CN209132082U - Microorganism dynamic detection system - Google Patents

Microorganism dynamic detection system Download PDF

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Publication number
CN209132082U
CN209132082U CN201821812964.6U CN201821812964U CN209132082U CN 209132082 U CN209132082 U CN 209132082U CN 201821812964 U CN201821812964 U CN 201821812964U CN 209132082 U CN209132082 U CN 209132082U
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CN
China
Prior art keywords
support frame
vortex oscillator
positioning
fixedly connected
detection system
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Expired - Fee Related
Application number
CN201821812964.6U
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Chinese (zh)
Inventor
李庆友
王爱玲
高云
黄根生
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Individual
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Individual
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Priority to CN201821812964.6U priority Critical patent/CN209132082U/en
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Publication of CN209132082U publication Critical patent/CN209132082U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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  • Apparatus Associated With Microorganisms And Enzymes (AREA)
  • Measuring Or Testing Involving Enzymes Or Micro-Organisms (AREA)

Abstract

The utility model relates to microorganism dynamic detection technology fields, disclose a kind of microorganism dynamic detection system, including vortex oscillator, support base, support frame, positioning mechanism, anti-falling mechanism and detection pipe, the bottom of detection pipe is connected to inside the card slot opened up on matching seat at the top of vortex oscillator, side at the top of vortex oscillator is flexibly connected with the bottom of support frame, positioning mechanism is fixedly connected on the bottom of support frame side, anti-falling mechanism is movably connected in the middle part at the top of support frame, the bottom of anti-falling mechanism is connected at the top of detection pipe, anti-falling mechanism includes locating rod, via hole, spring, positioning plate and locating slot.The utility model positioning plate carries out extruding positioning to detection pipe, it prevents vortex oscillator from causing detection pipe to fall when shaking detection pipe, for artificial pressing, has liberated both hands without manual intervention, it is that testing staff can be engaged in other related work, increases the efficiency of detection.

