Test tube oscillation device for medical examination equipment

By designing a test tube shaking device with a placement plate and positioning components in medical testing equipment, the problem of having to stop the machine when picking up or placing test tubes is solved, and continuous shaking and efficient mixing of test tube samples are achieved.

CN224167368UActive Publication Date: 2026-04-28SHANGHAI ADICON CLINICAL LAB LNC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI ADICON CLINICAL LAB LNC
Filing Date
2025-07-15
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing medical testing equipment requires stopping operation when handling or placing test tubes, which affects the efficiency of shaking and mixing.

Method used

Design a test tube oscillation device that includes a placement plate, an oscillation plate, a vibration motor, and a positioning component, allowing the test tubes to be positioned and removed by the positioning component after oscillation, thus avoiding downtime for each operation.

Benefits of technology

It enables continuous oscillation of test tube samples, improves oscillation and mixing efficiency, and reduces the frequency of equipment downtime.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224167368U_ABST
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Abstract

The utility model relates to the field of oscillation equipment, in particular to a test tube oscillation device for medical examination equipment, which comprises a placing plate, an oscillation plate is arranged on the top surface of the placing plate, and a plurality of oscillation motors are fixedly connected to the bottom surface of the oscillation plate; when a worker places a to-be-oscillated test tube in the placing groove and then starts the vibration motors, vibration generated by the plurality of vibration motors can be transmitted to the test tube through the oscillation plate, so that a sample in the test tube can be oscillated, and after the sample in the test tube is oscillated, the test tube can be oscillated. The positioning part is used for positioning the test tube, and the test tube can be moved out of the interior of the placing groove in the positioning process, so that a sample in the test tube is prevented from continuously oscillating, the situation that equipment operation needs to be stopped when the test tube is taken or placed each time is avoided, and the sample in the test tube can continuously vibrate.
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Description

Technical Field

[0001] This utility model relates to the field of vibration equipment technology, specifically a test tube vibration device for medical testing equipment. Background Technology

[0002] Medical testing is a science that examines materials taken from the human body using microbiological, immunological, biochemical, genetic, hematological, biophysical, and cytological methods to provide information for the prevention, diagnosis, and treatment of human diseases and the assessment of human health. In clinical medicine, it is necessary to shake and mix samples in test tubes or to shake mixed reagents to ensure thorough mixing.

[0003] For example, patent document CN221815930U discloses a test tube shaking device for medical testing, including a sleeve, a vibrating cylinder inside the sleeve, a telescopic column fixed between the bottom end of the vibrating cylinder and the sleeve, a spring sleeved on the outer wall of the telescopic column, a vibrator installed in the middle of the bottom wall of the vibrating cylinder, and a limiting cavity circumferentially formed at the top of the vibrating cylinder. The beneficial effects are: this utility model, by setting up a motor, gears, a gear ring, a camera, and a supplementary light, allows the motor to drive the gear ring to rotate during shaking, which in turn drives the camera to rotate, thus enabling the camera to capture the shaking image of the test tube. The supplementary light provides supplementary illumination to ensure image quality. At this time, staff can observe the shaking image on a display screen, facilitating medical personnel to observe the shaking situation inside the test tube, ensuring proper shaking in one pass and avoiding secondary shaking, effectively improving the shaking effect and usability of the device.

[0004] However, in actual use, when the above-mentioned device is used to shake the sample in the test tube, it drives all the test tubes to shake simultaneously when the device is started, and stops shaking all the test tubes when it stops. However, during testing, it is necessary to shake the samples in different test tubes continuously. Each time a test tube is picked up or placed, the device must be stopped before operation. When the machine is stopped, the sample in the test tube cannot be continuously shaken, which will affect the efficiency of shaking and mixing. Therefore, there is an urgent need for a test tube shaking device for medical testing equipment to solve the above problems. Utility Model Content

[0005] The purpose of this invention is to provide a test tube shaking device for medical testing equipment, in order to solve the problem mentioned in the background art that the equipment needs to be stopped before each operation when taking out or placing a test tube, and the sample in the test tube cannot be continuously shaken when the machine is stopped, which affects the efficiency of shaking and mixing.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a test tube shaking device for medical testing equipment, comprising:

[0007] A placement plate, wherein a vibrating plate is provided on the top surface of the placement plate, and a plurality of vibrating motors are fixedly connected to the bottom surface of the vibrating plate;

[0008] Several placement slots are provided, all of which are located on the top surface of the vibrating plate, and a test tube is movably fitted inside each placement slot.

