Blood sampling anti-coagulation test tube storage device
By designing a blood collection anti-agglomeration test tube storage device that includes a drive mechanism and a support disc, the problem of blood agglomeration caused by the inability of existing test tube racks to shake automatically is solved, realizing automatic shaking of blood samples and improving blood collection efficiency.
Patent Information
- Application Number
- CN202520114953.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-01-17
AI Technical Summary
The existing blood collection tube racks cannot be automatically shaken, causing blood samples to clump together inside the collection tubes, affecting blood collection efficiency.
A blood collection anti-agglomeration test tube storage device was designed, comprising a drive mechanism, a turntable, a support disc, an elastic limiting component, and an elastic pulling component. The drive motor drives the turntable and the support disc to swing back and forth, thereby agitating the blood inside the blood collection test tube and preventing agglomeration.
It enables automatic mixing of blood in blood collection tubes, improving blood collection efficiency, preventing blood sample aggregation, and simplifying the operating procedures for medical staff.
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Figure CN223888067U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of blood sampling anti-aggregation test tube storage device. BACKGROUND
[0002] Blood sampling test tube is a kind of tool widely used in medical and medical research, mainly used for collecting, preserving and transporting blood samples. In medical practice, blood sampling test tube is used to obtain blood samples for laboratory testing and disease diagnosis.
[0003] In order to facilitate medical staff to store blood sampling test tube after blood sampling, blood collection test tube rack is usually used to store blood sampling test tube. Blood collection test tube rack is a device for storing and arranging blood collection test tubes, usually designed with multiple hole positions, which can hold test tubes of different specifications, and is convenient for medical staff to use when collecting blood.
[0004] However, the inventor found in work that the commonly used blood collection test tube rack is fixed. That is, the existing blood collection test tube rack does not have a swing function for the blood sampling test tube stored therein. Therefore, medical staff need to hold the blood sampling test tube and shake it after collecting blood samples from patients. In addition, when collecting multiple blood samples in succession, it is easy to miss shaking a certain blood sampling test tube, causing blood samples to coagulate in the blood sampling test tube. Therefore, in view of the defects of the prior art, a blood sampling anti-aggregation test tube storage device capable of swinging blood sampling test tube is developed. UTILITY MODEL CONTENT
[0005] The utility model aims at the defects of the prior art, and provides a blood sampling anti-aggregation test tube storage device.
[0006] In order to achieve the above purpose of the utility model, the following technical solutions are adopted:
[0007] A blood sampling anti-aggregation test tube storage device, comprising a bottom plate, a drive mechanism is installed at one end of the bottom plate; a turntable is rotatably installed at the other end of the bottom plate, the turntable is divided into a plurality of second area blocks, and a plurality of counterbores are distributed in the second area blocks; a support disc is distributed with a plurality of first area blocks and a convex head protruding outward, the first area blocks are provided with an identification area and a plurality of tube insertion holes, a plurality of support discs are vertically spaced and arranged in parallel, and at least one vertical column is connected in series, and at least one vertical column is installed on the turntable; the convex head is movably driven connected with the drive mechanism; an elastic limiting piece is installed on the bottom plate and close to the convex head, and located at the rear end of the convex head in the rotating direction; and an elastic pulling piece is connected with the convex head at one end and installed on the bottom plate at the other end.
[0008] As a further improvement of the technical scheme, the blood sampling anti-agglomeration test tube storage device further comprises a buffer sleeve, and the insertion hole and the counterbore are both provided with the buffer sleeve.
[0009] As a further improvement of the technical scheme, the elastic pulling member comprises a first support column, a second support column and a first spring, the first support column is installed on the bottom plate, the second support column is installed on the convex head, and one end of the first spring is installed on the first support column and the other end is installed on the second support column.
[0010] As a further improvement of the technical scheme, the elastic limiting member comprises a limiting column, a fixed plate and a movable plate, the limiting column is installed on the bottom plate, the fixed plate is installed on the limiting column, and the movable plate is parallel and spaced apart from the fixed plate and is connected through a plurality of telescopic members, each telescopic member is sleeved with a second spring, one end of the second spring abuts against the fixed plate, and the other end abuts against the movable plate.
[0011] As a further improvement of the technical scheme, the blood sampling anti-agglomeration test tube storage device further comprises a first support shaft and a tray, the tray is attached and installed on the bottom surface of the turntable, one end of the first support shaft is provided through the tray and is in transmission connection with the turntable, and the other end is rotationally installed on the bottom plate.
