Reagent oscillation device with separation structure

By designing a reagent oscillation device with a separating structure, using an automatic left and right adjustment mechanism and an up and down oscillation motor, diversified oscillation of reagents is achieved, and the problem of insufficient mixing of solutions caused by a single oscillation method in the prior art is solved, the accuracy of the detection results is improved and the reagent test tube is protected.

CN222829498UActive Publication Date: 2025-05-06TIANJIN JINIKE BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421357731.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-14
Publication Date
2025-05-06
Estimated Expiration
2034-06-14

AI Technical Summary

Technical Problem

The existing oscillation device has a single oscillation method and cannot effectively mix the solution, resulting in inaccurate detection results.

Method used

A reagent oscillation device with a separating structure is designed, using an automatic left and right adjustment mechanism and an up and down oscillation motor to achieve rapid mixing of reagents through diverse oscillation directions (left and right and up and down).

Benefits of technology

The rapid and full mixing of reagents is achieved, the accuracy of the detection results is improved, and the stability of the reagent test tube is protected and damaged by the design of the separation tank and rubber material layer.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a reagent oscillation device with a separation structure, which comprises a bottom plate, the bottom plate is connected with an automatic left-right adjusting mechanism, the output end of the automatic left-right adjusting mechanism is connected with a movable bottom plate, the movable bottom plate is connected with a mounting vertical plate, the end part of the mounting vertical plate is arranged in a trapezoid shape, and two sides of the mounting vertical plate are connected with connecting blocks. The connecting block on one side is connected with an up-down oscillation motor; an output rod of the up-down oscillation motor is connected with a first transmission plate; the end part of the first transmission plate is rotationally connected with a second transmission plate; the end part of the second transmission plate is rotationally connected to one end of the transverse plate; a mounting side block is connected to one side of the mounting vertical plate, a T-shaped connecting block is connected to the upper side of the transverse plate, a circular reagent placement box is connected to the upper side of the T-shaped connecting block, a reagent fixing plate is connected to the inner wall of the circular reagent placement box, and a limiting cover is in threaded connection with the end of the circular reagent placement box.
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Description

Technical Field

[0001] The utility model belongs to the technical field of reagent production devices, and in particular relates to a reagent oscillating device with a separation structure. Background Art

[0002] When conducting environmental testing, water testing is an indispensable test content. When testing water sources, the corresponding chemical reagents and water samples are usually placed in a container for mixing. This process requires the mixed solution to be stirred to fully react, and the degree of solution mixing determines the accuracy of the test results. In order to fully mix the mixed solution, an oscillation device is required. The oscillation mode of the existing oscillation device is relatively simple, usually a simple horizontal reverse oscillation, but this oscillation mode cannot mix the solution well and cannot achieve the desired purpose. Utility Model Content

[0003] In view of the problems raised by the above background technology, the purpose of the present utility model is to provide a reagent oscillating device with a partition structure.

[0004] In order to achieve the above technical purpose, the technical solution adopted by the utility model is as follows:

[0005] A reagent oscillation device with a partition structure comprises a bottom plate, the bottom plate is connected to an automatic left-right adjustment mechanism, the output end of the automatic left-right adjustment mechanism is connected to a movable bottom plate, the movable bottom plate is connected to a mounting vertical plate, the ends of the mounting vertical plate are arranged in a trapezoidal shape, connecting blocks are connected to both sides of the mounting vertical plate, the upper connecting block is rotatably connected to a transverse plate through a round rod, one side of the connecting block is connected to an up-and-down oscillation motor, the output rod of the up-and-down oscillation motor is connected to a first transmission plate, the end of the first transmission plate is rotatably connected to a second transmission plate, the end of the second transmission plate is rotatably connected to one end of the transverse plate, the other end of the transverse plate is rotatably connected to the vertical plate, the mounting vertical plate is connected to a mounting side block on one side of the vertical plate, and the mounting side block is provided with a guide groove adapted to movably plug the vertical plate;

[0006] The upper side of the horizontal plate is connected to a T-shaped connecting block, the upper side of the T-shaped connecting block is connected to a circular reagent placement box, the inner wall of the circular reagent placement box is connected to a reagent fixing plate, the reagent fixing plate is provided with a plurality of partition grooves, the end of the circular reagent placement box is threadedly connected to a limiting cover, and the inner wall of the partition groove, the bottom of the inner wall of the circular reagent placement box and the inner wall of the limiting cover are all connected with a rubber material layer.

