Portable kit

By designing the fixed components, temperature-controlled areas and sealing structure of the portable reagent kit, the failure problem caused by improper reagent storage is solved, the stable storage of reagents and the reliability of experimental results is achieved, and the effectiveness of reagents within the specified temperature range is ensured.

CN223174596UActive Publication Date: 2025-08-01YAKEYIN (WUHAN) BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422390143.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-08-01
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

In the prior art, the storage of reagents is not properly protected, resulting in the reagents that may fail under long-term storage or improper storage, affecting the reliability of experimental results.

Method used

A portable reagent kit is designed, including a box body, fixing assembly, energy storage assembly, temperature-controlled area and sealing structure. It provides power support through metal contacts and cables in series. It uses a resistance plate and elastic member to fix the test tube, and uses a temperature-varying medium to stabilize the temperature, and combines a closed cover and slot design to ensure sealing.

Benefits of technology

Effectively protect reagents from external environment, reduce the risk of reagent failure, ensure stable storage of reagents within the specified temperature range, improve the accuracy and reliability of experimental results, and are easy to operate and durable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of biological medicine, and particularly discloses a portable kit which comprises a kit body used for loading reagents and a fixing assembly installed in the kit body. The kit comprises a kit body, one or more loading intervals are arranged on the inner side of the kit body at equal intervals, and a mounting groove is formed between every two loading intervals; one or more metal contacts are arranged at the bottom of the loading interval and are connected in series through a cable; through the design of the sealing cover, the sealing ring, the track and the clamping groove of the kit, effective sealing of the top is ensured, and external air, moisture or pollutants are prevented from entering the kit. The good sealing performance can effectively protect the reagent, and the quality of the reagent is prevented from being influenced by the change of the external environment; and by adopting the design of the propping plate and the elastic piece, the test tube can be firmly fixed and is prevented from moving or vibrating in the storage and transportation processes, so that the risks of damage and leakage are reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of biomedicine, and particularly relates to a portable kit. Background Art

[0002] Kits are very common in laboratory and medical applications. When storing, traditional storage methods focus on the stability and protection of test tubes. However, the test liquids in the test tubes are not well protected, and the reagents in some kits may become ineffective after long-term storage or improper storage, resulting in unreliable experimental results.

[0003] According to the specific requirements of the reagents, their recommended storage temperatures (such as refrigeration, freezing or room temperature) and environmental conditions should be observed. Some reagents need to be stored in a low-temperature environment, while some should avoid extreme temperature changes. In terms of traditional methods, the storage of reagents is not well protected. Based on this, we provide a portable kit. Summary of the Utility Model

[0004] Aiming at the deficiencies of the prior art, the utility model provides a portable kit, which solves the problem that in the prior art, the reagents are not properly stored, resulting in the invalidation of the reagents.

[0005] The portable kit of the utility model includes a kit for loading reagents and a fixing component installed in the kit;

[0006] The kit includes a box body, and one or more loading intervals are arranged at equal distances on the inner side of the box body. An installation groove is arranged between every two loading intervals;

[0007] One or more metal contacts are arranged at the bottom of the loading interval and are connected in series through a cable. An energy storage component is inserted at the installation groove, and the energy storage component is in contact with the cable through insertion;

[0008] A card frame is installed on the inner side of the loading interval, and the card frame is inserted and adapted to the fixing component;

[0009] The fixing component includes a loading area, a card seat is arranged at the bottom of the loading area, and the bottom of the card seat is adapted to the metal contacts surrounded by the card frame;

[0010] A test tube is loaded in the loading area, and the loading area is used to fix the test tube.

[0011] As a further improvement of the utility model, the loading area includes a housing, a sealing groove is opened at the top of the housing, a top cover is arranged at the sealing groove, and a sealing ring is arranged at the bottom of the top cover for cooperating with the sealing groove to form a seal.

[0012] As a further improvement of the present invention, a through hole is provided on the top of the top cover near the central position, and one or more cushions are installed at the through hole. The cushions are distributed in a ring array around the central axis of the top cover.

[0013] As a further improvement of the present invention, one or more contact plates are provided on the inner wall of the shell in a ring-shaped symmetrical manner with the central axis, and an elastic member is provided on one side of the contact plate, and one end of the elastic member is adapted to the one side of the contact plate.

