Clinical medical examination oscillation device

By designing an oscillation device suitable for test tubes of different sizes, and using the coupling of limiting parts and support rods, the oscillation inadequacy problem caused by different test tube lengths is solved, and flexible test tube oscillation and reagent anti-spraying effect are achieved.

CN223127857UActive Publication Date: 2025-07-22长治医学院附属和济医院

Patent Information

Application Number
CN202422303172.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-07-22
Estimated Expiration
2034-09-20

AI Technical Summary

Technical Problem

In the existing clinical medical test oscillation device, the length of the test tube is different and the frame size is fixed, resulting in the inability to adapt to test tubes of different sizes, affecting the oscillation effect.

Method used

A device including a base, an oscillation mechanism, a placement structure, a limit frame and a limit member is designed. The oscillation mechanism pushes the placement structure to reciprocate within the limit frame, and through the coordination of the limit member and the support rod, the height of the placement frame is adjusted to adapt to test tubes of different sizes.

Benefits of technology

It realizes flexible adaptation to test tubes of different sizes, improves oscillation efficiency, avoids reagent spills, and has a simple and practical structure.

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    Figure CN223127857U_ABST
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Abstract

The utility model relates to the technical field of oscillation devices, and discloses a clinical medical examination oscillation device which comprises a base and an oscillation mechanism arranged at the upper end of the base, a placing structure is further arranged at the upper end of the base, a test tube body is arranged on the surface of the placing structure, and a tube plug is arranged at an opening of the test tube body. A limiting frame is fixedly installed at the upper end of the base, test tube bodies are inserted into inserting holes, then a motor is started, a rotary disc can be driven to rotate, a containing frame can be pushed to reciprocate under driving of a connecting rod and a hinge base, the containing frame can be limited through a limiting groove and a limiting block, and oscillation of the test tube bodies is achieved; a reagent in the test tube body can be prevented from spilling out under the action of the tube plug, the auxiliary frame can be pulled upwards, the supporting rod can slide in the placement groove and is fixed by using a bolt, the overall height of the placement frame and the auxiliary frame can be adjusted, the placement frame can adapt to the test tube bodies with different sizes, and the use flexibility is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of oscillation devices, in particular to a clinical medical inspection oscillation device. Background Technique

[0002] Clinical medicine is a science that studies the causes, diagnoses, treatments, and prognoses of diseases, improves the level of clinical treatment, and promotes human health. According to the clinical manifestations of patients, starting from the whole, it combines the study of the causes, pathogenesis, and pathological processes of diseases, and then determines the diagnosis. Through prevention and treatment, it weakens diseases to the greatest extent, alleviates the pain of patients, restores the health of patients, and protects the labor force. When conducting clinical medical inspections, it is necessary to oscillate the samples in the test tubes to make the reagents in the test tubes mix evenly.

[0003] For example, a clinical medical inspection oscillation device with the publication number of CN220370891U includes: a frame shell, a handle, a control module, a cylinder, a placement frame, a limiting rod, a load-bearing block, a rubber sleeve, a test tube, a tube plug, an insertion shaft, a nut, a top plate, and a rubber pressing plate; handles are connected to both ends of the top of the frame shell, a control module is connected to the top end of one side of the inner wall of the frame shell, cylinders are connected to both ends of the top of the control module, a placement frame is connected to the top of the cylinders, limiting rods are connected to both ends of the outer wall of the other side of the placement frame, and a load-bearing block is connected to the outer wall of the limiting rods. Through the improvement of a clinical medical inspection oscillation device, by setting the cylinder, the placement frame can be shaken together, and at the same time, the test tubes placed on the inner wall of the placement frame will also shake together, thus achieving the oscillation effect. This not only saves manpower and time but also improves the work efficiency of the laborers, effectively solving the problems and deficiencies in the existing devices.

[0004] In the above patent, it is proposed that the cylinder can be used to shake the placement frame together, and at the same time, the test tubes placed on the inner wall of the placement frame will also shake together, thus achieving the oscillation effect. However, during the use of the oscillation device, due to the different sizes and lengths of the test tubes, and the fixed size of the placement frame for placing the test tubes, it is inconvenient to adapt to test tubes of different sizes, which in turn affects the oscillation of the test tubes.

[0005] Therefore, we propose a clinical medical inspection oscillation device to solve the above-mentioned problems. Content of the Utility Model

[0006] The purpose of the utility model is to provide a clinical medical inspection oscillation device to solve the problem proposed in the above background technique that due to the different sizes and lengths of the test tubes, and the fixed size of the placement frame for placing the test tubes, it is inconvenient to adapt to test tubes of different sizes, which in turn affects the oscillation of the test tubes.