[0012] As a further improvement of the technical scheme, the driving mechanism comprises a fixed column, a hoop, a driving motor and a swing plate, the fixed column is installed on the bottom plate, the hoop is installed on the fixed column and is used for supporting and installing the driving motor, the driving motor is provided with a driving shaft, one end of the swing plate is in transmission connection with the driving shaft, and the other end is in active driving connection with the convex head.
[0013] As a further improvement of the technical scheme, the blood sampling anti-agglomeration test tube storage device further comprises a roller, an anti-falling disc and a second support shaft, one end of the second support shaft is connected with the anti-falling disc, the other end is provided through the roller and is connected with the swing plate, and the roller is used for being in active transmission connection with the convex head.
[0014] As a further improvement of the technical scheme, the swing plate is in a water drop type structure.
[0015] As a further improvement of the technical scheme, the blood sampling anti-agglomeration test tube storage device further comprises a cover plate, a support column and a storage box, the cover plate is connected with the bottom plate through at least one support column, the cover plate is located above the driving mechanism and the convex head, and the storage box is installed on the cover plate.
[0016] As a further improvement of the technical scheme, the blood sampling anti-agglomeration test tube storage device further comprises a controller, the controller is installed on the cover plate, has a touch display screen, the touch display screen is provided with a control button, and the controller is electrically connected with the driving mechanism.
[0017] The utility model discloses relative to prior art has remarkable progress:
[0018] 1. The utility model discloses can drive blood collection test tube swing, can make blood collection test tube in the blood sample of shaking, realize blood collection test tube in the blood sample of shaking, prevent blood sample condensation. Can overcome the problem of manual swing blood collection test tube of prior art, can improve the work efficiency of blood collection.
[0019] 2. The utility model discloses can make the disc realize reciprocating swing, and drive motor drives driving shaft rotation, and driving shaft drives swing board rotation, and swing board drives roller rotation, and roller rotation collides with the convex head and pushes the convex head and moves to separate, and the convex head moves and pulls the first spring and produces elastic deformation, and the first spring pulls the convex head reverse rotation, and the convex head reverse rotation collides with the elastic limit piece, and the elastic limit piece buffers the convex head and produces elastic deformation simultaneously, and the elastic limit piece pushes the convex head reverse movement, and when swing board drives roller rotation, and the convex head is pushed to separate simultaneously, and such cycle work, and the disc realizes reciprocating swing, and the disc drives a plurality of support disc and blood collection test tube reciprocating swing, and blood collection test tube can realize shaking in the blood sample thereof, realize blood collection test tube in the blood sample of shaking.
[0020] 3. The utility model discloses still can be convenient for the storage blood collection tool used for blood collection, and blood collection tool can be placed in the storage compartment of storage box, realizes unified storage to blood collection tool, and can be convenient for medical staff to take blood sample and take blood collection tool. DRAWINGS
[0021] In order to more clearly illustrate the specific embodiment of the utility model or the technical scheme in the prior art, the following will be briefly introduced in the specific embodiment or the prior art description needed to use the drawing. In all drawings, similar elements or parts are generally identified by similar reference signs. In the drawings, various elements or parts are not necessarily drawn according to the actual proportion.
[0022] Figure 1 It is the structure schematic view of the utility model discloses a kind of blood collection anti-aggregation test tube storage device;
[0023] Figure 2 It is the installation structure schematic view between drive mechanism, disc in the utility model;
[0024] Figure 3 It is the unfolded structure schematic view between drive mechanism, disc, bottom plate, elastic limit piece, elastic pulling piece in the utility model;
[0025] Figure 4 It is the unfolded structure schematic view of drive mechanism in the utility model;
[0026] Figure 5The utility model discloses a structure diagram of the elastic positioner in the utility model;
[0027] Figure 6 The utility model discloses a structure diagram of the storage box installed on the cover plate in the utility model;
[0028] The names and serial numbers of the components in the drawing are as follows:
[0029] 1 - bottom plate, 2 - support column, 3 - controller, 31 - control button, 4 - cover plate, 5 - hoop, 6 - drive motor, 7 - drive shaft, 8 - swing plate, 9 - roller, 10 - first support column, 11 - elastic positioner, 111 - position limiting column, 112 - fixed plate, 113 - telescopic part, 1131 - guide rod, 1132 - storage cylinder, 114 - second spring, 115 - movable plate, 12 - support disc, 13 - first area block, 14 - insertion pipe hole, 15 - buffer sleeve, 16 - stand column, 17 - rotary disc, 18 - counterbore, 19 - lug, 20 - second support column, 21 - first spring, 22 - first support shaft, 23 - second area block, 24 - shaft hole, 25 - tray, 28 - bearing, 29 - bearing hole, 30 - anti-off disc, 32 - second support shaft, 33 - storage box, 331 - storage grid, 332 - partition plate, 34 - nut, 35 - fixed column, 36 - identification area. DETAILED DESCRIPTION
[0030] In order to make the personnel in the technical field better understand the technical scheme in the application, the technical scheme of the utility model will be described clearly and completely in the following in combination with the drawings and examples, and obviously, the described examples are only a part of the examples of the application, and all the other examples obtained by the ordinary skilled in the art without doing the creative work on the basis of the examples in the application should belong to the protection scope of the application.
