A medical test sample storage device for easy access
The combination of disinfectant cotton and sponge blocks enables rapid disinfection of sample bottles, solving the problem of cross-contamination caused by liquid sample residue and achieving safe and convenient sample storage.
Patent Information
- Application Number
- CN202411726976.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2044-11-28
AI Technical Summary
In existing technologies, liquid samples are prone to overflow or splashing when poured into sample bottles, resulting in residual liquid on the surface of the sample bottle, which affects the safety of sample testing and increases the risk of cross-contamination.
A medical test sample storage device that is easy to access was designed. It adopts a combination structure of sterile cotton and sponge block. The sterile cotton makes close contact with the surface of the sample bottle and the bottle cap, so as to achieve rapid and non-discriminatory sterilization and avoid cross-contamination.
This effectively avoids the impact of residual liquid on the sample bottle surface on the test, improves the safety and convenience of sample storage, and reduces the risk of cross-contamination.
Smart Images

Figure CN119319975B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of sample storage. More particularly, the present application relates to a medical test sample storage device facilitating access. BACKGROUND
[0002] Prior Chinese patent: A medical test sample collection and transfer box (CN217199182U), the installation hole is provided with a clamping pad inside, the clamping pad has elasticity, the clamping pad adopts a circular arc structure, so that the medical test sample is more stable after being installed in the installation hole, improving the safety of sample transfer, and the thickness of the clamping pad gradually increases from top to bottom, so that the medical test sample can be conveniently fixed;
[0003] However, when the sampling personnel pours the collected liquid sample into the sample bottle, liquid sample may overflow or splash due to improper operation, resulting in liquid sample remaining on the surface of the sample bottle and the root of its bottle cap. Artificially, before the sample bottle is placed into the transfer box, it should be observed whether there is liquid sample remaining on the surface of the sample bottle, and the sample bottle with liquid sample remaining should be cleaned and disinfected. However, manual observation may miss some samples, so while the sample bottle is fixed in the transfer box, the sample bottle should be quickly disinfected without distinction to avoid the influence of liquid sample remaining on the surface of the sample bottle on subsequent sample detection operations. SUMMARY
[0004] The present application provides a medical test sample storage device facilitating access, which aims to overcome the shortcomings that liquid sample remaining on the surface of the sample bottle and the root of its bottle cap may contaminate the transfer box, causing cross contamination and affecting subsequent sample detection operations.
[0005] In order to achieve the above-mentioned purpose, the technical scheme of the present application is as follows:
[0006] The utility model provides a medical examination sample storage device convenient to take, including box, support and handle, at least four supports are fixedly connected on the box, at least two handles are fixedly connected on the box, still include the box door, fixed plate, L shaped piece one, connecting plate one, disinfection cotton one, disinfection cotton two, L shaped piece two, connecting plate two, disinfection cotton three and receiving assembly, at least two box doors are rotatably connected on the box, at least two fixed plates are fixedly connected on each box door, at least two L shaped piece one are fixedly connected on the box, one connecting plate one is inserted in all together to L shaped piece one, at least two through grooves one are seted up on each connecting plate one, a plurality of disinfection cotton one is detachably connected on the connecting plate one, all disinfection cotton one is fixedly connected each other through cloth strip, a plurality of disinfection cotton two is detachably connected on the connecting plate one, all disinfection cotton two is fixedly connected each other through cloth strip, at least two L shaped piece two are fixedly connected on the box, one connecting plate two is inserted in all together to L shaped piece two, at least two through grooves two are seted up on each connecting plate two, a plurality of disinfection cotton three is connected on the connecting plate two, all disinfection cotton three is fixedly connected each other through cloth strip, the receiving assembly is connected on the box, and the receiving assembly is used for containing sample bottle.
[0007] As a preferred technical scheme of the utility model, the surface of the box is coated with an anticorrosive layer.
[0008] As a preferred technical scheme of the utility model, the receiving assembly comprises guide rails, connecting plate three, connecting plate four, protective piece one, protective piece two and fixed block, at least two guide rails are fixedly connected on the box, the connecting plate three is arranged on the inner side of the box and is in sliding connection with the corresponding guide rail, the connecting plate four is connected above the connecting plate three, the protective piece one is fixedly connected on the connecting plate three, the protective piece two is fixedly connected on the connecting plate four, and the fixed block is fixedly connected on the connecting plate four.