[0007] To achieve the above object, the utility model provides the following technical solutions: A clinical medicine inspection oscillation device, which includes a base and an oscillation mechanism arranged on the upper end of the base. A placement structure is also arranged on the upper end of the base. A test tube body is arranged on the surface of the placement structure. A tube plug for leak prevention is arranged at the opening of the test tube body. A limiting frame is fixedly installed on the upper end of the base, and the limiting frame is used to limit the position of the placement structure. The arranged oscillation mechanism can push the placement structure to reciprocate within the limiting frame to realize the oscillation of the test tube body.

[0008] The placement structure includes a placement rack and a shock pad arranged on the surface of the placement rack. A bottom placement groove is formed on the surface of the placement rack, and an accommodation groove is formed inside the placement rack. A support rod is slidably connected inside the accommodation groove. The upper end of the support rod is connected with an auxiliary rack. Through holes for placing the test tube body are formed on the surfaces of both the auxiliary rack and the placement rack. Limiting members are arranged on one side of both the auxiliary rack and the placement rack, and the limiting members are used to limit the position of the test tube body. When the auxiliary rack is pulled upward, the support rod can slide within the accommodation groove and is fixed with bolts to realize the adjustment of the overall height of the placement rack and the auxiliary rack.

[0009] Preferably, two symmetrical limiting blocks are installed on the side wall of the placement rack, and a shock pad is also arranged on the side wall of the placement rack. The shock pad is used to reduce the collision between the placement rack and the inner wall of the limiting frame.

[0010] Preferably, the limiting member includes a fixed block and a threaded rod inserted through the surface of the fixed block. One end of the threaded rod is connected with a limiting ring, and a rubber cushion layer is arranged on the inner wall of the limiting ring. When the threaded rod is rotated, the limiting ring and the rubber cushion layer can be pushed to move, so as to clamp the test tube body and realize the limitation of the test tube body.

[0011] Preferably, the oscillation mechanism includes an open cavity formed inside the base and a motor installed inside the open cavity. The output end of the motor is connected with a turntable, and the turntable is placed on the upper end of the base. A connecting rod is rotatably connected to the surface of the turntable. The end of the connecting rod far away from the turntable is connected with a hinge seat, and the hinge seat is fixed on the side wall of the placement rack. When the motor is started, the turntable can be driven to rotate, and the placement rack can be pushed to move reciprocally under the drive of the connecting rod and the hinge seat.

[0012] Preferably, limiting grooves are formed on the left and right inner walls of the limiting frame, a wear-resistant layer is arranged on the inner wall of the limiting frame, and a groove is formed on the inner wall of the limiting frame. The groove is communicated with the limiting groove, and the groove is used to accommodate the threaded rod.

[0013] Preferably, the limiting grooves are adapted to the limiting blocks. When the placement rack slides within the limiting frame, the placement rack can be limited by the limiting grooves and the limiting blocks, and the arranged wear-resistant layer can reduce friction.

[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0015] 1. By providing an oscillation mechanism, a placement structure, a test tube body, a tube plug, and a limit frame, it can push the placement structure to reciprocate within the limit frame, realizing the oscillation of the test tube body, and can adjust the overall height between the placement rack and the auxiliary rack, thereby adapting to test tube bodies of different sizes, making the device flexible to use, relatively practical, and simple in structure.

[0016] 2. By providing a limiting member, it can clamp the test tube body, and when the diameter of the test tube body changes, it can also achieve the clamping effect, that is, the purpose of clamping different test tubes can be realized, which is convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is the overall three-dimensional structure schematic diagram of the present utility model;

[0018] Figure 2 is the three-dimensional structure schematic diagram of the oscillation mechanism of the present utility model;

[0019] Figure 3 is the three-dimensional structure schematic diagram of the placement structure of the present utility model;

[0020] Figure 4 is the three-dimensional structure schematic diagram of the limit frame of the present utility model.

[0021] In the figure: 1. Base; 2. Oscillation mechanism; 21. Open cavity; 22. Motor; 23. Turntable; 24. Connecting rod; 25. Hinge seat; 3. Placement structure; 31. Placement rack; 32. Limit block; 33. Anti-collision pad; 34. Bottom placement groove; 35. Auxiliary rack; 36. Support rod; 37. Placement groove; 38. Insertion hole; 39. Limiting member; 391. Fixed block; 392. Threaded rod; 393. Limit ring; 394. Rubber cushion layer; 4. Test tube body; 5. Tube plug; 6. Limit frame; 61. Limit groove; 62. Wear-resistant layer; 63. Groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0023] Embodiment 1: Please refer to Figure 1 、 Figure 2 、 Figure 3 and Figure 4, A clinical medical examination oscillation device, including a base 1 and an oscillation mechanism 2 arranged at the upper end of the base 1. A placement structure 3 is also arranged at the upper end of the base 1. A test tube body 4 is arranged on the surface of the placement structure 3. A tube plug 5 for leak prevention is arranged at the opening of the test tube body 4. A limit frame 6 is fixedly installed at the upper end of the base 1. The limit frame 6 is used to limit the position of the placement structure 3. The arranged oscillation mechanism 2 can push the placement structure 3 to reciprocate within the limit frame 6 to realize the oscillation of the test tube body 4;