[0014] As a further improvement of the present invention, a temperature control area is provided on the inner side of the shell at the contact plate, and a hollow area is opened on the inner side of the temperature control area. The hollow area is filled with a temperature-changing medium for controlling the temperature of the temperature control area.

[0015] As a further improvement of the present invention, a closing cover is provided on the top of the box body, an insertion port is provided at one end of the inner side of the box body near the top position, and two symmetrically arranged tracks are provided at the insertion port, and the tracks are combined with the closing cover.

[0016] As a further improvement of the present invention, a protrusion is provided at the other end of the track located at the insertion port, and a card slot is provided at the protrusion. The card slot is adapted to one end of the closing cover and is used to close the top of the box body.

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0018] The utility model ensures effective sealing of the top of the reagent box through the design of the sealing cover, sealing ring, track and card slot, preventing the entry of external air, moisture or pollutants. The good sealing performance can effectively protect the reagents and prevent their quality from being affected by changes in the external environment;

[0019] The design of the contact plate and elastic parts can firmly fix the test tubes to prevent them from moving or vibrating during storage and transportation, thereby reducing the risk of breakage and leakage;

[0020] The design of the temperature-controlled area and the hollow area filled with temperature-variable medium helps maintain a stable storage environment within the specified temperature range, preventing adverse effects of temperature fluctuations on reagents and ensuring the effectiveness of reagents and the accuracy of experimental results;

[0021] The design of the insertion port, track, bump and slot makes the installation and removal of the closure cover more convenient. Users can complete the operation quickly and accurately, improving efficiency and reducing operating errors.

[0022] The durable design of the closure cap and card slot ensures effective sealing during long-term use, reducing the risk of reagent deterioration due to poor sealing of the test kit;

[0023] The temperature-changing medium within the temperature control area can buffer the impact of external temperature changes on the internal environment of the kit, maintain temperature stability, and further improve the stable storage conditions of the reagent. Brief Description of the Drawings

[0024] The drawings described herein are used to provide a further understanding of the present application, form a part of the present application, and the schematic embodiments and descriptions thereof are used to explain the present application without unduly limiting the present application. In the drawings:

[0025] Figure 1 is a schematic three-dimensional structure diagram of the kit of the present utility model;

[0026] Figure 2 is a schematic front view structure diagram of the kit of the present utility model;

[0027] Figure 3 of the present utility model Figure 2 is a schematic A-A sectional structure diagram;

[0028] Figure 4 is a schematic side view structure diagram of the kit of the present utility model;

[0029] Figure 5 of the present utility model Figure 4 is a schematic B-B sectional structure diagram;

[0030] Figure 6 is a schematic three-dimensional structure diagram of the loading area of the present utility model;

[0031] Figure 7 is a schematic front view structure diagram of the loading area of the present utility model;

[0032] Figure 8 of the present utility model Figure 7 is a schematic C-C sectional structure diagram;

[0033] Figure 9 is a schematic top view structure diagram of the box body of the present utility model.

[0034] In the figure: 1. Kit; 2. Fixing component;

[0035] 11. Box body; 12. Protrusion; 13. Sealing cover; 14. Loading interval; 15. Installation groove; 16. Track; 17. Card frame; 18. Card slot; 19. Insertion port;

[0036] 21. Card seat; 22. Loading area; 23. Test tube;

[0037] 221. Top cover; 222. Temperature control area; 223. Outer shell; 224. Sealing groove; 225. Soft pad; 226. Sealing ring; 227. Hollow area; 228. Elastic member; 229. Contact plate. Detailed implementation manners

[0038] The following will disclose multiple implementation manners of the present utility model with diagrams. For the sake of clear illustration, many physical details will be described together in the following narrative. However, it should be understood that these physical details should not be used to limit the present utility model. That is to say, in some implementation manners of the present utility model, these physical details are unnecessary. In addition, for the sake of simplifying the diagrams, some conventional structures and components will be illustrated in a simple schematic manner in the diagrams.

[0039] In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present utility model.

