CN204101572U - Hyperchannel selects sampling analysis device in turn automatically - Google Patents
Hyperchannel selects sampling analysis device in turn automatically Download PDFInfo
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- CN204101572U CN204101572U CN201420471030.6U CN201420471030U CN204101572U CN 204101572 U CN204101572 U CN 204101572U CN 201420471030 U CN201420471030 U CN 201420471030U CN 204101572 U CN204101572 U CN 204101572U
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- multiport valve
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Abstract
The utility model relates to a kind of hyperchannel and automatically selects sampling analysis device in turn, comprise delivery track, sample box, sampling probe, service sink, conduit, sampling pump, multiport valve, counting chamber, liquid waste collector, microscope, controller, delivery track side is provided with inductor, column and service sink, described sampling probe is vertically fixed on below cross bar, described column is provided with elevating mechanism and rotating mechanism, described sampling probe is by conduit and sampling pump, multiport valve counting chamber, liquid waste collector is connected successively, the microscope of Tape movement mechanism is provided with above described counting chamber.The utility model automatic sampling, automatically cleaning, automatically selection can carry out detection analysis in turn.
Description
Technical field
The utility model relates to medical instruments field, particularly relates to the automatic analysing apparatus of a kind of experiment or inspection.
Background technology
In the checkout procedure of human or animal's excretion thing, present hospital uses little plastic cup and cotton swab, or uses little bamboo clappers and little spoon to sample.Then the sample that these gathered of reviewer, gets by rule of thumb, adds appropriate thinning agent furnishing suspension, spread upon on slide and be placed in basis of microscopic observation, then record the result of observation, provide survey report.This detection mode existence detection analysis speed is slow, efficiency is low, be difficult to standardized shortcoming, and there is certain contingency due to the interference of human factor and error in testing result, be difficult to repetition, carry out duplicate test to same sample, result difference is very large.In addition, also exist unhygienic, the biochemical security of operation low, can not the problem of continuous detecting.
Utility model content
The purpose of this utility model is the deficiency overcoming above-mentioned technology, provides a kind of and meets bio-safety requirement, automation mechanized operation, the hyperchannel of continuous detecting analysis can automatically select sampling analysis device in turn.
The utility model is achieved by the following technical programs:
Hyperchannel selects sampling analysis device in turn automatically, comprises delivery track, sample box, inductor, sampling probe, service sink, conduit, sampling pump, multiport valve, counting chamber, liquid waste collector, microscope, controller, described sample box is placed on delivery track, described delivery track side is provided with inductor, described delivery track opposite side is provided with column and service sink, the top of the corresponding delivery track position of described inductor is provided with sampling probe, described sampling probe is vertically fixed on cross bar one end, the described cross bar other end is fixed on elevating lever top, described elevating lever lower end is provided with a slide block, described slide block is installed on the slideway of column, and be connected with the elevating mechanism be arranged on column, described column lower end is provided with rotating mechanism, described sampling probe is connected with sampling pump by conduit, described sampling pump is connected with the import of multiport valve by conduit, described multiport valve is provided with multiple outlet, each outlet of described multiport valve is connected one to one by conduit and counting chamber, the outlet of described counting chamber is connected with liquid waste collector by conduit, the microscope of Tape movement mechanism is provided with above described counting chamber, described inductor, elevating mechanism, rotating mechanism, sampling pump, multiport valve, microscopical travel mechanism is all electrically connected with controller.
Further, the elevating mechanism that described column is installed is made up of lifting motor, belt, driving wheel, follower, lifting motor is arranged on column bottom, the output shaft of described lifting motor is equipped with driving wheel, described driving wheel is rotated by belt drive follower, described follower is arranged on column top, and middle part and the slide block of belt are fixedly linked; The rotating mechanism that described column top is installed is made up of electric rotating machine, large belt wheel, small pulley, Timing Belt, and the output shaft of described electric rotating machine is equipped with small pulley, and described small pulley is connected with large belt wheel by Timing Belt, and described large belt wheel is arranged on elevating lever.
Principle of work of the present utility model is as follows:
When sample box is transported to sensor location by delivery track, induction information is sent to controller by inductor, so controller controls elevating mechanism action, lifting motor passes through driving wheel, belt, follower, slide block, elevating lever drives the sampling probe of cross bar one end to insert in sample box, controller controls sampling pump and starts, sampling probe starts sampling, get sample liquid is pumped into multiport valve import by conduit, the outlet that controller controls multiport valve is opened, connect with corresponding counting chamber, sample liquid is pumped in counting chamber, controller controls the action of microscopical travel mechanism, the counting chamber making microscope alignment be full of sample liquid carries out microscope testing analysis.After detection analysis completes, controller controls the lifting motor antiport of elevating mechanism, the sampling probe of cross bar one end is driven to exit sample box by driving wheel, belt, follower, then rotating mechanism action, elevating lever is made to drive cross bar, sampling probe to rotate, and make sampling probe aim at service sink, lifting motor forward operates, sampling probe is made to insert service sink, sampling pump starts, clear water is pumped into the counting chamber just finished and detect and analyze by conduit, multiport valve, counting chamber is cleaned, for sub-sampling analysis is once prepared.
