Experimental platform for clinical medical examination

By designing a slidable pallet and box structure on the experimental platform, the seesaw transfer of samples is solved, and the problem of frequent handling of samples by staff in the prior art is solved, which improves work efficiency and reduces labor intensity.

CN223042761UActive Publication Date: 2025-07-01NANFANG HOSPITAL OF SOUTHERN MEDICAL UNIV
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Patent Information

Application Number
CN202422254702.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-07-01
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

The existing experimental platform for clinical medical testing lacks the structure of sliding samples, which causes staff to frequently carry samples, which is very labor-intensive and inefficient.

Method used

An experimental platform with a rectangular tray was designed. The upper opening box is slidably provided in the tray, and the transfer of samples is achieved through the seesaw form. Combined with structures such as universal wheels, limit bolts, and magnetic blocks, it simplifies the transfer and fixation of samples.

Benefits of technology

Sample transfer in the form of seesaw reduces the labor intensity of staff, improves work efficiency, and reduces the difficulty and time of sample transfer.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of medical experiment platforms, in particular to an experiment platform for clinical medical examination, which can play a sliding transfer role on samples in a seesaw form, reduce the labor intensity of workers and improve the working efficiency. Comprising a workbench, the workbench is in a flat cuboid shape, supporting legs are arranged at the four corners of the bottom face of the workbench respectively, and universal wheels with a limiting function are fixedly arranged on the bottom faces of the supporting legs; a rectangular tray is axially arranged above the workbench, the center position of the bottom face of the tray is hinged to a support, and the support is installed on the workbench. The inner surface of the tray is a smooth surface, a box body with an upper opening is arranged in the tray in a sliding mode, and limiting bolts matched with the box body are inwards screwed on one sides of the two ends of the tray respectively. The device is easy to operate, convenient to use and suitable for various places.
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Description

Technical Field

[0001] The utility model relates to the field of medical experiment platforms, and particularly relates to an experiment platform for clinical medical inspection. Background Technique

[0002] During the process of clinical medical inspection, it is necessary to inspect the blood of patients. During this inspection process, an experiment platform is required. Generally, the structure of an inspection experiment platform usually only includes a simple platform with legs provided at the bottom of the platform, and various detection instruments are placed on the platform. During the working process, the collected test tube samples need to be transferred to the detection personnel. In some inspection centers, the blood collection area and the detection area are located in the same room, usually at a certain distance apart. Usually, the staff carry the samples and walk them over.

[0003] The above working method can meet the transfer of samples. However, the staff frequently transfer samples, which results in a high labor intensity and is not conducive to improving work efficiency. There is no structure for sliding the transfer of samples on the existing experiment platform, so it cannot play the role of transferring samples. Content of the Utility Model

[0004] Aiming at the deficiencies of the prior art, the utility model provides an experiment platform for clinical medical inspection. The experiment platform can play a role in sliding the transfer of samples in the form of a seesaw, reducing the labor intensity of the staff and improving work efficiency, and effectively solving the problems raised in the background technique.

[0005] To achieve the above object, the utility model provides the following technical solution: An experiment platform for clinical medical inspection, including a workbench. The workbench is in the shape of a flat cuboid, and legs are respectively provided at the four corners of the bottom surface. The bottom surface of the legs is fixedly provided with universal wheels with a limiting function.

[0006] Above the workbench, a rectangular tray is axially provided. The center position of the bottom surface of the tray is hinged to a support, and the support is installed on the workbench.

[0007] The inner surface of the tray is smooth, and a box body with an upper opening can be slidably arranged in the tray. One side of each end of the tray is respectively screwed inward with a limiting bolt that cooperates with the box body.

[0008] As a preferred technical solution, the box body is in the shape of a cuboid with an upper opening, and the bottom surface and the left and right side surfaces are respectively slidably matched with the inner surface of the tray.

[0009] As a preferred technical solution, arc-shaped handles are respectively fixedly provided on the front and rear outer surfaces of the tray.

[0010] As a preferred technical solution, bolts connecting to the support are screwed through the bottom surface of the workbench upward. A rectangular notch is embedded in the support. A horizontal rotating shaft is fixedly arranged at the rectangular notch. A connecting block is rotatably sleeved on the rotating shaft. The top surface of the connecting block is fixedly connected to the center position of the bottom surface of the tray.

[0011] As a preferred technical solution, axial springs are respectively fixedly arranged on the front top surface and the rear top surface inside the tray. Slidable baffles are respectively fixedly arranged at the inner ends of the springs.

[0012] As a preferred technical solution, a cylindrical blind hole is embedded in the center position of the workbench. A cylindrical fixing block is rotatably arranged in the cylindrical blind hole. A bolt fixedly connecting to the support is screwed from the bottom up through the cylindrical fixing block. The protruding part below the bolt is embedded in the cylindrical fixing block.

[0013] As a preferred technical solution, first magnetic blocks are respectively fixedly arranged on the outer bottom surfaces at the front and rear ends of the tray. Second magnetic blocks attracted to the first magnetic blocks are respectively fixedly arranged on the upper surfaces at the front and rear ends of the workbench.