[0040] Please refer to Figures 1-9 , the kit 1 is very common in laboratory and medical applications. When storing, the traditional storage methods are all centered around the stability and protection of the test tube 23. However, the test liquid in the test tube 23 is not well protected, and the reagents in some kits 1 may become ineffective after long-term storage or improper storage, resulting in unreliable experimental results.

[0041] According to the specific requirements of the reagent, its recommended storage temperature (such as refrigeration, freezing or room temperature) and environmental conditions should be complied with. Some reagents need to be stored in a low-temperature environment, while some should avoid extreme temperature changes. In terms of the traditional method, the storage of reagents is not well protected. Based on this, the present application provides a portable kit 1, including a kit 1 for loading reagents and a fixing component 2 installed in the kit 1;

[0042] The kit 1 includes a box body 11. One or more loading intervals 14 are arranged at equal distances inside the box body 11, and an installation groove 15 is arranged between every two loading intervals .......

[0043] One or more metal contacts are arranged at the bottom of the loading interval 14 and are connected in series through a cable. An energy storage component is inserted at the installation groove 15, and the energy storage component is in contact with the cable through insertion.

[0044] A card frame 17 is installed inside the loading interval 14, and the card frame 17 is inserted and adapted to the fixing component 2;

[0045] The fixing component 2 includes a loading area 22. A card seat 21 is arranged at the bottom of the loading area 22, and the bottom of the card seat 21 is adapted to the metal contacts surrounded by the card frame 17;

[0046] A test tube 23 is loaded at the loading area 22, and the loading area 22 is used to fix the test tube 23.

[0047] The box body 11 of Kit 1 is designed with a strong and durable material (such as high-strength plastic or aluminum alloy), and one or more loading intervals 14 are equidistantly arranged on the inner side. These intervals are used to place and fix reagent tubes. An installation groove 15 is provided between every two loading intervals 14 for installing an energy storage component.

[0048] Loading interval 14: One or more metal contacts are provided at the bottom of each loading interval 14, and these contacts are connected in series through a cable to ensure electrical connectivity and data transmission.

[0049] Metal contacts: These contacts are used for electrical connection with the energy storage component or other electronic devices and may be used for power supply or data transmission.

[0050] Energy storage component: The energy storage component installed in the loading interval 14, such as a battery or a capacitor, contacts the metal contacts by means of plugging. These energy storage components provide power for the electronic devices in Kit 1, which may include functions such as temperature monitoring, data recording, or others.

[0051] Card frame 17: The card frame 17 installed in the loading interval 14 is adapted to the plugging part of the fixing component 2 to ensure the stable fixation of the test tube 23 in the box body 11.

[0052] Fixing component 2: It includes a loading area 22, and a card seat 21 is provided at the bottom. The card seat 21 matches the metal contacts of the card frame 17. The loading area 22 of the fixing component 2 is used to fix the test tube 23 and ensure that the test tube 23 is not damaged during storage and transportation.

[0053] Test tube 23: The loading area 22 of the fixing component 2 is used to load and fix the test tube 23. The test tube 23 is stably fixed in the box body 11 through the cooperation of the card seat 21 and the card frame 17, preventing the test tube 23 from shaking or breaking during movement.

[0054] Due to the presence of the fixing component 2 and metal contacts in Kit 1, the test tube 23 can be better fixed and protected. This can effectively reduce the impact and vibration suffered by the reagent during transportation and storage and reduce the risk of reagent failure.

[0055] Through the design of connecting the energy storage component in series with the cable, it can be ensured that the internal electronic devices (such as a temperature monitor or a data recorder) in Kit 1 can work stably and provide power support. This is crucial for monitoring and maintaining the storage environment of the reagent, especially for reagents that need to be stored at low temperatures.

[0056] The design of Kit 1 makes the loading, fixing, and removal of the test tube 23 more convenient. The cooperation between the card frame 17 and the fixing component 2 ensures the stability of the test tube 23 and reduces the operation difficulty during the use of Kit 1.

[0057] The metal contacts and cables are arranged such that the kit 1 can perform data transmission or monitoring functions, such as real-time recording of temperature changes or other storage conditions. This can help users promptly detect and address potential storage issues, thereby enhancing the reliability of experimental results.

