CN213933606U - Detection device and detection kit - Google Patents

Detection device and detection kit Download PDF

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Publication number
CN213933606U
CN213933606U CN202121518800.4U CN202121518800U CN213933606U CN 213933606 U CN213933606 U CN 213933606U CN 202121518800 U CN202121518800 U CN 202121518800U CN 213933606 U CN213933606 U CN 213933606U
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China
Prior art keywords
detecting
detection
packaging box
rotation
motor rotor
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CN202121518800.4U
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Chinese (zh)
Inventor
董昭贵
熊正
潘丰阳
杜明艺
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Guangzhou Wondfo Biotech Co Ltd
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Guangzhou Wondfo Biotech Co Ltd
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Priority to CN202121518800.4U priority Critical patent/CN213933606U/en
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Abstract

The utility model belongs to the sample detection field discloses a detection device and detection external member, and wherein detection device is including examining test table and packing carton, examine the test table and set up the detection groove of undercut, it still is provided with card portion of holding to examine test table, it holds the hole to be provided with the card on the packing carton, through card portion of holding with card hole cooperation is held, is used for accomplishing examine test table with the connection of packing carton. The operation steps are reduced, and the movement loss of the detection article is also avoided.

Description

Detection device and detection kit
Technical Field
The utility model belongs to the sample detection field, especially a detection device and detection external member.
Background
The sample detection is widely used in daily life, such as detection of pesticide residue in food, detection of medical samples, and detection steps generally include collecting a sample to be detected, then making into a sample liquid to be detected, and finally performing detection. For example, the method can be used for detecting infectious diseases of respiratory tracts by adopting a colloidal gold immunoassay method, and a colloidal gold immunoassay reagent box and a special eluent placing bottle are required. During detection, a sample is collected by using a sample collecting device; then opening the placing bottle, placing the sample into the placing bottle, closing the placing bottle, shaking, and eluting the sample; then taking out the colloidal gold immunoassay reagent card box, placing the card box on a plane, opening the placing bottle again, taking out the eluent containing the sample, dripping the eluent on the card box, and then closing the placing bottle; and finally, waiting for the testing time, and checking the detection result of the colloidal gold immunoassay reagent card box. This process requires multiple openings and closings of the bottle, resulting in a complex operation. Moreover, the placing bottle for placing the eluent is not fixed, and the weight is light, so that the eluent is easy to move and lose.
At present, the colloidal gold immunoassay product can be provided for professional medical detection personnel to quickly detect and screen diseases, and can also be provided for household self-inspection of common people due to the rapidity of detection and considering the requirement of large-area screening of infectious diseases such as some respiratory infectious diseases. Therefore, the convenience of product operation and the reduction of detection cost are problems which need to be solved urgently.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to improve prior art's shortcoming, provide a detection device and detect the external member, reduce operating procedure, also avoided the removal that detects the articles for use to lose.
The technical scheme is as follows:
the detection device comprises a detection table and a packaging box, wherein a detection groove which is sunken downwards is formed in the detection table, a clamping part is further arranged on the detection table, a clamping hole is formed in the packaging box, and the clamping part is matched with the clamping hole and used for completing connection of the detection table and the packaging box.
In one embodiment, the retaining portion includes an outwardly projecting attachment post that extends into the retaining aperture.
In one embodiment, the tail end of the connecting column is provided with a convex structure to form a hook, and the hook is clamped in the clamping hole.
In one embodiment, the packaging box is provided with a tear mark, and the holding hole is formed by tearing along the tear mark.
In one embodiment, the detection table comprises an operation side and a support side, the operation side and the support side are arranged up and down, a height difference exists between the operation side and the support side, the detection groove is formed in the operation side, and a bearing position is further arranged on the operation side of the detection table and extends to the detection groove.
In one embodiment, the packaging box is provided with a supporting surface and a side surface, and the clamping hole is arranged between the supporting surface and the side surface of the packaging box; the clamping part is arranged on the side face of the detection table, and the bottom of the clamping part is flush with the supporting part of the supporting side.
In one embodiment, the inner surface of the detection groove is provided with a convex part, and the convex part is arranged on the bottom and/or the side wall of the detection groove.
In one embodiment, the receiving position comprises a receiving plane, and the receiving plane is arranged at an angle of 0-80 degrees with the upper surface of the operation side.
In one embodiment, the operating side is located on the side of the receiving position away from the detection groove, and a recessed position is further arranged and penetrates through the side surface of the detection table.
The detection kit comprises a sampler, an eluent, detection test paper and the detection device; the sampler, the eluent and the detection platform are all arranged in the packaging box.
The utility model provides a technical scheme has following advantage and effect:
examine time measuring, will examine test table and detect the packing carton and take out, then utilize the card that the portion of holding that sets up on examining test table inserts the card that sets up on the packing carton and hold the hole, both accomplish to connect, owing to examine test table texture lighter, take place to remove easily, so will examine test table and packing carton and connect integratively, packing carton this moment is because great, so be difficult for removing, also difficult by the blowing, consequently examine time measuring can effectively avoid examining test table and lose, the condition of turning on one's side takes place. Connecting a detection table to a packaging box, then placing eluent for detection into the detection table, immediately collecting a sample through a sampler, and then extending into a detection groove for elution; and finally, extending the sample adding side of the detection test paper into a detection groove, dipping the eluent, and waiting for a detection result.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and, together with the description, serve to explain the principles, principles and effects of the invention.
Unless otherwise specified or defined, the same reference numerals in different figures refer to the same or similar features, and different reference numerals may be used for the same or similar features.
FIG. 1 is a schematic view of a matching structure of a detection table and a packing box according to an embodiment of the present invention;
FIG. 2 is a schematic view of a cross-sectional structure of the inspection table and the packaging box according to an embodiment of the present invention;
FIG. 3 is a schematic view of a three-dimensional structure of the packing box according to the embodiment of the present invention;
fig. 4 is a schematic perspective view of an inspection table according to an embodiment of the present invention;
fig. 5 is a schematic view of a main view structure of an inspection table according to an embodiment of the present invention.
Description of reference numerals:
10. a detection table; 11. a chucking section; 111. connecting columns; 12. an operating side; 13. a support side; 14. a detection tank; 141. a boss portion; 15. carrying out carrying position; 151. carrying a plane; 16. a recessed position; 20. packaging boxes; 21. a chucking hole; 22. tearing; 30. and (5) detecting test paper.
Detailed Description
In order to facilitate an understanding of the invention, specific embodiments thereof will be described in more detail below with reference to the accompanying drawings.
Unless specifically stated or otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. In the case of combining the technical solution of the present invention with realistic scenarios, all technical and scientific terms used herein may also have meanings corresponding to the objects of realizing the technical solution of the present invention.
As used herein, unless otherwise specified or defined, "first" and "second" … are used merely for name differentiation and do not denote any particular quantity or order.
As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items, unless specified or otherwise defined.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly secured to the other element or intervening elements may also be present; when an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present; when an element is referred to as being "mounted on" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "on" another element, it can be directly on the other element or intervening elements may also be present.
The detection kit comprises a sampler, an eluent, a detection test paper 30 and the detection device; the sampler, the eluent and the detection platform are all arranged in the packaging box. The sampler is a swab, and the sampler is taken out when detection is needed as an integral package.
As shown in fig. 1 and 2, the detecting device includes a detecting table 10 and a packing box 20, a detecting groove 14 recessed downward is formed on the detecting table 10, a holding portion 11 is further provided on the detecting table 10, a holding hole 21 is provided on the packing box 20, and the detecting table 10 and the packing box 20 are connected by the cooperation of the holding portion 11 and the holding hole 21.
During detection, the detection table 10 and the detection packaging box 20 are taken out, then the clamping part 11 arranged on the detection table 10 is inserted into the clamping hole 21 arranged on the packaging box 20, the detection table 10 and the packaging box 20 are connected, and the detection table 10 is light in texture and easy to move, so that the detection table 10 and the packaging box 20 are connected into a whole, and the packaging box 20 at the moment is not easy to move due to being large, and is not easy to be blown over by wind, so that the detection table 10 can be effectively prevented from being lost during detection, and the rollover situation can be avoided. After the detection table 10 is connected with the packaging box 20, the eluent for detection is placed into the detection table 10, and then the sample is collected by a sampler and then is stretched into the detection groove 14 for elution; and finally, extending the sample adding side of the detection test paper 30 into the detection groove 14, dipping the eluent, and waiting for a detection result.
As shown in fig. 2 to 5, the catch 11 includes an outwardly convex connecting post 111, and the connecting post 111 protrudes into the catch hole 21. Specifically, the end of the connecting column 111 is provided with a convex structure to form a hook, and the hook is clamped in the clamping hole 21. The convex structure of the connecting column 111 is clamped with the clamping hole 21, and when the convex structure of the connecting column 111 extends into the clamping hole 21, the convex structure of the connecting column 111 is prevented from being blocked, the detection platform 10 is placed immediately, and the convex structure of the connecting column 111 and the clamping hole 21 are clamped to complete the connection.
As shown in fig. 3, the packing box 20 is provided with a tear 22, and the holding hole 21 is formed by tearing along the tear 22. If the retaining hole 21 is directly opened, impurities are easily mixed in the retaining hole 21 during transportation, which affects the sale of products, and the products inside the packing box 20 are leaked due to the exposure of the retaining hole 21, especially small parts such as a sampler, a test paper 30 and an eluent. The exposed catching hole 21 also affects the aesthetic appearance of the packing box. Therefore, the tear mark 22 is provided here, and the holding hole 21 is formed by tearing a part of the packing box 20 through the tear mark 22, so that the problem that the holding hole 21 is exposed is solved. Moreover, a plurality of tear marks 22 can be arranged, and different tear marks 22 can be torn according to the use requirements of users to form different clamping holes 21. The tear 22 is provided by a plurality of small holes.