[0009] A fixing plate is disposed on the top surface of the placement plate, and a positioning hole is provided on the top surface of the fixing plate;

[0010] A positioning component is disposed inside the positioning hole for positioning the test tube.

[0011] Preferably, the positioning component includes:

[0012] A positioning tube is movably sleeved inside the positioning hole, and a protective ring is fixedly connected to the inner wall surface of the positioning tube;

[0013] Two adjustment slots, both of which are formed on the inner wall surface of the positioning hole;

[0014] An adjusting element is disposed inside the adjusting groove and is used to adjust the position of the positioning tube.

[0015] Preferably, the adjusting member includes:

[0016] Two connecting blocks are fixedly connected to the outer wall of the positioning tube at equal angles. A tension spring is fixedly connected to the top surface of each connecting block, and the top end of the tension spring is fixedly connected to the top surface inside the adjustment groove.

[0017] Several fixing holes are respectively opened on the left and right sides of the fixing plate.

[0018] Preferably, a positioning rod is movably sleeved inside the fixing hole, and a positioning groove is formed on the outer wall of the positioning tube, with the positioning rod and the positioning groove being movably sleeved together.

[0019] Preferably, a limiting groove is formed on the inner wall of the positioning hole, and a limiting block is fixedly connected to the outer wall of the positioning tube, with the limiting block and the limiting groove being movably sleeved together.

[0020] Preferably, a plurality of adjusting plates are fixedly connected at equal angles to the outer wall of the positioning tube, and support rods are fixedly connected to the four corner positions between the fixing plate and the placement plate.

[0021] Preferably, a plurality of rubber pads are fixedly connected to the bottom surface of the vibrating plate, and the bottom surface of the rubber pads is fixedly connected to the top surface of the placement plate.

[0022] Compared with the prior art, the beneficial effects of this utility model are:

[0023] 1. By setting up the test tube, when the operator places the test tube to be vibrated inside the placement slot and then starts the vibration motor, the vibration generated by several vibration motors can be transmitted to the test tube through the vibration plate, so that the sample inside the test tube can vibrate. After the sample inside the test tube has finished vibrating, the positioning component is used to position the test tube, and the test tube can be moved out of the placement slot during the positioning process. This avoids the sample inside the test tube from continuously vibrating, thus avoiding the need to stop the equipment every time the test tube is picked up or placed, and allowing the sample in the test tube to vibrate continuously.

[0024] 2. By setting a positioning tube, when the operator places the test tube inside the positioning tube, the positioning tube can position the test tube. At the same time, by setting a positioning rod, when the operator adjusts the position of the positioning tube inside the positioning hole, the positioning rod is movably fitted with the positioning groove, so that the positioning tube can be fixed inside the positioning hole. During the movement of the positioning tube, one end of the tension spring can move, so that the tension spring is stressed. By setting a tension spring, when the tension spring releases the force, it can drive the connecting block to move, so that the connecting block can move into the adjustment groove. At this time, the positioning tube can move inside the positioning hole. Attached Figure Description

[0025] Figure 1 This is a three-dimensional schematic diagram of the present invention;

[0026] Figure 2 This is a schematic diagram of the vibration plate of this utility model;

[0027] Figure 3 This is a schematic diagram of the fixing plate of this utility model;

[0028] Figure 4 This is a schematic diagram of the positioning tube of this utility model;

[0029] Figure 5 This is a schematic diagram of the adjustment plate of this utility model.

[0030] In the diagram: 1. Placement plate; 2. Vibration plate; 3. Vibration motor; 4. Placement slot; 5. Test tube; 6. Fixing plate; 7. Positioning hole; 8. Positioning tube; 9. Protective ring; 10. Adjustment slot; 11. Connecting block; 12. Tension spring; 13. Fixing hole; 14. Positioning rod; 15. Positioning slot; 16. Limiting slot; 17. Limiting block; 18. Adjustment plate; 19. Rubber pad; 20. Support rod. Detailed Implementation

[0031] 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.