When inductor senses next sample box, each mechanism is undertaken by above-mentioned action repetitive cycling, and different outlets also connected successively by multiport valve and counting chamber carries out detection analysis in turn.
Technique effect of the present utility model is as follows:
The utility model is the important breakthrough existing manual operation being detected to human or animal's excretion thing, achieves the increasingly automated detection of excretion thing, also can automatically clean after having detected at every turn, operates health, good operational environment, odorlessness, biochemical security are high.
Multiport valve of the present utility model has multiple outlet, each outlet of described multiport valve is connected one to one by conduit and counting chamber, different outlet is connected by rotary multi-way valve, then sample liquid is sent into different counting chambers, serial sampling can be realized detect, substantially increasing speed and the efficiency of detection, is 10 ~ 30 times of manual detection.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is the front view that sampling probe is connected with elevating mechanism, rotating mechanism.
Fig. 3 is the left view that sampling probe is connected with elevating mechanism, rotating mechanism.
In accompanying drawing: 1-delivery track, 2-sample box, 3-inductor, 4-service sink, 5-sampling probe, 6-cross bar, 7-elevating lever, 8-column, 9-rotating mechanism, 10-elevating mechanism, 11-controller, 12-multiport valve, 13-sampling pump, 14-conduit, 15-counting chamber, 16-microscope, 17-liquid waste collector, 18-slide block, 19-slideway, 901-electric rotating machine, 902-small pulley, 903-Timing Belt, 904-large belt wheel, 101-lifting motor, 102-driving wheel, 103-belt, 104-follower.
Embodiment
With specific embodiment, the technical solution of the utility model is described below, but protection domain of the present utility model is not limited only to this.
As shown in Figure 1, Figure 2, Figure 3 shows, a kind of hyperchannel selects sampling analysis device in turn automatically, comprises delivery track 1, sample box 2, inductor 3, sampling probe 5, service sink 4, conduit 14, sampling pump 13, multiport valve 12, counting chamber 15, liquid waste collector 17, microscope 16, controller 11.
Delivery track 1 can adopt any one mode of movement in chain-type conveying, the conveying of belt 103 formula or the conveying of feed screw nut's formula, delivery track 1 is placed with tactic row's sample box 2.Sample box 2 is built with human or animal's excretion thing, and sample box 2 top is provided with sampling probe 5 patchhole.Delivery track 1 side is provided with the inductor 3 for responding to sample box 2 position, and described delivery track 1 opposite side is provided with column 8 and service sink 4.The top of inductor 3 corresponding delivery track 1 position is provided with sampling probe 5, and sampling probe 5 is vertically fixed on cross bar 6 one end, and described cross bar 6 other end is fixed on elevating lever 7 top.Elevating lever 7 lower end is provided with a slide block 18, is connected between elevating lever 7 with slide block 18 by revolute.Slide block 18 is installed on the slideway 19 of column 8, can slide up and down along slideway 19, and slide block 18 is connected with the elevating mechanism 10 be arranged on column 8.Elevating mechanism 10 can adopt belt gear or screw nut driving mechanism, also can adopt Worm and worm-wheel gearing or rack and pinion drive mechanism.
As shown in Figure 2 and Figure 3, the elevating mechanism 10 of the present embodiment adopts belt transmissioning mode, be made up of lifting motor 101, belt 103, driving wheel 102, follower 104, lifting motor 101 is arranged on column 8 bottom, the output shaft of described lifting motor 101 is equipped with driving wheel 102, described driving wheel 102 drives follower 104 to rotate by belt 103, and described follower 104 is arranged on column 8 top, and middle part and the slide block 18 of belt 103 are fixedly linked.Under the control of controller 11, lifting motor 101 can positive and negatively rotate, and is with movable slider 18 oscilaltion by belt 103, thus drive be connected with slide block 18 elevating lever 7, cross bar 6, oscilaltion together with sampling probe 5.
Column 8 top is also provided with rotating mechanism 9, described rotating mechanism 9 can adopt gear rotation mechanism, belt rotating mechanism, friction wheel from rotation mechanism or worm and gear rotating mechanism, the rotating mechanism 9 of the present embodiment adopts belt rotating mechanism 9, be made up of electric rotating machine 901, large belt wheel 904, small pulley 902, Timing Belt 903, the output shaft of described electric rotating machine 901 is equipped with small pulley 902, described small pulley 902 is connected with large belt wheel 904 by Timing Belt 903, and described large belt wheel 904 is arranged on elevating lever 7.When electric rotating machine 901 starts, elevating lever 7 is driven to rotate by small pulley 902, Timing Belt 903, large belt wheel 904, thus drive the cross bar 6 that is arranged on elevating lever 7 and sampling probe 5 to rotate, sampling probe 5 is made to rotate to sample box 2 position from service sink 4 position, when electric rotating machine 901 reverses, sampling probe 5 is made to rotate to service sink 4 position from sample box 2 position.