As shown in fig. 4 and 5, the inspection station 10 includes an operation side 12 and a support side 13, the operation side 12 and the support side 13 are disposed up and down, a height difference exists between the operation side 12 and the support side 13, the inspection slot 14 is opened on the operation side 12, the operation side 12 of the inspection station 10 is further provided with a receiving position 15, and the receiving position 15 extends to the inspection slot 14. The operation side 12 is an upper surface of the test platform 10 in the present embodiment, and a concave test slot 14 is formed on the upper surface; the supporting side 13 may be the bottom of the test slot 14, or the outer edge of the test platform 10, i.e. the bottom of the test platform 10, for supporting. The height difference between the operation side 12 and the support side 13 is at least larger than the depth dimension of the detection slot 14. The receiving position 15 is configured to receive the test paper 30, the test paper 30 is placed on the receiving position 15 during testing, and the receiving position 15 is communicated with the testing groove 14, so that a part of the test paper 30 can extend into the testing groove 14.
The receiving position 15 includes a receiving plane 151, and the receiving plane 151 and the upper surface of the operation side 12 are arranged at an angle of 0 to 80 degrees. The receiving plane 151 or an extension line thereof extends below the detection slot 14. The bearing surface is used for placing the detection test paper 30, and the detection test paper 30 is in a strip shape, can be attached to the bearing plane 151 for placing, and is used for reading and avoiding the random movement of the detection test paper 30. Specifically, the receiving plane 151 and the upper surface of the operation side 12 may be parallel or inclined, that is, the receiving plane 151 and the upper surface of the operation side 12 may be arranged at 0 to 80 degrees. The preferred angle is 15 to 25 degrees, with the specific angle of this embodiment being 18 degrees.
When the test paper is parallel, the receiving plane 151 penetrates through the detection tank 14, but is higher than the highest liquid level of the detection tank 14 after the eluent is placed, so that the eluent is prevented from entering the receiving plane 151, and the whole receiving plane 151 is covered, so that the sample washing of the test paper 30 is caused, and the detection result is influenced, in this case, after the test paper 30 is inserted into the detection tank 14, the eluent is dipped, and then the test paper 30 is obliquely placed into the receiving plane 151. When the receiving plane 151 is inclined, the bottom point of the receiving plane 151 or the extending surface of the receiving plane 151 is lower than the highest liquid level of the detection tank 14 after the eluent is placed in the receiving plane 151, so that the sample adding end of the detection test paper 30 can be directly inserted into the detection tank 14 after the detection test paper 30 is placed in the receiving plane 151, and the eluent is dipped and the detection result is left to stand.
The packing box 20 is provided with a supporting surface and a side surface, the clamping hole 21 is arranged between the supporting surface and the side surface of the packing box 20, and the supporting surface is the surface of the supporting side 13; the clamping part 11 is arranged at the side of the detection table 10, and the first is that the bottom of the clamping part 11 is flush with the supporting part of the supporting side 13, the bottom of the clamping part 11 is equivalent to a part of the supporting part as the supporting side 13, and the gravity center of the clamping part 11 is also lowered, so that the stable effect is achieved; the second arrangement avoids the situation of the first arrangement that causes the support side 13 to be unbalanced, in the same way, in which the bottom of the second retaining portion 11 is close to the plane of the support portion of the support side 13, where the approach is opposite, i.e., closer to the support side 13 than to the operating side 12.
As shown in FIG. 4, the inner surface of the detection slot 14 is provided with a protrusion 141, and the protrusion 141 is disposed on the bottom and/or the side wall of the detection slot 14. When the sample is eluted, the sample is directly soaked in the eluent, the elution effect is not ideal, and the sampler is scraped on the convex part 141 through the arrangement of the convex part 141, so that the sample is scraped, and the elution effect is obviously improved. In the present embodiment, the protrusion 141 is disposed on the sidewall of the detection slot 14.
As shown in fig. 4 and 5, the operation side 12 is further provided with a recessed position 16 on a side of the receiving position 15 away from the detection slot 14, and the recessed position 16 passes through a side surface of the detection table 10. When the test paper 30 needs to be taken out or put in, the test paper 30 is held by hand and inserted into the bearing plane 151, the concave position 16 can just avoid fingers, and certainly, when the test paper 30 is taken out, the bottom of the tail end of the test paper 30 is not blocked, so that the fingers can conveniently stretch in and the test paper 30 can be taken out.
The detection table 10 is processed in a plastic suction mode during processing, the processing speed is high, the cost is low, and particularly for mass production, the cost can be greatly saved.
When the drawing description is quoted, the new characteristics are explained; in order to avoid that repeated reference to the drawings results in an insufficiently concise description, the drawings are not referred to one by one in the case of clear description of the already described features.
The above embodiments are intended to be illustrative, and should not be construed as limiting the scope of the invention, and the technical solutions, objects and effects of the present invention are described in full herein.
The above examples are not intended to be exhaustive list of the present invention, and there may be many other embodiments not listed. Any replacement and improvement made on the basis of not violating the conception of the utility model belong to the protection scope of the utility model.