[0009] As a preferred technical scheme of the utility model, the protective piece one and the protective piece two are made of soft rubber.
[0010] As a preferred technical scheme of the utility model, the inner edge of the upper side of the protective piece one and the protective piece two is chamfered.
[0011] As a preferred technical scheme of the utility model, the auxiliary assembly is further included, the auxiliary assembly is connected above, the auxiliary assembly comprises a ring, an elastic strip and a sponge block, the sponge block is bonded with the corresponding disinfection cotton three, the surface of the sponge is provided with a waterproof coating, at least two rings are fixedly connected on each sponge block, and the elastic strip is in sliding connection with the corresponding ring.
[0012] As a preferred embodiment of the present invention, it further includes a supporting component; the supporting component is connected to the sponge block; the supporting component includes an arc-shaped strip and a linkage unit; at least four arc-shaped strips are fixedly connected to each sponge block; the linkage unit is connected to the sponge block, and the linkage unit is used to drive the arc-shaped strips to tilt and move.
[0013] As a preferred embodiment of the present invention, the linkage unit includes a linkage block one and a linkage block two; a linkage block one is fixedly connected to each arc-shaped strip, and the linkage block one is slidably connected to the connecting plate two; the connecting plate two is provided with a plurality of square grooves, and the end of each linkage block one is located in the corresponding square groove; a plurality of linkage blocks two are fixedly connected to the connecting plate one, and the linkage blocks two are provided with inclined surfaces, and the linkage blocks two cooperate with the corresponding linkage blocks one.
[0014] As a preferred embodiment of the present invention, it further includes a fixing component; the fixing component is connected to the connecting plate three; the fixing component includes a screw and a nut; at least four screws are fixedly connected to the connecting plate three, and the screws are inserted into the corresponding connecting plate four; each screw is screwed with a nut, and the nut is in contact with the corresponding connecting plate four.
[0015] As a preferred embodiment of the present invention, it further includes a limiting component; the limiting component is connected to the housing; the limiting component includes a limiting block 1, a connecting plate 5, a spring, and a limiting block 2; a plurality of limiting blocks 1 are slidably connected to the housing; a connecting plate 5 is provided on both sides of the housing, and the connecting plate 5 is fixedly connected to the corresponding limiting block 1; at least two springs are fixedly connected to each connecting plate 5, and the springs are fixedly connected to the housing; a limiting block 2 is fixedly connected to each connecting plate 3.
[0016] Beneficial effects: The present invention adopts the above technical solution, and through the combination of disinfectant cotton one, disinfectant cotton two and disinfectant cotton three, the surface of the sample bottle is disinfected, which realizes a rapid and indiscriminate disinfection operation of the sample bottles to be placed in the box, effectively avoiding the problem of cross-contamination affecting subsequent testing operations;
[0017] The inner diameter of the circular groove in the middle of the disinfectant cotton is smaller than the outer diameter of the sample bottle cap, which allows the disinfectant cotton to press firmly onto the sample bottle cap. This ensures close contact between the disinfectant cotton and the sample bottle cap, thereby improving the disinfection effect on the sample bottle cap. At the same time, the elastic strip presses the inner wall of the circular groove of the disinfectant cotton into the anti-slip groove of the sample bottle cap through its elasticity, ensuring that the disinfectant cotton disinfects the anti-slip groove of the sample bottle cap and preventing it from falling out.
[0018] The lower edge of the three circular grooves of the disinfectant cotton is moved by the arc-shaped strip to disinfect the base of the bottle cap. This avoids the problem of incomplete cleaning caused by the upward deformation of the lower edge of the three circular grooves of the disinfectant cotton. In addition, when the connecting plate 2 is manually moved downward, the arc-shaped strip is powered by the cooperation of the linkage block 1 and the linkage block 2. No electric drive component is required, and the structure is ingenious.
[0019] Manually pulling the fifth connecting plate allows the third connecting plate to be removed from the housing, and then the first and second protective components can be rinsed, which improves convenience. Attached Figure Description
[0020] Figure 1 A schematic diagram of the first structure of the medical test sample storage device of the present invention, which is easy to access, is shown.
[0021] Figure 2 A schematic diagram of a second structure of the medical test sample storage device of the present invention, which is easy to access, is shown.
[0022] Figure 3 A partial structural schematic diagram of the medical test sample storage device of the present invention, which is easy to access, is shown.
