An oscillating device for clinical medical testing

By designing a multi-mode oscillation device and heating components, the problem of single oscillation mode of the traditional device is solved, diversified oscillation and temperature control of the test tube are realized, and the overall treatment effect of the sample solution for inspection is improved.

CN119857401BActive Publication Date: 2025-08-19NANTONG UNIV
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Patent Information

Application Number
CN202510344534.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-08-19
Estimated Expiration
2045-03-24

AI Technical Summary

Technical Problem

The traditional clinical medical test oscillation device has a single oscillation mode, and it is impossible to effectively perform the rotational oscillation of the test tube, which affects the overall oscillation effect of the sample solution for the test.

Method used

A device including a liquid storage frame and an oscillation mechanism is designed. The oscillation mechanism consists of an oscillation outer frame, an oscillation middle frame and an oscillation inner plate. By setting up a plurality of rotating bearings and positioning tubes, the horizontal, vertical and rotating oscillation of the test tube is realized, and the temperature control is carried out in combination with the heating assembly.

Benefits of technology

The diversity of the oscillation mode is increased, the overall oscillation effect of the sample solution for inspection is improved, and the treatment effect of the solution is improved through heating treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an oscillation device for clinical medical testing, specifically relating to the technical field of medical instruments, comprising a liquid storage frame, a plurality of mounting seats fixedly installed on the inner top of the liquid storage frame, a heating component fixedly installed on the bottom of the liquid storage frame, and an oscillation mechanism fixedly installed on the plurality of mounting seats; the oscillation mechanism comprises an oscillation outer frame, and two groups of symmetrically distributed first spring sheets are fixedly installed on the inner side of the oscillation outer frame. The present invention positions a plurality of test tubes by arranging an oscillation mechanism, and can simultaneously perform horizontal oscillation and vertical oscillation of the oscillation inner plate, thereby increasing the overall oscillation mode, and horizontal oscillation and vertical oscillation of the test sample solution in the test tube are performed through the horizontal oscillation and vertical oscillation of the oscillation inner plate, and at the same time, the test sample solution in the test tube can be rotationally oscillated, thereby increasing the overall oscillation mode and improving the overall oscillation effect of the subsequent test sample solution.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical instruments, in particular to an oscillating device for clinical medical testing. Background Art

[0002] Clinical medical testing is an indispensable part of modern medicine, which uses various laboratory testing methods to assess patients' health status, diagnose diseases, and monitor treatment effects during the medical process. It helps doctors make scientific medical decisions and mainly includes blood tests, urine tests, microbiological tests, immunological tests, antibody tests, molecular biology tests, etc.

[0003] In clinical medical testing, multiple sample solutions are usually introduced into test tubes, and the test tubes are manually shaken to oscillate and mix the multiple solutions inside. Traditional oscillation devices mostly use one oscillation mode, either horizontal oscillation or vertical oscillation. The test tube cannot effectively rotate and oscillate. The oscillation mode is relatively simple, and the overall functionality of the device is general, which affects the overall oscillation effect of the sample solutions used for testing. To this end, we propose an oscillation device for clinical medical testing to solve the above problems. Summary of the Invention

[0004] The object of the present invention is to provide an oscillating device for clinical medical testing to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned object, the present invention provides the following technical solution: an oscillating device for clinical medical testing, comprising a liquid storage frame, a plurality of mounting seats fixedly mounted on the inner top of the liquid storage frame, a heating assembly fixedly mounted on the bottom of the liquid storage frame, and an oscillating mechanism fixedly mounted on the plurality of mounting seats;

[0006] The oscillation mechanism includes an oscillation outer frame, two symmetrically distributed groups of first spring sheets are fixedly installed on the inner side of the oscillation outer frame, an oscillation middle frame is fixedly installed between the two groups of first spring sheets, two symmetrically distributed groups of second spring sheets are fixedly installed on the inner side of the oscillation middle frame, an oscillation inner plate is fixedly installed between the two groups of second spring sheets, a plurality of rotating bearings distributed in a rectangular array are fixedly provided on the oscillation inner plate, a positioning tube is fixedly provided in the middle of the rotating bearings, a connecting vertical frame is integrally formed at the bottom end of the positioning tube, a material placing tray is fixedly installed at the bottom end of the connecting vertical frame, and a plurality of staggered positioning rubber strips are fixedly installed in the positioning tube.