[0031] Example 1:
[0032] As Figures 1-6As shown, this embodiment is a blood collection anti-agglutination test tube storage device, including a base plate 1, a turntable 17, a supporting disc 12, an elastic limiting member 11, and an elastic pulling member. A driving mechanism is installed at one end of the base plate 1. The turntable 17 is rotatably mounted on the other end of the base plate 1. The turntable 17 is divided into multiple second area blocks 23, each with multiple countersunk holes 18. The supporting disc 12 has multiple first area blocks 13 and outwardly protruding protrusions 19. Each first area block 13 has an identification area 36 and multiple insertion holes 14. The multiple supporting discs 12 are arranged vertically at intervals and parallel to each other, and are connected in series by at least one column 16, which is mounted on the turntable 17. The protrusions 19 are movably driven by the driving mechanism. The elastic limiting member 11 is installed on the base plate 1, close to the protrusions 19, and located at the rear end of the protrusions 19 in the direction of rotation. One end of the elastic pulling member is connected to the protrusions 19, and the other end is installed on the base plate 1.
[0033] One possible structure for the base plate is that both ends are curved, which avoids sharp points.
[0034] The number of support discs installed can be 2, 3, or 4, etc. The first area blocks 13 on adjacent support discs correspond to each other, meaning there is a one-to-one correspondence between the first area blocks on adjacent support discs. Understandably, the insertion holes on two corresponding first area blocks also correspond to each other, facilitating the vertical insertion of blood collection tubes through the corresponding insertion holes into multiple support discs. Similarly, the first area block 13 and the second area block 23 also correspond one-to-one. Therefore, one countersunk hole is vertically aligned with at least two insertion holes.
[0035] It should be noted that multiple parallel, spaced support discs are used to support the blood collection tubes so that they are placed vertically, while the turntable lifts the blood collection tubes to prevent them from falling downwards.
[0036] The countersunk hole also serves to limit the movement of the blood collection tube inserted into it. When the turntable rotates, the countersunk hole can restrict the movement of the bottom of the blood collection tube.
[0037] The labeling area 36 can be used to mark information such as the patient's name and the type of test. Labeling the patient's name in this area allows medical staff to easily compare the information registered on the blood collection tube with the information in the labeling area, enabling double-checking and preventing the blood collection tubes from being placed in the wrong location. Labeling the test type in this area allows blood collection tubes of the same type to be placed together in the same primary area block. Blood collection tube caps are typically blue, purple, green, or yellow. Having blood collection tubes of the same color in the same primary area block facilitates quick identification of the required test type by medical staff.
[0038] A structure of a drive mechanism. The drive mechanism includes a fixed column 35, a clamp 5, and a swing plate 8. The fixed column 35 is mounted on the base plate 1; the clamp 5 is mounted on the fixed column 35 and is used to support and mount the drive motor 6, which has a drive shaft 7; one end of the swing plate 8 is connected to the drive shaft 7 for transmission, and the other end is connected to the protrusion 19 for movable drive.
[0039] During operation, the drive motor 6 drives the drive shaft 7 to rotate, the drive shaft 7 drives the swing plate 8 to rotate, the swing plate 8 rotates until it collides with the protrusion and pushes the protrusion to rotate until the swing plate separates from the protrusion.
[0040] To reduce wear between the swing plate and the protrusion, a roller 9, an anti-detachment disc 30, and a second support shaft 32 are added. One end of the second support shaft 32 is connected to the anti-detachment disc 30, and the other end passes through the roller 9 and is connected to the swing plate 8. The roller 9 is used for the movable transmission connection with the protrusion 19.
[0041] The roller 9 can rotate relative to the second support shaft 32, which allows the roller to make rolling contact with the protrusion.