[0014] Compared with the prior art, the utility model provides an experimental platform for clinical medical examination, having the following beneficial effects:

[0015] 1. In the utility model, the workbench is in the shape of a flat cuboid, and supporting legs are respectively arranged at the four corners of the bottom surface. Universal wheels with a limiting function are fixedly arranged at the bottom surfaces of the supporting legs. During use, the workbench can move through the universal wheels and can be fixed and limited, which is beneficial to the transfer and stable operation of the workbench.

[0016] 2. In the utility model, a rectangular tray is axially arranged above the workbench. The center position of the bottom surface of the tray is hinged to the support. The support is installed on the workbench. The inner surface of the tray is a smooth surface. A box body with an upward opening is slidably arranged in the tray. Limiting bolts cooperating with the box body are respectively screwed inward from one side at both ends of the tray. During use, the box body can temporarily store test samples. When sending for inspection, the inner end of the tray can be directly lifted, then the box body can freely slide to the other end in the tray, and the staff can take out the sample. Then, the rear end of the tray is lifted, and the box body is sent back to wait for the next transportation. The transfer of the sample is realized in the form of a seesaw, improving the work efficiency and reducing the labor intensity of the staff. Screwing the limiting bolts inward can play a role in limiting the box body. Loosening the limiting bolts, the box body can restore the sliding state.

[0017] 3. In the utility model, axial springs are respectively fixedly arranged on the front top surface and the rear top surface inside the tray. Slidable baffles are respectively fixedly arranged at the inner ends of the springs. During use, the baffles and the springs can play a buffering role when the box body slides to the end.

[0018] 4. In the utility model, a cylindrical blind hole is embedded in the center position of the workbench, a cylindrical fixing block is rotatably arranged in the cylindrical blind hole, a bolt fixedly connected with the support is screwed from the bottom up through the cylindrical fixing block, and the protruding part on the lower side of the bolt is embedded in the cylindrical fixing block. During use, the tray can be adjusted in angle by circumferential rotation through the cylindrical fixing block, which is convenient for the staff to use.

[0019] 5. In the utility model, first magnetic blocks are respectively fixedly arranged on the outer bottom surfaces of the front and rear ends of the tray, and second magnetic blocks attracted to the first magnetic blocks are respectively fixedly arranged on the upper surfaces of the front and rear ends of the workbench. During use, the cooperation of the first magnetic blocks and the second magnetic blocks can respectively play a role in attracting and fixing the two ends of the tray, which is convenient for limiting the tray and avoiding up and down shaking. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The drawings described herein are used to provide a further understanding of the utility model and constitute a part of this application:

[0021] Figure 1 It is a schematic three-dimensional structure diagram of the first embodiment of the utility model;

[0022] Figure 2 It is a schematic split structure diagram of the support;

[0023] Figure 3 It is a schematic three-dimensional structure diagram of the second embodiment of the utility model;

[0024] Figure 4 It is a schematic three-dimensional structure diagram of the third embodiment of the utility model;

[0025] Figure 5 For Figure 4 The enlarged structure diagram of the workbench in

[0026] Reference numerals in the drawings: 1. Workbench; 11. Legs; 111. Universal wheels; 12. Cylindrical blind hole; 2. Tray; 21. Arc handle; 22. Limit bolt; 3. Support; 31. Rectangular notch; 32. Rotating shaft; 33. Connecting block; 4. Box body; 5. Spring; 51. Baffle; 6. Cylindrical fixing block; 7. Second magnetic block. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0027] Next, the technical solutions in the embodiments of the utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only a part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the 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 utility model. Embodiment 1

[0028] As Figure 1, Figure 2 As shown in the figure, an experimental platform for clinical medical examination includes a workbench 1. The workbench 1 is in the shape of a flat cuboid, and universal wheels 111 with a limiting function are fixedly provided at the four corners of the bottom surface. The bottom surface of the universal wheels 111 is fixedly provided with legs 11.

[0029] Above the workbench 1, a rectangular tray 2 is axially provided. The center position of the bottom surface of the tray 2 is hinged to a support 3, and the support 3 is installed on the workbench 1. A space for placing inspection equipment is left at the front end of the workbench 1.

[0030] The inner surface of the tray 2 is a smooth surface. A box body 4 with an upper opening is slidably provided in the tray 2. Limiting bolts 22 that cooperate with the box body 4 are respectively screwed inward on one side of the two ends of the tray 2.

[0031] The box body 4 is in the shape of a cuboid with an upper opening, and its bottom surface and left and right side surfaces are respectively in sliding fit with the inner surface of the tray 2.

[0032] Arc-shaped handles 21 are respectively fixedly provided on the front and rear outer surfaces of the tray 2.

[0033] Bolts connecting to the support 3 are screwed upward through the bottom surface of the workbench 1. A rectangular notch 31 is embedded in the support 3. A transverse rotating shaft 32 is fixedly provided at the rectangular notch 31. A connecting block 33 is rotatably sleeved on the rotating shaft 32, and the top surface of the connecting block 33 is fixedly connected to the center position of the bottom surface of the tray 2.

