CN109959761A - It is a kind of for discharging the device of fluid - Google Patents
It is a kind of for discharging the device of fluid Download PDFInfo
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- CN109959761A CN109959761A CN201910289826.7A CN201910289826A CN109959761A CN 109959761 A CN109959761 A CN 109959761A CN 201910289826 A CN201910289826 A CN 201910289826A CN 109959761 A CN109959761 A CN 109959761A
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- room
- entrance
- inlet chamber
- locker room
- locker
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- 239000012530 fluid Substances 0.000 title claims abstract description 58
- 238000007599 discharging Methods 0.000 title claims abstract description 14
- 238000001514 detection method Methods 0.000 claims abstract description 64
- 238000000926 separation method Methods 0.000 claims description 2
- 239000003153 chemical reaction reagent Substances 0.000 abstract description 31
- 238000010276 construction Methods 0.000 description 4
- 238000010586 diagram Methods 0.000 description 4
- 238000000034 method Methods 0.000 description 4
- 230000032258 transport Effects 0.000 description 4
- 239000007788 liquid Substances 0.000 description 3
- 230000000694 effects Effects 0.000 description 2
- 238000005516 engineering process Methods 0.000 description 2
- 239000007789 gas Substances 0.000 description 2
- 238000003780 insertion Methods 0.000 description 2
- 230000037431 insertion Effects 0.000 description 2
- 230000009471 action Effects 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000005119 centrifugation Methods 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 239000004744 fabric Substances 0.000 description 1
- 238000010438 heat treatment Methods 0.000 description 1
- 239000011261 inert gas Substances 0.000 description 1
- 238000007689 inspection Methods 0.000 description 1
- 230000007774 longterm Effects 0.000 description 1
- 238000002360 preparation method Methods 0.000 description 1
- 238000005086 pumping Methods 0.000 description 1
- 238000007789 sealing Methods 0.000 description 1
- 239000011232 storage material Substances 0.000 description 1
- 230000007704 transition Effects 0.000 description 1
- 230000007306 turnover Effects 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B69/00—Unpacking of articles or materials, not otherwise provided for
- B65B69/0033—Unpacking of articles or materials, not otherwise provided for by cutting
- B65B69/0041—Unpacking of articles or materials, not otherwise provided for by cutting by puncturing
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N33/00—Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
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- Chemical & Material Sciences (AREA)
- Engineering & Computer Science (AREA)
- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Medicinal Chemistry (AREA)
- Food Science & Technology (AREA)
- Mechanical Engineering (AREA)
- Physics & Mathematics (AREA)
- Analytical Chemistry (AREA)
- Biochemistry (AREA)
- General Health & Medical Sciences (AREA)
- General Physics & Mathematics (AREA)
- Immunology (AREA)
- Pathology (AREA)
- Investigating Or Analysing Biological Materials (AREA)
Abstract
The invention discloses a kind of for discharging the device of fluid, is related to detection device technical field;It includes fluid storage dish and detection plate, the fluid storage dish includes storage basal disc (1-1), holding tank and sealer, the holding tank setting is in storage basal disc (1-1), the sealer and holding tank are tightly connected and form locker room, the detection plate includes detection basal disc (2-1), inlet chamber and bayonet fittings, inlet chamber's setting is in detection basal disc (2-1), the bayonet fittings are located in inlet chamber, the inlet chamber nests together or separates cooperation with locker room, and when inlet chamber nests together with locker room, the bayonet fittings puncture sealer;, by fluid storage dish and detection plate etc., indoor reagent will be stored when detecting by, which realizing, instills inlet chamber for it, reduces the volume of detection plate.
Description
Technical field
The present invention relates to detection device technical fields more particularly to a kind of for discharging the device of fluid.
Background technique
Currently, the detection plate that uses of detection mostly built-in reagent when leaving the factory, the detection plate volume of built-in reagent compared with
Greatly, transport is inconvenient, transportation cost is high.The detection disk body of built-in reagent is when specific environment stores, such as low temperature storage, due to body
Product is larger, and storage is inconvenient, and carrying cost is high.Reagent packet is that packed, soft sack is lain prone in detection panel surface, is not only occupied empty
Between but also be particularly easy to breakage, need during transportation especially careful, detection plate is transported together with reagent packet, transport difficulty
It is larger, transportation cost is higher.