[0024] The placement structure 3 includes a placement rack 31 and an anti-collision pad 33 arranged on the surface of the placement rack 31. A bottom placement groove 34 is opened on the surface of the placement rack 31. The bottom placement groove 34 is used to place the bottom of the test tube body 4. An installation groove 37 is opened inside the placement rack 31. A support rod 36 is slidably connected inside the installation groove 37. The upper end of the support rod 36 is connected with an auxiliary rack 35. Insertion holes 38 for placing the test tube body 4 are opened on the surfaces of both the auxiliary rack 35 and the placement rack 31. Limit members 39 are arranged on one side of both the auxiliary rack 35 and the placement rack 31. The limit members 39 are used to limit the position of the test tube body 4. When the auxiliary rack 35 is pulled upward, the support rod 36 can slide within the installation groove 37 and is fixed with bolts to realize the adjustment of the overall height of the placement rack 31 and the auxiliary rack 35, which can adapt to test tube bodies 4 of different sizes and improve the use flexibility.

[0025] Two symmetrical limit blocks 32 are installed on the side wall of the placement rack 31. An anti-collision pad 33 is also arranged on the side wall of the placement rack 31. The anti-collision pad 33 is used to reduce the collision between the placement rack 31 and the inner wall of the limit frame 6.

[0026] The oscillation mechanism 2 includes an open cavity 21 opened inside the base 1 and a motor 22 installed inside the open cavity 21. The output end of the motor 22 is connected with a turntable 23. The turntable 23 is placed at the upper end of the base 1. A connecting rod 24 is rotatably connected to the surface of the turntable 23. The end of the connecting rod 24 far from the turntable 23 is connected with a hinge seat 25. The hinge seat 25 is fixed on the side wall of the placement rack 31. When the motor 22 is started, it can drive the turntable 23 to rotate. Driven by the connecting rod 24 and the hinge seat 25, the placement rack 31 can be pushed to move reciprocally, and then the test tube body 4 can be oscillated. Under the action of the tube plug 5, the reagent in the test tube body 4 can be prevented from spilling out.

[0027] Limit grooves 61 are opened on the left and right inner walls of the limit frame 6. A wear-resistant layer 62 is arranged on the inner wall of the limit frame 6. The limit grooves 61 are adapted to the limit blocks 32. When the placement rack 31 slides within the limit frame 6, the placement rack 31 can be restricted by the limit grooves 61 and the limit blocks 32, and the arranged wear-resistant layer 62 can reduce friction.

[0028] In this embodiment: Insert the test tube body 4 into the jack 38, and use the tube plug 5 to block the opening of the test tube body 4. Then start the motor 22, which can drive the turntable 23 to rotate. Driven by the connecting rod 24 and the hinge seat 25, the placement rack 31 can be pushed to move back and forth. The placement rack 31 can be restricted by the limit groove 61 and the limit block 32, and the wear-resistant layer 62 can be used to reduce friction. Thus, the test tube body 4 can be oscillated, and the reagent in the test tube body 4 can be prevented from spilling out under the action of the tube plug 5. Moreover, the auxiliary rack 35 can be pulled upward, and the support rod 36 can slide in the placement groove 37 and be fixed with bolts, so as to adjust the overall height of the placement rack 31 and the auxiliary rack 35, which can adapt to test tube bodies 4 of different sizes and improve the flexibility of use.

[0029] Embodiment 2: This embodiment is an improvement made on the basis of Embodiment 1. Specifically, please refer to Figure 2 and Figure 4 , the limiting member 39 includes a fixed block 391 and a threaded rod 392 inserted through the surface of the fixed block 391. One end of the threaded rod 392 is connected with a limiting ring 393, and a rubber cushion layer 394 is arranged on the inner wall of the limiting ring 393. When the threaded rod 392 is rotated, the limiting ring 393 and the rubber cushion layer 394 can be pushed to move, so as to clamp the test tube body 4 and realize the limitation of the test tube body 4. According to the different positions where the limiting ring 393 moves, test tube bodies 4 of different sizes can be clamped.

