Double-layer test tube rack with classified placement function

By designing a double-layer test tube rack with categorized placement, and utilizing a double-layer shaking component and a drying installation component, the problems of test tube racks not being able to be placed separately and long drying times were solved, enabling convenient access and rapid drying of test tubes.

CN223550785UActive Publication Date: 2025-11-14WUXI CROSS MADDY MEDICAL INSTR CO LTD
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Patent Information

Application Number
CN202422858538.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-11-14
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

The existing test tube racks cannot separate test tubes in use as needed, making them inconvenient to retrieve. In addition, the cleaned test tubes need to be air-dried, which takes a long time.

Method used

A double-layer test tube rack with classified placement was designed, including a double-layer shaking component, a test tube fixing component, and a drying installation component. The test tubes are shaken and fixed by a drive motor driving a rotating rod and a clamping plate, and the drying is accelerated by a drying lamp.

Benefits of technology

This technology enables convenient separation and rapid drying of test tubes, improving the efficiency of test tube handling and drying speed, and solving the problems of inconvenient handling and long drying time in existing technologies.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223550785U_ABST
Patent Text Reader

Abstract

The utility model discloses a double-layer test tube rack with a classified placement function, which comprises a test tube rack mounting seat, a double-layer shaking component arranged above the test tube rack mounting seat, a test tube fixing component arranged on one side of the double-layer shaking component, and a drying mounting component arranged on one side of the test tube fixing component. Through the double-layer shaking assembly, the problems that in the prior art, a certain group of test tubes in use cannot be separately placed according to needs, so that the test tubes are inconvenient to take and place are solved, and the problems that after the test tubes are cleaned, liquid is left in the test tubes, and if the test tubes are naturally aired, waiting for a certain time is needed are also solved; the test tube drying effect is greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of double-layer test tube racks, specifically, to a double-layer test tube rack with classified placement. Background Technology

[0002] In the laboratory, there are many kinds of practical instruments, and test tubes are the most commonly used experimental instruments. Test tubes are generally placed on test tube racks to prevent them from falling and getting damaged. However, test tube racks need to hold a lot of test tubes, and it is not possible to separate the test tubes in use as needed, which makes it inconvenient to take out and put away the test tubes. Moreover, after cleaning, there will be liquid residue inside the test tubes. If they are left to air dry, it will take a certain amount of time. This needs to be improved. Utility Model Content

[0003] In view of the problems in the related technologies, this utility model proposes a double-layer test tube rack with classified placement to overcome the above-mentioned technical problems existing in the existing related technologies.

[0004] Therefore, the specific technical solution adopted by this utility model is as follows:

[0005] A double-layer test tube rack for sorting and placing test tubes includes a test tube rack mounting base, a double-layer shaking assembly above the test tube rack mounting base, a test tube fixing assembly on one side of the double-layer shaking assembly, and a drying mounting assembly on one side of the test tube fixing assembly.

[0006] To achieve the effect of shaking the test tubes, the double-layer shaking assembly includes a double-layer stepped base, which is slidably engaged with the test tube rack mounting base. A test tube placement column is installed above the double-layer stepped base. A rotating protrusion is slidably engaged on one side of the double-layer stepped base. A rotating rod is fixedly connected inside the rotating protrusion. A rotating rod fixing frame is movably connected to the outside of the rotating rod. The rotating rod fixing frame is fixedly connected to the test tube rack mounting base. A drive motor is connected to one end of the rotating rod. The housing of the drive motor is connected to the rotating rod fixing frame. A return spring is symmetrically connected to the side of the double-layer stepped base away from the rotating protrusion. A fixing plate is connected to the side of the return spring. The fixing plate is fixedly connected to the test tube rack mounting base. A limit rod is slidably engaged inside the fixing plate. The limit rod is fixedly connected to the double-layer stepped base.

[0007] Furthermore, a multi-control switch is installed on one side of the test tube rack mounting base, and the drive motor is electrically connected to an external power supply through the multi-control switch.

[0008] Furthermore, the double-layer stepped seat has symmetrical sliding guide plates on both sides, and the sliding guide plates are connected to the test tube rack mounting seat.

[0009] Furthermore, in order to achieve the function of fixing the test tube, the test tube fixing assembly includes a fixing mounting plate, which is fixedly connected to the double-layer stepped seat. A drive electric actuator is fixedly installed inside the fixing mounting plate, and the output end of the drive electric actuator is connected to a clamping plate. A clamping groove is opened inside the clamping plate.

[0010] Furthermore, the drive actuator is electrically connected to an external power source via a multi-control switch.

[0011] Furthermore, in order to achieve the function of drying installation, the drying installation component includes a drying installation rack, which is connected to the test tube rack mounting base. The drying installation rack has a drying installation slot inside, and a drying lamp is installed inside the drying installation slot.

[0012] Furthermore, the drying lamp is electrically connected to an external power supply via a multi-control switch.