[0007] Preferably, a transmission gear is fixedly installed on the bottom of the positioning tube, and a plurality of horizontally distributed transmission racks are fixedly installed on the inner side of the oscillating middle frame. The transmission racks are meshed and connected with the corresponding transmission gears, and the two transmission racks at adjacent positions are symmetrically distributed.

[0008] Preferably, a first base is fixedly installed on one side of the bottom end of the oscillating outer frame close to the first spring sheet, a first shaft is rotatably installed on the middle part of the first base, a first driving disk is fixedly installed on one end of the first shaft away from the first base, a first driving protrusion is fixedly installed on the outside of the first driving disk away from the first shaft, a first driven plate is fixedly installed on one side of the bottom end of the oscillating middle frame close to the first driving disk, a first transverse groove corresponding to the first driving protrusion is provided on the first driven plate, the first driving protrusion is movably engaged in the first transverse groove, and the positions of the first driving protrusions on the first driving disks on both sides are the same.

[0009] The top end of the second shaft is fixedly mounted on the second driving plate, and the top end of the second shaft is fixedly mounted on the second driving plate, and the second driving protrusion is fixedly mounted on the top of the second driving plate. The second driving protrusion is movably mounted on the second driving plate on the outside of the second driving plate. The positions of the second driving protrusions on the second driving plates on both sides are staggered. The bottom end of the oscillating outer frame is fixedly mounted on the side near the second base, and the end of the third base is rotatably mounted on the longitudinal sliding frame, and the second shaft is slidably engaged with the middle of the longitudinal sliding frame.

[0010] Preferably, an auxiliary base is fixedly installed at one of the diagonal positions at the bottom end of the oscillation outer frame, and a first auxiliary shaft corresponding to the horizontal position of the first shaft is rotatably installed in the middle of the auxiliary base. The first auxiliary shaft and the outer side of the first shaft at the corresponding position are fixedly installed with a first sprocket transmission group, and the first sprocket transmission group includes two first sprockets and a first chain meshed on the outer sides of the two first sprockets, and the two first sprockets are fixedly installed on the outer sides of the corresponding first auxiliary shaft and the first shaft respectively.

[0011] Preferably, an auxiliary inner seat is fixedly installed on the inner side of the oscillation outer frame close to the auxiliary base, and a second auxiliary shaft corresponding to the horizontal position of the longitudinal sliding frame is rotatably installed in the middle of the auxiliary inner seat. The second auxiliary shaft and the outer side of the longitudinal sliding frame at the corresponding position are both fixedly installed with a second sprocket transmission group, and the second sprocket transmission group includes two second sprockets and a second chain meshed on the outer sides of the two second sprockets, and the two second sprockets are respectively fixedly installed on the outer sides of the corresponding second auxiliary shaft and the longitudinal sliding frame.

[0012] Preferably, a first bevel gear is fixedly mounted on one end of the first auxiliary shaft away from the auxiliary base, a second bevel gear is fixedly mounted on one end of the second auxiliary shaft away from the auxiliary inner seat, and the first bevel gear and the second bevel gear are meshed and connected.

[0013] Preferably, a drive motor is fixedly mounted on the top of the auxiliary inner seat, the drive end of the drive motor is fixedly mounted on the top of the corresponding second auxiliary shaft, a motor cover is fixedly mounted on the top of the auxiliary inner seat, and the drive motor is located in the motor cover.

[0014] Preferably, a protective cover is fixedly mounted on a side of the outer wall of the liquid storage frame close to the heating component, and the interface of the heating component is located in the protective cover.

