CN218121990U - Antibody detection tester with disinfection function - Google Patents

Antibody detection tester with disinfection function Download PDF

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Publication number
CN218121990U
CN218121990U CN202222143692.8U CN202222143692U CN218121990U CN 218121990 U CN218121990 U CN 218121990U CN 202222143692 U CN202222143692 U CN 202222143692U CN 218121990 U CN218121990 U CN 218121990U
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China
Prior art keywords
brush
disinfection
antibody detection
tester
rotatory
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Active
Application number
CN202222143692.8U
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Chinese (zh)
Inventor
吴斌
宫万格
石书敏
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Hangzhou Testsea Biotechnology Co ltd
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Hangzhou Testsea Biotechnology Co ltd
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Priority to CN202222143692.8U priority Critical patent/CN218121990U/en
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Abstract

The utility model relates to an antibody detection tester from area disinfection function, this scheme include the tester main part, are equipped with the touch-sensitive screen in this tester main part, still including the upset lid that is used for covering the touch-sensitive screen, and the upset is covered and is equipped with rotatory brush and is used for driving the rotatory driver of this rotatory brush, is equipped with the appearance chamber that is equipped with the disinfection washing liquid on the rotatory brush and is used for taking out the disinfection washing liquid appearance chamber to the first micropump of brushing of rotatory brush. This application can clean and disinfect effectively the touch-sensitive screen, reduces bacterial growing.