[0058] The design of the kit 1 can effectively avoid the influence of temperature fluctuations and environmental changes on the reagents. Especially for temperature-sensitive reagents, it can maintain stable storage conditions during long-term storage.

[0059] The loading area 22 includes a housing 223. A sealing groove 224 is provided at the top of the housing 223. A top cover 221 is arranged at the sealing groove 224. A sealing ring 226 is provided at the bottom of the top cover 221 for cooperating with the sealing groove 224 to form a seal.

[0060] A through hole is provided at the top of the top cover 221 near the central position. One or more soft pads 225 are installed at the through hole. The soft pads 225 are distributed in an annular array with the central axis of the top cover 221.

[0061] The housing 223 of the loading area 22 is made of a durable and chemically resistant material, such as high-strength plastic or metal alloy. Its top is designed with a sealing groove 224 for ensuring the sealing environment of the test tube 23 inside the box body 11.

[0062] Sealing groove 224: The sealing groove 224 at the top of the housing 223 is used to cooperate with the top cover 221 to form a sealing structure. The design of the sealing groove 224 needs to be precise to ensure that the top cover 221 can be fully embedded and prevent external air, moisture, or other contaminants from entering the loading area 22.

[0063] Top cover 221: The top cover 221 is designed to have a structure that closely fits with the sealing groove 224. Usually, a chemically resistant material, such as silica gel or polyurethane, is used. A sealing ring 226 is provided at the bottom of the top cover 221 to form an effective sealing interface.

[0064] Sealing ring 226: The sealing ring 226 is provided at the bottom of the top cover 221 to enhance the sealing effect and prevent the test tube 23 and reagents inside the kit 1 from being affected by the external environment. The sealing ring 226 can be made of a highly elastic material (such as rubber or silica gel) to ensure the sealing performance during long-term use.

[0065] Through hole: One or more through holes are provided at the top of the top cover 221 near the central position. These through holes can be used for installing sensors, ventilation holes, or providing channels for other functions.

[0066] Cushion 225: One or more cushions 225 are installed at the through - holes. The cushions 225 are distributed in an annular array along the central axis of the top cover 221. The cushions 225 can be made of elastic materials (such as foam or silicone) and are used for shock absorption and reducing the impact force that the test tube 23 may receive.

[0067] The design of the sealing groove 224 and the top cover 221, especially when equipped with the sealing ring 226, can effectively prevent the entry of air, moisture or contaminants inside the kit 1, protecting the reagent from the external environment. This ensures the stability and effectiveness of the reagent, especially during long - term storage.

[0068] The setting of the cushion 225 can provide additional buffering and shock - absorbing effects, preventing the test tube 23 from being impacted when moving inside the kit 1. This helps to prevent the test tube 23 from being damaged or the reagent from leaking, thereby further improving the protection of the reagent.

[0069] Adopting the design of the sealing ring 226 and the precise sealing groove 224 can ensure the consistency and long - term reliability of the sealing effect. This is crucial for maintaining the effectiveness of the reagent and the accuracy of the experimental results.

[0070] The design of the top cover 221 makes it more convenient to open and close the kit 1, and at the same time, monitoring or maintenance can be conveniently carried out through the through - holes. The design of the cushion 225 helps to protect the reagent and the test tube 23 during the operation process.

[0071] The setting of the through - holes can provide additional functions for the kit 1, such as installing sensors to monitor the internal environmental conditions, or setting ventilation holes to adjust the internal gas. These functions can enhance the intelligence and functionality of the kit 1.

[0072] One or more abutting plates 229 are symmetrically arranged in a ring along the central axis on the inner wall of the outer shell 223. An elastic member 228 is arranged on one side of the abutting plate 229, and one end of the elastic member 228 is adapted to one side of the abutting plate 229.

[0073] A temperature - control area 222 is arranged on the inner side of the outer shell 223 at the position of the abutting plate 229. A hollow area 227 is opened inside the temperature - control area 222, and a temperature - change medium is filled in the hollow area 227 for controlling the temperature of the temperature - control area 222.