[0015] Preferably, a control panel is fixedly mounted on the outer wall of the liquid storage frame, and support bases are fixedly mounted at the four corners of the bottom end of the liquid storage frame.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. By setting up an oscillation mechanism, multiple test tubes can be positioned, and the horizontal oscillation and vertical oscillation of the oscillation inner plate can be performed simultaneously, thereby increasing the overall oscillation mode. The horizontal oscillation and vertical oscillation of the oscillation inner plate can be used to oscillate the test sample solution in the test tube horizontally and vertically. At the same time, the test sample solution in the test tube can be rotationally oscillated, thereby increasing the overall oscillation mode and improving the overall oscillation effect of the subsequent test sample solution.

[0018] 2. By setting up a liquid storage frame, the water bath solution is introduced into the liquid storage frame according to needs, and the temperature is controlled by the heating component, which facilitates the subsequent simultaneous heating treatment of the test sample solution during oscillation, thereby improving the overall treatment effect of the test sample solution and increasing the functionality of the entire oscillation device. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0020] Figure 1 It is a structural schematic diagram of the present invention.

[0021] Figure 2 It is a schematic diagram of the structure after the present invention is disassembled.

[0022] Figure 3 It is a structural schematic diagram of the oscillation mechanism in the present invention.

[0023] Figure 4 For the present invention Figure 3 Enlarged view of point A in the middle.

[0024] Figure 5 This is a structural diagram of the oscillation mechanism in the present invention from another angle.

[0025] Figure 6 For the present invention Figure 5 Enlarged view of point B in the middle.

[0026] Figure 7 For the present invention Figure 5 Enlarged view of point C in the middle.

[0027] Figure 8 It is a schematic diagram of the structural connection between the oscillating middle frame and the oscillating inner plate in the present invention.

[0028] Figure 9 This is a schematic diagram of the structural connection between the oscillating middle frame and the oscillating inner plate in the present invention from another angle.

[0029] Figure 10 It is a structural schematic diagram of the oscillating inner plate in the present invention.

[0030] Figure 11 For the present invention Figure 10 Enlarged view of point D in the middle.

[0031] Figure 12 It is a schematic diagram of the structural connection between the oscillating inner plate and the positioning tube in the present invention.

[0032] Figure 13 It is a schematic diagram of the structural connection between the positioning tube and the material tray in the present invention.

[0033] In the figure: 1, liquid storage frame; 101, mounting base; 102, heating assembly; 11, control panel; 12, protective cover; 13, support base; 2, oscillation mechanism; 21, oscillation outer frame; 211, first spring piece; 22, first base; 23, first shaft; 231, first driving disk; 232, first driving cam; 233, first driven plate; 2331, first transverse groove; 3, oscillation middle frame; 31, second spring piece; 32, second driven plate; 321, second transverse groove; 33, second base; 34, second shaft; 341, first Second driving disk; 342, second driving cam; 35, third base; 351, longitudinal sliding frame; 4, oscillating inner plate; 41, rotating bearing; 42, positioning tube; 421, connecting longitudinal frame; 422, placing tray; 423, positioning rubber strip; 43, transmission gear; 431, transmission rack; 5, auxiliary base; 51, first auxiliary shaft; 52, first bevel gear; 53, first sprocket transmission group; 6, auxiliary inner seat; 61, second auxiliary shaft; 62, second bevel gear; 63, second sprocket transmission group; 7, driving motor; 71, motor cover. DETAILED DESCRIPTION

[0034] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments 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.

[0035] Example: Figure 1-13 As shown, the present invention provides an oscillation device for clinical medical testing, comprising a liquid storage frame 1, a plurality of mounting seats 101 fixedly mounted on the inner top of the liquid storage frame 1, a heating assembly 102 fixedly mounted on the bottom of the liquid storage frame 1, and an oscillation mechanism 2 fixedly mounted on the plurality of mounting seats 101. When in use, a water bath solution is introduced into the liquid storage frame 1, and the heating assembly 102 heats and controls the temperature of the solution, thereby facilitating the subsequent simultaneous heating treatment of the test sample solution during oscillation, thereby improving the overall treatment effect of the test sample solution and increasing the functionality of the entire oscillation device.

