Animal epidemic disease detection device

By adopting a sliding table and an elastic connection structure in the animal disease detection device, the problems of poor stability of container fixation and limited application scope in the prior art are solved, and rapid fixation and efficient mixing of multiple containers are achieved.

CN119971881AActive Publication Date: 2025-05-13SHANDONG WANHAI BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510457340.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-05-13
Estimated Expiration
2045-04-14

AI Technical Summary

Technical Problem

The existing mixing instruments have poor stability when fixing containers, and their application range is limited, so they cannot quickly fix multiple containers.

Method used

An animal disease detection device is designed, using a sliding table and an elastic connection structure, which can quickly fix a variety of containers, including orifices, test tubes and conical flasks, and ensure stability through positioning rods and elastic members.

Benefits of technology

It realizes rapid fixation of multiple containers, improves mixing efficiency, and has a wide range of applications, without the need to replace or disassemble the fixtures.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of mixing instruments, in particular to an animal epidemic disease detection device which comprises sliding tables symmetrically and elastically connected to a placing table of a mixing instrument body, pore plate grooves for placing pore plates are formed in the sliding tables, and barrier strips and trigger strips matched with each other are elastically connected into the pore plate grooves. Triggering pieces connected to the triggering strips are arranged in the sliding tables in a sliding mode, locking heads matched with the blocking strips are symmetrically and elastically connected to the interiors of the sliding tables, a conical flask groove and a plurality of test tube grooves are formed in the portion, between the two sliding tables, of the containing table, and limiting blocks used for fixing test tubes or conical flasks are elastically connected to the ends, close to the symmetric center, of the sliding tables. The ends, close to the symmetric center, of the limiting blocks are elastically connected with positioning blocks used for further fixing the conical flasks. Therefore, the container containing liquid can be quickly fixed, the mixing efficiency is high, various containers can be fixed without replacing or disassembling and assembling the fixing device, and the application range is wide.
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Description

Technical Field

[0001] The invention relates to the technical field of mixers, and in particular to an animal disease detection device. Background Art

[0002] A mixer is a device used to mix liquids or suspensions. It mixes the liquid in the container evenly through mechanical vibration or rotation. It is widely used in the medical, laboratory and industrial fields. In the process of animal disease detection, a mixer is usually required (for example, a mixer is required to shake the well plate after adding liquid).

[0003] At present, the existing mixer, for example, the Chinese patent with publication number CN205760908U, discloses a new type of body fluid constant temperature mixer, including a constant temperature mixer body, a well plate, a plate cover, and a display screen. The middle part of the upper surface of the constant temperature mixer body is provided with a well plate, the side of the well plate is provided with a plate cover, the upper end of the front of the constant temperature mixer body is provided with a display screen, the lower end of the front of the constant temperature mixer body is provided with a control panel, the upper end of the front of the constant temperature mixer body is provided with an oscillation intensity adjustment knob, the middle edge of the front of the constant temperature mixer body is provided with a working indicator light, and the lower end edge of the front of the constant temperature mixer body is provided with a A power switch is provided, a power indicator light is provided at the lower front end of the back of the thermostatic mixer body, a power interface is provided at the lower front end edge of the back of the thermostatic mixer body, a controller is provided at the lower rear end of the back of the thermostatic mixer body, an antenna is provided on the front of the controller, and bases are provided around the lower surface of the thermostatic mixer body. The working condition of the thermostatic mixer can be remotely viewed and the thermostatic mixer can be controlled by a mobile phone, and the operation is simpler and more practical. However, the stability of the thermostatic mixer for fixing the orifice plate is poor, and the orifice plate can only be shaken. It is not suitable for other containers such as test tubes and conical flasks, and its scope of application is limited.

[0004] How to quickly fix containers containing liquids, with high mixing efficiency, and fix a variety of containers without replacing or disassembling the fixing device, has become a technical problem that needs to be broken through.

