Portable body fluid sample storage device for detecting viruses carried by golden snub monkeys
By designing a rotatable and adjustable sample storage structure and limiting components, the stability problem of portable body fluid sample storage devices in mountainous forests was solved, enabling rapid and safe sample storage, retrieval, and transportation.
Patent Information
- Application Number
- CN202610103553.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-26
- Publication Date
- 2026-02-27
AI Technical Summary
Existing portable body fluid sample storage devices cannot be rotated to adjust the angle, making sample storage and retrieval cumbersome. They are also prone to shaking when carried in mountainous and forested areas, making them unsuitable for long-distance sampling.
A rotatable and adjustable sample storage structure was designed, including a support chamber body, a counterweight base, and a limiting component. The sample container is fixed and rotated by internal threaded parts and T-bolts, and is equipped with elastic clamping pads and sealing bends to ensure stable storage and retrieval of the sample container.
It enables rapid and secure batch storage and retrieval of sample containers, adapts to the sampling needs in mountainous forests, and ensures the safety and stability of samples during transportation.
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Figure CN121573313A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of sample storage technology, specifically a portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys. Background Technology
[0002] In the process of biological breeding, disease testing of the animals is required. Blood and body fluid samples of the livestock are collected and sent to the laboratory for testing. If multiple individuals need to be collected, a portable body fluid sample storage device is used to store and carry the body fluid samples.
[0003] The portable biological sample insulated storage box has a fixed welded structure for the storage compartment, which cannot be rotated or adjusted. To store or retrieve samples, each container must be removed individually, making the operation cumbersome and suitable only for short-distance transport. It also lacks an anti-tipping structure, and the box is prone to shaking when carried in mountainous forests to retrieve animals that are being raised in protected environments. Therefore, it is not suitable for long-distance sampling in mountainous forests.
[0004] Regarding the design of portable structures such as handles and straps, for example, patent document CN220243971U discloses a portable biological sample storage and transport box, which includes: an outer shell, a lid rotatably connected to the outer shell via a pivot, an inner lining plate at the bottom of the outer shell, and a first inner lining side plate, a second inner lining side plate, a third inner lining side plate and a fourth inner lining side plate on the inner side of the outer shell, with a temperature sensor fixedly connected to the first inner lining side plate; and a biological sample rack, the lower end of which is fixedly connected to the inner lining plate, with an electric slide rail on the inner side wall of the biological sample rack.
[0005] The container cannot be rotated to adjust the angle, and each sample must be removed individually for storage and retrieval. When collecting samples from protected and raised animals in mountainous forests, the container is prone to shaking when carried in mountainous forests, making it unsuitable for long-distance sampling in mountainous forests. Summary of the Invention
[0006] The purpose of this invention is to provide a portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys in Sichuan, so as to solve the problems mentioned in the prior art.
[0007] To achieve the above objectives, the present invention provides the following technical solution: a portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys, comprising an insulated box, wherein multiple sample storage structures are provided inside the insulated box, each sample storage structure comprising a carrying chamber body, a counterweight base fixedly connected to the bottom of the carrying chamber body, multiple sample container clamping sleeves fixedly installed inside the carrying chamber body, and internal threaded parts fixedly connected to both sides of the carrying chamber body, with limit components installed between the outer sides of two of the internal threaded parts and the insulated box, and an operation port provided on one side of each of the multiple sample storage structures.
[0008] Preferably, the operating port is located on the front side of the insulation box, and a sealing bend plate is installed inside the operating port. The sealing bend plate is embedded in the insulation box, and the sealing bend plate is L-shaped.
[0009] Preferably, two fixing round holes are provided on one side of the sealing bend plate, and an internally threaded component 2 is inserted inside the fixing round hole. The internally threaded component 2 is fixedly connected to the insulation box, and a T-bolt 2 is inserted into the internal thread of the internally threaded component 2. The T-bolt 2 abuts against the sealing bend plate.
[0010] Preferably, the internally threaded component is inserted into the side wall of the insulation box, and a support bearing is fixedly installed on the outer side of the internally threaded component, with the outer ring of the support bearing being fixedly connected to the insulation box.
[0011] Preferably, a T-bolt is inserted into the internal thread of one of the internal threaded parts, and an airflow diverter is provided at one end of one of the internal threaded parts. The airflow diverter is fixedly installed inside the bearing chamber body, and multiple diverter holes are opened on the outside of the airflow diverter.