[0030] A groove 63 is formed on the inner wall of the limiting frame 6, and the groove 63 communicates with the limit groove 61. When the placement rack 31 moves to the rightmost end of the inner wall of the limiting frame 6, the threaded rod 392 can be accommodated by the groove 63 to prevent the threaded rod 392 from hitting the limiting frame 6.

[0031] In this embodiment: After the test tube body 4 is inserted into the jack 38, rotate the threaded rod 392, which can push the limiting ring 393 and the rubber cushion layer 394 to move, so that the rubber cushion layer 394 closely adheres to the test tube body 4. The two limiting rings 393 can limit the upper and middle positions of the test tube body 4 to realize the limitation of the test tube body 4, and the fixing effect is good. According to the different positions where the limiting ring 393 moves, test tube bodies 4 of different sizes can be clamped, which is beneficial to use.

[0032] Working principle: Insert the test tube body 4 into the jack 38, and use the tube plug 5 to block the opening of the test tube body 4. Rotate the threaded rod 392, which can push the limit ring 393 and the rubber cushion layer 394 to move. The two limit rings 393 can limit the upper and middle positions of the test tube body, realizing the limitation of the test tube body 4. Then start the motor 22, which can drive the turntable 23 to rotate. Driven by the connecting rod 24 and the hinge seat 25, the placement rack 31 can be pushed to move reciprocally. The placement rack 31 can be restricted by the limit groove 61 and the limit block 32, and the test tube body 4 can be oscillated. And the auxiliary rack 35 can be pulled upward. The support rod 36 can slide in the placement groove 37 and is fixed by bolts, realizing the adjustment of the overall height of the placement rack 31 and the auxiliary rack 35, which can adapt to test tube bodies 4 of different sizes.

[0033] The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.

[0034] Although the present utility model has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A clinical medical examination oscillation device, comprising a base (1) and an oscillation mechanism (2) arranged at the upper end of the base (1), characterized in that: A placing structure (3) is further provided at the upper end of the base (1). A test tube body (4) is arranged on the surface of the placing structure (3). A tube plug (5) is arranged at the opening of the test tube body (4). A limiting frame (6) is fixedly installed at the upper end of the base (1). The limiting frame (6) is used to limit the position of the placing structure (3). The arranged oscillation mechanism (2) can push the placing structure (3) to reciprocate within the limiting frame (6). The placing structure (3) includes a placing rack (31) and a shock pad (33) arranged on the surface of the placing rack (31). A bottom placing groove (34) is formed on the surface of the placing rack (31). An installation groove (37) is formed inside the placing rack (31). A support rod (36) is slidably connected inside the installation groove (37). The upper end of the support rod (36) is connected to an auxiliary rack (35). Insertion holes (38) are formed on the surfaces of both the auxiliary rack (35) and the placing rack (31). Limiting members (39) are arranged on one side of both the auxiliary rack (35) and the placing rack (31). The limiting members (39) are used to limit the position of the test tube body (4).

2. The oscillating device for clinical medical examination according to claim 1, characterized in that: Two symmetrical limiting blocks (32) are installed on the side wall of the placing rack (31). A shock pad (33) is also arranged on the side wall of the placing rack (31).

3. The clinical medical examination oscillation device according to claim 2, wherein: The limiting member (39) includes a fixing block (391) and a threaded rod (392) inserted through the surface of the fixing block (391). One end of the threaded rod (392) is connected to a limiting ring (393). A rubber cushion layer (394) is arranged on the inner wall of the limiting ring (393).

4. The oscillating device for clinical medical examination according to claim 3, wherein: The oscillation mechanism (2) includes an open cavity (21) formed inside the base (1) and a motor (22) installed inside the open cavity (21). The output end of the motor (22) is connected to a turntable (23). The turntable (23) is placed at the upper end of the base (1). A connecting rod (24) is rotatably connected to the surface of the turntable (23). The end of the connecting rod (24) far from the turntable (23) is connected to a hinge seat (25). The hinge seat (25) is fixed on the side wall of the placing rack (31).

5. The oscillating device for clinical medical examination according to claim 4, wherein: Limiting grooves (61) are formed on the left and right inner walls of the limiting frame (6). A wear-resistant layer (62) is arranged on the inner wall of the limiting frame (6). A groove (63) is formed on the inner wall of the limiting frame (6). The groove (63) communicates with the limiting groove (61). The groove (63) is used to accommodate the threaded rod (392).

6. The oscillating device for clinical medical examination according to claim 5, characterized in that: The limiting groove (61) is adapted to the limiting block (32). When the placing rack (31) slides within the limiting frame (6), the limiting groove (61) and the limiting block (32) can be used to limit the placing rack (31).

Citation Information

Patent Citations

  • Clinical medical examination oscillation device

    CN220370891U

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    CN121558654A