[0032] Please see Figure 1-5 One embodiment provided by this utility model:

[0033] A test tube vibration device for medical testing equipment includes a placement plate 1, a vibration plate 2 on the top surface of the placement plate 1, and a plurality of vibration motors 3 fixedly connected to the bottom surface of the vibration plate 2; a plurality of placement slots 4 are opened on the top surface of the vibration plate 2, and test tubes 5 are movably sleeved inside the placement slots 4; a fixing plate 6 is provided on the top surface of the placement plate 1, and a positioning hole 7 is opened on the top surface of the fixing plate 6, and a positioning component is provided inside the positioning hole 7 for positioning the test tubes 5.

[0034] By setting up the test tube 5, when the operator places the test tube 5, which needs to be vibrated, inside the placement slot 4 and then starts the vibration motor 3, the vibration generated by several vibration motors 3 can be transmitted to the test tube 5 through the vibration plate 2, so that the sample inside the test tube 5 can vibrate. After the sample inside the test tube 5 has finished vibrating, the positioning component is used to position the test tube 5, and during the positioning process, the test tube 5 can be moved out of the placement slot 4, thereby avoiding continuous vibration of the sample inside the test tube 5. This avoids the need to stop the equipment and operate every time the test tube 5 is picked up or placed, so that the sample in the test tube 5 can vibrate continuously.

[0035] Furthermore, the positioning component includes a positioning tube 8, which is movably sleeved inside the positioning hole 7. A protective ring 9 is fixedly connected to the inner wall of the positioning tube 8. Two adjustment grooves 10 are opened at equal angles on the inner wall of the positioning hole 7. An adjustment component is provided inside the adjustment groove 10 for adjusting the position of the positioning tube 8.

[0036] By setting up the positioning tube 8, when the staff places the test tube 5 inside the positioning tube 8, the positioning tube 8 can position the test tube 5. At the same time, the position of the positioning tube 8 inside the positioning hole 7 can be adjusted by using the adjustment component, so that the positioning tube 8 can drive the test tube 5 to move when it moves.

[0037] Furthermore, the adjusting component includes two connecting blocks 11, which are fixedly connected to the outer wall of the positioning tube 8 at equal angles. A tension spring 12 is fixedly connected to the top surface of the connecting block 11, and the top end of the tension spring 12 is fixedly connected to the top surface inside the adjusting groove 10. Several fixing holes 13 are respectively opened on the left and right sides of the fixing plate 6.

[0038] By setting a tension spring 12, the tension spring 12 can drive the connecting block 11 to move, so that the connecting block 11 can move into the adjustment groove 10, at which time the positioning tube 8 can move inside the positioning hole 7.

[0039] Furthermore, a positioning rod 14 is movably sleeved inside the fixing hole 13, and a positioning groove 15 is opened on the outer wall of the positioning tube 8. The positioning rod 14 and the positioning groove 15 are movably sleeved together.

[0040] By setting the positioning rod 14, after the staff adjusts the position of the positioning tube 8 inside the positioning hole 7, the positioning rod 14 and the positioning groove 15 are movably sleeved together, so that the positioning tube 8 can be fixed inside the positioning hole 7. At the same time, the positioning tube 8 can drive one end of the tension spring 12 to move during the movement, so that the tension spring 12 is stressed.

[0041] Furthermore, a limiting groove 16 is formed on the inner wall of the positioning hole 7, and a limiting block 17 is fixedly connected to the outer wall of the positioning tube 8. The limiting block 17 and the limiting groove 16 are movably fitted together.

[0042] By setting a limiting block 17, and by movably fitting the limiting block 17 together with the limiting groove 16, the limiting block 17 can limit the positioning tube 8, preventing the positioning tube 8 from rotating inside the positioning hole 7.

[0043] Furthermore, several adjusting plates 18 are fixedly connected at equal angles on the outer wall of the positioning tube 8, and support rods 20 are fixedly connected at the four corner positions between the fixing plate 6 and the placement plate 1.