[0036] The oscillation mechanism 2 includes an oscillation outer frame 21, on the inner side of which are fixedly mounted two sets of symmetrically distributed first spring sheets 211, and between which is fixedly mounted an oscillation middle frame 3. By arranging the first spring sheets 211 on the inner side of the oscillation outer frame 21 and mounting the oscillation middle frame 3 on the first spring sheets 211, the oscillation middle frame 3 can oscillate vertically in the oscillation outer frame 21.

[0037] Two symmetrically distributed groups of second spring pieces 31 are fixedly installed on the inner side of the oscillating middle frame 3, and an oscillating inner plate 4 is fixedly installed between the two groups of second spring pieces 31. By arranging the second spring pieces 31 on the inner side of the oscillating middle frame 3 and installing the oscillating inner plate 4 on the second spring pieces 31, it is convenient for the oscillating inner plate 4 to oscillate horizontally in the oscillating middle frame 3, thereby facilitating the oscillating inner plate 4 to oscillate horizontally and vertically, thereby increasing the overall oscillation mode and improving the overall oscillation effect of the sample solution for subsequent testing;

[0038] The oscillation inner plate 4 is fixed with a plurality of rotating bearings 41 distributed in a rectangular array, and the middle of the rotating bearings 41 is fixed with a positioning tube 42. By setting a plurality of rotating bearings 41, the positioning tube 42 is fixedly installed in the middle of the rotating bearing 41, which facilitates the horizontal reciprocating rotation of the positioning tube 42, thereby facilitating the subsequent rotational oscillation of the sample solution for testing in the test tube, further increasing the overall oscillation mode, and further improving the overall oscillation effect of the sample solution for subsequent testing. The bottom end of the positioning tube 42 is integrally formed with a connecting vertical frame 421, and the bottom end of the connecting vertical frame 421 is fixed. A material placement tray 422 is installed, and a plurality of staggered positioning strips 423 are fixedly installed in the positioning tube 42. By arranging the plurality of staggered positioning strips 423 in the positioning tube 42, when in use, the test tube storing the sample solution for testing is inserted into the positioning tube 42, passing through the plurality of staggered positioning strips 423 until the bottom end of the test tube contacts the material placement tray 422. The test tube storing the sample solution for testing is positioned by the plurality of positioning strips 423, so that the sample solution for testing in the test tube can be horizontally oscillated and vertically oscillated laterally by the horizontal oscillation and vertical oscillation of the oscillating inner plate 4.

[0039] The bottom of each of the positioning tubes 42 is fixedly mounted with a transmission gear 43, and the inner side of the oscillating middle frame 3 is fixedly mounted with a plurality of transmission racks 431 distributed horizontally, and the transmission racks 431 are meshed and connected with the corresponding transmission gears 43. By setting the transmission gear 43 and the plurality of transmission racks 431, the transmission racks 431 are meshed and connected with the corresponding transmission gears 43. When the plurality of test tubes on the oscillating inner plate 4 oscillate horizontally in the oscillating middle frame 3, the plurality of transmission racks 431 are meshed and connected with the corresponding transmission racks 431, and the transmission racks 431 drive the plurality of transmission racks 431 to rotate back and forth, thereby controlling the reciprocating rotation of the plurality of positioning tubes 42, and further controlling the test tubes storing the sample solution for testing to rotate back and forth horizontally, thereby facilitating the rotational oscillation of the sample solution for testing in the test tube, further increasing the overall oscillation mode, and further improving the overall oscillation effect of the subsequent sample solution for testing;

[0040] The two transmission racks 431 at adjacent positions are symmetrically distributed, so that the initial rotation states of the test tubes at two adjacent groups of positions are opposite, so that the test tubes can be inserted into the corresponding positioning tubes 42 according to the requirements of the initial rotation states of the test tubes.