[0005] In summary, the prior art obviously has inconveniences and defects in practical use, so it is necessary to improve it. Summary of the invention

[0006] In view of the above-mentioned defects, the purpose of the present invention is to provide an animal disease detection device, which can quickly fix containers containing liquids, has high mixing efficiency, and can fix a variety of containers without replacing or disassembling the fixing device, and has a wide range of applications.

[0007] In order to achieve the above-mentioned purpose, the present invention provides an animal disease detection device, comprising a sliding table symmetrically and elastically connected to a placement table of a mixer body, the sliding table is provided with an orifice plate groove for placing an orifice plate, the orifice plate groove is elastically connected with a baffle and a trigger bar that cooperate with each other, the sliding table is slidably provided with a trigger member connected to the trigger bar, the trigger member is provided with a matching hole that cooperates with the baffle, and the sliding table is symmetrically and elastically connected with a locking head that cooperates with the baffle.

[0008] A conical flask slot for placing conical flasks and several test tube slots for placing test tubes are provided on the placement platform between the two sliding platforms. One end of the sliding platform close to the symmetry center is elastically connected to a limit block for fixing the test tube or conical flask, and one end of the limit block close to the symmetry center is elastically connected to a positioning block for further fixing the conical flask.

[0009] Press the stop bar, the locking head and the stop bar cooperate with each other, put the orifice plate into the orifice plate groove, one end of the orifice plate pushes the trigger bar, the stop bar is disengaged from the matching hole, and the stop bar returns to the initial position.

[0010] According to the animal disease detection device of the present invention, the sliding platform is symmetrically provided with positioning rods, the outside of the positioning rods is rotatably connected with sleeve rods, the sleeve rods inside the sliding platform are elastically connected to the sliding platform, and the placement platform is provided with a plurality of positioning holes that cooperate with the positioning rods.

[0011] According to the animal disease detection device of the present invention, a fixing block is provided at one end of the positioning rod away from the sliding platform.

[0012] According to the animal disease detection device of the present invention, one end of the blocking bar close to the matching hole is provided with a curved surface.

[0013] According to the animal disease detection device of the present invention, a slider is provided at one end of the sliding table close to the placing table, and the slider is inserted into the placing table. A slide groove cooperating with the slider is provided on the placing table, and plug blocks are symmetrically provided on the slider in the slide groove. A slot cooperating with the plug blocks is provided in the slide groove, and an elastic member is provided between the slider and the slide groove.

[0014] According to the animal disease detection device of the present invention, the ends of the baffles close to the sliding platform are inserted into the sliding platform, the baffles inside the sliding platform are symmetrically provided with protrusions, the sliding platform is provided with grooves matching with the protrusions, the protrusions are slidably set in the grooves, and elastic parts are provided between the protrusions and the grooves.

[0015] According to the animal disease detection device of the present invention, the inner bottom surfaces of the conical bottle groove and the test tube groove are both provided with anti-slip pads.

[0016] According to the animal disease detection device of the present invention, one end of the trigger bar away from the blocking bar passes through the sliding platform.

[0017] According to the animal disease detection device of the present invention, the end of the limit block close to the symmetry center is provided with a plurality of limit grooves for clamping the test tube, and the end of the positioning block close to the symmetry center is provided with a plurality of avoidance grooves for clamping the conical flask.