[0042] One structural shape of the oscillating plate, where the oscillating plate 8 has a teardrop-shaped structure. For example... Figures 1-4 As shown, one end of the swing plate is a large-diameter arc end 81, and the other end is a small-diameter arc end 82. The large-diameter arc end and the small-diameter arc end are tangentially connected.
[0043] The small-diameter arc end 82 can be used to support and install rollers.
[0044] An installation structure for a roller and a swing plate: a second support shaft 32 passes through the swing plate 8 and is threadedly connected to a nut 34.
[0045] To provide a safe rotation space for the swing plate, a cover plate 4, a support column 2, and a storage box 33 are added. The cover plate 4 is connected to the base plate 1 by at least one support column 2, and the cover plate 4 is located above the drive mechanism and the protrusion 19. The storage box 33 is installed on the cover plate 4.
[0046] The number of support columns 2 can be 2, 3, or 4. Multiple support columns support the cover plate above the top surface of the drive mechanism and the protruding head.
[0047] Understandably, multiple support columns, a cover plate, and a base plate form a hollow accommodating space, within which the swing plate and protruding head can rotate. The multiple support columns connect to the base plate along the edge of the cover plate to form a guardrail.
[0048] The storage box 33 is provided with at least one partition 332, which can divide the storage box into multiple storage compartments 331. The storage compartments 331 can be used to store blood collection tools.
[0049] A structure of an elastic tension member: The elastic tension member includes a first support column 10, a second support column 20, and a first spring 21. The first support column 10 is mounted on the base plate 1; the second support column 20 is mounted on the protrusion 19; one end of the first spring 21 is mounted on the first support column 10, and the other end is mounted on the second support column 20.
[0050] The swing plate 8 collides with and pushes the protruding head 19 to rotate. The protruding head then drives the turntable 17 to rotate and the second support column 20 to move. The second support column 20 pulls the first spring 21, which stretches and generates elastic deformation. When the swing plate 8 disengages from the protruding head 19, the protruding head is pulled in the opposite direction by the elastic deformation force of the first spring. The protruding head 19 then drives the turntable 17 to rotate in the opposite direction. When the protruding head rotates in the opposite direction and collides with the elastic limiting member, it can buffer the protruding head while also exerting an elastic reverse force on the protruding head, which can make the turntable reciprocate. This drives multiple supporting discs to reciprocate, which in turn causes multiple blood collection tubes placed on the multiple supporting discs to shake, which can prevent the blood in the blood collection tubes from clotting.
[0051] Understandably, the elastic limiting component and the first spring work together to ensure that the swing plate maintains contact with the protrusion when it rotates in a circular motion, and can also push the protrusion to rotate.
[0052] One structure of the elastic limiting member includes a limiting post 111, a fixed plate 112, and a movable plate 115. The limiting post 111 is installed on the base plate 1; the fixed plate 112 is installed on the limiting post 111; the movable plate 115 is parallel and spaced apart from the fixed plate 112 and connected by multiple telescopic members 113. Each telescopic member 113 is sleeved with a second spring 114, one end of the second spring 114 abutting against the fixed plate 112 and the other end abutting against the movable plate 115.
[0053] The number of telescopic components can be 2, 3, or 4. The telescopic component 113 includes a guide rod 1131 and a storage tube 1132. The guide rod 1131 is installed on the fixed plate 112, and one end of the storage tube 1132 is installed on the movable plate 115, while the other end is fitted onto the guide rod 1131.
[0054] The movable plate 115 can be elastically moved relative to the fixed plate 112 via the storage tube 1132 and the second spring 114.
[0055] Work style:
[0056] As the protruding head 19 rotates and touches the movable plate 115, it pushes the movable plate 115. The movable plate 115 drives the storage cylinder 1132 to move along the guide rod 1131, increasing the length of the guide rod 1131 inserted into the storage cylinder 1132. The movable plate 115 compresses the second spring 114, causing elastic deformation. When the protruding head pushes the movable plate 115 to the point where it can no longer be pushed, the movable plate 115 is subjected to the elastic deformation force of multiple second springs 114, pushing the movable plate 115 to move in the opposite direction. The movable plate 115 pushes the protruding head to rotate in the opposite direction. When the protruding head rotates in the opposite direction, it is pulled by the first spring 21, which causes elastic deformation, pulling the protruding head to rotate towards the movable plate 115 again and touch the movable plate. This cycle repeats, and the turntable drives multiple support discs to swing back and forth. The multiple blood collection tubes on the support discs swing back and forth, which can shake the blood sample in the blood collection tubes evenly and prevent blood sample coagulation.