[0007] It is further defined that the automatic left and right adjustment mechanism includes a mounting plate connected to both ends of the base plate, the mounting plate on one side is connected to a left and right oscillation motor, the output end of the left and right oscillation motor is connected to a threaded rod, the other end of the threaded rod is rotatably connected to the mounting plate on the other side, the outer wall of the threaded rod shaft is connected to two matching nut sleeves, the nut sleeve is connected to a T-shaped slider, the T-shaped slider is connected to the lower side of the movable base plate, the upper side of the base plate is connected to a slide rail adapted for the sliding of the T-shaped slider, dust guard plates are connected to both sides of the base plate, an upper side plate is connected between the ends of the dust guard plates on both sides, and the upper side plate is provided with a first slide groove adapted for the sliding of the T-shaped slider. Such a structural design can realize the automatic left and right reciprocating oscillation of the movable base plate and its connecting components.

[0008] It is further defined that the movable base plate is connected to two groups of guide sliders on both sides of the T-shaped slider, the ends of the guide sliders are chamfered, the upper side plate is provided with a second sliding groove adapted to the sliding of the guide slider, and the upper side of the outer surface of the base plate is provided with a sliding groove adapted to the sliding of the ends of the guide slider. Such a structural design makes the movable base plate move more stably and smoothly.

[0009] It is further defined that reinforcing ribs are connected between both sides of the mounting vertical plate and the movable bottom plate. Such a structural design can enhance the connection stability of the mounting vertical plate.

[0010] It is further defined that the side wall portion of the circular reagent placement box is a transparent plastic plate. Such a structural design makes it easy for staff to observe the vibration degree of the reagent.

[0011] The beneficial effects of the utility model are:

[0012] 1. The utility model is connected to the bottom plate with an automatic left-right adjustment mechanism, which drives the reagent test tube in the circular reagent placement box to oscillate back and forth in the left and right directions through the connection components. The movable bottom plate is connected with a mounting vertical plate, a connection block, an up and down oscillation motor 501, a first transmission plate 502, a second transmission plate, a horizontal plate, a vertical plate and a mounting side block. The components cooperate with each other to drive, so as to automatically drive the reagent test tube in the circular reagent placement box to oscillate back and forth in the up and down directions. The diversified oscillation directions can achieve rapid mixing of the solution, thereby achieving the desired purpose;

[0013] 2. The circular reagent placement box is connected with a reagent fixing plate and a limiting cover. The dividing groove in the reagent fixing plate is used to separate and place each reagent test tube, and the limiting cover is used to fix the upper end of the reagent test tube. The various components cooperate to separate and place the test tubes, and enhance the stability of the test tube placement and processing. The inner wall of the dividing groove, the bottom of the inner wall of the circular reagent placement box and the inner wall of the limiting cover are all connected with a rubber material layer, which can prevent the reagent test tube from hard contact with the various components, thereby preventing damage to the test tube. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] The present invention can be further described by the non-limiting embodiments given in the accompanying drawings;

[0015] Figure 1 This is a schematic diagram of the overall structure of an embodiment of a reagent oscillating device with a partition structure of the utility model;

[0016] Figure 2 It is a schematic exploded view of the overall structure of an embodiment of a reagent oscillating device with a separation structure of the utility model.

[0017] The main component symbols are described as follows:

[0018] Bottom plate 1, slide rail 101, dust shield 102, upper side plate 103, first slide groove 1031, second slide groove 1032, slide groove 104;

[0019] Automatic left and right adjustment mechanism 2, mounting plate 201, left and right oscillation motor 202, threaded rod 203, threaded rod 203, nut sleeve 204, T-shaped slider 205;

[0020] Moving bottom plate 3;

[0021] Install the vertical plate 4, the guide slider 401, and the reinforcing rib 402;

[0022] Connecting block 5, up and down oscillation motor 501, first transmission plate 502, second transmission plate 503;

[0023] Horizontal plate 6, T-shaped connecting block 601;

[0024] Vertical plate 7;

[0025] Install side blocks 8;

[0026] A circular reagent placement box 9, a reagent fixing plate 901, a dividing groove 9011, a rubber material layer 9012, and a limiting cover 902. DETAILED DESCRIPTION

[0027] In order to enable those skilled in the art to better understand the present invention, the technical solution of the present invention is further described below in conjunction with the accompanying drawings and embodiments.

[0028] like Figure 1-2As shown, a reagent oscillation device with a partition structure of the utility model comprises a bottom plate 1, the bottom plate 1 is connected to an automatic left-right adjustment mechanism 2, the output end of the automatic left-right adjustment mechanism 2 is connected to a movable bottom plate 3, the movable bottom plate 3 is connected to a mounting vertical plate 4, the ends of the mounting vertical plate 4 are arranged in a trapezoidal shape, connecting blocks 5 are connected to both sides of the mounting vertical plate 4, the upper connecting block 5 is rotatably connected to a transverse plate 6 through a round rod, one side connecting block 5 is connected to an up-and-down oscillation motor 501, the output rod of the up-and-down oscillation motor 501 is connected to a first transmission plate 502, the end of the first transmission plate 502 is rotatably connected to a second transmission plate 503, the end of the second transmission plate 503 is rotatably connected to one end of the transverse plate 6, the other end of the transverse plate 6 is rotatably connected to a vertical plate 7, the mounting vertical plate 4 is connected to a mounting side block 8 on one side of the vertical plate 7, and the mounting side block 8 is provided with a guide groove adapted to movably plug the vertical plate 7;