[0041] The first base 22 is fixedly installed on the side of the bottom end of the oscillating outer frame 21 close to the first spring sheet 211, and the middle part of the first base 22 is rotatably mounted with a first shaft 23. The first shaft 23 is fixedly mounted on the end away from the first base 22. The first driving disk 231 is fixedly mounted on the outside of the side away from the first shaft 23. The first driving protrusion 232 is fixedly mounted on the outside of the side away from the first shaft 23. The first driven plate 233 is fixedly installed on the side of the bottom end of the oscillating middle frame 3 close to the first driving disk 231. The first driven plate 233 is provided with a first transverse groove 233 corresponding to the first driving protrusion 232. 1, the first driving protrusion 232 is movably engaged in the first transverse groove 2331, and by controlling the rotation of the first shaft 23, the first driving disk 231 and the first driving protrusion 232 are driven to rotate. Since the first driving protrusion 232 is movably engaged in the first transverse groove 2331, the first driven plate 233 is driven to move back and forth up and down, thereby controlling the oscillation middle frame 3 to oscillate vertically in the oscillation outer frame 21. By adjusting the rotation speed of the first shaft 23, the frequency of the vertical oscillation of the oscillation middle frame 3 in the oscillation outer frame 21 can be flexibly adjusted, and the positions of the first driving protrusions 232 on the first driving disks 231 on both sides are the same.

[0042] The second driving protrusion 342 is fixedly installed on the top of the second driving plate 34, and the second driving protrusion 342 is movably engaged with the second driving protrusion 342. The positions of the second driving protrusions 342 on the second driving plates 341 on both sides are staggered. The third base 35 is fixedly installed on one side of the seat 33, and the end of the third base 35 is rotatably installed with a longitudinal sliding frame 351, and the second shaft 34 is slidably engaged in the middle of the longitudinal sliding frame 351 by setting the longitudinal sliding frame 351, and the second shaft 34 is slidably engaged in the middle of the longitudinal sliding frame 351. When the oscillation middle frame 3 vertically oscillates in the oscillation outer frame 21, the second shaft 34 slides vertically in the middle of the longitudinal sliding frame 351, wherein, by controlling the rotation of the longitudinal sliding frame 351, the second shaft 34 is driven to rotate synchronously, and then the second driving disc 341 and the second driving protrusion 342 are controlled to rotate. Since the second driving protrusion 342 is movably engaged in the second transverse groove 321, the oscillation inner plate 4 is controlled to oscillate horizontally in the oscillation middle frame 3, wherein the rotation speed of the second shaft 34 is controlled by adjusting the rotation speed of the longitudinal sliding frame 351, and the frequency of the vertical oscillation of the oscillation inner plate 4 in the oscillation middle frame 3 is flexibly adjusted.

[0043] An auxiliary base 5 is fixedly installed at one of the diagonal positions at the bottom end of the oscillation outer frame 21, and a first auxiliary shaft 51 corresponding to the horizontal position of the first shaft 23 is rotatably installed in the middle of the auxiliary base 5. The first auxiliary shaft 51 and the outer side of the first shaft 23 at the corresponding position are fixedly installed with a first sprocket transmission group 53. The first sprocket transmission group 53 includes two first sprockets and a first chain meshed on the outer sides of the two first sprockets. The two first sprockets are respectively fixedly installed on the outer sides of the corresponding first auxiliary shaft 51 and the first shaft 23. By controlling the first auxiliary shaft 51 to rotate and cooperating with the transmission of the first sprocket transmission group 53, the first shaft 23 is driven to rotate synchronously.

[0044] An auxiliary inner seat 6 is fixedly installed on the inner side of the oscillation outer frame 21 near the auxiliary base 5, and a second auxiliary shaft 61 corresponding to the horizontal position of the longitudinal sliding frame 351 is rotatably installed in the middle of the auxiliary inner seat 6. The second auxiliary shaft 61 and the outer side of the longitudinal sliding frame 351 at the corresponding position are both fixedly installed with a second sprocket transmission group 63. The second sprocket transmission group 63 includes two second sprockets and a second chain meshed on the outer sides of the two second sprockets. The two second sprockets are respectively fixedly installed on the outer sides of the corresponding second auxiliary shaft 61 and the longitudinal sliding frame 351. By controlling the second auxiliary shaft 61 to rotate and cooperating with the transmission of the second sprocket transmission group 63, the longitudinal sliding frame 351 is driven to rotate synchronously.