[0057] It should be noted that the sway plate does not need to drive the protrusion during this period.
[0058] To facilitate the operation of the drive mechanism, a controller 3 is added. The controller 3 is mounted on the cover plate 4 and has a touch screen display. The touch screen display has control buttons 31. The controller 3 is electrically connected to the drive mechanism.
[0059] Control buttons may include time adjustment buttons, speed adjustment buttons, start buttons, and stop buttons.
[0060] The time control button is used to adjust the time, such as setting the interval between motor starts, which can be set to 10, 20, or 30 minutes. It can also adjust the duration of each operation, i.e., the duration of each motor cycle controlled by the controller, with each operation duration set from 30 to 180 seconds. The set duration can be 30 seconds, 60 seconds, 90 seconds, 120 seconds, 150 seconds, or 180 seconds, etc. A suitable duration can be selected according to needs. Of course, other suitable durations can also be selected.
[0061] The start button is used by the controller to automatically control the drive motor according to the set parameters. The stop button is used to stop the drive motor.
[0062] The touch screen can display interval duration, working time, and motor speed, among other things.
[0063] Example 2:
[0064] Compared with Example 1, the only difference is that a buffer sleeve 15 is added. Both the insertion hole 14 and the countersunk hole 18 are equipped with buffer sleeves 15.
[0065] The buffer sleeve has a cylindrical structure and can be made of rubber or silicone. Both rubber and silicone have a certain degree of flexibility, allowing for soft contact with the blood collection tube. Furthermore, the buffer sleeve also acts as a cushion when the blood collection tube stops rotating, preventing the blood collection tube from directly contacting the walls of the insertion hole or countersunk hole.
[0066] Example 3:
[0067] Compared with Embodiment 1 or 2, the only difference is that a rotating structure for the turntable is provided, with the addition of a first support shaft 22 and a tray 25. The tray 25 is fitted to the bottom surface of the turntable 17, one end of the first support shaft 22 passes through the tray 25 and is connected to the turntable 17 for transmission, and the other end is rotatably mounted on the base plate 1.
[0068] The tray 25 can be welded and fixedly connected to the turntable. The tray can support the smooth rotation of the turntable.
[0069] The first support shaft and the tray can be fixedly connected, such as by welding.
[0070] like Figure 3 As shown, the turntable 17 has a shaft hole 24. The first support shaft 22 passes through the tray and is inserted into the shaft hole 24, and can be connected to the shaft hole by a key.
[0071] A rotating connection structure between the first support shaft and the base plate includes a bearing 28. A bearing hole 29 is provided on the base plate 1, and the first support shaft is connected to the bearing 28, with the bearing 28 installed inside the bearing hole 29.
[0072] According to the above embodiments, the working principle of this utility model is as follows:
[0073] Medical staff insert the blood collection tube, which is used to collect blood samples, through the insertion hole 14 on the first area block 13 of multiple supporting discs 12 and into the countersunk hole 18 of the turntable 17. With the support of multiple supporting discs, the blood collection tube can be placed vertically in the countersunk hole of the turntable.
[0074] Medical staff can control the drive motor 6 of the drive mechanism through the controller 3. The controller 3 controls the drive motor 6 to work according to the set speed, interval and working time. The drive motor 6 drives the drive shaft 7 to rotate, the drive shaft 7 drives the swing plate 8 to rotate, and the swing plate 8 drives the roller 9 to rotate. When the roller 9 rotates to the point of colliding with the protrusion 19, due to inertia, it pushes the protrusion 19 to move. The protrusion 19 drives the turntable 17 to rotate, and the turntable 17 drives multiple support discs 12 to rotate. At the moment when the multiple support discs drive the blood collection tube to rotate, the blood sample in the blood collection tube moves in the opposite direction to the rotation direction of the turntable due to inertia, so that the blood sample shakes in the blood collection tube. When the protruding head 19 rotates, it pulls the first spring 21 to produce elastic deformation. When the roller 9 disengages from the protruding head 19, the first spring 21 pulls the protruding head 19 to rotate in the opposite direction. The protruding head 19 rotates in the opposite direction until it collides with the movable plate 115. The movable plate 115 squeezes the storage cylinder 113 to move and the second spring 114 to elastically deform. At the same time, the blood sample in the blood collection tube moves towards the movable plate due to inertia and touches the inner wall of the blood collection tube to produce shaking. This swings the blood collection tube, causing the blood sample in the tube to shake. This shakes the blood sample in the blood collection tube, preventing the blood sample in the blood collection tube from agglomerating and achieving an anticoagulant effect.
