disassembly and assembly process of the entire support 10 very fast. This design not only allows the support 10 to be quickly replaced, but also effectively solves the problem of waste accumulation that may be generated in the reaction chamber during the experiment or production process. By optimizing the production environment, this mechanism greatly improves production efficiency and operational flexibility.

[0027] Working principle: When the reaction chamber needs to be clamped and fixed, the cylinder 2 is started, and multiple cylinders 2 push the slide 4 at its output end to make it slide on the surface of the slide rail 3. The sliding of the slide 4 drives the slide 5 on its top to rotate and change its own inclination angle. While the slide 5 rotates, it can pull the slide post 8 through the connection with the connecting ring 6, so that the slide post 8 slides inside the fixed table 7. The relative movement between the multiple slide posts 8 realizes the change of the engagement state of the clamping plate 9 at one end, which realizes the rapid fixation of the reaction chamber while ensuring the clamping stability, and ensures the controllability and consistency of the reaction chamber during the experiment or production process. When the support table 10 needs to be disassembled and assembled, the slider 13 is pushed After the slider 13 is subjected to force, it slides on the surface of the bottom plate 12. At this time, the fixed block 14 on the surface of the slider 13 follows the displacement and drives the sliding shaft 16 of its side wall to move synchronously. At this time, the sliding shaft 16 slides inside the fixed block 2 15 and compresses the spring 17. The displacement of the slider 13 can drive the rotating plate 18 on its surface to rotate and change the angle. At this time, the card plate 19 on one side of the rotating plate 18 can be pushed and pulled to change the fixed state of the connecting column 11, and the setting of the spring 17 enables it to be released and quickly reset, thereby realizing the rapid disassembly and assembly of the support platform 10. This mechanism can quickly replace the support platform 10, thereby ensuring the waste accumulation problem generated by the reaction chamber during the experiment or production process, and optimizing the production environment.

[0028] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A reaction chamber positioning fixture, comprising a base (1), characterized in that: The top of the base (1) is fixedly connected to a plurality of cylinders (2), and the output end of each cylinder (2) is fixedly connected to a slide (4). The upper surface of the base (1) is fixedly connected to a plurality of slide rails (3), and the bottom of the slide (4) is slidably connected to the top of the slide rail (3). The upper surface of the base (1) is fixedly connected to a plurality of fixed platforms (7), and the fixed platforms (7) are slidably connected to a slide column (8). The outer wall of the slide column (8) is fixedly connected to a connecting ring (6), and the outer wall of the connecting ring (6) is rotatably connected to a slide (5). The bottom of the slide (5) is rotatably connected to the outer wall of the slide (4), and one end of the slide column (8) is fixedly connected to a splint (9). A collecting component is provided on the top of the base (1), and the collecting component is used to collect production waste.

2. The reaction chamber positioning fixture according to claim 1, characterized in that: The collecting assembly comprises a support platform (10), and the support platform (10) is arranged on the top of the base (1).

3. The reaction chamber positioning fixture according to claim 2, characterized in that: Both sides of the support platform (10) are fixedly connected with connecting columns (11), and the top of the base (1) is fixedly connected with a plurality of bottom plates (12).

4. The reaction chamber positioning fixture according to claim 3, characterized in that: The upper surface of the bottom plate (12) is slidably connected to a slider (13), and the top of the slider (13) is fixedly connected to a fixed block (14).

5. The reaction chamber positioning fixture according to claim 4, characterized in that: The upper surface of the bottom plate (12) is fixedly connected to a second fixing block (15), and the side wall of the first fixing block (14) is fixedly connected to a sliding shaft (16).

6. The reaction chamber positioning fixture according to claim 5, characterized in that: The outer wall of the sliding shaft (16) is sleeved with a spring (17), and the outer wall of the sliding shaft (16) is slidably connected to the interior of the second fixed block (15).

7. The reaction chamber positioning fixture according to claim 6, characterized in that: The upper surface of the slider (13) is rotatably connected to a rotating plate (18), and the side wall of the rotating plate (18) is rotatably connected to the upper surface of the bottom plate (12).

8. The reaction chamber positioning fixture according to claim 7, characterized in that: The side wall of the rotating plate (18) is rotatably connected to a clamping plate (19), and the clamping plate (19) is slidably connected to the outer wall of the connecting column (11).