[0074] One or more abutting plates 229 are symmetrically arranged in a ring along the central axis on the inner wall of the outer shell 223. These abutting plates 229 are used for mechanically supporting and protecting the test tube 23. The design of the abutting plates 229 can ensure the stability of the test tube 23 inside the box body 11 and reduce the influence of movement and vibration on the test tube 23.

[0075] Elastic member 228: An elastic member 228 is installed on one side of each abutting plate 229, and the other end of the elastic member 228 is adapted to one side of the abutting plate 229. These elastic members 228 (such as springs or silicone pads) can provide a certain elastic pressure, enabling the test tube 23 to closely fit on the abutting plate 229 during loading and fixing, and preventing the test tube 23 from shaking during storage.

[0076] Temperature control area 222: A temperature control area 222 is provided inside the housing 223 for maintaining and regulating the temperature of the internal environment. The design of this area may include temperature sensors and heating / cooling devices to ensure that the reagent is stored within an appropriate temperature range.

[0077] Hollow area 227: A hollow area 227 is provided inside the temperature control area 222, and these hollow areas 227 are filled with temperature-changing media (such as phase change materials, heat pipes, etc.). The temperature-changing media have the property of absorbing or releasing heat within a specific temperature range, which helps to stabilize the temperature of the temperature control area 222 and prevent drastic temperature fluctuations.

[0078] The combined design of the abutting plate 229 and the elastic member 228 can effectively fix the test tube 23 and prevent the test tube 23 from moving and vibrating within the box body 11. This reduces the risk of breakage of the test tube 23 and ensures the stability of the reagent during transportation and storage.

[0079] The design of the temperature control area 222 and the hollow area 227 enables the reagent kit 1 to maintain a stable storage environment within a specified temperature range. The use of the temperature-changing media can buffer temperature fluctuations and maintain a constant temperature in the internal environment, thereby protecting temperature-sensitive reagents.

[0080] By filling with the temperature-changing media, the temperature of the temperature control area 222 can be effectively regulated and stabilized. This is particularly important for reagents that need to be stored within a specific temperature range and can prevent the influence of too high or too low temperature on the quality of the reagent.

[0081] The elastic pressure provided by the elastic member 228 can ensure the stability of the test tube 23 during loading and use, reducing the inconvenience during the operation process. In addition, the temperature control function can prevent the reagent from failing due to temperature fluctuations, improving the reliability and safety of the experimental results.

[0082] The design of the temperature control area 222 and the use of the temperature-changing media can significantly reduce the temperature fluctuations caused by external environmental changes. This stability is crucial for maintaining the effectiveness of the reagent and improving the accuracy of the experiment.

[0083] The combination of the temperature control area 222 and the elastic member 228 not only improves the protection and stability of the reagent, but also makes the reagent kit 1 have a higher level of intelligence, enabling more precise temperature control and better reagent fixing function.

[0084] At the top of the box body 11, there is a closing cover 13. At one end near the top inside the box body 11, there is an insertion opening 19. At the insertion opening 19, there are two symmetrically arranged tracks 16, and the tracks 16 are combined with the closing cover 13.

[0085] At the other end of the insertion opening 19 where the track 16 is located, there is a convex block 12. At the convex block 12, there is a card slot 18, and the card slot 18 is adapted to one end of the closing cover 13 for closing the top of the box body 11.

[0086] The top of the box body 11 is equipped with a closing cover 13. The closing cover 13 is designed to completely close the box body 11 to prevent the reagent and the test tube 23 from being affected by the external environment. The closing cover 13 may be made of a material resistant to chemical corrosion and high temperature to ensure its effective sealing under various storage conditions.

[0087] Insertion opening 19: There is an insertion opening 19 at a position near the top inside the box body 11. The insertion opening 19 is designed to facilitate the installation and removal of the closing cover 13. The position and shape of the insertion opening 19 should match the design of the closing cover 13 to ensure that the closing cover 13 can be accurately docked and sealed.

[0088] Track 16: At the insertion opening 19, there are two symmetrically arranged tracks 16. These tracks 16 are used to guide and fix the position of the closing cover 13 on the top of the box body 11 to ensure that the closing cover 13 can evenly fit on the box body 11 when closed.