[0023] Figure 4 A schematic diagram of a first partial structure of the receiving component of the present invention is shown;
[0024] Figure 5 A schematic diagram of a second partial structure of the receiving component of the present invention is shown;
[0025] Figure 6 A front view of a portion of the structure of the easily accessible medical test sample storage device of the present invention is shown.
[0026] Figure 7 This diagram shows a first structural schematic of the combination of connecting plate one, disinfectant cotton one, and disinfectant cotton two of the present invention;
[0027] Figure 8 This diagram shows a second structural schematic of the combination of connecting plate one, disinfectant cotton one, and disinfectant cotton two of the present invention;
[0028] Figure 9 This diagram illustrates the structure of the combination of the connecting plate 2 and the disinfectant cotton 3 of the present invention.
[0029] Figure 10 The present invention is shown. Figure 9 Enlarged view of point A in the middle;
[0030] Figure 11 A schematic diagram of the structure of the linkage block two of the present invention is shown.
[0031] In the attached diagram, the labels are: 1-box body, 2-support, 3-handle, 4-box door, 5-fixing plate, 6-L-shaped block one, 7-connecting plate one, 8-disinfecting cotton one, 9-disinfecting cotton two, 10-L-shaped block two, 11-connecting plate two, 12-disinfecting cotton three, 13-sample bottle, 201-guide rail, 202-connecting plate three, 203-connecting plate four, 204-protective component one, 205-protective component two, 2 06-Fixing block, 207-Ring, 208-Elastic strip, 209-Arc strip, 2010-Linkage block one, 2011-Linkage block two, 2012-Screw, 2013-Nut, 2014-Limiting block one, 2015-Connecting plate five, 2016-Spring, 2017-Limiting block two, 2018-Sponge block, 91-Through groove one, 92-Through groove two, 93-Square groove. Detailed Implementation
[0032] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings.
[0033] Implementation Plan 1
[0034] An easily accessible medical test sample storage device, such as Figures 1-9 As shown, it includes a box body 1, supports 2, and handles 3; four supports 2 are bolted to the box body 1, and the box body 1 is made of alloy material; two handles 3 are welded to the box body 1; it also includes a box door 4, a fixing plate 5, an L-shaped block 6, a connecting plate 7, a disinfection cotton 8, a second disinfection cotton 9, an L-shaped block 10, a connecting plate 11, a third disinfection cotton 12, and a receiving assembly; two box doors 4 are rotatably connected to the box body 1; two fixing plates 5 are bolted to each box door 4; two L-shaped blocks 6 are welded to the box body 1; all L-shaped blocks 6 are connected to a connecting plate 7; each connecting plate 7 has two openings. A permeable groove 91; several sterile cotton balls 8 are detachably connected to a connecting plate 7; all sterile cotton balls 8 are fixed to each other by cloth strips; several sterile cotton balls 9 are detachably connected to a connecting plate 7; all sterile cotton balls 9 are fixed to each other by cloth strips; two L-shaped blocks 10 are welded to the box body 1; all L-shaped blocks 10 are connected to a connecting plate 11; each connecting plate 11 has two permeable grooves 92; several sterile cotton balls 12 are connected to the connecting plate 11; all sterile cotton balls 12 are fixed to each other by cloth strips; a receiving component is connected to the box body 1, which is used to hold sample bottles 13.
[0035] The surface of the enclosure 1 is coated with an anti-corrosion layer to prevent rust from forming.
[0036] The receiving component includes a guide rail 201, a connecting plate three 202, a connecting plate four 203, a protective component one 204, a protective component two 205, and a fixing block 206; two guide rails 201 are welded on the housing 1; a connecting plate three 202 is provided on the inner side of the housing 1, and the connecting plate three 202 is slidably connected to the corresponding guide rail 201; a connecting plate four 203 is connected above the connecting plate three 202; several protective components one 204 are fixedly connected to the connecting plate three 202; several protective components two 205 are fixedly connected to the connecting plate four 203; two fixing blocks 206 are welded on the connecting plate four 203.
[0037] Both protective component 1 (204) and protective component 2 (205) are made of soft rubber. When the box 1 vibrates, the sample bottle 13 is protected by protective component 1 (204) and protective component 2 (205).
[0038] The upper inner edges of both protective component 1 204 and protective component 2 205 are chamfered, making it easier for sample bottle 13 to be inserted into protective component 1 204 and protective component 2 205.
