CN219822160U - Evaporation preventing structure of kit - Google Patents

Evaporation preventing structure of kit Download PDF

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Publication number
CN219822160U
CN219822160U CN202320917753.3U CN202320917753U CN219822160U CN 219822160 U CN219822160 U CN 219822160U CN 202320917753 U CN202320917753 U CN 202320917753U CN 219822160 U CN219822160 U CN 219822160U
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China
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groove
reagent
box
spring
pivot
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CN202320917753.3U
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Chinese (zh)
Inventor
贾群
丁永进
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Anhui Wanli Biotechnology Co ltd
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Anhui Wanli Biotechnology Co ltd
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Priority to CN202320917753.3U priority Critical patent/CN219822160U/en
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Abstract

The utility model relates to the technical field of medical instruments and discloses a reagent box evaporation prevention structure, which comprises a reagent box mechanism, wherein the reagent box mechanism comprises a reagent box body and a rubber box cover, the reagent box body is connected with the rubber box cover in a threaded manner, the reagent box placing mechanism comprises a rotating shaft groove, the bottom of the reagent box body is provided with the rotating shaft groove, the rotating shaft groove is rotationally connected with a rotating shaft, the rotating shaft is fixedly connected with the reagent box placing body, the reagent box placing body is provided with a plurality of test tube grooves, the rubber box cover is provided with a rotating shaft hole and a reagent taking opening, a sealing film on a reagent tube arranged in the test tube groove is punctured by a liquid sucking needle through the reagent taking opening to suck a reagent, and the reagent tube is rotated into the reagent tube through the rotating shaft to enable the reagent tube to break the film to be far away from the reagent taking opening.

