Integrated virus sampling and extracting tube

By designing an integrated virus sampling and extraction tube, combined with a shock-absorbing pad and an insulation pad, the problem of existing virus sampling and extraction tubes being unable to maintain temperature and remain still is solved. This achieves stable preservation of the virus and simplifies the operation, improving the efficiency and effectiveness of the sampling process.

CN223509878UActive Publication Date: 2025-11-04河北超然医疗器械有限公司
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Patent Information

Application Number
CN202422908495.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-11-04
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

Existing virus sampling and extraction tubes cannot be kept warm and left to stand for different viruses, which damages the virus during the sampling process. Furthermore, they cannot be used in a single operation, resulting in poor practical performance.

Method used

An integrated virus sampling and extraction tube was designed, comprising a test tube, a protective component, a collection component, and a sealing component. The combination of shock-absorbing pads and heat-insulating pads achieves stable shock absorption and heat preservation, and the interlocking connection structure enhances stability. Combined with the design of the sealing component, it ensures the effective preservation of the virus during the sampling process.

Benefits of technology

This method effectively keeps the virus warm and stationary during the sampling process, reduces operational steps, enhances the practical value of the sampling extraction tube, and ensures the integrity of the virus and the smooth progress of the sampling process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of virus sampling and extracting tubes, in particular to an integrated virus sampling and extracting tube which comprises a test tube, a protection component, a first bump, a collection component, an observation component and a sealing component, a sealing assembly is arranged on one side of the test tube, an observation assembly is arranged on the outer side of the test tube, a protection assembly is arranged on the outer side of the test tube, and the protection assembly comprises a first base, a first groove, a second convex block, a second base, a first protection shell, a second protection shell, a clamping strip, a second groove, a heat preservation pad, a damping pad and a third convex block; shock pads are arranged on the outer sides of the test tubes, heat preservation pads are arranged on the outer sides of the shock pads, second protection shells are arranged on the outer sides of the heat preservation pads, and first protection shells are arranged on the outer sides of the other set of heat preservation pads; according to the utility model, the effect of effectively storing the sampled viruses is guaranteed through a heat-insulating and shock-absorbing integrated mode, the operation steps are effectively reduced, and the practical value of the sampling and extracting tube is enhanced.
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Description

Technical Field

[0001] This utility model relates to the field of virus sampling and extraction tube technology, and in particular to an integrated virus sampling and extraction tube. Background Technology

[0002] During virus sampling, the virus is usually collected by swabbing and then preserved using swabs and reagents. This process requires the use of virus sampling extraction tubes to collect the virus and ensure that subsequent operations can be carried out normally and in an orderly manner.

[0003] Currently, most virus sampling and extraction tubes use capped threaded connections for virus collection. However, this method cannot keep the tubes warm or allow them to stand for different viruses, which can damage the virus during the sampling process. Furthermore, it cannot be used in a single, integrated manner, resulting in poor practical performance.

[0004] Therefore, in view of the fact that existing virus sampling and extraction tubes cannot sample different viruses and the operations are performed separately, an integrated virus sampling and extraction tube can be designed. This device ensures the effective preservation of the virus after sampling through heat preservation, shock absorption and integrated design, effectively reduces operation steps and enhances the practical value of the sampling and extraction tube. Utility Model Content

[0005] To overcome the limitations of most virus sampling tubes, which cannot be kept warm and left to stand for different viruses during use, resulting in damage to the virus during sampling and the inability to operate in one piece, the practical effect is poor.

[0006] The technical solution of this utility model is as follows: an integrated virus sampling and extraction tube, comprising a test tube, a protective component, a first protrusion, a collection component, an observation component, and a sealing component; a sealing component is provided on one side of the test tube, an observation component is provided on the outside of the test tube, and a protective component is provided on the outside of the test tube. The protective component includes a first base, a first groove, a second protrusion, a second base, a first protective shell, a second protective shell, a retaining strip, a second groove, a heat insulation pad, a shock-absorbing pad, and a third protrusion; a shock-absorbing pad is provided on the outside of the test tube, and two sets of shock-absorbing pads are provided. A heat insulation pad is provided on the outside of the shock-absorbing pad, and two sets of heat insulation pads are provided. A second protective shell is provided on the outside of the heat insulation pad, and a first protective shell is provided on the outside of the other set of heat insulation pads.