[0089] Convex block 12: At the other end of the insertion opening 19 where the track 16 is located, there is a convex block 12. The convex block 12 is designed to further ensure the stable installation of the closing cover 13. The convex block 12 can play a role in alignment and positioning, enabling the closing cover 13 to accurately fit into the track 16.

[0090] Card slot 18: At the convex block 12, there is a card slot 18. The card slot 18 is designed to be adapted to one end of the closing cover 13. The snap - lock mechanism of the card slot 18 and the closing cover 13 can effectively lock the closing cover 13 to ensure its stable closing on the top of the box body 11.

[0091] The combined design of the closing cover 13, the insertion opening 19, the track 16, and the card slot 18 ensures the effective sealing of the top of the reagent kit 1. Good sealing performance can prevent external air, moisture, or contaminants from entering the reagent kit 1, protecting the quality and stability of the reagent.

[0092] Through the design of the track 16 and the convex block 12, the closing cover 13 can be accurately docked and stably installed on the top of the box body 11. The card slot 18 mechanism ensures that the closing cover 13 will not loosen or fall off due to vibration or impact during use, thus improving the sealing performance and reliability of the reagent kit 1.

[0093] The design of the insertion port 19 and the track 16 makes the installation and disassembly of the closing cover 13 more convenient. Users can quickly and accurately install the closing cover 13 onto the box body 11, saving operation time and reducing the possibility of operation errors.

[0094] The durable design of the closing cover 13 and the card slot 18 can ensure an effective sealing function during long-term use. This helps to extend the service life of the reagent kit 1 and reduce the risk of reagent deterioration caused by poor sealing.

[0095] The design of the track 16 and the bump 12 helps the accurate docking of the closing cover 13 and prevents deviation during the installation of the cover. The presence of the card slot 18 ensures that the closing cover 13 can be tightly fixed after installation and will not affect the sealing effect due to external factors.

[0096] The good sealing performance and the stable design of the closing cover 13 can prevent the leakage or volatilization of the reagent inside the reagent kit 1, ensure the safety of the reagent during storage, and thus improve the accuracy and reliability of the experimental results.

[0097] The above description is only for the implementation mode of the present utility model and is not used to limit the present utility model. For those skilled in the art, various changes and modifications can be made to the present utility model. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the scope of the claims of the present utility model.

Claims

1. A portable kit, comprising a kit (1) for loading reagents and a fixing component (2) installed in the kit (1); Characterized in that: The kit (1) includes a box body (11), and one or more loading intervals (14) are equidistantly arranged inside the box body (11), and an installation groove (15) is arranged between every two of the loading intervals (14); One or more metal contacts are arranged at the bottom of the loading interval (14) and are connected in series through a cable. An energy storage component is inserted at the installation groove (15), and the energy storage component contacts the cable through insertion; A card frame (17) is installed inside the loading interval (14), and the card frame (17) is inserted and adapted to the fixing component (2); The fixing component (2) includes a loading area (22), and a card seat (21) is arranged at the bottom of the loading area (22), and the bottom of the card seat (21) is adapted to the metal contacts surrounded by the card frame (17); A test tube (23) is loaded in the loading area (22), and the loading area (22) is used for fixing the test tube (23).

2. The portable kit according to claim 1, wherein: The loading area (22) includes a housing (223), a sealing groove (224) is opened at the top of the housing (223), a top cover (221) is arranged at the sealing groove (224), and a sealing ring (226) is arranged at the bottom of the top cover (221) for cooperating with the sealing groove (224) to form a seal.

3. The portable kit according to claim 2, wherein: One or more soft pads (225) are installed at the through hole near the central position at the top of the top cover (221), and the soft pads (225) are distributed in a circular array around the central axis of the top cover (221).

4. A portable kit according to claim 2, wherein: One or more abutting plates (229) are symmetrically arranged in a circular shape along the central axis on the inner wall of the housing (223), and an elastic member (228) is arranged on one side of the abutting plate (229), and one end of the elastic member (228) is adapted to one side of the abutting plate (229).

5. The portable kit according to claim 2, wherein: A temperature control area (222) is arranged on the inner side of the housing (223) at the position of the abutting plate (229), a hollow area ( 6. A portable kit according to claim 1, wherein: ​ 7. The portable kit according to claim 6, wherein: ​