Description

Microorganism dynamic detection system
Technical field
The utility model relates to microorganism dynamic detection technology field, specially a kind of microorganism dynamic detection system.
Background technique
Need to use the quick dynamic measuring instrument of microorganism during carrying out dynamic detection to microorganism, will be to be measured When solution is put on the quick dynamic measuring instrument of microorganism, needs for solution to be detected to be placed into inside detection pipe and dissolve, it is right The mode that solution to be detected is dissolved is that will test pipe to be placed on vortex oscillator, and the top that a hand pins detection pipe is anti- It only falls and carries out concussion dissolution, completed until solution to be detected dissolves, not only human intervention is needed to operate in this way, waste detection people The time and long-time pressing detection cup of member makes hand muscle ache, and causes the discomfort of body.
Utility model content
The utility model provides a kind of microorganism dynamic detection system, which passes through setting Machinery prevents vortex oscillator from falling when shaking detection pipe to limiting at the top of detection pipe, without artificial dry Both hands have been liberated in advance, has been that testing staff can be engaged in other related work, increases the efficiency of detection.
In order to achieve the above object, the utility model is achieved by the following technical programs: a kind of microorganism dynamic detection System, including vortex oscillator, support base, support frame, positioning mechanism, anti-falling mechanism and detection pipe, the vortex oscillator Bottom and support base at the top of be fixedly connected, the bottom of the detection pipe is connected at the top of vortex oscillator and opens up on matching seat Card slot inside, the side at the top of the vortex oscillator is flexibly connected with the bottom of support frame, and the positioning mechanism is fixed to be connected The bottom in support frame side is connect, the anti-falling mechanism is movably connected in the middle part at the top of support frame, the top of the detection pipe Portion is connected to the bottom of anti-falling mechanism.
The positioning mechanism includes threaded rod, thread bush and stripper plate, and the thread bush interference is connected to support frame side Bottom, the threaded rod is threaded in the inside of thread bush, and the inner wall of the thread bush offers and screw thread rod outer surface The screw thread that the screw thread opened up mutually agrees with, the threaded rod pass through bearing and stripper plate activity close to one end of vortex oscillator side Connection, side of the stripper plate far from threaded rod is flexibly connected with the side of vortex oscillator.
The anti-falling mechanism includes locating rod, via hole, spring, positioning plate and locating slot, the bottom of the locating rod It is flexibly connected through the via hole for being provided with support frame middle top and with support frame, the bottom of the locating rod and positioning plate Top is fixedly connected, and the inside for the locating slot that positioning plate bottom opens up, the spring socket are connected at the top of the detection pipe It is fixedly connected at the top of the outer surface of locating rod, the spring with support frame, the bottom of the spring and the top of positioning plate It is fixedly connected.
Preferably, the quantity of the support base is four, and four support bases are respectively distributed to the four of vortex oscillator bottom On a angle.
Preferably, the stripper plate is fixedly connected with rubber pad close to the side of vortex oscillator, and the rubber pad is close The side of vortex oscillator offers anti-skid chequer.
Preferably, the threaded rod is fixedly connected with switch block far from one end of vortex oscillator, and the shape of the switch block is Rectangle.
Preferably, the quantity of the positioning mechanism is two, and two positioning mechanisms are symmetrically distributed in the two of vortex oscillator Side.
Preferably, pull ring is fixedly connected at the top of the locating rod, the outer surface of the pull ring is socketed rubber sleeve.
By above-mentioned technical proposal, the utility model provides a kind of microorganism dynamic detection system.At least have following The utility model has the advantages that
(1), the microorganism dynamic detection system will test pipe and be placed on vortex by pulling pull ring to lift positioning plate The top of oscillator, unclamp pull ring makes positioning plate carry out extruding positioning to detection pipe under the reset response of spring, prevents vortex Oscillator causes detection pipe to fall when shaking detection pipe, for artificial pressing, is not necessarily to manual intervention solution Both hands have been put, has been that testing staff can be engaged in other related work, increases the efficiency of detection.
(2), the microorganism dynamic detection system moves threaded rod in inside of thread bush or so by rotating threaded rod It is dynamic, it drives stripper plate mobile to the direction of vortex oscillator, stripper plate is made to carry out extruding positioning to vortex oscillator, facilitate pair The positioning of support frame facilitates the adjusting to threaded rod by rotating switch block, prevents stripper plate from vortex being caused to shake by rubber pad Swing the damage of device side.
Detailed description of the invention
Attached drawing described herein is used to provide a further understanding of the present invention, and is constituted part of this application:
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the structural schematic diagram in the portion A in the utility model Fig. 1;
Fig. 3 is the present invention looks up structural representation of vortex oscillator in the utility model Fig. 1.
In figure: 1 vortex oscillator, 2 support bases, 3 support frames, 4 positioning mechanisms, 401 threaded rods, 402 thread bush, 403 are squeezed Pressing plate, 404 rubber pads, 405 switch blocks, 5 anti-falling mechanisms, 501 locating rods, 502 via holes, 503 springs, 504 positioning plates, 505 Locating slot, 506 pull rings, 507 rubber sleeves, 6 detection pipes.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.
Fig. 1-3 is please referred to, the utility model provides a kind of technical solution: a kind of microorganism dynamic detection system, including rotation Whirlpool oscillator 1, support base 2, support frame 3, positioning mechanism 4, anti-falling mechanism 5 and detection pipe 6, the bottom of vortex oscillator 1 with The top of support base 2 is fixedly connected, and the quantity of support base 2 is four, and four support bases 2 are respectively distributed to 1 bottom of vortex oscillator On four angles in portion, the bottom of detection pipe 6 is connected to inside the card slot opened up on 1 top matching seat of vortex oscillator, vortex vibration The side for swinging 1 top of device is flexibly connected with the bottom of support frame 3, and positioning mechanism 4 is fixedly connected on the bottom of 3 side of support frame, Anti-falling mechanism 5 is movably connected in the middle part at 1 top of support frame, and the top of detection pipe 6 is connected to the bottom of anti-falling mechanism 5.
The quantity of positioning mechanism 4 is two, and two positioning mechanisms 4 are symmetrically distributed in the two sides of vortex oscillator 1, localization machine Structure 4 includes threaded rod 401, thread bush 402 and stripper plate 403, and 402 interference of thread bush is connected to the bottom of 3 side of support frame, spiral shell Rasp bar 401 is threaded in the inside of thread bush 402, and the inner wall of thread bush 402 is offered to be opened up with 401 outer surface of threaded rod The screw thread that screw thread mutually agrees with, threaded rod 401 are connected close to one end of 1 side of vortex oscillator by bearing and 403 activity of stripper plate It connects, threaded rod 401 is fixedly connected with switch block 405 far from one end of vortex oscillator 1, and the shape of switch block 405 is rectangle, squeezes Side of the plate 403 far from threaded rod 401 is flexibly connected with the side of vortex oscillator 1, and stripper plate 403 is close to vortex oscillator 1 Side be fixedly connected with rubber pad 404, rubber pad 404 offers anti-skid chequer close to the side of vortex oscillator 1.
By rotate threaded rod 401 move left and right threaded rod 401 in the inside of thread bush 402, drive stripper plate 403 to The direction of vortex oscillator 1 is mobile, so that stripper plate 403 is carried out extruding positioning to vortex oscillator 1, facilitates to support frame 3 Positioning facilitates the adjusting to threaded rod 401 by rotating switch block 405, prevents stripper plate 403 from causing to revolve by rubber pad 404 The damage of 1 side of whirlpool oscillator.
Anti-falling mechanism 5 includes locating rod 501, via hole 502, spring 503, positioning plate 504 and locating slot 505, positioning The bottom of bar 501 is run through the via hole 502 for being provided with 3 middle top of support frame and is flexibly connected with support frame 3, locating rod 501 Top be fixedly connected with pull ring 506, the outer surface of pull ring 506 is socketed rubber sleeve 507, the bottom of locating rod 501 and positioning The top of plate 504 is fixedly connected, and the top of detection pipe 6 is connected to the inside for the locating slot 505 that 504 bottom of positioning plate opens up, bullet Spring 503 is socketed in the outer surface of locating rod 501, and the top of spring 503 is fixedly connected with support frame 3, the bottom of spring 503 and fixed The top of position plate 504 is fixedly connected.
By pulling pull ring 506 to lift positioning plate 504, it will test the top that pipe 6 is placed on vortex oscillator 1, unclamp Pull ring 506 makes positioning plate 504 carry out extruding positioning to detection pipe 6 under the reset response of spring 503, prevents vortex oscillator 1 Falling for detection pipe 6 is caused when shaking detection pipe 6, for artificial pressing, is liberated without manual intervention Both hands are that testing staff can be engaged in other related work, increase the efficiency of detection.
Microorganism dynamic detection system provided by the utility model is described in detail above.The utility model is answered The principles of the present invention and embodiment are expounded with specific case, the explanation of above example is only intended to sides Assistant solves the method and its core concept of the utility model.It should be pointed out that for those skilled in the art, Without departing from the principle of this utility model, several improvements and modifications can be made to this utility model, these improvement It is also fallen into the protection scope of the utility model claims with modification.