[0007] Preferably, a first protrusion is installed in the test tube, a sealing component is fixedly installed on one side of the test tube, an observation component is fixedly installed on the outside of the test tube, a shock-absorbing pad is fixedly installed on the outside of the test tube, a heat-insulating pad is fixedly installed on the outside of the shock-absorbing pad, a first protective shell is fixedly installed on the outside of the heat-insulating pad, a second protective shell is fixedly installed on the outside of another set of heat-insulating pads, a first base and a second base are fixedly installed at the bottom of the second protective shell and the first protective shell, a second protrusion is fixedly installed on one side of the second base, and the second protrusion is engaged with the inside of the first groove opened in the first base, a retaining strip is fixedly installed on the outside of the second protective shell, a third protrusion is fixedly installed on the inside of the retaining strip, and the third protrusion and the second groove are engaged with the second groove opened in the second groove, thereby achieving a stable shock absorption and heat insulation effect and enhancing the practical value of the extraction tube.

[0008] Preferably, the bottom of the first protective shell is provided with a second base, and a second protrusion is provided on one side of the second base. The bottom of the second protective shell is provided with a first base, and a first groove is provided on one side of the first base. The first groove is provided in two sets.

[0009] Preferably, the outer side of the second protective shell is provided with a retaining strip, and two sets of retaining strips are provided. The inner side of the retaining strip is provided with a third protrusion, and two sets of the third protrusions are provided. The first protective shell has a second groove, and two sets of the second groove are provided.

[0010] Preferably, the collection component includes a swab, a first support block, a second support block, and a first channel; a first support block is provided on one side of the second protective shell, a second support block is provided on one side of the second protective shell, the first support block and the second support block have a first channel, the second support block has a half section, the swab is provided inside the first support block, and the second support block holds the swab.

[0011] Preferably, the observation components include anti-slip textures and graduations; the outer sides of the first and second protective shells are provided with anti-slip textures, and the outer side of the test tube is provided with graduations.

[0012] Preferably, the sealing assembly includes a flexible rod, a flexible sheet, a cap, a stopper, a first thread, a second thread, a fourth protrusion, and a second channel; the test tube has a second channel, a flexible rod is provided on one side of the test tube, two sets of flexible rods are provided, a flexible sheet is provided on the inner side of the flexible rod, the flexible sheet is connected to the stopper, and a fourth protrusion is provided at the bottom of the stopper.

[0013] Preferably, a cover is provided on one side of the film, the fourth protrusion has a first thread, the inside of the cover has a second thread, and the cover is one circle larger than the fourth protrusion.

[0014] The beneficial effects of this utility model are:

[0015] 1. A shock-absorbing pad is fixed to the outside of the test tube to ensure the virus remains in place. An insulation pad is then fixed to the outside of the shock-absorbing pad to maintain the optimal temperature for virus preservation. A first and second protective shell are fixed to the outside of the insulation pad. A retaining strip is fixed to the outside of the second protective shell, and a third protrusion is fixed to the inside of the retaining strip. A second groove in the first protective shell allows for easy opening and closing when needed by the virus. A second base is fixed to the bottom of the first protective shell, and a second protrusion is fixed to one side of the second base. The first base is fixed to the bottom of the second protective shell, and a first groove in the first base provides locking and stable placement during merging, enhancing the practical value of the sampling extraction tube. Attached Figure Description

[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of an integrated virus sampling and extraction tube according to this utility model.

[0017] Figure 2 The diagram shown is a three-dimensional structural schematic of the protective component of an integrated virus sampling and extraction tube according to this utility model.

[0018] Figure 3 The diagram shown is a three-dimensional structural schematic of the second protrusion of an integrated virus sampling and extraction tube according to this utility model.

[0019] Figure 4 The diagram shown is a three-dimensional structural schematic of the collection component of an integrated virus sampling and extraction tube according to this utility model.

[0020] Figure 5 The diagram shown is a three-dimensional structural schematic of the sealing assembly of an integrated virus sampling and extraction tube according to this utility model.

[0021] Figure 6 The diagram shown is a three-dimensional structural schematic of the observation component of an integrated virus sampling and extraction tube according to this utility model.

[0022] Explanation of reference numerals in the attached drawings: 1. Test tube; 2. First protrusion; 101. First base; 102. First groove; 103. Second protrusion; 104. Second base; 105. First protective shell; 106. Second protective shell; 107. Locking strip; 108. Second groove; 109. Insulation pad; 110. Shock-absorbing pad; 111. Third protrusion; 201. Swab; 202. First support block; 203. Second support block; 204. First channel; 301. Anti-slip texture; 302. Scale; 401. Flexible rod; 402. Flexible sheet; 403. Cap; 404. Plug; 405. First thread; 406. Second thread; 407. Fourth protrusion; 408. Second channel. Detailed Implementation