[0018] The purpose of the present invention is to provide an animal disease detection device, including a sliding table, which can be used to quickly fix containers containing liquids, reduce the fixing time of the containers, and thus improve the mixing efficiency; the sliding table is symmetrically provided with positioning rods, which are threadedly connected to the positioning holes, so as to fix the position of the sliding table, improve the stability of the sliding table, and further prevent the sliding table from moving during the mixing process; the operator can use the sliding table to fix the conical flask or test tube while fixing the orifice plate according to the actual situation, so as to achieve simultaneous fixing of multiple containers, and the application range is wide. In summary, the beneficial effects of the present invention are: the container containing liquid can be quickly fixed, the mixing efficiency is high, and multiple containers can be fixed without replacing or disassembling the fixing device, and the application range is wide. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 The structural diagram of the present invention when the orifice plate is fixed; Figure 2 It is a structural diagram of the present invention when it is unfolded; Figure 3 It is the structural diagram at the trigger bar; Figure 4 is a cross-sectional view at the trigger bar; Figure 5 It is a cross-sectional view at the limit block; Figure 6 It is a cross-sectional view at the positioning rod; in the figure: 1-mixer body, 11-placing table, 111-placing slot, 112-test tube slot, 113-conical bottle slot, 12-positioning hole, 13-slide slot, 2-sliding table, 21-sliding block, 22-orifice plate slot, 221-block bar, 222-trigger bar, 223-trigger member, 224-locking head, 23-limiting block, 231-limiting slot, 24-positioning block, 241-avoidance slot, 3-positioning rod, 31-sleeve rod, 32-fixing block, 4-anti-slip pad, 5-elastic member. DETAILED DESCRIPTION

[0020] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0021] In the description of the present invention, it should be noted that the terms "upper", "lower", "inside", "outside", "top / bottom" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0022] In the description of the present invention, it should be noted that, unless otherwise clearly stipulated and limited, the terms "installed", "provided with", "mounted / connected", "connected", etc. should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection. It can be a mechanical connection or an electrical connection. It can be a direct connection or an indirect connection through an intermediate medium. It can be the internal connection of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0023] See also Figure 1~Figure 5 The present invention provides an animal disease detection device, including a mixer body 1 (the structure of the mixer body 1 is the same as that of the prior art. When the intelligent electric control is turned on, the placement table 11 vibrates or rotates regularly to mix the liquid in the container placed on the placement table 11. The output power can be adjusted by adjusting the knob. It is a mature prior art in this field. Its specific structure and working principle will not be repeated here). The placement table 11 of the mixer body 1 is symmetrically and elastically connected with a sliding table 2. The sliding table 2 is provided with an orifice plate groove 22 for placing an orifice plate (the orifice plate is a mature prior art, such as a 96-well plate. Its specific structure and working principle will not be repeated here). The orifice plate groove 22 is elastically connected with a baffle 221 (the end of the baffle 221 close to the sliding table 2 is inserted into the sliding table 2, and the inside of the sliding table 2 The baffle bar 221 is symmetrically provided with protrusions, and the sliding platform 2 is provided with grooves matching with the protrusions. The protrusions are slidably arranged in the grooves, and elastic members 5 are provided between the protrusions and the grooves). The orifice plate groove 22 on the side away from the baffle bar 221 is elastically connected with a trigger bar 222 matching with the baffle bar 221, and the trigger bar 222 can move to the side away from the baffle bar 221, and one end of the trigger bar 222 away from the baffle bar 221 passes through the sliding platform 2, and a trigger member 223 is slidably provided in the sliding platform 2, one end of the trigger member 223 is connected to the trigger bar 222, and the trigger member 223 can move with the trigger bar 222, and a matching hole matching with the baffle bar 221 is provided on the trigger member 223, and a locking head 224 matching with the baffle bar 221 is symmetrically elastically connected in the sliding platform 2, and a locking hole matching with the locking head 224 is provided on the baffle bar 221.

