CN212476734U - Special inoculation track structure of culture medium - Google Patents

Special inoculation track structure of culture medium Download PDF

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Publication number
CN212476734U
CN212476734U CN202020802422.1U CN202020802422U CN212476734U CN 212476734 U CN212476734 U CN 212476734U CN 202020802422 U CN202020802422 U CN 202020802422U CN 212476734 U CN212476734 U CN 212476734U
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mounting
axle
culture dish
dish body
rotating
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CN202020802422.1U
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Chinese (zh)
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王�锋
王映田
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Shandong Yunluhe Biotechnology Co ltd
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Shandong Yunluhe Biotechnology Co ltd
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Abstract

The utility model discloses a special inoculation orbit structure of culture medium, including mounting panel, sterilizer, transfering loop motion subassembly and culture dish body motion subassembly, culture dish body motion subassembly is including setting up the erection column in the mounting panel bottom, the erection column is total two sets of, connects through linear motion mechanism between the bottom of two sets of erection columns, the adaptor has been cup jointed on the linear motion mechanism, the upper end of adaptor is equipped with rotary mechanism, be equipped with the guided way that runs through both sides about it in the top that lies in culture dish body motion subassembly on the mounting panel, the last center of rotation axle that is equipped with of rotary mechanism, the upper end of center of rotation axle extends to the top of mounting panel and is equipped with the sucking disc through the guided way, the upper end of sucking disc is equipped with the culture dish body. Compared with the prior art, the utility model the advantage lie in: good inoculation effect and high inoculation efficiency.