[0039] First, the door 4 is opened manually. The door 4 moves the fixing plate 5, causing it to stop pressing against the connecting plate 202. Then, the connecting plate 202 is pulled forward, causing the parts on it to move, so that all the protective parts 204 on it move to the outside of the box 1. Then, the connecting plate 7 is removed from the L-shaped block 6, and the connecting plate 7 and its parts are moved above the connecting plate 203, aligning the through slot 91 on the connecting plate 7 with the fixing block 206. Then, the connecting plate 7 is moved downward, causing the fixing block 206 to move downward. Insert 206 into the through slot 91 and place the connecting plate 7 onto the connecting plate 203. At this time, the disinfectant cotton 8 is aligned with the protective component 205. Then, manually place the sample bottle 13 on the disinfectant cotton 9 and press it down to disinfect the bottom of the sample bottle 13. Then, manually move the sample bottle 13 directly above the disinfectant cotton 8 and move it downward so that the lower part of the sample bottle 13 passes through the disinfectant cotton 8 and the protective component 205 in sequence and is inserted into the protective component 204, completing the placement operation. At this time, the sample bottle 13 is in the following state: Figure 5As shown, during this process, the surface of sample bottle 13 is disinfected using disinfectant cotton 8. Then, the above operation is repeated, and the remaining sample bottle 13 is inserted into other protective components 204. Then, the connecting plate 11 is manually removed from the L-shaped block 10 and moved directly above the connecting plate 7. The connecting plate 11 is then moved downwards, causing the fixing block 206 to insert into the through groove 92 on the connecting plate 11. At this point, the disinfectant cotton 12 is aligned with the sample bottle 13. The connecting plate 11 is then manually pushed downwards to connect... Plate 2 11 moves disinfectant cotton 3 12 downwards, causing the lower side of disinfectant cotton 3 12 to contact the top of sample bottle 13, and the inner side of disinfectant cotton 3 12 to contact the cap of sample bottle 13. This allows disinfectant cotton 3 12 to disinfect the upper part of sample bottle 13. In use, the combined action of disinfectant cotton 1 8, disinfectant cotton 2 9, and disinfectant cotton 3 12 disinfects the surface of sample bottle 13, achieving rapid and indiscriminate disinfection of sample bottles 13 before they are placed in box 1. This effectively avoids cross-contamination that could affect subsequent testing operations.
[0040] After all sample bottles 13 have been sterilized and placed, the connecting plate 1 7 and connecting plate 2 11 are removed from the connecting plate 4 203 in sequence. Then, the sterile cotton 1 8, sterile cotton 2 9, and sterile cotton 3 12 are torn off in sequence. When the sterile cotton 1 8, sterile cotton 2 9, and sterile cotton 3 12 are torn off, the remaining sterile cotton 1 8, sterile cotton 2 9, and sterile cotton 3 12 are also torn off through the surrounding fabric. Then, the new sterile cotton 1 8, sterile cotton 2 9, and sterile cotton 3 12 are pasted back into their corresponding positions. Afterward, the connecting plate 1 7 and connecting plate 2 11 are placed back on the corresponding L-shaped blocks 1 6 and L-shaped blocks 2 10. Then, the connecting plate 3 202 is pushed back to its original position, and the box door 4 is closed again.
[0041] Implementation Plan 2
[0042] Based on implementation plan 1, such as Figure 1 , Figure 10 and Figure 11 As shown, it also includes auxiliary components; the auxiliary components are connected to the connecting plate 2 11; the auxiliary components include rings 207, elastic strips 208 and sponge blocks 2018; several sponge blocks 2018 are fixedly connected to the connecting plate 2 11, and the sponge blocks 2018 are bonded to the corresponding disinfectant cotton 3 12; the surface of the sponge is provided with a waterproof coating; two rings 207 are fixedly connected to each sponge block 2018, and the rings 207 are made of alloy material; several elastic strips 208 are fixedly connected to each sponge block 2018, and the elastic strips 208 are slidably connected to the corresponding rings 207.
[0043] It also includes a support component; the support component is connected to the sponge block 2018; the support component includes an arc strip 209 and a linkage unit; four arc strips 209 are fixed to each sponge block 2018; the linkage unit is connected to the sponge block 2018, and the linkage unit is used to drive the arc strip 209 to tilt and move, so that the edge of the disinfectant cotton 12 is pressed tightly to the root of the bottle cap of the sample bottle 13 through the arc strip 209, so as to ensure that the root of the bottle cap of the sample bottle 13 is disinfected.