[0024] See also Figure 1~Figure 5When the orifice plate needs to be placed in the orifice plate slot 22, first, the stop bar 221 is pressed toward the side close to the sliding table 2. When the stop bar 221 is fully retracted into the sliding table 2, the end of the stop bar 221 close to the matching hole is inserted into the matching hole, and the locking head 224 cooperates with the locking hole to temporarily fix the position of the stop bar 221. Then the orifice plate is placed in the orifice plate slot 22. When one end of the orifice plate abuts against the spring 222, the orifice plate pushes the trigger bar 222 to move toward the side away from the stop bar 221. The trigger bar 222 simultaneously drives the trigger member 223 to move. During the movement of the trigger member 223, the stop bar 221 is disengaged from the matching hole, and the trigger member 223 pushes the stop bar 221 toward the side away from the sliding table 2, so that the locking head 224 is disengaged from the locking hole. Under the action of the elastic member 5 at the stop bar 221, the stop bar 221 returns to the initial position. When the orifice plate is completely placed in the orifice plate slot 22, Under the action of the elastic member 5 at the trigger bar 222, the trigger bar 222 rebounds and pushes the orifice plate, so that the orifice plate is fixed by the trigger bar 222 and the stop bar 221. When the orifice plate is taken out, the trigger bar 222 can be continuously pulled to make the trigger bar 222 disengage from the orifice plate. Since the distance of pulling the trigger bar 222 is relatively far, there is no trigger bar 222 under the stop bar 221 to limit its position. The stop bar 221 is pressed toward the side close to the sliding table 2 again, so that the locking head 224 and the locking hole cooperate with each other to temporarily fix the position of the stop bar 221. After taking out the orifice plate, the trigger bar 222 is pushed toward the side close to the stop bar 221 and the stop bar 221 is pushed toward the side away from the sliding table 2 to lift the stop bar 221. Then the trigger bar 222 is released, so that the stop bar 221 and the trigger bar 222 return to the initial position (at this time, the matching hole is located directly below the stop bar 221).

[0025] See also Figure 1~Figure 5 Specifically, a slider 21 is provided at one end of the sliding table 2 close to the placing table 11, and the sliders 21 are inserted into the placing table 11. The placing table 11 is provided with a slide groove 13 allowing the slider 21 to slide. The sliders 21 in the slide groove 13 are symmetrically provided with plug blocks, and the slide groove 13 is provided with slots that cooperate with the plug blocks. The plug blocks and the slots cooperate with each other to prevent the sliding table 2 from leaving the placing table 11. An elastic member 5 is provided between the slider 21 and the slide groove 13 to push the sliding table 2 to the side away from the symmetry center. The slider 21 of the sliding table 2 slides in the slide groove 13, and at the same time, the slider 21 squeezes the elastic member 5 at the slider 21. After the sliding table 2 is released, under the action of the elastic member 5 at the slider 21, the sliding table 2 returns to the initial position, which is convenient for the operator to move the sliding table 2.

[0026] See also Figure 1~Figure 5 Preferably, one end of the blocking bar 221 close to the matching hole is provided with a curved surface to reduce the friction force generated when the blocking bar 221 contacts the trigger member 223.

[0027] See also Figure 1 , Figure 2 , Figure 3 and Figure 5 A placement groove 111 is provided on the placement platform 11 between the two sliding platforms 2, and a conical flask groove 113 for placing a conical flask is provided in the placement groove 111, and a plurality of test tube grooves 112 for placing test tubes are provided in the placement groove 111 below the conical flask groove 113, and one end of the sliding platform 2 close to the symmetry center is elastically connected to a limiting block 23 (the connection method between the limiting block 23 and the sliding platform 2 is the same as the connection method between the baffle 221 and the sliding platform 2, and its specific structure and connection method are not repeated here), and one end of the limiting block 23 close to the symmetry center is elastically connected to a positioning block 24 for fixing the conical flask; when using the sliding platform 2 to fix the test tube, first push the two sliding platforms 2 to the side away from the symmetry center, then place a plurality of test tubes in the test tube groove 112, release the sliding platform 2, and use The test tube is clamped by the limit blocks 23 of the two sliding tables 2 (the elastic coefficients of the elastic members 5 at the sliding tables 2, the limit blocks 23 and the positioning blocks 24 are reasonably adjusted, for example, the elastic force of the elastic member 5 at the positioning blocks 24 is made smaller than the elastic force of the elastic member 5 at the sliding tables 2 and the limit blocks 23, so that the positioning blocks 24 can be smoothly retracted into the limit blocks 23). If the stability of the test tube clamping at the positioning blocks 24 is poor, the number of test tubes can also be reduced so that the test tubes are staggered with the positioning blocks 24 when distributed, thereby ensuring that the test tubes are fixed stably. When the sliding tables 2 are used to fix the conical flask, the two sliding tables 2 are first pushed to the side away from the center of symmetry, and then the conical flask is placed in the conical flask groove 113. The sliding tables 2 are released, and the conical flask is clamped by the limit blocks 23 and the positioning blocks 24 of the two sliding tables 2.