Description

Special inoculation track structure of culture medium
Technical Field
The utility model relates to a culture medium technical field specifically indicates a special inoculation orbit structure of culture medium.
Background
In various fields of microorganisms, aiming at some suspected bacterial or fungal infection phenomena, at present, most of the methods use a manual inoculation mode to inoculate a human body fluid or a living organism sample onto a culture medium in a culture dish, and then make a preliminary judgment by observing the growth condition of bacteria in the culture dish after the sample grows for 24-48 hours in a special culture environment. In the prior art, bacterial inoculation is basically in a manual inoculation state, each area of operation rules of a microorganism laboratory is strictly installed to inoculate a plurality of straight lines in the process of inoculating the surface of a culture medium, and if the straight line inoculation mode designed by referring to the operation method of the laboratory is completed in an automatic link, the inoculation is complicated, the automatic inoculation efficiency is low, a large amount of time and labor are wasted, the inoculation effect is poor, the requirement of culture medium inoculation cannot be met, and the use is inconvenient.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome above technical defect, provide a special inoculation orbit structure of culture medium that the inoculation is effectual, inoculation is efficient.
In order to solve the technical problem, the utility model provides a technical scheme does: a special inoculation track structure of a culture medium comprises a mounting plate with a U-shaped structure, wherein sterilizers perpendicular to the bottom are arranged at the bottoms of protruding positions on the mounting plate, inoculating loop motion assemblies perpendicular to the bottom of the mounting plate are arranged at the back of the sterilizer, culture dish body motion assemblies are arranged at the bottoms of the mounting plate between the two inoculating loop motion assemblies, each culture dish body motion assembly comprises mounting columns arranged at the bottom of the mounting plate, the mounting columns are divided into two groups, the bottoms of the two groups of mounting columns are connected through a linear motion mechanism, a switching piece is sleeved on the linear motion mechanism, a rotating mechanism is arranged at the upper end of the switching piece, guide rails penetrating through the upper side and the lower side of the mounting plate are arranged above the culture dish body motion assemblies on the mounting plate, a rotating center shaft is arranged on the rotating mechanism, and the upper end of the rotating center shaft extends to the upper side of the mounting plate through the guide rails and is provided with, the upper end of the sucker is provided with a culture dish body.
Compared with the prior art, the utility model the advantage lie in: the utility model discloses a special inoculation orbit structure of culture medium utilizes culture dish body motion subassembly can realize linear motion and the rotary motion of culture dish body, utilize ZR axle module R axle subassembly, ZR axle module Z axle subassembly and transfering loop rotating assembly can realize transfering loop vertical direction's upper and lower, vertical direction's rotation and horizontal direction's rotation, easy operation not only like this, time saving and labor saving, inoculation efficiency has been improved, and can become the inoculation pitch arc by inoculation straight line optimization, the trajectory that this pitch arc formed in the small area on the enough big theoretical basis of circular arc diameter is close the straight line, thereby reach the requirement of culture medium inoculation, the inoculation effect is improved, and convenient use.
As the improvement, transfering loop motion unit comprises installed part one, ZR axle module R axle subassembly, ZR axle module Z axle subassembly and transfering loop rotating assembly, ZR axle module R axle subassembly and ZR axle module Z axle subassembly constitute ZR axle module and fix on installed part one, the upper end of installed part one is connected with the bottom of mounting panel, the vertical center pin that is equipped with in the middle of the upper end of ZR axle module R axle subassembly, the upper end of center pin extends to the top of mounting panel and is equipped with transfering loop rotating assembly, can realize the up-and-down motion and the rotary motion of center pin like this.
As the improvement, transfering loop rotating assembly comprises installed part two, motor installed part, rotating electrical machines, action wheel, follow driving wheel, belt, rotation axis, transfering loop installed part and transfering loop, installed part two is connected with the upper end of center pin, the rear side of installed part two is equipped with motor installed part and follows the driving wheel in the direction of keeping away from the center pin in proper order, the rear side of motor installed part is equipped with rotating electrical machines, be equipped with the action wheel in the pivot of rotating electrical machines front side, the action wheel is located between installed part two and the motor installed part, the action wheel with follow driving wheel between be connected through the belt, be connected from the rotation axis of driven wheel with installed part two front sides, the front side of rotation axis is equipped with transfering loop installed part, transversely be equipped with two symmetric distribution's transfering loop on the side of transfering loop installed, Rotation in the vertical direction and rotation in the horizontal direction.
As an improvement, the mounting plate is provided with a through hole, and the upper end part of the central shaft extends to the upper part of the mounting plate through the through hole, so that the central shaft is conveniently inserted on the mounting plate.
As the improvement, all through fastening screw connection between erection column and installed part one and the mounting panel, so not only can improve stability, convenient to detach moreover, easy operation, labour saving and time saving.
Drawings
FIG. 1 is a schematic structural diagram of a special inoculation track structure of the culture medium of the present invention.
FIG. 2 is a side view of a special inoculation track structure for a culture medium of the present invention.
FIG. 3 is a schematic structural diagram of a culture dish body movement assembly in a special inoculation track structure of the culture medium of the present invention.
FIG. 4 is a schematic structural diagram of a culture dish body movement assembly with a culture dish body in a special inoculation track structure of the culture medium of the present invention.
FIG. 5 is a schematic structural diagram of an inoculating loop moving assembly in a special inoculating track structure of the culture medium of the present invention.
FIG. 6 is a schematic structural diagram of an inoculating loop rotating assembly in a special inoculating track structure of the culture medium of the present invention.