Rotate monitor station revolving speed explanation:
High revolving speed is > 50Hz;
Middle revolving speed is 15Hz~50Hz;
The slow-speed of revolution is < 15Hz;
Unit Hz be circle/second.
Summary of the invention
Technical problem to be solved by the invention is to provide a kind of for discharging the device of fluid, passes through fluid storage dish
With detection plate etc., indoor reagent will be stored when detecting by, which realizing, instills inlet chamber, reduces the volume of detection plate.
In order to solve the above technical problems, the technical solution used in the present invention is: including fluid storage dish and detection plate, institute
Stating fluid storage dish includes storage basal disc, holding tank and sealer, the holding tank setting on storage basal disc, the sealer with deposit
Storage tank is tightly connected and forms locker room;The detection plate includes that detection basal disc, inlet chamber and bayonet fittings, the inlet chamber set
It sets on detection basal disc, the bayonet fittings are located in inlet chamber;The inlet chamber nests together or separates with locker room
Cooperation, when inlet chamber nests together with locker room, the bayonet fittings puncture sealer.
A further technical solution lies in: the locker room includes the first locker room and the second locker room, the inlet chamber
Including first entrance room and second entrance room, the bayonet fittings include being located at indoor first bayonet fittings of first entrance and position
In indoor second bayonet fittings of second entrance, first locker room is adapted with first entrance room, second locker room
It is adapted with second entrance room.
A further technical solution lies in: the detection plate further includes non-functional room, and the non-functional room setting is detecting
On basal disc, cooperation is nested together or separated with locker room.
A further technical solution lies in: the locker room includes the first locker room and the second locker room, the inlet chamber
Including first entrance room, the non-functional room include the first non-functional room, the bayonet fittings be located in first entrance room or
First non-functional interior, the first entrance room are adapted with the first locker room, the second locker room respectively, and described first is non-functional
Room is adapted with the first locker room, the second locker room respectively.
A further technical solution lies in: the locker room includes the first locker room and the second locker room, the inlet chamber
Including first entrance room and second entrance room, the non-functional room includes the first non-functional room and the second non-functional room, the thorn
Shape structure includes positioned at indoor first bayonet fittings of first entrance and being located at indoor second bayonet fittings of second entrance, described
First locker room is adapted with first entrance room, the second non-functional room respectively, second locker room respectively with second entrance room,
First non-functional room is adapted.
A further technical solution lies in: the inlet chamber includes first entrance room, and the quantity of the bayonet fittings is extremely
Lack two and is respectively positioned in first entrance room.
A further technical solution lies in: the locker room, inlet chamber side along successively dividing outward radially of the axis of rotation
Cloth.
A further technical solution lies in: the inner cavity of the holding tank is L-shaped, and one section of L-type holding tank inner cavity, which is located at, to be deposited
It stores up in basal disc.
The beneficial effects of adopting the technical scheme are that
First, including fluid storage dish and detection plate, the fluid storage dish includes storing basal disc, holding tank and sealer, described
On storage basal disc, the sealer and holding tank are tightly connected and form locker room for holding tank setting;The detection plate includes inspection
Basal disc, inlet chamber and bayonet fittings are surveyed, on detection basal disc, the bayonet fittings are located in inlet chamber for inlet chamber's setting;
The inlet chamber nests together or separates cooperation with locker room, the thorn-like when inlet chamber nests together with locker room
Structure punctures sealer.The technical solution, indoor reagent will be stored when detecting by, which realizing, instills inlet chamber, reduces detection plate
Volume.
Second, the locker room include the first locker room and the second locker room, the inlet chamber include first entrance room and
Second entrance room, the bayonet fittings include positioned at indoor first bayonet fittings of first entrance and be located at second entrance it is indoor
Second bayonet fittings, first locker room are adapted with first entrance room, and second locker room is mutually fitted with second entrance room
Match.A kind of detection reagent can be instilled one simultaneously by the locker room Liang Ge, inlet chamber and bayonet fittings by the technical solution
Inlet chamber, another detection reagent instill another inlet chamber, operate easier, more efficient.