[0028] See also Figure 1 to Figure 6 Preferably, one end of the limiting block 23 close to the symmetry center is provided with a plurality of limiting grooves 231 for clamping the test tube, so as to improve the stability of the limiting block 23 when clamping the test tube.

[0029] See also Figure 1 to Figure 6 Preferably, one end of the positioning block 24 close to the symmetry center is provided with a plurality of avoidance grooves 241 for clamping the conical flask, so as to improve the stability of the positioning block 24 when clamping the conical flask.

[0030] See also Figure 1 to Figure 6 Preferably, the inner bottom surfaces of the conical flask groove 113 and the test tube groove 112 are both provided with anti-skid pads 4 to increase the friction between the conical flask groove 113, the test tube groove 112 and the container.

[0031] See also Figure 1 to Figure 6, further, the sliding table 2 is symmetrically provided with positioning rods 3, the outside of the positioning rods 3 is rotatably connected with sleeve rods 31, and the sleeve rods 31 inside the sliding table 2 are elastically connected to the sliding table 2 (the connection method between the sleeve rods 31 and the sliding table 2 is the same as the connection method between the baffle 221 and the sliding table 2, and its specific structure and connection method are not repeated here), and the placement table 11 is provided with a plurality of positioning holes 12 that cooperate with the positioning rods 3, and the positioning rods 3 are threadedly connected to the positioning holes 12; when the sliding table 2 is used to clamp the conical flask or test tube, or when the sliding table 2 is not used to clamp the conical flask and test tube (see Figure 1 ), the positioning rod 3 can be pressed toward the side close to the sliding table 2, so that the positioning rod 3 is threadedly connected to the positioning hole 12, thereby fixing the position of the sliding table 2, improving the stability of the sliding table 2, and further preventing the sliding table 2 from moving during the mixing process.

[0032] See also Figure 1 to Figure 6 Preferably, a fixing block 32 is provided at one end of the positioning rod 3 away from the sliding platform 2 , and the fixing block 32 can facilitate the operator to rotate the positioning rod 3 .

[0033] See also Figure 1 to Figure 6 Preferably, the elastic member 5 is a spring to provide return power.

[0034] See also Figure 1 to Figure 6 When in use, when the slide table 2 needs to be used to fix the well plate, the stop bar 221 is pressed toward the side close to the slide table 2, so that the locking head 224 cooperates with the locking hole, and then the well plate is placed in the well plate slot 22, and the well plate pushes the trigger bar 222 to move toward the side away from the stop bar 221, so that the stop bar 221 returns to the initial position, and after the well plate is completely placed in the well plate slot 22, the well plate is fixed by the trigger bar 222 and the stop bar 221; when the slide table 2 needs to be used to fix the test tube, first push the two slide tables 2 toward the side away from the symmetry center, and then place several test tubes on the test tube. In the tube groove 112, the sliding table 2 is released, and the test tube is clamped by the limit blocks 23 of the two sliding tables 2; when the sliding table 2 needs to be used to fix the conical flask, the two sliding tables 2 are first pushed to the side away from the symmetry center, and then the conical flask is placed in the conical flask groove 113, and the sliding table 2 is released, and the conical flask is clamped by the limit blocks 23 and the positioning blocks 24 of the two sliding tables 2; in actual use, the operator can use the sliding table 2 to fix the conical flask or test tube at the same time as the orifice plate is fixed according to the actual situation, so as to achieve simultaneous fixing of multiple containers.