Claims (10)

1. The detection device is characterized by comprising a detection table and a packaging box, wherein the detection table is provided with a detection groove which is sunken downwards, the detection table is further provided with a clamping part, the packaging box is provided with a clamping hole, and the clamping part is matched with the clamping hole and used for completing the connection of the detection table and the packaging box.
2. The detecting device for detecting the rotation of a motor rotor as claimed in claim 1, wherein the holding part comprises a connecting column which protrudes outwards and extends into the holding hole.
3. The detecting device for detecting the rotation of a motor rotor as claimed in claim 2, wherein the tail end of the connecting column is provided with a convex structure forming a hook which is clamped in the clamping hole.
4. The detecting device for detecting the rotation of a motor rotor as claimed in claim 1, wherein the packaging box is provided with a tear mark, and the holding hole is formed by tearing along the tear mark.
5. The detecting device for detecting the rotation of a motor rotor according to any one of claims 1 to 4, wherein the detecting platform comprises an operating side and a supporting side, the operating side and the supporting side are arranged up and down, a height difference exists between the operating side and the supporting side, the detecting groove is formed on the operating side, and the operating side of the detecting platform is further provided with a receiving position which extends to the detecting groove.
6. The inspection device of claim 5, wherein the package has a support surface and a side surface, and the retaining hole is opened between the support surface and the side surface of the package; the clamping part is arranged on the side face of the detection table, and the bottom of the clamping part is flush with the supporting part of the supporting side.
7. The detecting device according to claim 6, wherein the inner surface of the detecting tank is provided with a convex portion, and the convex portion is provided on the bottom and/or the side wall of the detecting tank.
8. The detecting device for detecting the rotation of a motor rotor as claimed in claim 6, wherein the receiving position comprises a receiving plane, and the receiving plane is arranged at an angle of 0-80 degrees with the upper surface of the operating side.
9. The detecting device for detecting the rotation of a motor rotor as claimed in claim 6, wherein the operating side is at the side of the receiving position far away from the detecting slot, and is further provided with a recessed position which passes through the side surface of the detecting platform.
10. A test kit comprising a sampler, an eluent, a test strip and the test device of claim 1; the sampler, the eluent and the detection platform are all arranged in the packaging box.
CN202121518800.4U 2021-07-06 2021-07-06 Detection device and detection kit Active CN213933606U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121518800.4U CN213933606U (en) 2021-07-06 2021-07-06 Detection device and detection kit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121518800.4U CN213933606U (en) 2021-07-06 2021-07-06 Detection device and detection kit

Publications (1)

Publication Number Publication Date
CN213933606U true CN213933606U (en) 2021-08-10

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ID=77159430

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121518800.4U Active CN213933606U (en) 2021-07-06 2021-07-06 Detection device and detection kit

Country Status (1)

Country Link
CN (1) CN213933606U (en)

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