[0034] During use, the workbench 1 can be moved and positioned through the universal wheels 111 and can be fixed and limited, which is beneficial for the transfer and stable operation of the workbench 1. The inspection samples can be temporarily stored in the box body 4. When sending the samples for inspection, the inner end of the tray 2 can be directly lifted, then the box body 4 can freely slide to the other end in the tray 2, and the staff can take out the samples. Then, the rear end of the tray 2 is lifted to send the box body 4 back and wait for the next transportation. The transfer of the samples is realized in the form of a seesaw. Screwing the limiting bolts 22 inward can limit the box body 4, and loosening the limiting bolts 22, the box body 4 can return to the sliding state. Embodiment 2

[0035] As Figure 3 shown, axial springs 5 are respectively fixedly provided on the front top surface and the rear top surface inside the tray 2. The inner ends of the springs 5 are respectively fixedly provided with slidable baffles 51.

[0036] During use, the baffles 51 and the springs 5 can play a buffering role when the box body 4 slides to the end. Embodiment 3

[0037] As Figure 4 , Figure 5As shown in the figure, a cylindrical blind hole 12 is embedded in the central position of the workbench 1. A cylindrical fixing block 6 is rotatably arranged in the cylindrical blind hole 12. A bolt (not visible) fixedly connected to the support 3 is screwed from the bottom up through the cylindrical fixing block 6. The protruding part on the lower side of the bolt is embedded in the cylindrical fixing block 6.

[0038] First magnets (not visible) are respectively fixedly arranged on the outer bottom surfaces of the front and rear ends of the tray 2. Second magnets 7 attracted to the first magnets are respectively fixedly arranged on the upper surfaces of the front and rear ends of the workbench 1.

[0039] During use, the tray 2 can be adjusted in angle by circumferential rotation through the cylindrical fixing block 6, which is convenient for the staff to use. The cooperation of the first magnet and the second magnet 7 can respectively play a role in attracting and fixing the two ends of the tray 2, which is convenient for limiting the tray 2 and avoiding up and down shaking.

[0040] The components used in the present utility model are all common standard components or components known to those skilled in the art, and their structures and principles are well known to those skilled in the art.

[0041] It should be noted that in this article, the orientation or positional relationship indicated by terms such as "first", "second", "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only used to distinguish one entity or operation from another entity or operation, and does not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0042] The structures, ratios, sizes, etc. schematically shown in the drawings of this specification are only used to cooperate with the content disclosed in the specification for those familiar with this technology to understand and read, and are not used to limit the limiting conditions under which the present utility model can be implemented. Any modification of the structure, change of the proportional relationship or adjustment of the size, without affecting the effects that the present utility model can produce and the purposes that can be achieved, should still fall within the scope covered by the technical content disclosed in the present utility model.

[0043] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A clinical medical test experimental platform, characterized by: It includes a workbench, which is in the shape of a flat rectangular parallelepiped, with legs respectively arranged at the four corners of the bottom surface, and universal wheels with a limiting function fixedly arranged on the bottom surface of the legs; A rectangular tray is axially arranged above the workbench, the center position of the bottom surface of the tray is hinged to a support, and the support is installed on the workbench; The inner surface of the tray is smooth, and a box body with an upper opening is slidably arranged in the tray. Limiting bolts cooperating with the box body are respectively screwed inwards on one side of the two ends of the tray.

2. The clinical medical testing experimental platform according to claim 1, characterized in that: The box body is in the shape of a rectangular parallelepiped with an upper opening, and the bottom surface and left and right side surfaces are respectively slidably matched with the inner surface of the tray.

3. The clinical medical testing experimental platform according to claim 1, characterized in that: Arc handles are fixedly provided on the front and rear outer surfaces of the tray respectively.

4. The clinical medical testing experimental platform according to claim 1, characterized in that: The bottom surface of the workbench is screwed with bolts connected to the support, and a rectangular notch is embedded in the support. A horizontal rotating shaft is fixed at the rectangular notch, and a connecting block is rotatably sleeved on the rotating shaft. The top surface of the connecting block is fixedly connected to the center position of the bottom surface of the tray.

5. The clinical medical testing experimental platform according to claim 1, characterized in that: Axial springs are fixedly disposed on the front top surface and the rear top surface inside the tray, and slidable baffles are fixedly disposed on the inner ends of the springs.

6. The clinical medical testing experimental platform according to claim 1, characterized in that: A cylindrical blind hole is embedded in the center of the workbench, a cylindrical fixing block is rotatably arranged in the cylindrical blind hole, a bolt fixedly connected to the support is screwed from bottom to top on the cylindrical fixing block, and a raised part on the lower side of the bolt is embedded in the cylindrical fixing block.

7. The clinical medical testing experimental platform according to claim 1, characterized in that: The outer bottom surfaces of the front and rear ends of the tray are respectively fixed with first magnetic blocks, and the upper surfaces of the front and rear ends of the workbench are respectively fixed with second magnetic blocks attracted to the first magnetic blocks.