[0044] By setting the support rod 20, the support rod 20 can support the fixing plate 6, so that the fixing plate 6 can be fixed on the top surface of the placement plate 1.

[0045] Furthermore, several rubber pads 19 are fixedly connected to the bottom surface of the vibrating plate 2, and the bottom surface of the rubber pads 19 is fixedly connected to the top surface of the placement plate 1.

[0046] By setting up the rubber pad 19, since the bottom surface of the rubber pad 19 is fixedly connected to the top surface of the placement plate 1, the vibration transmitted from the vibration plate 2 to the placement plate 1 can be reduced.

[0047] Working principle: By setting up the test tube 5, when the operator places the test tube 5 to be vibrated inside the placement slot 4 and then starts the vibration motor 3, the vibration generated by several vibration motors 3 can be transmitted to the test tube 5 through the vibration plate 2, so that the sample inside the test tube 5 can vibrate. After the sample inside the test tube 5 has finished vibrating, the positioning component is used to position the test tube 5, and during the positioning process, the test tube 5 can be moved out of the placement slot 4, thereby avoiding the continuous vibration of the sample inside the test tube 5. This avoids the need to stop the equipment and operate every time the test tube 5 is picked up or placed, so that the sample in the test tube 5 can vibrate continuously.

[0048] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A test tube shaking device for medical testing equipment, characterized in that, include: Placement plate (1), the top surface of the placement plate (1) is provided with a vibrating plate (2), and the bottom surface of the vibrating plate (2) is fixedly connected with a number of vibrating motors (3). Several placement slots (4) are provided on the top surface of the vibration plate (2), and test tubes (5) are movably fitted inside the placement slots (4). A fixing plate (6) is provided on the top surface of the placement plate (1), and a positioning hole (7) is provided on the top surface of the fixing plate (6). A positioning component is disposed inside the positioning hole (7) for positioning the test tube (5).

2. The test tube shaking device for medical testing equipment according to claim 1, characterized in that: The positioning component includes: Positioning tube (8), which is movably sleeved inside the positioning hole (7), and a protective ring (9) is fixedly connected to the inner wall surface of the positioning tube (8). Two adjustment grooves (10), both of which are formed on the inner wall surface of the positioning hole (7); An adjusting member is disposed inside the adjusting groove (10) and is used to adjust the position of the positioning tube (8).

3. The test tube shaking device for medical testing equipment according to claim 2, characterized in that: The adjusting element includes: Two connecting blocks (11) are fixedly connected to the outer wall of the positioning tube (8) at equal angles. A tension spring (12) is fixedly connected to the top surface of the connecting block (11). The top end of the tension spring (12) is fixedly connected to the top surface inside the adjustment groove (10). A number of fixing holes (13) are respectively opened on the left and right sides of the fixing plate (6).

4. The test tube shaking device for medical testing equipment according to claim 3, characterized in that: The positioning rod (14) is movably sleeved inside the fixing hole (13), and the positioning groove (15) is opened on the outer wall of the positioning tube (8). The positioning rod (14) and the positioning groove (15) are movably sleeved together.

5. The test tube shaking device for medical testing equipment according to claim 3, characterized in that: The inner wall of the positioning hole (7) is provided with a limiting groove (16), and the outer wall of the positioning tube (8) is fixedly connected with a limiting block (17). The limiting block (17) and the limiting groove (16) are movably sleeved together.

6. The test tube shaking device for medical testing equipment according to claim 3, characterized in that: The outer wall of the positioning tube (8) is fixedly connected with several adjusting plates (18) at equal angles, and the four corner positions between the fixing plate (6) and the placement plate (1) are all fixedly connected with support rods (20).

7. The test tube shaking device for medical testing equipment according to claim 1, characterized in that: The bottom surface of the vibrating plate (2) is fixedly connected with several rubber pads (19), and the bottom surface of the rubber pads (19) is fixedly connected to the top surface of the placement plate (1).

Citation Information

Patent Citations

  • Test tube oscillation equipment for medical examination

    CN221815930U