Claims (6)

1. a kind of microorganism dynamic detection system, including vortex oscillator (1), support base (2), support frame (3), positioning mechanism (4), anti-falling mechanism (5) and detection pipe (6), it is characterised in that: the bottom of the vortex oscillator (1) and support base (2) Top is fixedly connected, and the bottom of the detection pipe (6) is connected in the card slot opened up on matching seat at the top of vortex oscillator (1) Portion, the side at the top of the vortex oscillator (1) are flexibly connected with the bottom of support frame (3), and the positioning mechanism (4) is fixed to be connected The bottom in support frame (3) side is connect, the anti-falling mechanism (5) is movably connected in the middle part at the top of support frame (1), the inspection The bottom of anti-falling mechanism (5) is connected at the top of test tube (6);
The positioning mechanism (4) includes threaded rod (401), thread bush (402) and stripper plate (403), thread bush (402) mistake It is full of the bottom for being connected to support frame (3) side, the threaded rod (401) is threaded in the inside of thread bush (402), the spiral shell The inner wall of line set (402) offers the screw thread that the screw thread opened up with threaded rod (401) outer surface mutually agrees with, the threaded rod (401) one end close to vortex oscillator (1) side is flexibly connected by bearing with stripper plate (403), the stripper plate (403) Side far from threaded rod (401) is flexibly connected with the side of vortex oscillator (1);
The anti-falling mechanism (5) includes locating rod (501), via hole (502), spring (503), positioning plate (504) and positioning Slot (505), the bottom of the locating rod (501) run through the via hole (502) for being provided with support frame (3) middle top and with support Frame (3) is flexibly connected, and is fixedly connected at the top of the bottom and positioning plate (504) of the locating rod (501), the detection pipe (6) Top be connected to the inside of the locating slot (505) that positioning plate (504) bottom opens up, the spring (503) is socketed in locating rod (501) top of outer surface, the spring (503) is fixedly connected with support frame (3), the bottom of the spring (503) and fixed It is fixedly connected at the top of position plate (504).
2. microorganism dynamic detection system according to claim 1, it is characterised in that: the quantity of the support base (2) is Four, four support bases (2) are respectively distributed on four angles of vortex oscillator (1) bottom.
3. microorganism dynamic detection system according to claim 1, it is characterised in that: the stripper plate (403) is close to rotation The side of whirlpool oscillator (1) is fixedly connected with rubber pad (404), side of the rubber pad (404) close to vortex oscillator (1) Offer anti-skid chequer.
4. microorganism dynamic detection system according to claim 1, it is characterised in that: the threaded rod (401) is far from rotation One end of whirlpool oscillator (1) is fixedly connected with switch block (405), and the shape of the switch block (405) is rectangle.
5. microorganism dynamic detection system according to claim 1, it is characterised in that: the quantity of the positioning mechanism (4) It is two, two positioning mechanisms (4) are symmetrically distributed in the two sides of vortex oscillator (1).
6. microorganism dynamic detection system according to claim 1, it is characterised in that: the top of the locating rod (501) It is fixedly connected with pull ring (506), the outer surface of the pull ring (506) is socketed rubber sleeve (507).
CN201821812964.6U 2018-11-05 2018-11-05 Microorganism dynamic detection system Expired - Fee Related CN209132082U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821812964.6U CN209132082U (en) 2018-11-05 2018-11-05 Microorganism dynamic detection system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821812964.6U CN209132082U (en) 2018-11-05 2018-11-05 Microorganism dynamic detection system

Publications (1)

Publication Number Publication Date
CN209132082U true CN209132082U (en) 2019-07-19

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821812964.6U Expired - Fee Related CN209132082U (en) 2018-11-05 2018-11-05 Microorganism dynamic detection system

Country Status (1)

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CN (1) CN209132082U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110426269A (en) * 2018-11-05 2019-11-08 西安尼勒生物科技有限公司 Microorganism dynamic detection system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110426269A (en) * 2018-11-05 2019-11-08 西安尼勒生物科技有限公司 Microorganism dynamic detection system

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20190719

Termination date: 20201105

CF01 Termination of patent right due to non-payment of annual fee