Description

Antibody detection tester with disinfection function
Technical Field
The utility model relates to an ELIASA, concretely relates to antibody detection tester from area disinfection function.
Background
The current enzyme-labeling instrument, also called an antibody detection tester, is widely used in the fields of clinical diagnosis in hospitals, immunopathology detection, microbial antibody detection, parasite diagnosis, hematopathy diagnosis, endocrine disorder determination, plant disease and insect pest research and the like. At present, most of antibody detection testers adopt the modern advanced embedded computer system, the data processing capacity is greatly improved, and the antibody detection testers have the excellent performances of accuracy, reliability, rapidness and stability. In addition, for convenience of operation, a capacitive touch screen is adopted for human-computer interaction operation. Therefore, the long-term use of the touch screen often causes a lot of invisible bacteria and dust to be accumulated on the touch screen, so that germs are easy to grow, and the sanitation is poor.
Therefore, it is highly desirable to design innovations based on the original antibody detection tester.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the above-mentioned problem that exists among the prior art, provide the antibody detection tester from taking disinfection function.
In order to realize the purpose of the utility model, the utility model adopts the following technical scheme: from antibody detection tester of taking disinfection function includes the tester main part, is equipped with the touch-sensitive screen in this tester main part, still including the upset lid that is used for covering the touch-sensitive screen, and the upset is covered and is equipped with rotatory brush and is used for driving the rotatory driver of this rotatory brush, is equipped with the appearance chamber that is equipped with the disinfection washing liquid on the rotatory brush and is used for taking out the miniature pump that holds the chamber to the brush overhead of rotatory brush with the disinfection washing liquid.
The working principle and the beneficial effects are as follows: 1. compared with the prior art, this application covers the touch-sensitive screen through overturning when the antibody detection tester does not use to can drive rotatory brush rotation through the driver, let the brush head of rotatory brush wash the touch-sensitive screen, take out the disinfection washing liquid with the micropump simultaneously and brush the head on, thereby realize the disinfection and wash the operation, not only can disinfect effectively cleanly, can also clear away the dust well. Because the use amount of general disinfection washing liquid is all less, and the touch-sensitive screen is installed on the tester main part in the embedding, itself will adopt sealed glue sealing connection department, consequently does not have the condition that the washing antiseptic solution can get into the tester main part inside, and the security can obtain guaranteeing.
Further, the driver drives the belt to drive the rotary brush to rotate through the gear transmission structure.
This setting can realize realizing turning to of driver output power with gear drive structure to more reasonable overall arrangement driver, reducible flip cover's thickness.
Furthermore, the gear transmission structure comprises a first bevel gear arranged at the output end of the driver and a second bevel gear meshed with the first bevel gear, a first belt pulley matched with the belt is arranged on the second bevel gear, the first belt pulley and the second bevel gear rotate coaxially, and a second belt pulley matched with the belt is arranged on the rotary brush.
The arrangement can realize the force output by the driver to be turned by utilizing the matching of common bevel gears, thereby conveniently driving the rotary brush to rotate. Preferably, the drive may be a conventional motor, such as a gear motor.
Furthermore, the rotary brush comprises a brush disc and a brush head arranged on the brush disc, the containing cavity and the micropump are both arranged in the brush disc, the brush disc is provided with a sealing cover which is detachably connected, and the disinfection cleaning liquid in the containing cavity is replaced or supplemented through the sealing cover.
The arrangement can ensure the cleaning effect by adopting the replaceable brush head, and the brush head is made of soft materials, so that the touch screen cannot be damaged.
Furthermore, the brush disc is provided with a liquid discharge pipeline communicated with the micro pump, and the liquid discharge pipeline is provided with a plurality of through holes for the disinfection cleaning liquid to flow out of the brush head.
Further, the rotary brush is detachably connected with the turnover cover. The rotary brush can be conveniently replaced and cleaned.
Furthermore, a polygonal jack is arranged on the rotary brush, and a polygonal shaft matched with the polygonal jack and a rotating shaft rotationally connected with the polygonal shaft are arranged on the turnover cover.
This setting, polygonal axle and pivot are fixed together, and pivot and polygonal axle can relative rotation, can only rotate relatively in the polygonal axle in being equivalent to the pivot, and mode such as polygonal axle accessible buckle or screw or magnetism are inhaled (for conventional technical means) and are inserted and realize the installation fixed to the rotatory brush in the polygonal jack like this for the rotatory brush can drive polygonal axle and pivot relative rotation motion, also can not drop from the pivot.
Furthermore, an ultraviolet germicidal lamp capable of emitting ultraviolet light towards the touch screen for continuous disinfection is arranged on the rotary brush.
The ultraviolet germicidal lamp is used for assisting in sterilization, and is not used as a main sterilization means, and a certain sterilization effect can be achieved through long-time irradiation.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic view of FIG. 1 when the cover is flipped over;
FIG. 3 is a schematic view of the construction of the flip cover;
FIG. 4 is a schematic illustration of the second bevel gear of FIG. 3 in positional relationship to the first pulley;
FIG. 5 is a schematic view of a structure of a rotary brush;
fig. 6 is a schematic view of a polygonal jack.
In the figure, 1, a tester main body; 2. a touch screen; 3. turning over the cover; 4. rotating the brush; 5. a driver; 6. a micro-pump; 7. a first bevel gear; 8. a second bevel gear; 9. a first pulley; 11. a second pulley; 12. a liquid discharge conduit; 31. a polygonal shaft; 32. a rotating shaft; 41. brushing a disc; 42. a brush head; 43. a sealing cover; 411. a cavity; 412. and a polygonal jack.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art all belong to the protection scope of the present invention.