[0012] Preferably, the sample container clamping sleeve has a container insertion port at the top, the container insertion port is located at the top of the carrying chamber body, and an elastic clamping pad is fixedly connected inside the sample container clamping sleeve.
[0013] Preferably, the limiting component includes a compression plate, an elastic reservoir, and a mounting base disposed on the outer side of an internally threaded component. The mounting base is fixedly connected to the outer wall of the insulation box. The elastic reservoir is fixedly installed between the compression plate and the mounting base. Multiple friction plates are fixedly connected to the inner ring of the elastic reservoir near the mounting base. The friction plates are disposed on the outer side of the internally threaded component.
[0014] Preferably, a plurality of steel wire ropes are fixedly connected to one side of the extrusion plate, and an elastic guide sleeve and a guide sleeve fixing seat are sleeved on the outside of the steel wire ropes. The elastic guide sleeve passes through the elastic liquid storage bladder. A plurality of mounting grooves are opened on the outside of the mounting base, and the guide sleeve fixing seat corresponds to each mounting groove. The guide sleeve fixing seat is disposed inside the mounting groove and is fixedly connected to the mounting base.
[0015] Preferably, a rotating pipe is rotatably connected to one side of the mounting base, a transmission rod is fixedly connected between one end of the wire rope and the rotating pipe, and a reversing pulley is provided on one side of the wire rope, the reversing pulley being fixedly installed on the mounting base.
[0016] Preferably, a drive grip sleeve is fitted on the outer side of the rotating tube, and multiple limiting grooves are opened on the outer side of the rotating tube. Each of the multiple limiting grooves is provided with a sliding limiting frame. The sliding limiting frame is fixedly installed inside the drive grip sleeve. A grip sleeve positioning seat is fixedly connected to one side of the mounting base. Multiple positioning slots are opened on one side of the grip sleeve positioning seat. A positioning pin is provided inside the positioning slot. The positioning pin is fixedly connected to the drive grip sleeve.
[0017] Compared with the prior art, the beneficial effects of the present invention are: 1. In this application, the operation of two limiting components in the sample storage structure fixes the carrier chamber body, allowing the operator to insert the sample container into the sample container clamping sleeve. The elastic clamping pads cause the sample container to be fixed by friction, completing the installation of the sample container and the carrier chamber body. After placing sample containers inside multiple elastic clamping pads, the operation of the two limiting components allows the carrier chamber body to rotate. Finally, after sealing the operation port on one side of the sample storage structure with a sealing bend plate, the operation of storing multiple sample containers on one sample storage structure is completed. Multiple neatly stacked sample containers are stored inside the insulated box, enabling rapid and safe batch storage, retrieval, and transportation of semen, adapting to the large-scale processing needs of large-scale aquaculture.
[0018] 2. When this application is used, a counterweight base for weight increase is fixedly connected to the bottom of the carrying chamber body, so that the carrying chamber body is roughly perpendicular to the horizontal plane under the action of gravity. Therefore, during the movement of the staff, the multiple sample containers installed on the carrying chamber body are roughly kept perpendicular to the horizontal plane, which prevents the sample containers stored inside the portable body fluid sample storage device from tipping over due to the movement of the staff, ensuring the safety of the body fluid samples in the sample containers, and enabling the portable body fluid sample storage device to meet the needs of staff to collect samples in mountainous forests. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of the structure of the insulated box of the present invention; Figure 3 This is a schematic diagram of the structure of the insulated box of the present invention; Figure 4 This is a partial cross-sectional view of the insulated box of the present invention; Figure 5 This is a partial structural schematic diagram of the bearing chamber body of the present invention; Figure 6 This is a schematic diagram of the structure of the elastic clamping pad of the present invention; Figure 7 This is a schematic diagram of the structure of the mounting base of the present invention; Figure 8 This is a cross-sectional view of the mounting base of the present invention; Figure 9 This is a schematic diagram of the separation structure of the rotating tube and the drive grip sleeve of the present invention; Figure 10 This is a schematic diagram of the structure of the drive grip sleeve of the present invention.