[0029] A T-shaped connecting block 601 is connected to the upper side of the horizontal plate 6, a circular reagent placement box 9 is connected to the upper side of the T-shaped connecting block 601, a reagent fixing plate 901 is connected to the inner wall of the circular reagent placement box 9, the reagent fixing plate 901 is provided with a plurality of partition grooves 9011, an end of the circular reagent placement box 9 is threadedly connected to a limiting cover 902, and a rubber material layer 9012 is connected to the inner wall of the partition groove 9011, the bottom of the inner wall of the circular reagent placement box 9 and the inner wall of the limiting cover 902.

[0030] In the embodiment of the present case, the user clips the reagent tubes into the respective separation grooves 9011 on the reagent fixing plate 901, and then threadably connects the limiting cover 902 to the end of the circular reagent placement box 9. It should be noted that the inner wall of the separation groove 9011, the bottom of the inner wall of the circular reagent placement box 9 and the inner wall of the limiting cover 902 are all connected with a rubber material layer 9012. Such a structural design can achieve the separation and placement of each test tube in the circular reagent placement box 9 in a stable state, and can prevent the problem of damage to the test tube due to hard contact during subsequent oscillation of the test tube in the later stage;

[0031] After placing each test tube, the automatic left-right adjustment mechanism 2 and the up-and-down oscillation motor 501 are turned on through the central controller, and the automatic left-and-right adjustment mechanism 2 drives the movable bottom plate 3 and the upper connecting assembly to oscillate left-and-right, thereby driving the reagent in the test tube to oscillate left-and-right; the up-and-down oscillation motor 501 drives the first transmission plate 502 to rotate, and when the first transmission plate 502 rotates, it drives the second transmission plate 503 to change its angle and position accordingly, and when the second transmission plate 503 moves, it drives the end of the cross plate 6 to move up and down reciprocatingly, at this time, the vertical plate 7 connected to the other end of the cross plate 6 rotates and moves up and down in the guide groove of the mounting side block 8, and when the two ends of the cross plate 6 move up and down reciprocatingly, the circular reagent placement box 9 and each test tube inside are driven to oscillate in the upward and downward directions through the T-shaped connecting block 601, such a structural design can drive the test tube to oscillate simultaneously from the automatic left-and-right direction and the up-and-down direction, and the diversified oscillation directions can achieve the rapid mixing of the solution, thereby achieving the desired purpose.

[0032] Preferably, the automatic left and right adjustment mechanism 2 includes a mounting plate 201 connected to both ends of the base plate 1, a single-side mounting plate 201 is connected to a left and right oscillation motor 202, an output end of the left and right oscillation motor 202 is connected to a threaded rod 203, the other end of the threaded rod 203 is rotatably connected to the mounting plate 201 on the other side, two matching nut sleeves 204 are connected to the outer wall of the threaded rod 203 shaft, the nut sleeve 204 is connected to a T-shaped slider 205, the T-shaped slider 205 is connected to the lower side of the movable base plate 3, the upper side of the base plate 1 is connected to a slide rail 101 adapted to the sliding of the T-shaped slider 205, dust guard plates 102 are connected to both sides of the base plate 1, an upper side plate 103 is connected between the ends of the dust guard plates 102 on both sides, and the upper side plate 103 is provided with a first slide groove 1031 adapted to the sliding of the T-shaped slider 205. Such a structural design can realize the automatic left and right reciprocating oscillation of the movable base plate and its connecting components. In the present embodiment, the left and right oscillation motor 202 is turned on, and the left and right oscillation motor 202 drives the threaded rod 203 at the output end to rotate reciprocatingly. When the threaded rod 203 rotates, it drives the two nut sleeves 204 and the T-shaped slider 205 to move reciprocatingly in the slide rail 101. When the T-shaped slider 205 moves, it drives the upper movable base plate 3 and its connecting components to move reciprocatingly, thereby achieving the effect of driving the reagents in the circular reagent placement box 9 to oscillate and mix in the left and right directions.

[0033] Preferably, the movable bottom plate 3 is connected to two sets of guide sliders 401 on both sides of the T-shaped slider 205, the ends of the guide sliders 401 are rounded, the upper side plate 103 is provided with a second slide groove 1032 adapted to the sliding of the guide sliders 401, and the upper side of the outer surface of the bottom plate 1 is provided with a slide groove 104 adapted to the sliding of the ends of the guide sliders 401. Such a structural design makes the movable bottom plate more stable and smoother when moving. In fact, other structural shapes that can enhance the stability of the movable bottom plate when moving can also be considered according to specific circumstances.