[0045] The first bevel gear 52 is fixedly installed on the end of the first auxiliary shaft 51 away from the auxiliary base 5, and the second bevel gear 62 is fixedly installed on the end of the second auxiliary shaft 61 away from the auxiliary inner seat 6, and the first bevel gear 52 and the second bevel gear 62 are meshed and connected; the top of the auxiliary inner seat 6 is fixedly installed with a driving motor 7, and the driving end of the driving motor 7 is fixedly installed on the top of the corresponding second auxiliary shaft 61, and the top of the auxiliary inner seat 6 is fixedly installed with a motor cover 71, and the driving motor 7 is located in the motor cover 71. By controlling the driving motor 7 to turn on, the second auxiliary shaft 61 is driven to rotate, and the first bevel gear 52 and the second bevel gear 62 are meshed and connected to drive the first auxiliary shaft 51 to rotate synchronously.

[0046] A protective cover 12 is fixedly installed on one side of the outer wall of the liquid storage frame 1 close to the heating component 102, and the interface of the heating component 102 is located in the protective cover 12. By setting the protective cover 12, the interface of the heating component 102 is located in the protective cover 12, and the protective cover 12 protects the interface of the heating component 102.

[0047] A control panel 11 is fixedly mounted on the outer wall of the liquid storage frame 1. By setting the control panel 11, it is convenient to control the use of the entire oscillation device. Support bases 13 are fixedly mounted at the four corners of the bottom end of the liquid storage frame 1. By setting the support bases 13, the entire oscillation device is supported.

[0048] Working principle: When in use, the test tube storing the sample solution for testing is inserted into the positioning tube 42 and passed through the multiple positioning strips 423 distributed in an interlaced manner until the bottom end of the test tube contacts the material tray 422. The test tube storing the sample solution for testing is positioned by the multiple positioning strips 423;

[0049] The two transmission racks 431 at adjacent positions are symmetrically distributed, so that the initial rotation states of the test tubes at the two adjacent groups of positions are opposite, so that the test tubes can be inserted into the corresponding positioning tubes 42 according to the requirements of the initial rotation states of the test tubes.

[0050] After the test tube is positioned, the drive motor 7 is controlled to start and drive the second auxiliary shaft 61 to rotate, and the first bevel gear 52 and the second bevel gear 62 are meshed and connected to drive the first auxiliary shaft 51 to rotate synchronously. By controlling the rotation of the first auxiliary shaft 51, the transmission of the first sprocket transmission group 53 is coordinated to drive the first shaft 23 to rotate synchronously. By controlling the rotation of the second auxiliary shaft 61, the transmission of the second sprocket transmission group 63 is coordinated to drive the longitudinal sliding frame 351 to rotate synchronously.

[0051] By controlling the rotation of the longitudinal sliding frame 351, the second shaft 34 is driven to rotate synchronously, thereby controlling the rotation of the second driving plate 341 and the second driving protrusion 342. Since the second driving protrusion 342 is movably engaged in the second transverse groove 321, the oscillating inner plate 4 is controlled to oscillate horizontally in the oscillating middle frame 3.

[0052] By controlling the rotation of the first shaft 23, the first driving plate 231 and the first driving protrusion 232 are driven to rotate. Since the first driving protrusion 232 is movably engaged in the first transverse groove 2331, the first driven plate 233 is driven to move back and forth up and down, thereby controlling the oscillating middle frame 3 to oscillate vertically in the oscillating outer frame 21. When the oscillating middle frame 3 oscillates vertically in the oscillating outer frame 21, the second shaft 34 slides vertically in the middle of the longitudinal sliding sleeve 351.