[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0024] Please see Figures 1-6 This utility model provides an embodiment: an integrated virus sampling and extraction tube, including a test tube 1, a protective component, a first protrusion 2, a collection component, an observation component, and a sealing component; a sealing component is provided on one side of the test tube 1, an observation component is provided on the outside of the test tube 1, and a protective component is provided on the outside of the test tube 1. The protective component includes a first base 101, a first groove 102, a second protrusion 103, a second base 104, a first protective shell 105, a second protective shell 106, a retaining strip 107, a second groove 108, a heat insulation pad 109, a shock-absorbing pad 110, and a third protrusion 111; a shock-absorbing pad 110 is provided on the outside of the test tube 1, and two sets of shock-absorbing pads 110 are provided on the outside of the shock-absorbing pads 110, and two sets of heat insulation pads 109 are provided on the outside of the shock-absorbing pads 110, with a second protective shell 106 on the outside of the other set of heat insulation pads 109, and a first protective shell 105 on the outside of the other set of heat insulation pads 109.

[0025] Please see Figures 2-6In this embodiment, a second base 104 is provided at the bottom of the first protective shell 105, and a second protrusion 103 is provided on one side of the second base 104. A first base 101 is provided at the bottom of the second protective shell 106, and a first groove 102 is provided on one side of the first base 101. Two sets of the first groove 102 are provided. The second base 104 is connected to the first base 101, and the second protrusion 103 and the first groove 102 are engaged to achieve a stable engagement. A retaining strip 107 is provided on the outer side of the second protective shell 106. Two sets of the retaining strip 107 are provided. A third protrusion 111 is provided on the inner side of the retaining strip 107. Two sets of the third protrusion 111 are provided. The first protective shell 105 has a second groove 108, and two sets of the second groove 108 are provided. The third protrusion 111 and the second groove 108 are engaged to ensure a fixed connection when the shell is closed. The collection component includes a swab 201, a first base 101, a second base 102, a second base 103, a second base 104 ...5, a second base 106, a second base 107, a second base 108, a second base 108, a second base 108, a second base 106, a second base 107, a second base 108, a second base 107, a second base 108, a second base 107, a second base 108, The system includes a support block 202, a second support block 203, and a first channel 204. A first support block 202 is located on one side of the second protective shell 106, and a second support block 203 is located on the other side. The first support block 202 and the second support block 203 have a first channel 204. The second support block 203 is partially open. A swab 201 is placed inside the first support block 202, and the second support block 203 holds the swab 201 in place. By placing the swab 201 into the first channel 204 and holding it in place by the second support block 203, an integrated collection effect is achieved. The observation component includes anti-slip textures 301 and scales 302. Anti-slip textures 301 are located on the outer sides of the first protective shell 105 and the second protective shell 106, and scales 302 are located on the outer side of the test tube 1. The anti-slip textures 301 facilitate handling when wearing gloves, and the scales 302 are used to observe and measure the collection indicators, thus achieving convenient handling and observation.

[0026] Please see Figures 5-6 In this embodiment, the sealing assembly includes a flexible rod 401, a flexible sheet 402, a cap 403, a stopper 404, a first thread 405, a second thread 406, a fourth protrusion 407, and a second channel 408. The test tube 1 has a second channel 408. A flexible rod 401 is provided on one side of the test tube 1. Two sets of flexible rods 401 are provided. A flexible sheet 402 is provided on the inner side of the flexible rod 401. The flexible sheet 402 is connected to the stopper 404. A fourth protrusion 407 is provided at the bottom of the stopper 404. By bending the flexible rod 401, the sealing... The second channel 408 is blocked by the cap 404 to ensure that subsequent operations can be carried out normally and orderly; a cap 403 is provided on one side of the film 402, the fourth protrusion 407 has a first thread 405, and the inside of the cap 403 has a second thread 406. The cap 403 is one turn larger than the fourth protrusion 407; the fourth protrusion 407 is connected by rotation through the second thread 406 of the cap 403, thereby ensuring that the sample cannot be pulled out when special samples need to be left to stand for sampling, thus reducing shaking.

[0027] When installing the first support block 202, the first support block 202 is fixedly installed on the outside of the second protective shell 106, and the second support block 203 is fixedly installed on the outside of the second protective shell 106. The swab 201 is placed inside the first channel 204 through the pre-drilled first channel 204, and the second support block 203 supports the bottom of the swab 201.

[0028] When handling the test tube, the anti-slip texture 301 provides a non-slip surface, and the scale 302 facilitates observation of the reagent dosage inside the test tube 1.

[0029] During sealing, the flexible rod 401 is bent, the cap 404 is inserted into the second channel 408, the flexible sheet 402 is bent, the cap 403 is aligned with the fourth protrusion 407, and the second thread 406 and the first thread 405 are rotated together to achieve an integrated effect. This ensures that when virus collection requires static placement, the threaded connection effectively reduces shaking and enhances the practical value of the sampling extraction tube.