[0034] Preferably, reinforcing ribs 402 are connected between both sides of the mounting plate 4 and the movable bottom plate 3. Such a structural design can enhance the connection stability of the mounting plate. In fact, other structural shapes that can enhance the connection stability of the mounting plate 4 can also be considered according to specific circumstances.

[0035] Preferably, the side wall of the circular reagent placement box 9 is a transparent plastic plate, and such a structural design is convenient for the staff to observe the vibration degree of the reagent. In fact, other structural shapes that are convenient for observing the swaying state of the reagent can also be considered according to specific circumstances.

[0036] The above embodiments are merely illustrative of the principles and effects of the present invention, and are not intended to limit the present invention. Anyone familiar with the technology may modify or change the above embodiments without violating the spirit and scope of the present invention. Therefore, all equivalent modifications or changes made by those with ordinary knowledge in the relevant technical field without departing from the spirit and technical ideas disclosed in the present invention shall still be covered by the claims of the present invention.

Claims

1. A reagent oscillating device with a partition structure, comprising a bottom plate (1), characterized in that: The bottom plate (1) is connected to an automatic left-right adjustment mechanism (2), the output end of the automatic left-right adjustment mechanism (2) is connected to a movable bottom plate (3), the movable bottom plate (3) is connected to an installation vertical plate (4), the end of the installation vertical plate (4) is arranged in a trapezoidal shape, the two sides of the installation vertical plate (4) are connected to connecting blocks (5), the upper connecting block (5) is rotatably connected to a transverse plate (6) through a round rod, one side of the connecting block (5) is connected to an up-and-down oscillation motor (501), the output rod of the up-and-down oscillation motor (501) is connected to a first transmission plate (502), the end of the first transmission plate (502) is rotatably connected to a second transmission plate (503), the end of the second transmission plate (503) is rotatably connected to one end of the transverse plate (6), the other end of the transverse plate (6) is rotatably connected to a vertical plate (7), the installation vertical plate (4) is connected to an installation side block (8) on one side of the vertical plate (7), the installation side block (8) is provided with a guide groove adapted to movably plug the vertical plate (7); The upper side of the transverse plate (6) is connected to a T-shaped connecting block (601), the upper side of the T-shaped connecting block (601) is connected to a circular reagent placement box (9), the inner wall of the circular reagent placement box (9) is connected to a reagent fixing plate (901), the reagent fixing plate (901) is provided with a plurality of partition grooves (9011), the end of the circular reagent placement box (9) is threadedly connected to a limiting cover (902), and the inner wall of the partition groove (9011), the bottom of the inner wall of the circular reagent placement box (9) and the inner wall of the limiting cover (902) are all connected to a rubber material layer (9012).

2. A reagent oscillating device with a partition structure according to claim 1, characterized in that: The automatic left-right adjustment mechanism (2) comprises a mounting plate (201) connected to both ends of the base plate (1); a left-right oscillation motor (202) is connected to one side of the mounting plate (201); a threaded rod (203) is connected to the output end of the left-right oscillation motor (202); the other end of the threaded rod (203) is rotatably connected to the mounting plate (201) on the other side; two matching nut sleeves (204) are connected to the outer wall of the shaft of the threaded rod (203); the nut sleeves (204) are connected to the outer wall of the shaft of the threaded rod (203); and the nut sleeves (204) are connected to the outer wall of the shaft of the threaded rod (203). 204) is connected to a T-shaped slider (205), the T-shaped slider (205) is connected to the lower side of the movable base plate (3), the upper side of the base plate (1) is connected to a slide rail (101) adapted for the sliding of the T-shaped slider (205), the two sides of the base plate (1) are connected to dust shields (102), the ends of the dust shields (102) on both sides are connected to an upper side plate (103), and the upper side plate (103) is provided with a first slide groove (1031) adapted for the sliding of the T-shaped slider (205).

3. A reagent oscillating device with a partition structure according to claim 2, characterized in that: The movable base plate (3) is connected to two groups of guide sliders (401) on both sides of the T-shaped slider (205), the ends of the guide sliders (401) are chamfered, the upper side plate (103) is provided with a second sliding groove (1032) adapted to the sliding of the guide slider (401), and the upper side of the outer surface of the base plate (1) is provided with a sliding groove (104) adapted to the sliding of the end of the guide slider (401).

4. A reagent oscillating device with a partition structure according to claim 3, characterized in that: Reinforcing ribs (402) are connected between the two sides of the mounting vertical plate (4) and the movable bottom plate (3).

5. A reagent oscillating device with a partition structure according to claim 4, characterized in that: The side wall portion of the circular reagent placement box (9) is a transparent plastic plate.