[0020] Numbering on the map: 1. Insulation box; 2. Operating port; 3. Sample storage structure; 31. Carrier chamber body; 32. Container insertion port; 33. Sample container clamping sleeve; 34. Elastic clamping pad; 35. Counterweight base; 36. Internal threaded part one; 37. Support bearing; 38. Squeezing plate; 39. Elastic liquid reservoir; 310. Elastic guide sleeve; 311. Guide sleeve fixing seat; 312. Mounting base; 313. Mounting groove; 314. Steel wire rope; 15. Transmission rod; 316. Friction plate; 317. Rotating pipe fitting; 318. Drive grip; 319. Positioning pin; 320. Grip positioning seat; 321. Positioning slot; 322. T-bolt one; 323. Sliding limit bracket; 324. Limiting groove; 325. Airflow diverter; 326. Diverting hole; 327. Directional pulley; 4. Sealing bend plate; 5. Fixed round hole; 6. T-bolt two; 7. Internal threaded part two. Detailed Implementation
[0021] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0022] Example: Figures 1-10 As shown, the present invention provides a portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys, including an insulated box 1. The insulated box 1 has multiple sample storage structures 3 inside. Each sample storage structure 3 includes a carrying chamber body 31. A counterweight base 35 is fixedly connected to the bottom of the carrying chamber body 31. Multiple sample container clamping sleeves 33 are fixedly installed inside the carrying chamber body 31. Both sides of the carrying chamber body 31 are fixedly connected to internal threaded parts 36. Limiting components are installed between the outer sides of the two internal threaded parts 36 and the insulated box 1. Each of the multiple sample storage structures 3 has an operation port 2 on one side.
[0023] Specifically, such as Figure 1 , Figure 2 and Figure 3The operation port 2 is located on the front side of the incubator 1. The operation port 2 provides convenience for operating the sample storage structure 3 inside the incubator 1. A sealing bend plate 4 is installed inside the operation port 2. The upper and lower convex surfaces of the sealing bend plate 4 are engaged with the incubator 1, so that the sealing bend plate 4 is embedded in the incubator 1. The sealing bend plate 4 effectively seals the operation port 2. The sealing bend plate 4 is L-shaped and easy to operate.
[0024] Two fixing holes 5 are opened on one side of the sealing bend plate 4. The internal threaded part 7 is inserted through the fixing hole 5 and fixedly connected to the heat preservation box 1. The smaller diameter end of the T-bolt 6 is inserted into the internal threaded part 7 and threadedly connected to the internal threaded part 7. The larger diameter end of the T-bolt 6 abuts against the sealing bend plate 4. Through the cooperation between the T-bolt 6 and the internal threaded part 7, the sealing bend plate 4 is limited and installed inside the operation port 2, and the sealing bend plate 4 seals the operation port 2.
[0025] Specifically, such as Figure 1 , Figure 4 , Figure 5 and Figure 6 The internal threaded component 36 is installed on the side wall of the insulation box 1. The internal threaded component 36 is installed inside the support bearing 37 and is fixedly connected to the inner ring of the support bearing 37. The outer ring of the support bearing 37 is fixedly connected to the insulation box 1. The internal threaded component 36 is supported by the support bearing 37 and rotates. A T-bolt 322 is inserted into the internal thread of the internal threaded component 36.
[0026] One of the internal threaded parts, 36, is provided with an airflow diverter 325 at one end. The airflow diverter 325 is fixedly installed inside the bearing chamber body 31 on the side away from the T-bolt 322. Multiple diversion holes 326 opened on the outside of the airflow diverter 325 serve to divert airflow.
[0027] The container insertion port 32 provided at the top of the sample container clamping sleeve 33 is located at the top of the carrying chamber body 31, and the elastic clamping pad 34 fixedly connected inside the sample container clamping sleeve 33 is deformable.
[0028] Specifically, such as Figure 1 , Figure 4 , Figure 7 , Figure 8 , Figure 9 and Figure 10In the limiting assembly, the extrusion plate 38, the elastic reservoir 39, and the mounting base 312 are all located outside the internally threaded component 36. The inner diameter of the extrusion plate 38 is larger than the outer diameter of the internally threaded component 36. The rotation of the internally threaded component 36 does not affect the horizontal movement of the extrusion plate 38. The mounting base 312 is fixedly connected to the outer wall of the insulation box 1 and cannot move. The elastic reservoir 39 is fixedly installed between the extrusion plate 38 and the mounting base 312. The elastic reservoir 39 stores liquid inside. Multiple friction plates 316 are fixedly connected to the inner ring of the elastic reservoir 39 near the mounting base 312. The friction plates 316 are located outside the internally threaded component 36. During the expansion and contraction of the elastic reservoir 39, the friction force between the friction plates 316 and the internally threaded component 36 changes accordingly.