[0053] In this way, the horizontal oscillation and vertical oscillation of the oscillating inner plate 4 are achieved, the overall oscillation mode is increased, and the test sample solution in the test tube is horizontally oscillated and vertically oscillated by the horizontal oscillation and vertical oscillation of the oscillating inner plate 4;

[0054] Among them, when the multiple test tubes on the oscillation inner plate 4 oscillate horizontally in the oscillation middle frame 3, the multiple transmission racks 431 are engaged and connected with the corresponding transmission racks 431, and the transmission racks 431 drive the multiple transmission racks 431 to rotate back and forth, thereby controlling the reciprocating rotation of the multiple positioning tubes 42, and then controlling the test tubes storing the test sample solution to rotate horizontally back and forth, thereby facilitating the rotational oscillation of the test sample solution in the test tube, further increasing the overall oscillation mode, and further improving the overall oscillation effect of the subsequent test sample solution;

[0055] The frequency of vertical oscillation of the oscillating middle frame 3 in the oscillating outer frame 21 is flexibly adjusted by adjusting the rotation speed of the first shaft 23, and the frequency of vertical oscillation of the oscillating inner plate 4 in the oscillating middle frame 3 is flexibly adjusted by adjusting the rotation speed of the longitudinal sliding sleeve 351 to control the rotation speed of the second shaft 34.

[0056] During the oscillation of the test tube, the water bath solution can be introduced into the liquid storage frame 1 as needed, and heated and temperature-controlled by the heating component 102, so as to facilitate the subsequent simultaneous heating treatment of the test sample solution during oscillation, thereby improving the overall treatment effect of the test sample solution and increasing the functionality of the entire oscillation device.

[0057] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. An oscillating device for clinical medical testing, comprising a liquid storage frame (1), characterized in that: A plurality of mounting seats (101) are fixedly mounted on the top inner side of the liquid storage frame (1), a heating assembly (102) is fixedly mounted on the bottom of the liquid storage frame (1), and an oscillation mechanism (2) is fixedly mounted on the plurality of mounting seats (101); the oscillation mechanism (2) comprises an oscillation outer frame (21), two groups of symmetrically distributed first spring sheets (211) are fixedly mounted on the inner side of the oscillation outer frame (21), an oscillation middle frame (3) is fixedly mounted between the two groups of first spring sheets (211), and the inner side of the oscillation middle frame (3) is fixedly mounted with symmetrically distributed first spring sheets (211). Two groups of second spring sheets (31), an oscillating inner plate (4) is fixedly installed between the two groups of second spring sheets (31), a plurality of rotating bearings (41) distributed in a rectangular array are fixedly provided on the oscillating inner plate (4), a positioning tube (42) is fixedly provided in the middle of each rotating bearing (41), a connecting longitudinal frame (421) is integrally formed at the bottom end of each positioning tube (42), a material placing tray (422) is fixedly installed at the bottom end of each connecting longitudinal frame (421), and a plurality of staggered positioning rubber strips (423) are fixedly installed in the positioning tube (42); The bottom of each positioning tube (42) is fixedly mounted with a transmission gear (43), and the inner side of the oscillating middle frame (3) is fixedly mounted with a plurality of horizontally distributed transmission racks (431), the transmission racks (431) and the corresponding transmission gears (43) are meshed and connected, and two adjacent transmission racks (431) are symmetrically distributed. A first base (22) is fixedly mounted on one side of the bottom end of the oscillating outer frame (21) close to the first spring sheet (211), a first shaft (23) is rotatably mounted on the middle of the first base (22), a first driving disk (231) is fixedly mounted on one end of the first shaft (23) away from the first base (22), a first driving protrusion (232) is fixedly mounted on the outside of the side of the first driving disk (231) away from the first shaft (23), a first driven plate (233) is fixedly mounted on one side of the bottom end of the oscillating middle frame (3) close to the first driving disk (231), a first transverse groove (2331) corresponding to the first driving protrusion (232) is provided on the first driven plate (233), the first driving protrusion (232) is movably engaged in the first transverse groove (2331), and the positions of the first driving protrusions (232) on the first driving disks (231) on both sides are the same; A second driven plate (32) is fixedly mounted on one side of the oscillating inner plate (4) close to the second spring sheet (31), the second driven plate (32) is slidably engaged with the oscillating middle frame (3), the end of the second driven plate (32) is movably engaged with the oscillating outer frame (21), the bottom end of the second driven plate (32) is provided with a second base (33), the second base (33) is fixedly mounted on the oscillating middle frame (3), the end of the second base (33) is rotatably mounted with a second shaft (34), the top end of the second shaft (34) is fixedly mounted with a second driving disk (341), the top end of the second driving disk (341) is fixedly mounted with a second drive disk (341). A second driving protrusion (342) is fixedly installed on the outside, and a second transverse groove (321) corresponding to the second driving protrusion (342) is opened on the second driven plate (32), and the second driving protrusion (342) is movably engaged in the second transverse groove (321). The positions of the second driving protrusions (342) on the second driving plates (341) on both sides are staggered. A third base (35) is fixedly installed on one side of the bottom end of the oscillation outer frame (21) close to the second base (33), and a longitudinal sliding frame (351) is rotatably installed on the end of the third base (35), and the second shaft (34) is slidably engaged in the middle of the longitudinal sliding frame (351).