[0035] The present invention provides an animal disease detection device, including a sliding table, which can be used to quickly fix a container containing liquid, reduce the fixing time of the container, and thus improve the mixing efficiency; the sliding table is symmetrically provided with positioning rods, which are threadedly connected to the positioning holes, and can fix the position of the sliding table, improve the stability of the sliding table, and further prevent the sliding table from moving during the mixing process; the operator can use the sliding table to fix the conical flask or test tube while using the sliding table to fix the orifice plate according to actual conditions, so as to achieve simultaneous fixing of multiple containers, and the application range is wide. In summary, the beneficial effects of the present invention are: the container containing liquid can be quickly fixed, the mixing efficiency is high, and multiple containers can be fixed without replacing or disassembling the fixing device, and the application range is wide.

[0036] Of course, the present invention may have many other embodiments. Without departing from the spirit and essence of the present invention, those skilled in the art may make various corresponding changes and modifications based on the present invention, but these corresponding changes and modifications should all fall within the scope of protection of the claims attached to the present invention.

Claims

1. An animal disease detection device, characterized in that: It comprises a sliding table symmetrically and elastically connected to the placement table of the mixer body, the sliding table is provided with an orifice plate slot for placing the orifice plate, the orifice plate slot is elastically connected with a stopper and a trigger bar that cooperate with each other, the sliding table is slidably provided with a trigger member connected to the trigger bar, the trigger member is provided with a matching hole that cooperates with the stopper bar, and the sliding table is symmetrically and elastically connected with a locking head that cooperates with the stopper bar; The placement platform between the two sliding platforms is provided with a conical flask slot for placing conical flasks and a plurality of test tube slots for placing test tubes. The end of the sliding platform close to the symmetry center is elastically connected to a limit block for fixing the test tube or conical flask, and the end of the limit block close to the symmetry center is elastically connected to a positioning block for further fixing the conical flask. Press the stop bar, the locking head and the stop bar cooperate with each other, put the orifice plate into the orifice plate groove, one end of the orifice plate pushes the trigger bar, the stop bar is disengaged from the matching hole, and the stop bar returns to the initial position.

2. The animal disease detection device according to claim 1, characterized in that: The sliding platform is symmetrically provided with positioning rods, the outside of the positioning rods is rotatably connected with sleeve rods, the sleeve rods inside the sliding platform are elastically connected to the sliding platform, and the placement platform is provided with a plurality of positioning holes that cooperate with the positioning rods.

3. The animal disease detection device according to claim 2, characterized in that: A fixing block is arranged at one end of the positioning rod away from the sliding platform.

4. The animal disease detection device according to claim 1, characterized in that: The ends of the blocking bars close to the matching holes are all provided with arc surfaces.

5. The animal disease detection device according to claim 1, characterized in that: The sliding table is provided with a slider at one end close to the placing table, and the slider is inserted into the placing table. The placing table is provided with a slide groove that cooperates with the slider, and the slider in the slide groove is symmetrically provided with plug blocks, and the slide groove is provided with a slot that cooperates with the plug blocks, and an elastic member is provided between the slider and the slide groove.

6. The animal disease detection device according to claim 1, characterized in that: The ends of the baffles close to the sliding table are all inserted into the sliding table, the baffles inside the sliding table are symmetrically provided with protrusions, the sliding table is provided with grooves matching with the protrusions, the protrusions are slidably set in the grooves, and elastic parts are provided between the protrusions and the grooves.

7. The animal disease detection device according to claim 1, characterized in that: The inner bottom surfaces of the conical bottle groove and the test tube groove are both provided with anti-skid pads.

8. The animal disease detection device according to claim 1, characterized in that: One end of the trigger bar away from the blocking bar passes through the sliding platform.

9. The animal disease detection device according to claim 1, characterized in that: The end of the limiting block close to the symmetry center is provided with a plurality of limiting grooves for clamping the test tube, and the end of the positioning block close to the symmetry center is provided with a plurality of avoidance grooves for clamping the conical flask.

Citation Information

Patent Citations

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