The height dimension of third, the height dimension and the second bayonet fittings of first bayonet fittings is same or different.
Two different detection reagents are gradually instilled a different inlet chamber by the technical solution, realization, operate easier, efficiency more
It is high.
4th, the height dimension of first locker room and the height dimension of the second locker room are same or different.The skill
Two different detection reagents are gradually instilled a different inlet chamber by art scheme, realization, are operated easier, more efficient.
5th, the detection plate further includes non-functional room, and the non-functional room setting is on detection basal disc, with locker room
Nest together or separate cooperation.The technical solution, more reasonable structure, using more convenient.
6th, the locker room includes the first locker room and the second locker room, and the inlet chamber includes first entrance room, institute
Stating non-functional room includes the first non-functional room, and the bayonet fittings are located in first entrance room or the first non-functional interior, institute
It states first entrance room to be adapted with the first locker room, the second locker room respectively, the first non-functional room is stored with first respectively
Room, the second locker room are adapted.The technical solution, more reasonable structure pass through the locker room Liang Ge, an entrance using more convenient
Room, a non-functional room and one are located at the indoor bayonet fittings of entrance, and realization gradually instills two different detection reagents
The same inlet chamber operates easier, more efficient.
7th, the locker room include the first locker room and the second locker room, the inlet chamber include first entrance room and
Second entrance room, the non-functional room include the first non-functional room and the second non-functional room, and the bayonet fittings include being located at the
Indoor first bayonet fittings of one entrance and be located at indoor second bayonet fittings of second entrance, first locker room respectively with
First entrance room, the second non-functional room are adapted, and second locker room is mutually fitted with second entrance room, the first non-functional room respectively
Match.The technical solution, more reasonable structure, using more convenient, by the locker room Liang Ge, two entrances room, two non-functional rooms and
Two bayonet fittings, a bayonet fittings are located in an inlet chamber, and realization gradually instills two different detection reagents not
A same inlet chamber operates easier, more efficient.
8th, the inlet chamber includes first entrance room, and the quantity of the bayonet fittings is at least two and is respectively positioned on the
In one inlet chamber.The technical solution, more reasonable structure punctures a locker room by two bayonet fittings using more convenient, real
Existing at least two puncture mouth, flow out so that storing indoor fluid from along the mouth that punctures outer radially of the axis of rotation, while gas
Locker room can be entered by the radial inner mouth that punctures, be conducive to fluid and flowed out from locker room.
9th, the locker room, inlet chamber side along being sequentially distributed outward radially of the axis of rotation.The technical solution, knot
Structure is more reasonable, using more convenient, the fluid discharged from locker room can be enabled to flow into inlet chamber, and is unlikely to from entrance
The opening of room flows out.
Tenth, the inner cavity of the holding tank is L-shaped, and one section of L-type holding tank inner cavity is located in storage basal disc.The technical side
Case can store more fluids in holding tank, more saving space, using more convenient.
It is detailed in specific embodiment part description.
Detailed description of the invention
Fig. 1 is the structure chart of embodiment 1 in the present invention;
Fig. 2 is the structure chart of fluid storage dish in Fig. 1;
Fig. 3 is the structure chart of holding tank in Fig. 2;
Fig. 4 is the structure chart of detection plate in Fig. 1;
Fig. 5 is the cut away view of detection plate in Fig. 4;
Fig. 6 is the first state figure of embodiment 1 in the present invention;
Fig. 7 is the second state diagram of embodiment 1 in the present invention;
Fig. 8 is the structure cut away view of embodiment 2 in the present invention;
Fig. 9 is the first state figure of embodiment 3 in the present invention;
Figure 10 is the second state diagram of embodiment 3 in the present invention;
Figure 11 is the top view of detection plate in the embodiment of the present invention 4;
Figure 12 is the first state figure of embodiment 5 in the present invention;
Figure 13 is the second state diagram of embodiment 5 in the present invention;
Figure 14 is the first state figure of embodiment 6 in the present invention;
Figure 15 is the second state diagram of embodiment 6 in the present invention;
Figure 16 is the structure cut away view of embodiment 7 in the present invention.