[0044] The linkage unit includes linkage block 1 2010 and linkage block 2 2011; each arc-shaped bar 209 is welded with a linkage block 1 2010, and linkage block 1 2010 is slidably connected to connecting plate 2 11; several square grooves 93 are opened on connecting plate 2 11, and the end of each linkage block 1 2010 is located in the corresponding square groove 93; several linkage blocks 2 2011 are welded on connecting plate 1 7, and inclined surfaces are opened on linkage blocks 2 2011. Linkage blocks 2 2011 cooperate with the corresponding linkage block 1 2010 to push the arc-shaped bar 209 to move obliquely downward.
[0045] To facilitate manual unscrewing of the cap of sample bottle 13, an anti-slip groove is provided on the cap. However, when the disinfectant cotton swab 12 is slipped onto the outside of the cap, it cannot make close contact with the anti-slip groove, thus preventing effective disinfection of the cap. Therefore, the inner diameter of the circular groove in the middle of the disinfectant cotton swab 12 is made smaller than the outer diameter of the cap. During the slipping process, the sponge block 2018 and the disinfectant cotton swab 12 expand under the pressure of the cap, pressing the cotton swab 12 firmly onto the cap. This ensures close contact and improves the disinfection effect. Simultaneously, when the sponge block 2018 is compressed, it also compresses the arc-shaped portion of the elastic strip 208. The bending arc of the elastic strip 208 is reduced, and both ends of the elastic strip 208 slide slightly towards the ring 207. At this time, the elastic strip 208 squeezes the sponge block 2018 through its elasticity, thereby pressing the inner wall of the circular groove of the disinfectant cotton 12 into the anti-slip groove of the sample bottle 13 cap. This ensures that the disinfectant cotton 12 disinfects the anti-slip groove of the sample bottle 13 cap and prevents it from falling off. When in use, the inner diameter of the circular groove in the middle of the disinfectant cotton 12 is smaller than the outer diameter of the sample bottle 13 cap, so that the disinfectant cotton 12 is pressed tightly on the sample bottle 13 cap. This helps to ensure that the disinfectant cotton 12 is in close contact with the sample bottle 13 cap, thereby improving the disinfection effect on the sample bottle 13 cap. At the same time, the elastic strip 208 presses the inner wall of the circular groove of the disinfectant cotton 12 into the anti-slip groove of the sample bottle 13 cap through its elasticity, ensuring that the disinfectant cotton 12 disinfects the anti-slip groove of the sample bottle 13 cap and prevents it from falling off.
[0046] Because the inner diameter of the circular groove in the middle of the disinfectant cotton swab 12 is smaller than the outer diameter of the sample bottle cap 13, the disinfectant cotton swab 12 experiences a relatively large upward frictional force during its downward movement to fit onto the outside of the sample bottle 13. This causes the lower edge of the circular groove in the disinfectant cotton swab 12 to deform upwards. Consequently, after the disinfectant cotton swab 12 moves to the base of the sample bottle cap 13, the lower edge of the circular groove in the disinfectant cotton swab 12 cannot contact the base of the sample bottle cap 13. Since the base of the sample bottle cap 13 is most prone to accumulating liquid impurities, when the connecting plate 2 11 moves downwards, its square groove 93 fits onto the outside of the linkage block 2 2011. The connecting plate 2 11 drives its parts to continue moving downwards, causing the end of the linkage block 1 2010 to contact the inclined surface of the linkage block 2 2011. As the linkage block 1 2010 continues to move downwards, the linkage block 2 2011 blocks and limits the linkage block 1 2010, forcing the linkage block 2 2011 to stop and limit the movement. The first linkage block 2010 moves towards the center of the third disinfectant cotton 12, causing the first linkage block 2010 to push the arc-shaped strip 209 diagonally downward. The arc-shaped strip 209 pushes the sponge block 2018 to move, thereby causing the sponge block 2018 to push the lower edge of the circular groove of the third disinfectant cotton 12 to move, so that the lower edge of the circular groove of the third disinfectant cotton 12 is in close contact with the root of the bottle cap of the sample bottle 13, to ensure disinfection treatment of the root of the bottle cap of the sample bottle 13. In use, the lower edge of the circular groove of the third disinfectant cotton 12 is pushed by the arc-shaped strip 209 to disinfect the root of the bottle cap of the sample bottle 13, avoiding the problem of incomplete cleaning caused by the upward deformation of the lower edge of the circular groove of the third disinfectant cotton 12. Furthermore, during the process of manually driving the second connecting plate 11 downward, the first linkage block 2010 and the second linkage block 2011 cooperate to provide power to the arc-shaped strip 209, eliminating the need for an electric drive component, which is ingenious.