[0030] Through the above steps, the first protrusion 2 is clearly installed on test tube 1, the sealing component is fixedly installed on one side of test tube 1, and the observation component is fixedly installed on the outside of test tube 1. The shock-absorbing pad 110 is fixedly installed on the outside of the shock-absorbing pad 110, and the heat-insulating pad 109 is fixedly installed on the outside of the heat-insulating pad 109. The first protective shell 105 is fixedly installed on the outside of another set of heat-insulating pads 109, and the second protective shell 106 is fixedly installed on the outside of another set of heat-insulating pads 109. The first base 1 is fixedly installed at the bottom of the second protective shell 106 and the first protective shell 105. 01 and the second base 104 are fixedly installed with a second protrusion 103 on one side of the second base 104, and the second protrusion 103 is engaged with the inside of the first groove 102 opened in the first base 101. The retaining strip 107 is fixedly installed on the outside of the second protective shell 106, and the third protrusion 111 is fixedly installed on the inside of the retaining strip 107. The third protrusion 111 and the second groove 108 are engaged with the second groove 108 opened in the second groove 108, thereby achieving a stable shock absorption and heat preservation effect, and enhancing the practical value of the extraction tube.

[0031] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.

Claims

1. An integrated virus sampling and extraction tube, comprising a test tube (1); characterized in that: It also includes a protective component, a first protrusion (2), a collection component, an observation component, and a sealing component; a sealing component is provided on one side of the test tube (1), an observation component is provided on the outside of the test tube (1), and a protective component is provided on the outside of the test tube (1). The protective component includes a first base (101), a first groove (102), a second protrusion (103), a second base (104), a first protective shell (105), a second protective shell (106), a retaining strip (107), and a second... The test tube (1) has a groove (108), a heat insulation pad (109), a shock-absorbing pad (110), and a third protrusion (111). The test tube (1) is provided with a shock-absorbing pad (110) on the outside. There are two sets of shock-absorbing pads (110). The heat insulation pad (109) is provided on the outside of the shock-absorbing pad (110). There are two sets of heat insulation pads (109). The heat insulation pad (109) is provided with a second protective shell (106) on the outside of the heat insulation pad (109). The other set of heat insulation pads (109) is provided with a first protective shell (105) on the outside of the first set of heat insulation pads (109).

2. The integrated virus sampling and extraction tube according to claim 1, characterized in that: The bottom of the first protective shell (105) is provided with a second base (104), and a second protrusion (103) is provided on one side of the second base (104). The bottom of the second protective shell (106) is provided with a first base (101), and a first groove (102) is provided on one side of the first base (101). The first groove (102) has two sets.

3. The integrated virus sampling and extraction tube according to claim 1, characterized in that: The outer side of the second protective shell (106) is provided with a retaining strip (107), and there are two sets of retaining strips (107). The inner side of the retaining strip (107) is provided with a third protrusion (111), and there are two sets of third protrusions (111). The first protective shell (105) is provided with a second groove (108), and there are two sets of second grooves (108).

4. The integrated virus sampling and extraction tube according to claim 1, characterized in that: The collection component includes a swab (201), a first support block (202), a second support block (203), and a first channel (204); the first support block (202) is provided on one side of the second protective shell (106), the second support block (203) is provided on one side of the second protective shell (106), the first support block (202) and the second support block (203) have a first channel (204), the second support block (203) is partially open, the swab (201) is provided inside the first support block (202), and the second support block (203) holds the swab (201) against it.

5. The integrated virus sampling and extraction tube according to claim 1, characterized in that: The observation components include anti-slip texture (301) and scale (302); the outer sides of the first protective shell (105) and the second protective shell (106) are provided with anti-slip texture (301), and the outer side of the test tube (1) is provided with scale (302).

6. The integrated virus sampling and extraction tube according to claim 1, characterized in that: The sealing assembly includes a flexible rod (401), a flexible sheet (402), a cap (403), a stopper (404), a first thread (405), a second thread (406), a fourth protrusion (407), and a second channel (408); the test tube (1) has a second channel (408), a flexible rod (401) is provided on one side of the test tube (1), two sets of flexible rods (401) are provided, a flexible sheet (402) is provided on the inner side of the flexible rod (401), the flexible sheet (402) is connected to the stopper (404), and a fourth protrusion (407) is provided at the bottom of the stopper (404).

7. The integrated virus sampling and extraction tube according to claim 6, characterized in that: A cover (403) is provided on one side of the film (402), a first thread (405) is provided on the fourth protrusion (407), a second thread (406) is provided inside the cover (403), and the cover (403) is one turn larger than the fourth protrusion (407).