2. An oscillating device for clinical medical testing according to claim 1, characterized in that: An auxiliary base (5) is fixedly mounted at one of the diagonal positions at the bottom end of the oscillating outer frame (21); a first auxiliary shaft (51) corresponding to the horizontal position of the first shaft (23) is rotatably mounted in the middle of the auxiliary base (5); a first sprocket transmission group (53) is fixedly mounted on the outer sides of the first auxiliary shaft (51) and the first shaft (23) at the corresponding position; the first sprocket transmission group (53) includes two first sprockets and a first chain meshed with the outer sides of the two first sprockets; the two first sprockets are fixedly mounted on the outer sides of the corresponding first auxiliary shaft (51) and the first shaft (23), respectively.

3. The oscillating device for clinical medical testing according to claim 2, characterized in that: An auxiliary inner seat (6) is fixedly installed on the inner side of the oscillating outer frame (21) near the auxiliary base (5), and a second auxiliary shaft (61) corresponding to the horizontal position of the longitudinal sliding frame (351) is rotatably installed in the middle of the auxiliary inner seat (6). A second sprocket transmission group (63) is fixedly installed on the outer sides of the second auxiliary shaft (61) and the longitudinal sliding frame (351) at the corresponding position. The second sprocket transmission group (63) includes two second sprockets and a second chain meshed with the outer sides of the two second sprockets. The two second sprockets are fixedly installed on the outer sides of the corresponding second auxiliary shaft (61) and the longitudinal sliding frame (351).

4. The oscillating device for clinical medical testing according to claim 3, characterized in that: A first bevel gear (52) is fixedly mounted on one end of the first auxiliary shaft (51) away from the auxiliary base (5), and a second bevel gear (62) is fixedly mounted on one end of the second auxiliary shaft (61) away from the auxiliary inner seat (6), and the first bevel gear (52) and the second bevel gear (62) are meshedly connected.

5. The oscillating device for clinical medical testing according to claim 4, characterized in that: A driving motor (7) is fixedly mounted on the top of the auxiliary inner seat (6), a driving end of the driving motor (7) is fixedly mounted on the top of the corresponding second auxiliary shaft (61), a motor cover (71) is fixedly mounted on the top of the auxiliary inner seat (6), and the driving motor (7) is located in the motor cover (71).

6. The oscillating device for clinical medical testing according to claim 1, characterized in that: A protective cover (12) is fixedly mounted on one side of the outer wall of the liquid storage frame (1) close to the heating component (102), and an interface of the heating component (102) is located in the protective cover (12).

7. The oscillating device for clinical medical testing according to claim 1, characterized in that: A control panel (11) is fixedly mounted on the outer wall of the liquid storage frame (1), and support seats (13) are fixedly mounted at the four corners of the bottom end of the liquid storage frame (1).

Citation Information

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