[0075] When the controller 3 controls the drive motor 6 to work within the set working time, the drive motor 6 drives the swing plate 8 to rotate continuously. The swing plate 8 drives the roller 9 to collide with the protrusion 19 multiple times, causing the turntable 17 to swing back and forth multiple times. The turntable 17 drives multiple support discs and blood collection tubes to swing back and forth multiple times, causing the blood sample in the blood collection tube to shake multiple times, thereby making the blood in the blood collection tube evenly mixed and preventing the blood sample from agglomerating.
[0076] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.
Claims
1. A blood collection anti-agglutination test tube storage device, characterized in that: include A base plate (1), one end of which is equipped with a drive mechanism; Turntable (17) is rotatably mounted on the other end of base plate (1). The turntable (17) is divided into multiple second area blocks (23), and multiple countersunk holes (18) are distributed in the second area blocks (23). A support disc (12) is provided, which has multiple first area blocks (13) and outwardly protruding protrusions (19). The first area blocks (13) have marking areas (36) and multiple insertion holes (14). The multiple support discs (12) are arranged vertically at intervals and are connected in series by at least one column (16). At least one column (16) is installed on a turntable (17). The protrusions (19) are movably driven connected to the drive mechanism. An elastic limiting member (11) is installed on the base plate (1) and close to the protrusion (19), and is located at the rear end of the protrusion (19) in the rotation direction; as well as An elastic tension member, one end of which is connected to a protrusion (19), and the other end is mounted on a base plate (1).
2. The blood collection anti-agglutination test tube storage device according to claim 1, characterized in that: It also includes a buffer sleeve (15), and the insertion hole (14) and the countersunk hole (18) are both equipped with buffer sleeves (15).
3. The blood collection anti-agglutination test tube storage device according to claim 1, characterized in that: The elastic tension member includes The first support (10) is mounted on the base plate (1); The second support (20) is mounted on the protrusion (19); and A first spring (21) is mounted at one end to a first support (10) and at the other end to a second support (20).
4. The blood collection anti-agglutination test tube storage device according to claim 1, characterized in that: The elastic limiting member includes A limiting post (111) is installed on the base plate (1); A fixing plate (112) is mounted on a limiting post (111); and The movable plate (115) is parallel and spaced apart from the fixed plate (112) and connected by multiple telescopic members (113). Each telescopic member (113) is fitted with a second spring (114). One end of the second spring (114) abuts against the fixed plate (112) and the other end abuts against the movable plate (115).
5. The blood collection anti-agglutination test tube storage device according to claim 1, characterized in that: It also includes a first support shaft (22) and a tray (25). The tray (25) is fitted to the bottom surface of the turntable (17). One end of the first support shaft (22) passes through the tray (25) and is connected to the turntable (17) for transmission. The other end is rotatably mounted on the base plate (1).
6. The blood collection anti-agglutination test tube storage device according to claim 1, characterized in that: The driving mechanism includes a fixed column (35) which is mounted on the base plate (1); A clamp (5), the clamp (5) being mounted on a fixed post (35) for supporting and mounting a drive motor (6), the drive motor (6) being provided with a drive shaft (7); and The swing plate (8) is connected at one end to the drive shaft (7) and at the other end to the protrusion (19).
7. The blood collection anti-agglutination test tube storage device according to claim 6, characterized in that: It also includes a roller (9), an anti-detachment disc (30) and a second support shaft (32). One end of the second support shaft (32) is connected to the anti-detachment disc (30), and the other end is connected to the swing plate (8) through the roller (9). The roller (9) is used for the movable transmission connection with the protrusion (19).
8. The blood collection anti-agglutination test tube storage device according to claim 6, characterized in that: The swing plate (8) has a teardrop-shaped structure.
9. The blood collection anti-agglutination test tube storage device according to any one of claims 1-8, characterized in that: It also includes a cover plate (4), a support column (2) and a storage box (33). The cover plate (4) is connected to the bottom plate (1) by at least one support column (2), and the cover plate (4) is located above the drive mechanism and the protrusion (19). The storage box (33) is installed on the cover plate (4).
10. The blood collection anti-agglutination test tube storage device according to claim 9, characterized in that: It also includes a controller (3), which is mounted on the cover plate (4) and has a touch screen display with control buttons (31); the controller (3) is electrically connected to the drive mechanism.