[0029] Multiple steel wire ropes 314 are fixedly connected to one side of the extrusion plate 38. Each steel wire rope 314 is fitted with an elastic guide sleeve 310 and a guide sleeve fixing seat 311 on its outer side. The elastic guide sleeve 310 passes through the elastic liquid storage bladder 39 and extends and retracts with the extension and retraction of the elastic liquid storage bladder 39. Multiple mounting grooves 313 are opened on the outer side of the mounting base 312. The guide sleeve fixing seat 311 corresponds to each mounting groove 313. The guide sleeve fixing seat 311 is set inside the mounting groove 313 and fixedly connected to the mounting base 312. The guide sleeve fixing seat 311 cannot move. The guide sleeve fixing seat 311 supports one end of the elastic guide sleeve 310, so that the elastic guide sleeve 310 enters the preset working state.
[0030] A rotating tube 317 is rotatably connected to one side of the mounting base 312. A transmission rod 315 is fixedly connected between one end of the wire rope 314 and the rotating tube 317. The rotating tube 317 rotates and applies force to the wire rope 314 through the transmission rod 315. A reversing pulley 327 is fixedly installed on the mounting base 312 on one side of the wire rope 314. The reversing pulley 327 supports and reverses the direction of the wire rope 314, reducing the wear of the wire rope 314.
[0031] A drive grip 318 is fitted on the outer side of the rotating tube 317. Multiple limiting grooves 324 on the outer side of the rotating tube 317 are provided with sliding limiting frames 323. The sliding limiting frames 323 are fixedly installed inside the drive grip 318. Under the action of the sliding limiting frames 323 and the limiting grooves 324, the drive grip 318 is slidably installed on the outer side of the rotating tube 317. Multiple positioning slots 321 are provided on one side of the grip positioning seat 320, which is fixedly connected to one side of the mounting base 312. The positioning pins 319 provided inside the positioning slots 321 are fixedly connected to the drive grip 318. The positioning pins 319 and the grip positioning seat 320 are interference-fitted. The drive grip 318 can only be separated from the grip positioning seat 320 after being subjected to a certain force.
[0032] When the limit assembly is in operation, pull the drive grip 318 away from the insulation box 1. After the multiple positioning pins 319 fixedly connected to the drive grip 318 disengage from the grip positioning seat 320, rotate the positioning pins 319 clockwise. The drive grip 318 then applies rotational force to the rotating tube 317 through multiple sliding limit brackets 323. The rotating tube 317 rotates clockwise and applies tension to one end of the wire rope 314 through the transmission rod 315. At this time, the reversing pulley 327 is set on the wire rope. The force-bearing end of the rope 314 moves forward, and the reversing pulley 327 reverses the direction of the wire rope 314, reducing wear on the wire rope 314. The compression plate 38, fixedly connected to the other end of the wire rope 314, moves and moves closer to the mounting base 312. The compression plate 38 pushes the elastic reservoir 39, causing the elastic reservoir 39 to expand under pressure. This increases the friction between the friction plate 316 and the internal threaded part 36. By controlling the rotation angle of the drive grip 318, the friction between the friction plate 316 and the internal threaded part 36 is adjusted. When the drive... After the grip 318 rotates clockwise to its limit, it pushes the drive grip 318 towards the mounting base 312. Multiple positioning pins 319 insert into multiple positioning slots 321, and the drive grip 318 engages with the grip positioning seat 320. The positioning pins 319 and the mounting base 312 are press-fitted. An externally pressurized elastic reservoir 39 applies a restoring force to the rotating tube 317 via a compression plate 38 and a steel wire rope 314. This restoring force acts on the drive grip 318, causing a... There is non-horizontal stress between them, so before the drive grip 318 is subjected to a certain level of tension away from the heat preservation box 1, the drive grip 318 is stably stopped on one side of the grip positioning seat 320, the rotating tube 317 is limited, at this time, multiple friction plates 316 maintain a large friction force with the internal thread part 36, the internal thread part 36 cannot rotate, and the limiting component fixes the internal thread part 36; similarly, by operating another limiting component to fix the adjacent internal thread part 36, the bearing chamber body 31 enters the fixed state.