[0013] The beneficial effects of this utility model are as follows:

[0014] (1) This utility model has made improvements to the prior art. In actual use, the double-layer shaking component solves the problem that the prior art cannot separate a group of test tubes in use as needed, which makes it inconvenient to pick up and place the test tubes. It also solves the problem that after cleaning, there will be liquid residue inside the test tubes. If it is left to air dry, it will take a certain amount of time. This greatly improves the drying effect of the test tubes.

[0015] (2) In actual use, by setting a fixed mounting plate, it is easy to fix the drive electric actuator. The drive electric actuator can drive the clamping plate to move, and the clamping plate can clamp the test tube through the clamping slot. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is a schematic diagram of the main structure of a double-layer test tube rack with classified placement according to an embodiment of the present utility model;

[0018] Figure 2 This is a perspective view of a double-layer test tube rack with classified placement according to an embodiment of the present utility model.

[0019] Figure 3 This is a schematic diagram of the structure of a double-layer shaking component in a double-layer test tube rack with classified placement according to an embodiment of the present utility model;

[0020] Figure 4 This is a schematic diagram of the structure of a test tube fixing component in a double-layer test tube rack with classified placement according to an embodiment of the present utility model.

[0021] In the picture:

[0022] 1. Test tube rack mounting base; 2. Double-layer shaking assembly; 201. Double-layer stepped base; 202. Test tube placement column; 203. Rotating protrusion; 204. Rotating rod; 205. Rotating rod fixing frame; 206. Drive motor; 207. Fixing plate; 208. Limiting rod; 209. Return spring; 3. Test tube fixing assembly; 301. Fixed mounting plate; 302. Drive electric push rod; 303. Clamping plate; 304. Clamping groove; 4. Drying installation assembly; 401. Drying installation rack; 402. Drying installation groove; 403. Drying lamp; 5. Multi-control switch; 6. Sliding guide plate. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] According to an embodiment of the present invention, a double-layer test tube rack with classified placement is provided, including a test tube rack mounting base 1, a double-layer shaking component 2 above the test tube rack mounting base 1, a test tube fixing component 3 on one side of the double-layer shaking component 2, and a drying mounting component 4 on one side of the test tube fixing component 3.

[0025] like Figure 1-4As shown, according to an embodiment of the present invention, a double-layer test tube rack with classified placement is provided. The double-layer shaking component 2 includes a double-layer stepped seat 201, which is slidably engaged with the test tube rack mounting base 1. A test tube placement column 202 is installed above the double-layer stepped seat 201. A rotating protrusion 203 is slidably engaged on one side of the double-layer stepped seat 201. A rotating rod 204 is fixedly connected inside the rotating protrusion 203. A rotating rod fixing frame 205 is movably connected to the periphery of the rotating rod 204. The rotating rod fixing frame 205 is fixedly connected to the test tube rack mounting base 1. A drive motor 206 is connected to one end of the rotating rod 204. The housing of the drive motor 206 is connected to the rotating rod 204. A rod fixing bracket 205 is connected to the double-layer stepped seat 201. A return spring 209 is symmetrically connected to the side of the double-layer stepped seat 201 away from the rotating protrusion 203. A fixing plate 207 is connected to the side of the return spring 209. The fixing plate 207 is fixedly connected to the test tube rack mounting base 1. A limit rod 208 is slidably fitted inside the fixing plate 207. The limit rod 208 is fixedly connected to the double-layer stepped seat 201. A multi-control switch 5 is installed on one side of the test tube rack mounting base 1. The drive motor 206 is electrically connected to an external power supply through the multi-control switch 5. Sliding guide plates 6 are symmetrically slidably fitted on both sides of the double-layer stepped seat 201. The sliding guide plates 6 are connected to the test tube rack mounting base 1.

[0026] Through the above technical solution, by setting up a double-layer stepped seat 201, the test tube placement column 202 is facilitated. The test tube placement column 202 facilitates the placement of test tubes. The drive motor 206 can drive the rotating rod 204 to rotate in the rotating rod fixing frame 205. When the rotating rod 204 rotates, it can drive the rotating protrusion 203 to rotate. When the rotating protrusion 203 rotates, it can drive the double-layer stepped seat 201 to move. Then, the return spring 209, under the fixation of the fixing plate 207, resets the double-layer stepped seat 201, thereby achieving the effect of shaking the double-layer stepped seat 201. The double-layer stepped seat 201 can shake the test tubes through the test tube placement column 202, thereby improving the drying speed.

[0027] like Figure 1-4 As shown, according to an embodiment of the present invention, a double-layer test tube rack with classified placement is provided. The test tube fixing component 3 includes a fixing mounting plate 301, which is fixedly connected to a double-layer stepped seat 201. A drive electric push rod 302 is fixedly installed inside the fixing mounting plate 301. A clamping plate 303 is connected to the output end of the drive electric push rod 302. A clamping groove 304 is provided inside the clamping plate 303. The drive electric push rod 302 is electrically connected to an external power source through a multi-control switch 5.

[0028] Through the above technical solution, by setting a fixed mounting plate 301, the drive electric actuator 302 can be fixed, and the drive electric actuator 302 can drive the clamping plate 303 to move, and the clamping plate 303 can clamp the test tube through the clamping groove 304.