Description

Evaporation preventing structure of kit
Technical Field
The utility model relates to the technical field of medical instruments, in particular to an anti-evaporation structure of a kit.
Background
The kit is a box for containing chemical reagents for detecting chemical components, drug residues, virus types and the like, is commonly used in hospitals and pharmaceutical enterprises, and when a reagent is taken, the kit needs to be opened, a liquid suction needle is inserted into a reagent tube to suck the reagent, the residual reagent in the reagent tube is easy to pollute and evaporate in the detection process, and detection abnormality is caused when the kit is used again, so that the kit evaporation prevention structure is needed to solve the problems.
Disclosure of Invention
In order to overcome the technical problems described above, the present utility model aims to provide an anti-evaporation structure for a kit, so as to solve the problems that in the above-mentioned background art, when a reagent is taken, the kit needs to be opened, a liquid suction needle is inserted into a reagent tube to suck the reagent, and the residual reagent in the reagent tube is easy to pollute and evaporate during the detection process, and detection abnormality is caused when the kit is reused.
The utility model provides the following technical scheme: the utility model provides a reagent box prevents evaporating structure, includes reagent box mechanism, reagent box mechanism includes reagent box body and rubber lid, threaded connection has the rubber lid on the reagent box body, places the box mechanism, place the box mechanism and include the pivot groove, the pivot groove has been seted up to the bottom of reagent box body, rotate in the pivot groove and be connected with the pivot, fixedly connected with places the box body in the pivot, set up test tube groove on the placing box body, and the quantity of test tube groove is a plurality of, set up pivot hole and get the agent mouth on the rubber lid, the imbibition needle is through getting the agent mouth and stab the sealing membrane of installing on the reagent tube in the test tube groove and absorb the reagent, absorb and end and rotate the reagent tube that shifts into the messenger rupture membrane through the pivot and keep away from getting the agent mouth, and the rubber lid can prevent that it from evaporating reagent and leading to reagent pollution through rupture department, and this method prevents reagent evaporation through simple structure, not only low in production cost, and be convenient for operate moreover a plurality of test tube grooves make the device can work in succession, improved device's work efficiency and job stabilization nature.
Further, the bottom of pivot has been seted up and has been rotated the ball groove, rotate on the ball groove and be connected with the ball, rotate the ball and rotate on the pivot groove, reduce the frictional force in pivot and pivot groove, conveniently rotate the position of adjustment test tube groove to the pivot, improved the work efficiency of device.
Further, set up the spring case groove in the pivot, fixedly connected with spring case in the spring case groove, set up the spring groove in the spring case, fixedly connected with spring on the spring groove, fixedly connected with presses the pearl on the spring, swing joint has the pearl groove of pressing on the pearl, and the quantity of pressing the pearl groove is a plurality of, presses the pearl groove quantity the same with test tube groove, makes every test tube groove all can be rotated when pressing pearl and pressing the pearl groove to make the pivot rotate and get the bottom of agent mouth, conveniently gets the work of reagent, also prevents that the pivot from rocking and leads to the device to can not exert the evaporation prevention effect, has improved the work efficiency and the job stabilization of device.
Further, the spring groove is provided with a rotating rod groove, the rotating rod groove is internally connected with a rotating rod in a threaded manner, a worker can conveniently rotate the rotating shaft through the rotating rod, so that the beads can be conveniently clamped into the other bead pressing groove to adjust the position of the test tube groove, and the flexible usability of the device is improved.
Further, fixedly connected with rubber pad on the test tube groove, when the transportation and rotate the pivot, reagent pipe rocks in the test tube groove and causes reagent pipe damage and reagent unrestrained easily, makes the firm installation of reagent pipe in the test tube groove through the rubber pad, has improved the job stabilization nature of device.
Further, the reagent taking port is movably connected with a rubber plug, when the reagent box body is not used, the reagent taking port is blocked through the rubber plug, so that the reagent is prevented from evaporating from the reagent taking port, dust and bacteria are prevented from entering the reagent box body to cause pollution of the reagent, and the working efficiency of the device is improved.
The utility model has the technical effects and advantages that:
1. according to the utility model, the rotating shaft groove, the rotating shaft, the placing box body, the test tube groove, the rotating shaft hole and the reagent taking opening are formed, the reagent sucking needle punctures the sealing film on the reagent tube arranged in the test tube groove through the reagent taking opening to suck the reagent, the reagent tube is rotated through the rotating shaft after the suction is finished to enable the reagent tube to be far away from the reagent taking opening, the mouth of the reagent tube can be temporarily blocked by the rubber box cover to prevent the reagent tube from evaporating the reagent through the membrane breaking part and causing reagent pollution, the method is simple in structure to prevent the reagent from evaporating, the production cost is low, the operation and the use are convenient, and the device can continuously work through the plurality of test tube grooves, so that the working efficiency and the working stability of the device are improved.
2. According to the utility model, the spring box groove, the spring box, the spring groove, the spring, the bead pressing groove and the bead pressing groove are arranged, the number of the bead pressing grooves is the same as that of the test tube grooves, and each test tube groove can be rotated to the bottom of the reagent taking port when the rotating shaft rotates by the bead pressing groove and the bead pressing groove, so that reagent taking is convenient, the phenomenon that the device cannot play an anti-evaporation role due to shaking of the rotating shaft is prevented, and the working efficiency and the working stability of the device are improved.
Drawings
Fig. 1 is a front perspective view of the overall structure of the present utility model.
Fig. 2 is an expanded schematic view of the overall structure of the present utility model.
Fig. 3 is a schematic view of the structure of the placement case of the present utility model.
Fig. 4 is a schematic diagram of a structure of a spindle slot according to the present utility model.
FIG. 5 is a schematic cross-sectional view of the spring case structure of the present utility model.
The reference numerals are: 100. a kit mechanism; 110. a kit body; 111. a rubber box cover; 200. a box placing mechanism; 210. a rotating shaft groove; 211. a rotating shaft; 212. placing a box body; 213. a test tube groove; 214. a rotation shaft hole; 215. a reagent taking port; 216. a rubber pad; 217. rotating the ball groove; 218. a rotating ball; 219. a spring case groove; 220. a spring case; 221. a spring groove; 222. a spring; 223. pressing the beads; 224. a bead pressing groove; 225. a rotating rod groove; 226. a rotating rod; 227. a rubber stopper.
Detailed Description
The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings.
Embodiment one:
referring to fig. 1, 2, 3, 4 and 5 in the drawings of the specification, the utility model provides a reagent box evaporation preventing structure, which comprises a reagent box mechanism 100, the reagent box mechanism 100 comprises a reagent box body 110 and a rubber box cover 111, the reagent box body 110 is connected with the rubber box cover 111 in a threaded manner, the holding box mechanism 200 comprises a rotating shaft groove 210, a rotating shaft groove 210 is formed in the bottom of the reagent box body 110, the rotating shaft groove 210 is connected with a rotating shaft 211 in a rotating manner, the rotating shaft 211 is fixedly connected with a holding box body 212, test tube grooves 213 are formed in the holding box body 212, a plurality of test tube grooves 213 are formed in the holding box body, a rotating ball groove 217 is formed in the bottom of the rotating shaft 211, a rotating ball 218 is connected with the rotating ball groove 217 in a rotating manner, a spring box 219 is formed in the rotating shaft 211, a spring box 220 is fixedly connected with the spring groove 221, a pressing bead 223 is fixedly connected with the spring groove 222, a plurality of pressing beads 223 are movably connected with the pressing groove 223, and the pressing beads 224 are formed in the pressing groove 224.
Working principle: the reagent tubes are arranged in the test tube grooves 213, the plurality of test tube grooves 213 enable the reagent box body 110 to contain more reagent tubes, the reagent box body 110 continuously works, the liquid sucking needle punctures the sealing film on the reagent tubes to suck reagents, after the reagent tubes are sucked, the rotating shaft 211 is used for keeping the reagent tubes with broken films away from the reagent taking opening 215, the rotating ball 218 is rotated on the rotating shaft groove 210 to enable the rotating shaft 211 to be labor-saving and convenient, the spring box groove 219 presses the spring 222 to retract, the pressing beads 223 are enabled to leave the pressing bead groove 224 and then be clamped into the other pressing bead groove 224, the next reagent tube arranged in the test tube groove 213 is enabled to be rotated below the reagent taking opening 215, reagent evaporation of the reagent tubes with broken films is prevented, the reagent tubes with broken films are rotated to continuously suck reagents, and the rotating shaft 211 is rotated to suck the next reagent tubes after the reagent tubes are sucked.
Embodiment two:
referring to fig. 1 and 2 of the drawings, the second embodiment differs from the first embodiment in that: the spring groove 221 is provided with a rotating rod groove 225, the rotating rod groove 225 is internally connected with a rotating rod 226 in a threaded manner, the test tube groove 213 is fixedly connected with a rubber pad 216, and the reagent taking port 215 is movably connected with a rubber plug 227.
Working principle: on rotating the pivot 211, install the bull stick 226 and conveniently rotate the pivot 211 on rotating the pole groove 225, rubber pad 216 makes the reagent pipe of installing in test tube groove 213 firm, prevents that pivot 211 from making the reagent pipe collide and reagent unrestrained when rotating, after the work is accomplished, blocks up getting agent mouth 215 with rubber stopper 227, prevents that reagent from getting agent mouth 215 evaporation and dust and bacterium entering the interior contaminated reagent of kit body 110.