As shown in the figure: 1. mounting panel, 2, sterilizer, 3, culture dish body motion assembly, 4, transfering loop motion assembly, 5, the culture dish body, 6, the erection column, 7, linear motion mechanism, 8, the adaptor, 9, rotary mechanism, 10, the sucking disc, 11, installation part one, 12, the R axle subassembly of ZR axle module, 13, the Z axle subassembly of ZR axle module, 14, the center pin, 15, transfering loop rotation assembly, 16, installation part two, 17, the motor installed part, 18, the rotating electrical machines, 19, the action wheel, 20, from the driving wheel, 21, the belt, 22, the rotation axis, 23, transfering loop installed part, 24, the transfering loop, 25, the guided way, 26, the rotation center pin.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
A special inoculation track structure of culture medium comprises a mounting plate 1 of a U-shaped structure, wherein a sterilizer 2 vertical to the mounting plate is arranged at the bottom of a protruding position on the mounting plate 1, an inoculating loop moving assembly 4 vertical to the sterilizer 2 is arranged at the back of the bottom of the mounting plate 1, a culture dish body moving assembly 3 is arranged at the position between the two inoculating loop moving assemblies 4 at the bottom of the mounting plate 1, the culture dish body moving assembly 3 comprises mounting columns 6 arranged at the bottom of the mounting plate 1, the mounting columns 6 are divided into two groups, the bottoms of the two groups of mounting columns 6 are connected through a linear moving mechanism 7, a switching piece 8 is sleeved on the linear moving mechanism 7, a rotating mechanism 9 is arranged at the upper end of the switching piece 8, guide rails 25 penetrating through the upper side and the lower side of the culture dish body moving assembly 3 are arranged above the mounting plate 1, the rotating mechanism 9 is provided with a rotating central shaft 26, the upper end of the rotating central shaft 26 extends to the upper part of the mounting plate 1 through a guide rail 25 and is provided with a sucker 10, and the upper end of the sucker 10 is provided with a culture dish body 5.
Transfering loop moving subassembly 4 comprises installed part 11, ZR axle module R axle subassembly 12, ZR axle module Z axle subassembly 13 and transfering loop rotating assembly 15, ZR axle module R axle subassembly 12 and ZR axle module Z axle subassembly 13 constitute ZR axle module and fix on installed part 11, the upper end of installed part 11 is connected with mounting panel 1's bottom, the vertical center pin 14 that is equipped with in the middle of the upper end of ZR axle module R axle subassembly 12, the upper end of center pin 14 extends to mounting panel 1's top and is equipped with transfering loop rotating assembly 15.
The inoculating loop rotating assembly 15 consists of a second mounting piece 16, a motor mounting piece 17, a rotating motor 18, a driving wheel 19, a driven wheel 20, a belt 21, a rotating shaft 22, an inoculating loop mounting piece 23 and an inoculating loop 24, the second mounting piece 16 is connected with the upper end part of the central shaft 14, a motor mounting piece 17 and a driven wheel 20 are sequentially arranged on the rear side of the second mounting piece 16 in the direction away from the central shaft 14, a rotating motor 18 is arranged at the rear side of the motor mounting part 17, a driving wheel 19 is arranged on a rotating shaft at the front side of the rotating motor 18, the driving wheel 19 is positioned between the second mounting part 16 and the motor mounting part 17, the driving wheel 19 is connected with the driven wheel 20 through a belt 21, the driven wheel 20 is connected with a rotating shaft 22 at the front side of the second mounting piece 16, an inoculating ring mounting piece 23 is arranged at the front side of the rotating shaft 22, two symmetrically distributed inoculating loops 24 are transversely arranged on the side surface of the inoculating loop mounting piece 23.
Be equipped with the through-hole on the mounting panel 1, the upper end of center pin 14 passes through the through-hole and extends to the top of mounting panel 1.
The mounting column 6, the first mounting piece 11 and the mounting plate 1 are connected through fastening screws.
When the utility model is implemented, the structure schematic diagram of a culture medium special inoculation track structure shown in the attached drawing 1, the side view of a culture medium special inoculation track structure shown in the attached drawing 2, the structure schematic diagram of a culture dish body motion assembly in a culture medium special inoculation track structure shown in the attached drawing 3, the structure schematic diagram of a culture dish body motion assembly with a culture dish body in a culture medium special inoculation track structure shown in the attached drawing 4, the structure schematic diagram of an inoculating loop motion assembly in a culture medium special inoculation track structure shown in the attached drawing 5 and the structure schematic diagram of an inoculating loop rotation assembly in a culture medium special inoculation track structure shown in the attached drawing 6 are combined, when the culture medium special inoculation track structure is used, in the process of forming a track line, the rotation motor 18 drives the driven wheel 20 and the rotation shaft 22 to move through the belt 21 so as to enable the inoculating loop 24 to move in the vertical direction, after inoculating ring 24 forms certain angle in the vertical direction, on the culture medium of ZR axle module R axle subassembly 12 and ZR axle module Z axle subassembly 13's drive push down the inside of culture dish body 5, through the reciprocal formation horizontal direction pitch arc of ZR axle module R axle subassembly 12 drive inoculating ring 24, culture dish body motion subassembly 3 drags culture dish body 5 and moves at the horizontal direction simultaneously, and two motion combinations can form the pitch arc orbit, reach the purpose of inoculation culture medium. Utilize culture dish body motion subassembly 3 can realize linear motion and rotary motion of culture dish body 5, utilize ZR axle module R axle subassembly 12, ZR axle module Z axle subassembly 13 and transfering loop rotating assembly 15 can realize the upper and lower of transfering loop 24 vertical direction, the rotation of vertical direction and the rotation of horizontal direction, easy operation not only like this, time saving and labor saving, the inoculation efficiency has been improved, and can become the inoculation pitch arc by inoculation straight line optimization, the trajectory that this pitch arc formed in the small area on the enough big theoretical basis of circular arc diameter is close the straight line, thereby reach the requirement of culture medium inoculation, the inoculation effect is improved, and convenient to use. So said, the utility model discloses a special inoculation orbit structure of culture medium not only inoculates effectually, inoculates efficiently moreover.
The present invention and the embodiments thereof have been described above, but the description is not limited thereto, and the embodiment shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should understand that they should not be limited to the embodiments described above, and that they can design the similar structure and embodiments without departing from the spirit of the invention.