Wherein: 1-1 store basal disc, the first holding tank of 1-2, the first sealer of 1-3, the second holding tank of 1-4, the second sealer of 1-5,
2-1 detects basal disc, 2-2 first entrance room, the side of 2-2-1 first entrance room, 2-3 second entrance room, 2-3-1 second entrance room
Side, the first bayonet fittings of 2-4, the second bayonet fittings of 2-5,2-6 third bayonet fittings, the 4th bayonet fittings of 2-7,2-8
One non-functional room, the non-functional room 2-9 second.
Specific embodiment
Below in conjunction with the attached drawing in the embodiment of the present application, technical solutions in the embodiments of the present application carries out clear, complete
Site preparation description, it is clear that described embodiments are only a part of embodiments of the present application, instead of all the embodiments.Below
Description only actually at least one exemplary embodiment be it is illustrative, never as to the application and its application or making
Any restrictions.Based on the embodiment in the application, those of ordinary skill in the art are not making creative work premise
Under every other embodiment obtained, shall fall in the protection scope of this application.
Many details are explained in the following description in order to fully understand the application, but the application can be with
Implemented using other than the one described here other way, those skilled in the art can be without prejudice to the application intension
In the case of do similar popularization, therefore the application is not limited by the specific embodiments disclosed below.
It should be noted that term used herein above is merely to describe specific embodiment, and be not intended to restricted root
According to the illustrative embodiments of the application.As used herein, unless the context clearly indicates otherwise, otherwise singular
Also it is intended to include plural form, additionally, it should be understood that, when in the present specification using term "comprising" and/or " packet
Include " when, indicate existing characteristics, step, operation, device, component and/or their combination.
Unless specifically stated otherwise, positioned opposite, the digital table of the component and step that otherwise illustrate in these embodiments
Up to the unlimited scope of the present application processed of formula and numerical value.Simultaneously, it should be appreciated that for ease of description, each portion shown in attached drawing
The size divided not is to draw according to actual proportionate relationship.For technology, side known to person of ordinary skill in the relevant
Method and equipment may be not discussed in detail, but in the appropriate case, and the technology, method and apparatus should be considered as authorizing explanation
A part of book.In shown here and discussion all examples, any occurrence should be construed as merely illustratively, and
Not by way of limitation.Therefore, the other examples of exemplary embodiment can have different values.It should also be noted that similar label
Similar terms are indicated in following attached drawing with letter, therefore, once it is defined in a certain Xiang Yi attached drawing, then subsequent attached
It does not need that it is further discussed in figure.
In the description of the present application, it is to be understood that the noun of locality such as " front, rear, top, and bottom, left and right ", " laterally, vertical,
Vertically, orientation or positional relationship indicated by level " and " top, bottom " etc. is normally based on orientation or position shown in the drawings and closes
System is merely for convenience of description the application and simplifies description, and in the absence of explanation to the contrary, these nouns of locality do not indicate that
It must have a particular orientation or be constructed and operated in a specific orientation with the device or element for implying signified, therefore cannot manage
Solution is the limitation to the application protection scope;The noun of locality " inside and outside " refers to inside and outside the profile relative to each component itself.
For ease of description, spatially relative term can be used herein, as " ... on ", " ... top ",
" ... upper surface ", " above " etc., for describing such as a device shown in the figure or feature and other devices or spy
The spatial relation of sign.It should be understood that spatially relative term is intended to comprising the orientation in addition to device described in figure
Except different direction in use or operation.For example, being described as if the device in attached drawing is squeezed " in other devices
It will be positioned as " under other devices or construction after part or construction top " or the device of " on other devices or construction "
Side " or " under other devices or construction ".Thus, exemplary term " ... top " may include " ... top " and
" in ... lower section " two kinds of orientation.The device can also be positioned with other different modes and (is rotated by 90 ° or in other orientation), and
And respective explanations are made to the opposite description in space used herein above.
In addition, it should be noted that, limiting components using the words such as " first ", " second ", it is only for be convenient for
Corresponding components are distinguished, do not have Stated otherwise such as, there is no particular meanings for above-mentioned word, therefore should not be understood as to this
Apply for the limitation of protection scope.