It will be understood by those skilled in the art that in the disclosure of the present invention, the terms "longitudinal", "lateral", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate orientations or positional relationships that are based on those shown in the drawings, which are merely for convenience in describing the present invention and to simplify the description, and do not indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus the terms are not to be construed as limiting the invention.
As shown in fig. 1-2, the antibody detection tester with disinfection function includes a tester body 1, a touch screen 2 is arranged on the tester body 1, and the antibody detection tester further includes a flip cover 3 for covering the touch screen 2, a rotary brush 4 and a driver 5 for driving the rotary brush 4 to rotate are arranged on the flip cover 3, and a cavity 411 provided with disinfection cleaning liquid is arranged in the rotary brush 4, and a micro pump 6 for pumping the disinfection cleaning liquid out of the cavity 411 to a brush head 42 of the rotary brush 4 is arranged on the rotary brush 4.
As shown in fig. 3-4, the driver 5 drives the belt to drive the rotating brush 4 to rotate through the gear transmission structure, the gear transmission structure includes a first bevel gear 7 disposed at the output end of the driver 5 and a second bevel gear 8 engaged with the first bevel gear 7, a first belt pulley 9 engaged with the belt is disposed on the second bevel gear 8, the first belt pulley 9 and the second bevel gear 8 rotate coaxially, and a second belt pulley 11 engaged with the belt is disposed on the rotating brush 4. Therefore, the common bevel gear is utilized for matching, the force output by the driver 5 can be turned, so that the rotary brush 4 is conveniently driven to rotate, and the driver 5 can be more reasonably arranged. Preferably, the drive 5 may be a conventional motor, such as a reduction motor.
The belt may be a synchronous belt or a chain, and the pulley may be replaced by a sprocket.
As shown in fig. 5-6, the rotating brush 4 includes a brush disc 41 and a brush head 42 disposed on the brush disc 41, the cavity 411 and the micro pump 6 are both disposed in the brush disc 41, and the brush disc 41 is provided with a sealing cover 43 detachably connected thereto, so as to replace or supplement the disinfecting and cleaning solution in the cavity 411 through the sealing cover 43.
Preferably, the brush head 42 is replaceable and can be mounted on the brush disc 41 by conventional means such as plugging, snapping, clamping, etc., the brush head 42 is made of flexible material such as sponge, cloth, etc., and the micro-pump 6 is a commercially available product for discharging the disinfecting and cleaning solution onto the brush head 42 to achieve disinfecting and cleaning. The sealing cover 43 is fixed to the sealing cavity of the brush plate 41 by conventional snap or screw means.
In this embodiment the brush plate 41 is provided with a drain 12 communicating with the micro-pump 6, the drain 12 being provided with a plurality of through holes for the flow of sterilising cleaning fluid onto the brush head 42. This is a preferred way and other materials may be used instead of the drainage line 12, such as a sponge or the like which is permeable.
The rotating brush 4 and the flip cover 3 are detachably connected, preferably, a polygonal insertion hole 412 is formed in the rotating brush 4, and a polygonal shaft 31 engaged with the polygonal insertion hole 412 and a rotating shaft 32 rotatably connected to the polygonal shaft 31 are formed in the flip cover 3. The polygonal shaft 31 and the rotating shaft 32 are fixed together, and the rotating shaft 32 and the polygonal shaft 31 can rotate relatively, which is equivalent to that the rotating shaft 32 can only rotate relatively in the polygonal shaft 31 (for example, a limit convex edge is arranged on the rotating shaft 32), so that the polygonal shaft 31 can be inserted into the polygonal insertion hole 412 through a snap, a screw, a magnetic suction method (which is a conventional technical means) to fix the rotating brush 4, and the rotating brush 4 can drive the polygonal shaft 31 and the rotating shaft 32 to rotate relatively and can not fall off from the rotating shaft 32.
Of course, other configurations are possible, such as the second pulley 11 is mounted on the flip cover 3, and the rotating brush 4 only needs to be inserted and fixed on the second pulley 11 and can rotate simultaneously with the second pulley 11. The structure of the detachable connection of the rotating brush 4 and the flip cover 3 is not limited herein.
Preferably, the rotating brush 4 is provided with an ultraviolet germicidal lamp capable of emitting ultraviolet light toward the touch screen 2 for continuous disinfection. The purpose of the ultraviolet germicidal lamp is to assist sterilization, but not as a main germicidal means, a certain germicidal effect can be achieved by long-time irradiation.
The part of the utility model which is not described in detail is the prior art, so the utility model does not detail the part.
It is understood that the terms "a" and "an" should be interpreted as meaning that a number of one element or element is one in one embodiment, while a number of other elements is one in another embodiment, and the terms "a" and "an" should not be interpreted as limiting the number.
Although the terms of the tester main body 1, the touch screen 2, the flip cover 3, the rotary brush 4, the driver 5, the micro pump 6, the first bevel gear 7, the second bevel gear 8, the first pulley 9, the second pulley 11, the liquid discharge pipe 12, the polygonal shaft 31, the rotation shaft 32, the brush disk 41, the brush head 42, the sealing cover 43, the housing 411, the polygonal socket 412, etc. are used more herein, the possibility of using other terms is not excluded. These terms are used merely to more conveniently describe and explain the nature of the present invention; they are to be construed in a manner that is inconsistent with the spirit of the invention.
The present invention is not limited to the above-mentioned preferred embodiments, and any person can obtain other products in various forms without departing from the scope of the present invention, but any change in shape or structure is made, and all the technical solutions identical or similar to the present application fall within the protection scope of the present invention.