[0029] like Figure 1-4 As shown, according to an embodiment of the present invention, a double-layer test tube rack with classified placement is provided. The drying installation component 4 includes a drying installation rack 401, which is connected to the test tube rack mounting base 1. The drying installation rack 401 is provided with a drying installation groove 402 inside, and a drying lamp 403 is installed inside the drying installation groove 402. The drying lamp 403 is electrically connected to an external power source through a multi-control switch 5.

[0030] Through the above technical solution, by setting up the drying mounting rack 401, it is possible to facilitate the installation of the drying lamp 403 through the drying mounting slot 402. The drying lamp 403 achieves the function of drying the test tubes, thereby further improving the drying speed of the test tubes.

[0031] To facilitate understanding of the above-mentioned technical solutions of this utility model, the working principle or operation method of this utility model in actual process will be described in detail below.

[0032] In summary, by utilizing the above-mentioned technical solution of this utility model, the double-layer step seat 201 facilitates the installation of the test tube placement column 202. The test tube placement column 202 facilitates the placement of test tubes. The drive motor 206 can drive the rotating rod 204 to rotate within the rotating rod fixing frame 205. When the rotating rod 204 rotates, it drives the rotating protrusion 203 to rotate. When the rotating protrusion 203 rotates, it drives the double-layer step seat 201 to move. Then, the return spring 209, fixed by the fixing plate 207, resets the double-layer step seat 201, thereby causing the double-layer step seat 201 to shake. The double-layer step seat 201 can then shake the test tubes via the test tube placement column 202, thereby increasing the drying speed.

[0033] By setting a fixed mounting plate 301, it is easy to fix the drive electric actuator 302. The drive electric actuator 302 can drive the clamping plate 303 to move, and the clamping plate 303 can clamp the test tube through the clamping groove 304.

[0034] By setting up the drying mounting rack 401, it is possible to facilitate the installation of the drying lamp 403 through the drying mounting slot 402. The drying lamp 403 dries the test tubes, thereby increasing the drying speed of the test tubes.

[0035] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A double-layer test tube rack for categorized placement, characterized in that, It includes a test tube rack mounting base (1), a double-layer shaking assembly (2) is provided above the test tube rack mounting base (1), a test tube fixing assembly (3) is provided on one side of the double-layer shaking assembly (2), and a drying mounting assembly (4) is provided on one side of the test tube fixing assembly (3). The double-layer shaking assembly (2) includes a double-layer stepped seat (201), which is slidably engaged with the test tube rack mounting base (1). A test tube placement column (202) is installed above the double-layer stepped seat (201). A rotating protrusion (203) is slidably engaged on one side of the double-layer stepped seat (201). A rotating rod (204) is fixedly connected inside the rotating protrusion (203). A rotating rod fixing frame (205) is movably connected to the periphery of the rotating rod (204). The rotating rod fixing frame (205) is fixedly connected to the test tube rack mounting base (1). (204) One end is connected to a drive motor (206), the housing of the drive motor (206) is connected to the rotating rod fixing frame (205), the double-layer step seat (201) is symmetrically connected to a return spring (209) on the side away from the rotating protrusion (203), the return spring (209) is connected to a fixing plate (207) on one side, the fixing plate (207) is fixedly connected to the test tube rack mounting base (1), the fixing plate (207) has a sliding fit with a limit rod (208), and the limit rod (208) is fixedly connected to the double-layer step seat (201).

2. A double-layer test tube rack with classified placement according to claim 1, characterized in that, A multi-control switch (5) is installed on one side of the test tube rack mounting base (1), and the drive motor (206) is electrically connected to an external power source through the multi-control switch (5).

3. A double-layer test tube rack with classified placement according to claim 2, characterized in that, The double-layer stepped seat (201) is symmetrically fitted with sliding guide plates (6) on both sides, and the sliding guide plates (6) are connected to the test tube rack mounting seat (1).

4. A double-layer test tube rack with classified placement according to claim 3, characterized in that, The test tube fixing assembly (3) includes a fixing mounting plate (301), which is fixedly connected to the double-layer stepped seat (201). A drive electric push rod (302) is fixedly installed inside the fixing mounting plate (301), and a clamping plate (303) is connected to the output end of the drive electric push rod (302). A clamping groove (304) is opened inside the clamping plate (303).

5. A double-layer test tube rack with classified placement according to claim 4, characterized in that, The drive electric actuator (302) is electrically connected to an external power source via a multi-control switch (5).

6. A double-layer test tube rack with classified placement according to claim 5, characterized in that, The drying installation assembly (4) includes a drying installation rack (401), which is connected to the test tube rack mounting base (1). The drying installation rack (401) has a drying installation groove (402) inside, and a drying lamp (403) is installed inside the drying installation groove (402).

7. A double-layer test tube rack with classified placement according to claim 6, characterized in that, The drying lamp (403) is electrically connected to an external power source via a multi-control switch (5).