Claims (5)

1. A special inoculation track structure of culture medium, includes mounting panel (1) of U type structure, its characterized in that: the bottom of the protruding position on the mounting plate (1) is provided with a sterilizer (2) vertical to the bottom, the back of the mounting plate (1) is provided with an inoculating loop moving assembly (4) vertical to the sterilizer (2), the position of the bottom of the mounting plate (1) between two inoculating loop moving assemblies (4) is provided with a culture dish body moving assembly (3), the culture dish body moving assembly (3) comprises mounting columns (6) arranged at the bottom of the mounting plate (1), the mounting columns (6) are two groups in total, the bottoms of the two groups of mounting columns (6) are connected through a linear moving mechanism (7), the linear moving mechanism (7) is sleeved with a switching piece (8), the upper end part of the switching piece (8) is provided with a rotating mechanism (9), the mounting plate (1) is provided with a guide rail (25) penetrating through the upper side and the lower side of the mounting plate above and above the culture dish body moving assembly (3), be equipped with rotation center axle (26) on rotary mechanism (9), the upper end of rotation center axle (26) passes through guided way (25) and extends to the top of mounting panel (1) and is equipped with sucking disc (10), the upper end of sucking disc (10) is equipped with culture dish body (5).
2. A medium specific inoculation track structure according to claim 1, wherein: transfering loop moving part (4) comprise installed part (11), ZR axle module R axle subassembly (12), ZR axle module Z axle subassembly (13) and transfering loop rotating assembly (15), ZR axle module R axle subassembly (12) and ZR axle module Z axle subassembly (13) constitute ZR axle module and fix on installed part (11), the upper end of installed part (11) is connected with the bottom of mounting panel (1), the vertical center pin (14) that is equipped with in the middle of the upper end of ZR axle module R axle subassembly (12), the upper end of center pin (14) extends to the top of mounting panel (1) and is equipped with transfering loop rotating assembly (15).
3. A medium specific inoculation track structure according to claim 2, wherein: the inoculating loop rotating assembly (15) consists of a second mounting part (16), a motor mounting part (17), a rotating motor (18), a driving wheel (19), a driven wheel (20), a belt (21), a rotating shaft (22), an inoculating loop mounting part (23) and an inoculating loop (24), wherein the second mounting part (16) is connected with the upper end part of the central shaft (14), the rear side of the second mounting part (16) is sequentially provided with the motor mounting part (17) and the driven wheel (20) in the direction away from the central shaft (14), the rear side of the motor mounting part (17) is provided with the rotating motor (18), the rotating shaft on the front side of the rotating motor (18) is provided with the driving wheel (19), the driving wheel (19) is positioned between the second mounting part (16) and the motor mounting part (17), the driving wheel (19) is connected with the driven wheel (20) through the belt (21), the driven wheel (20) is connected with the rotating shaft (22) on the front side, the front side of rotation axis (22) is equipped with transfering loop installed part (23), transversely be equipped with two symmetric distribution's transfering loop (24) on the side of transfering loop installed part (23).
4. A medium specific inoculation track structure according to claim 2, wherein: be equipped with the through-hole on mounting panel (1), the upper end of center pin (14) passes through the through-hole and extends to the top of mounting panel (1).
5. A medium specific inoculation track structure according to claim 2, wherein: and the mounting column (6), the first mounting piece (11) and the mounting plate (1) are connected through fastening screws.
CN202020802422.1U 2020-05-14 2020-05-14 Special inoculation track structure of culture medium Active CN212476734U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020802422.1U CN212476734U (en) 2020-05-14 2020-05-14 Special inoculation track structure of culture medium

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020802422.1U CN212476734U (en) 2020-05-14 2020-05-14 Special inoculation track structure of culture medium

Publications (1)

Publication Number Publication Date
CN212476734U true CN212476734U (en) 2021-02-05

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ID=74460827

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020802422.1U Active CN212476734U (en) 2020-05-14 2020-05-14 Special inoculation track structure of culture medium

Country Status (1)

Country Link
CN (1) CN212476734U (en)

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