[0047] Implementation Plan 3
[0048] Based on implementation plan 2, such as Figures 1-4 As shown, it also includes a fixing component; the fixing component is connected to the connecting plate three 202; the fixing component includes a screw 2012 and a nut 2013; four screws 2012 are welded to the connecting plate three 202, the screws 2012 are inserted into the corresponding connecting plate four 203, and the screws 2012 are made of alloy material; each screw 2012 is screwed with a nut 2013, and the nut 2013 is in contact with the corresponding connecting plate four 203.
[0049] It also includes a limit assembly; the limit assembly is connected to the housing 1; the limit assembly includes a limit block 1 2014, a connecting plate 5 2015, a spring 2016 and a limit block 2 2017; ten limit blocks 1 2014 are sealed and slidably connected to the housing 1; a connecting plate 5 2015 is provided on both sides of the housing 1, and the connecting plate 5 2015 is bolted to the corresponding limit block 1 2014; two springs 2016 are fixedly connected to each connecting plate 5 2015, and the springs 2016 are fixedly connected to the housing 1; a limit block 2 2017 is bolted to each connecting plate 3 202, and the connecting plate 3 202 is prevented from falling off the guide rail 201 by the cooperation of the limit block 2 2017 and the limit block 1 2014.
[0050] During the manual pulling out of connecting plate 3 202, connecting plate 3 202 drives the movement of limiting block 2 2017 until limiting block 2 2017 contacts limiting block 1 2014. Limiting block 1 2014 blocks and limits limiting block 2 2017, thus preventing connecting plate 3 202 from falling off the guide rail 201. After manually opening the box door 4, the front part of connecting plate 3 202 is pulled out from the box body 1, exposing sample bottle 13 on the outside of the box body 1, making it easier for manual handling of sample bottle 13. After prolonged use, protective parts 1 204 and 2 205 need to be cleaned and disinfected. At this time, manually pulling connecting plate 5 2015 causes connecting plate 5 2015 to drive the movement of limiting block 1 2014. 14. Movement stretches the spring 2016, causing the first limiting block 2014 to move away from the front of the second limiting block 2017, thus stopping the first limiting block 2014 from blocking the second limiting block 2017. The operator then pulls the third connecting plate 202 forward to remove it from the guide rail 201. After that, the operator unscrews the four nuts 2013 and removes the fourth connecting plate 203 from the screw 2012. Then, the first protective part 204 and the second protective part 205 are rinsed respectively. When in use, the operator only needs to pull the fifth connecting plate 2015 to remove the third connecting plate 202 from the box 1, and then rinse the first protective part 204 and the second protective part 205, which improves convenience.