Claims (6)

1. The utility model provides a kit prevents evaporating structure, includes kit mechanism (100), kit mechanism (100) include kit body (110) and rubber lid (111), threaded connection has rubber lid (111), its characterized in that on kit body (110):
place box mechanism (200), place box mechanism (200) including pivot groove (210), pivot groove (210) have been seted up to the bottom of kit body (110), rotate on pivot groove (210) and be connected with pivot (211), fixedly connected with places box body (212) in pivot (211), set up test tube groove (213) on placing box body (212), and test tube groove (213) quantity is a plurality of, set up pivot hole (214) and get agent mouth (215) on rubber lid (111).
2. The evaporation prevention structure of claim 1, wherein: a rotating ball groove (217) is formed in the bottom of the rotating shaft (211), and a rotating ball (218) is connected to the rotating ball groove (217) in a rotating mode.
3. The evaporation prevention structure of claim 1, wherein: the spring box groove (219) has been seted up on pivot (211), fixedly connected with spring box (220) in spring box groove (219), set up spring groove (221) in spring box (220), fixedly connected with spring (222) on spring groove (221), fixedly connected with presses pearl (223) on spring (222), swing joint has pressure pearl groove (224) on pressing pearl (223), and the quantity in pressure pearl groove (224) is a plurality of.
4. A kit evaporation preventing structure according to claim 3, wherein: the spring groove (221) is provided with a rotating rod groove (225), and the rotating rod groove (225) is internally connected with a rotating rod (226) through threads.
5. The evaporation prevention structure of claim 1, wherein: and a rubber pad (216) is fixedly connected to the test tube groove (213).
6. The evaporation prevention structure of claim 1, wherein: the agent taking port (215) is movably connected with a rubber plug (227).
CN202320917753.3U 2023-04-23 2023-04-23 Evaporation preventing structure of kit Active CN219822160U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320917753.3U CN219822160U (en) 2023-04-23 2023-04-23 Evaporation preventing structure of kit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320917753.3U CN219822160U (en) 2023-04-23 2023-04-23 Evaporation preventing structure of kit

Publications (1)

Publication Number Publication Date
CN219822160U true CN219822160U (en) 2023-10-13

Family

ID=88251934

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320917753.3U Active CN219822160U (en) 2023-04-23 2023-04-23 Evaporation preventing structure of kit

Country Status (1)

Country Link
CN (1) CN219822160U (en)

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