Claims (8)

1. From antibody detection tester of taking disinfection function, including the tester main part, be equipped with the touch-sensitive screen in this tester main part, its characterized in that still including being used for covering the upset lid of touch-sensitive screen, the upset is covered and is equipped with rotatory brush and is used for driving the rotatory driver of this rotatory brush, be equipped with the appearance chamber that is equipped with the disinfection washing liquid in the rotatory brush and be used for taking out the disinfection washing liquid hold the chamber extremely the overhead micropump of brush of rotatory brush.
2. The antibody detection tester with disinfection function of claim 1, wherein the driver drives the belt to drive the rotary brush to rotate through a gear transmission structure.
3. The antibody detection tester with disinfection function of claim 2, wherein the gear transmission structure comprises a first bevel gear arranged at the output end of the driver and a second bevel gear engaged with the first bevel gear, the second bevel gear is provided with a first belt pulley engaged with the belt, the first belt pulley and the second bevel gear rotate coaxially, and the rotating brush is provided with a second belt pulley engaged with the belt.
4. The antibody detection tester with disinfection function of claim 1, wherein the rotating brush comprises a brush disc and a brush head arranged on the brush disc, the chamber and the micropump are both arranged in the brush disc, the brush disc is provided with a sealing cover which is detachably connected, and the disinfection cleaning solution in the chamber is replaced or supplemented through the sealing cover.
5. The antibody detection tester with self-disinfection function as claimed in claim 4, wherein the brush disk is provided with a liquid discharge pipeline communicated with the micro-pump, and the liquid discharge pipeline is provided with a plurality of through holes for the disinfection cleaning liquid to flow out to the brush head.
6. The antibody detection tester with disinfection capability of claim 1, wherein the rotating brush is detachably connected to the flip cover.
7. The antibody detection tester with disinfection function of claim 6, wherein the rotating brush is provided with a polygonal insertion hole, and the flip cover is provided with a polygonal shaft matched with the polygonal insertion hole and a rotating shaft rotationally connected with the polygonal shaft.
8. The antibody detection tester with disinfection function of any one of claims 1-7, wherein the rotating brush is provided with an ultraviolet germicidal lamp capable of emitting ultraviolet light towards the touch screen for continuous disinfection.
CN202222143692.8U 2022-08-15 2022-08-15 Antibody detection tester with disinfection function Active CN218121990U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222143692.8U CN218121990U (en) 2022-08-15 2022-08-15 Antibody detection tester with disinfection function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222143692.8U CN218121990U (en) 2022-08-15 2022-08-15 Antibody detection tester with disinfection function

Publications (1)

Publication Number Publication Date
CN218121990U true CN218121990U (en) 2022-12-23

Family

ID=84524689

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222143692.8U Active CN218121990U (en) 2022-08-15 2022-08-15 Antibody detection tester with disinfection function

Country Status (1)

Country Link
CN (1) CN218121990U (en)

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