[0051] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. A medical test sample storage device for easy access, comprising a box (1); at least four supports (2) are fixed on the box (1); at least two handles (3) are fixed on the box (1); characterized in that: The box (1) is rotatably connected with at least two cabinet doors (4); each cabinet door (4) is fixedly connected with at least two fixed plates (5), and the box (1) is connected with a receiving assembly for containing sample bottles (13); The receiving assembly comprises guide rails (201); the box (1) is fixedly connected with at least two guide rails (201); the inner side of the box (1) is provided with a connecting plate three (202) which is slidably connected with the corresponding guide rail (201); the connecting plate three (202) is connected with a connecting plate four (203) above; the connecting plate three (202) is fixedly connected with a plurality of protective pieces one (204) for accommodating the sample bottles (13); the connecting plate four (203) is fixedly connected with a plurality of protective pieces two (205); and the connecting plate four (203) is fixedly connected with at least two fixed blocks (206); The box (1) is fixedly connected with at least two L-shaped blocks one (6); all the L-shaped blocks one (6) are jointly inserted with a connecting plate one (7), and the connecting plate one (7) is connected with the connecting plate four (203) during disinfection; each connecting plate one (7) is provided with at least two through grooves one (91) for being inserted with the fixed blocks (206) to realize the positioning and cooperation of the connecting plate one (7) and the connecting plate four (203); a plurality of disinfecting cottons one (8) are detachably connected to the connecting plate one (7), and the disinfecting cottons one (8) are used for disinfecting the side wall of the sample bottle (13) during the insertion of the sample bottle (13) into the protective piece one (204); and all the disinfecting cottons one (8) are fixedly connected with each other by a cloth strip; A plurality of disinfecting cottons two (9) are detachably connected to the connecting plate one (7), and the disinfecting cottons two (9) are used for disinfecting the bottom end face of the sample bottle (13); and all the disinfecting cottons two (9) are fixedly connected with each other by a cloth strip; The box (1) is fixedly connected with at least two L-shaped blocks two (10); all the L-shaped blocks two (10) are jointly inserted with a connecting plate two (11); each connecting plate two (11) is provided with at least two through grooves two (92) for being inserted with the fixed blocks (206) to realize the positioning and cooperation of the connecting plate two (11) and the connecting plate four (203); and a plurality of disinfecting cottons three (12) are connected to the connecting plate two (11), and the disinfecting cottons three (12) are used for disinfecting the top of the sample bottle (13) during the connection of the connecting plate two (11) and the connecting plate four (203); and all the disinfecting cottons three (12) are fixedly connected with each other by a cloth strip.
2. The medical test sample storage device of claim 1, wherein: The surface of the box (1) is coated with an anticorrosive layer.
3. The medical test sample storage device of claim 1, wherein: The protective piece one (204) and the protective piece two (205) are both made of soft rubber material.
4. The medical test sample storage device of claim 1, wherein: The inner edges of the upper sides of the protective piece one (204) and the protective piece two (205) are both provided with chamfers.
5. The medical test sample storage device of claim 1, wherein: The auxiliary assembly is connected to the upper part, the auxiliary assembly comprises a ring (207), and the sponge block (2018) is bonded with the corresponding sterilization cotton three (12); a waterproof coating is arranged on the surface of the sponge block (2018); at least two rings (207) are fixed to each sponge block (2018); a plurality of elastic strips (208) are fixed to each sponge block (2018), and the elastic strips (208) are in sliding connection with the corresponding rings (207).
6. A medical test sample storage device for easy access according to claim 5, characterized in that: The supporting assembly is connected to the sponge block (2018), the supporting assembly comprises an arc-shaped strip (209), at least four arc-shaped strips (209) are fixed to each sponge block (2018), and the sponge block (2018) is connected with a linkage unit for driving the arc-shaped strips (209) to move obliquely.
7. A medical test sample storage device for easy access according to claim 6, characterized in that: The linkage unit comprises a linkage block one (2010), one linkage block one (2010) is fixed to each arc-shaped strip (209), and the linkage block one (2010) is in sliding connection with the connecting plate two (11); a plurality of square grooves (93) are formed in the connecting plate two (11), and the end of each linkage block one (2010) is located in the corresponding square groove (93); a plurality of linkage blocks two (2011) are fixed to the connecting plate one (7), the linkage block two (2011) is provided with an inclined surface, and the linkage block two (2011) is matched with the corresponding linkage block one (2010).
8. A medical test sample storage device for easy access according to claim 7, characterized in that: The fixing assembly is connected to the connecting plate three (202), the fixing assembly comprises a screw rod (2012), at least four screw rods (2012) are fixed to the connecting plate three (202), the screw rod (2012) is in plug connection with the corresponding connecting plate four (203), and a screw nut (2013) is screwed on each screw rod (2012).
9. A medical test sample storage device for easy access according to claim 8, characterized in that: The limiting assembly is connected to the box body (1), the limiting assembly comprises a limiting block one (2014), and a plurality of limiting block ones (2014) are in sealing sliding connection with the box body (1); one connecting plate five (2015) is arranged on each side of the box body (1) and is fixed with the corresponding limiting block one (2014); at least two springs (2016) are fixed to each connecting plate five (2015) and are fixed with the box body (1); and a limiting block two (2017) is fixed to each connecting plate three (202).
Citation Information
Patent Citations
Collecting and transferring box for medical examination samples
CN217199182U
Cotton block for disinfecting and scrap removing of ampoule bottle neck part and extracting case
CN107176373A
Detection kit containing device
CN117022886A