Sampling probe 5 is connected with sampling pump 13 by conduit 14, and described sampling pump 13 is connected with the import of multiport valve 12 by conduit 14.Described multiport valve 12 is rounded, an import is provided with at circle center, 8 outlets that round surrounding is uniform, each outlet of described multiport valve 12 is connected one to one by conduit 14 and counting chamber 15, and the outlet of described counting chamber 15 is connected with liquid waste collector 17 by conduit 14.Counting chamber 15 has 8, and adopt transparent plastic to make, two ends are provided with import and outlet, and centre is provided with the cavity of known volume.8 counting chambers 15 proper alignment side by side.The import of multiport valve 12, under the effect of controller 11, can successively be communicated with each outlet successively, in turn the sampling liquid of different sample box 2 being transported to different counting chambers 15.
Be provided with the microscope 16 of Tape movement mechanism above counting chamber 15, described microscope 16 be equipped with the high power lens and low power lens that can automatically change.The travel mechanism of microscope 16 is made up of mobile motor, screw mandrel, feed screw nut, support, slide block 18, guide rail, the output shaft of described mobile motor is connected with screw mandrel, described microscope 16 is rack-mount, described frame bottom is equipped with feed screw nut and slide block 18, described slide block 18 to be arranged on guide rail and to become to be slidably matched with guide rail, and described feed screw nut is sleeved on screw mandrel and with screw mandrel and becomes revolute to coordinate.
The travel mechanism of inductor 3, elevating mechanism 10, rotating mechanism 9, sampling pump 13, multiport valve 12, microscope 16 is all electrically connected with controller 11, carries out cooperation control by controller 11 is unified.
Above embodiment is to explanation of the present utility model, and non-limiting, is more than PART.It should be noted that, concerning the technician of the industry, the simple transformation of carrying out according to ultimate principle of the present utility model and structure and improvement, according to the combination that above embodiment is carried out, include within protection domain of the present utility model.
Claims (2)
1. hyperchannel selects sampling analysis device in turn automatically, it is characterized in that: comprise delivery track, sample box, inductor, sampling probe, service sink, conduit, sampling pump, multiport valve, counting chamber, liquid waste collector, microscope, controller, described sample box is placed on delivery track, described delivery track side is provided with inductor, described delivery track opposite side is provided with column and service sink, the top of the corresponding delivery track position of described inductor is provided with sampling probe, described sampling probe is vertically fixed on cross bar one end, the described cross bar other end is fixed on elevating lever top, described elevating lever lower end is provided with a slide block, described slide block is installed on the slideway of column, and be connected with the elevating mechanism be arranged on column, described column lower end is provided with rotating mechanism, described sampling probe is connected with sampling pump by conduit, described sampling pump is connected with the import of multiport valve by conduit, described multiport valve is provided with multiple outlet, each outlet of described multiport valve is connected one to one by conduit and counting chamber, the outlet of described counting chamber is connected with liquid waste collector by conduit, the microscope of Tape movement mechanism is provided with above described counting chamber, described inductor, elevating mechanism, rotating mechanism, sampling pump, multiport valve, microscopical travel mechanism is all electrically connected with controller.
2. hyperchannel according to claim 1 selects sampling analysis device in turn automatically, it is characterized in that: the elevating mechanism that described column is installed is made up of lifting motor, belt, driving wheel, follower, lifting motor is arranged on column bottom, the output shaft of described lifting motor is equipped with driving wheel, described driving wheel is rotated by belt drive follower, described follower is arranged on column top, and middle part and the slide block of belt are fixedly linked; The rotating mechanism that described column top is installed is made up of electric rotating machine, large belt wheel, small pulley, Timing Belt, and the output shaft of described electric rotating machine is equipped with small pulley, and described small pulley is connected with large belt wheel by Timing Belt, and described large belt wheel is arranged on elevating lever.
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CN201420471030.6U CN204101572U (en) | 2014-08-20 | 2014-08-20 | Hyperchannel selects sampling analysis device in turn automatically |
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CN201420471030.6U CN204101572U (en) | 2014-08-20 | 2014-08-20 | Hyperchannel selects sampling analysis device in turn automatically |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104166006A (en) * | 2014-08-20 | 2014-11-26 | 长沙新气象自动化技术有限公司 | Device capable of automatically selecting and sequentially analyzing |
CN104181321A (en) * | 2014-08-20 | 2014-12-03 | 湖南欧杰生物科技发展有限公司 | Automatic multichannel selection and alternate sampling analyzing device |
-
2014
- 2014-08-20 CN CN201420471030.6U patent/CN204101572U/en not_active Withdrawn - After Issue
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104166006A (en) * | 2014-08-20 | 2014-11-26 | 长沙新气象自动化技术有限公司 | Device capable of automatically selecting and sequentially analyzing |
CN104181321A (en) * | 2014-08-20 | 2014-12-03 | 湖南欧杰生物科技发展有限公司 | Automatic multichannel selection and alternate sampling analyzing device |
CN104181321B (en) * | 2014-08-20 | 2016-07-20 | 湖南欧杰生物科技发展有限公司 | Multichannel automatically selects sampling analysis device in turn |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20150114 Effective date of abandoning: 20160720 |
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C25 | Abandonment of patent right or utility model to avoid double patenting |