[0033] After pulling the drive grip 318 horizontally away from the insulation box 1, operate the drive grip 318 to rotate counterclockwise. The wire rope 314 is loosened, the elastic liquid storage bladder 39 rebounds, and the friction between the friction plate 316 and the internal threaded part 36 is reduced, allowing the bearing chamber body 31 to rotate. After controlling the drive grip 318 to rotate counterclockwise by a certain angle, push the drive grip 318 to engage with the grip positioning seat 320. This will bring the friction between the friction plate 316 and the internal threaded part 36 to a roughly fixed value, adjusting the force required for the rotation of the internal threaded part 36.
[0034] In summary, the portable body fluid sample storage device consists of an insulated box 1, multiple sample storage structures 3, and multiple sealing bends 4. The working principle of the portable body fluid sample storage device is as follows: Rotate the two T-bolts 6 that fix one of the sealing bends 4, causing the T-bolts 6 to disengage from the internally threaded part 7 installed on the outer thread, thus freeing the sealing bend 4 from its fixation. Pull the sealing bend 4 to the right, connecting the operating port 2 of the sealing bend 4 to the inside and outside of the insulation box 1. Then, rotate the carrying chamber body 31 in the sample storage structure 3 located on one side of the operating port 2, causing the top of the carrying chamber body 31 with multiple container insertion ports 32 to tilt towards the operating port 2. Then, operate the two limiting components in the sample storage structure 3 to activate, fixing the carrying chamber body 31 in a fixed state, allowing the operator to insert the sample container. Inside the sample container clamping sleeve 33, the elastic clamping pad 34 is set to fix the sample container by friction, completing the installation of the sample container and the carrier body 31. After placing the sample containers inside multiple elastic clamping pads 34, the two limiting components are operated to allow the carrier body 31 to rotate. Finally, the sealing bending plate 4 is used to seal the operation port 2 on one side of the sample storage structure 3, completing the work of storing multiple sample containers on a sample storage structure 3. Multiple neatly stacked sample containers are stored inside the insulated box 1, which can quickly and safely store and transport semen in batches, adapting to the large-scale processing needs of large-scale breeding.
[0035] Similarly, complete the work of storing multiple sample containers on the remaining sample storage structure 3.
[0036] Additionally, a handle is fixedly installed on the top of the insulated box 1, allowing the portable body fluid sample storage device to be lifted. A shoulder strap can be pre-installed on the back of the insulated box 1, enabling the portable body fluid sample storage device to be carried on one's back. The limiting components in each sample storage structure 3 are pre-operated to adjust the friction force on the internal threaded part 36 and adjust the flexibility of the rotation of the carrying chamber body 31. A counterweight base 35 for weight increase is fixedly connected to the bottom of the carrying chamber body 31, so that the carrying chamber body 31 is roughly perpendicular to the horizontal plane under the action of gravity. Therefore, during the movement of the staff, the multiple sample containers installed on the carrying chamber body 31 remain roughly perpendicular to the horizontal plane, preventing the sample containers stored inside the portable body fluid sample storage device from tipping over due to the movement of the staff, ensuring the safety of the body fluid samples in the sample containers, and enabling the portable body fluid sample storage device to meet the needs of staff to collect samples in mountainous forests.
[0037] In addition, when using a vehicle to transport the portable body fluid sample storage device, the T-bolts 322 inside the two internal threaded parts 36 are rotated off. Then, the limiting component is operated to limit the internal threaded parts 36, preventing the carrier body 31 from moving. Subsequently, an air intake pipe is installed inside the internal threaded part 36 near the airflow diversion frame 325. Low-temperature airflow is delivered into the airflow diversion frame 325 through the air intake pipe and the internal threaded part 36. The low-temperature airflow is dispersed to multiple locations inside the carrier body 31 by the multiple diversion holes 326 opened in the airflow diversion frame 325. After the low-temperature airflow exchanges heat with the multiple sample container clamping sleeves 33, it is discharged from the other internal threaded part 36. By simply operating the working state of the internal threaded part 36 in the sample storage structure 3, the carrier body 31 can be connected to the low-temperature airflow to simultaneously cool the sample containers inside the multiple sample container clamping sleeves 33, ensuring the quality of the body sample storage inside the sample containers and reducing the loss during sample transportation.
[0038] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys in Sichuan, comprising an insulated box (1), characterized in that: The insulated box (1) is provided with multiple sample storage structures (3). The sample storage structure (3) includes a carrying chamber body (31). The bottom of the carrying chamber body (31) is fixedly connected to a counterweight base (35). Multiple sample container clamping sleeves (33) are fixedly installed inside the carrying chamber body (31). Both sides of the carrying chamber body (31) are fixedly connected to internal threaded parts (36). Limiting components are installed between the outer sides of the two internal threaded parts (36) and the insulated box (1). Each of the multiple sample storage structures (3) is provided with an operation port (2) on one side.
2. The portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys according to claim 1, characterized in that: The operating port (2) is located on the front side of the heat preservation box (1). A sealing bend plate (4) is inserted inside the operating port (2). The sealing bend plate (4) is embedded in the heat preservation box (1). The sealing bend plate (4) is L-shaped.
3. The portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys according to claim 2, characterized in that: Two fixed round holes (5) are opened on one side of the sealing bend (4). An internal threaded part (7) is inserted inside the fixed round hole (5). The internal threaded part (7) is fixedly connected to the heat preservation box (1). A T-bolt (6) is inserted into the internal thread of the internal threaded part (7). The T-bolt (6) abuts against the sealing bend (4).
4. The portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys according to claim 1, characterized in that: The internal threaded part (36) is installed on the side wall of the heat preservation box (1), and a support bearing (37) is fixedly installed on the outside of the internal threaded part (36). The outer ring of the support bearing (37) is fixedly connected to the heat preservation box (1).
5. A portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys according to claim 4, characterized in that: The internal threaded component (36) has a T-bolt (322) inserted into its internal thread. One end of the internal threaded component (36) is provided with an airflow diverter (325). The airflow diverter (325) is fixedly installed inside the bearing chamber body (31). Multiple diverter holes (326) are opened on the outside of the airflow diverter (325).
6. A portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys according to claim 1, characterized in that: The sample container clamping sleeve (33) is provided with a container insertion port (32) at the top. The container insertion port (32) is opened at the top of the carrying chamber body (31). An elastic clamping pad (34) is fixedly connected inside the sample container clamping sleeve (33).
7. A portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys according to claim 1, characterized in that: The limiting component includes a compression plate (38), an elastic reservoir (39), and a mounting base (312) disposed on the outer side of the internal threaded part (36). The mounting base (312) is fixedly connected to the outer wall of the heat preservation box (1). The elastic reservoir (39) is fixedly installed between the compression plate (38) and the mounting base (312). Multiple friction plates (316) are fixedly connected to the inner ring of the elastic reservoir (39) near the mounting base (312). The friction plates (316) are disposed on the outer side of the internal threaded part (36).
8. A portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys according to claim 7, characterized in that: Multiple steel wire ropes (314) are fixedly connected to one side of the extrusion plate (38). An elastic guide sleeve (310) and a guide sleeve fixing seat (311) are sleeved on the outside of the steel wire rope (314). The elastic guide sleeve (310) passes through the elastic reservoir (39). Multiple installation slots (313) are opened on the outside of the mounting base (312). The guide sleeve fixing seat (311) corresponds to the installation slot (313) one by one. The guide sleeve fixing seat (311) is set inside the installation slot (313) and fixedly connected to the mounting base (312).
9. A portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys according to claim 8, characterized in that: A rotating pipe (317) is rotatably connected to one side of the mounting base (312). A transmission rod (315) is fixedly connected between one end of the wire rope (314) and the rotating pipe (317). A reversing pulley (327) is provided on one side of the wire rope (314). The reversing pulley (327) is fixedly installed on the mounting base (312).
10. A portable body fluid sample storage device for detecting viruses carried by golden snub-nosed monkeys according to claim 9, characterized in that: The rotating tube (317) is fitted with a drive grip (318) on its outer side. Multiple limiting grooves (324) are provided on the outer side of the rotating tube (317). Each of the multiple limiting grooves (324) is provided with a sliding limiting frame (323). The sliding limiting frame (323) is fixedly installed inside the drive grip (318). A grip positioning seat (320) is fixedly connected to one side of the mounting base (312). Multiple positioning slots (321) are provided on one side of the grip positioning seat (320). A positioning pin (319) is provided inside the positioning slot (321). The positioning pin (319) is fixedly connected to the drive grip (318).
Citation Information
Patent Citations
Portable biological sample storage and transfer box
CN220243971U