Embodiment 1:
As shown in Fig. 1-Fig. 7, the invention discloses a kind of for discharging the device of fluid, including fluid storage dish and detection plate,
The fluid storage dish includes storage basal disc 1-1, holding tank and sealer, and the holding tank is fixed on storage basal disc 1-1, described
Sealer and holding tank are tightly connected and form locker room;The detection plate includes detecting basal disc 2-1, inlet chamber and bayonet fittings,
The inlet chamber is provided on detection basal disc 2-1, and the bayonet fittings are located in inlet chamber;The inlet chamber is nested with locker room
Together or separation cooperates, and when inlet chamber nests together with locker room, the bayonet fittings puncture sealer.
As shown in Figure 2 and Figure 3, the locker room includes the first locker room and the second locker room, and first locker room includes
First holding tank 1-2 and the first sealer 1-3, second locker room include the second holding tank 1-4 and the second sealer 1-5, described
The height dimension of first locker room is identical as the height dimension of the second locker room, i.e. the height dimension of the first holding tank 1-2 and
The height dimension of two holding tank 1-4 is identical.
As shown in Figure 4-Figure 7, the inlet chamber includes first entrance room 2-2 and second entrance room 2-3, the bayonet fittings
Including be located at first entrance room 2-2 in the first bayonet fittings 2-4 and in second entrance room 2-3 the second bayonet fittings 2-
5, first locker room is adapted with first entrance room 2-2, and second locker room is adapted with second entrance room 2-3.
As shown in Figure 6, Figure 7, the side 2-2-1 of first entrance room is more leaned on radially of the axis of rotation than the first edge holding tank 1-2
Outside, the side 2-3-1 of second entrance room is than the second holding tank 1-4 along radially of the axis of rotation more outward.
1 operation instruction of embodiment:
As shown in Fig. 2, before factory, encapsulated first fluid in the first holding tank 1-2 of fluid storage dish, fluid storage dish
Encapsulated second fluid, the fluid are reagent in second holding tank 1-4.
As shown in Figure 2, Figure 4 shows, when factory, fluid storage dish, detection plate are individually packed, store, are transported.
When detection, the present apparatus is mounted on rotation monitor station.Detection plate is fixed on to first turn of rotation monitor station
On axis, fluid storage dish is fixed in the second shaft of rotation monitor station.
As shown in fig. 6, operation rotation monitor station first rotating shaft and the second shaft it is concentric rotate and it is close to each other so that
Fluid storage dish is located at the top of detection plate and concentric rotation.At this point, the first holding tank 1-2 alignment insertion first entrance
Room 2-2, the first sealer 1-3 are located at the top of the first bayonet fittings 2-4;The second holding tank 1-4 alignment insertion second
Inlet chamber 2-3, the second sealer 1-5 are located at the top of the second bayonet fittings 2-5.
As shown in fig. 7, the first rotating shaft and the second shaft of operation rotation monitor station are further close to each other, so that the first thorn
The first fluid that shape structure 2-4 is punctured in the first sealer 1-3, the first holding tank 1-2 is dumped into first under the influence of centrifugal force
Inlet chamber 2-2, meanwhile, the second fluid that the second bayonet fittings 2-5 is punctured in the second sealer 1-5, the second holding tank 1-4 is being centrifuged
Second entrance room 2-3 is dumped under the action of power.
After reagent enters inlet chamber, enters other chambers through runner under the influence of centrifugal force and used for detection.
The inventive concept of embodiment 1: it is individually packed by fluid storage dish, detection plate, stores, transports, solved
The technical issues of reducing detection plate volume.In specific environment storage, since fluid storage dish individually stores, it is empty to reduce storage
Between, carrying cost is reduced, meanwhile, it reduces transport difficulty, reduce transportation cost.Indoor reagent will be stored when detecting
Inlet chamber is instilled, the volume of detection plate is reduced.
The technical solution can simultaneously be instilled a kind of detection reagent by the locker room Liang Ge, inlet chamber and bayonet fittings
One inlet chamber, another detection reagent instills another inlet chamber, easy to operate, high-efficient.
Embodiment 2:
As shown in figure 8, embodiment 2 is similar to Example 1, the difference is that, the inner cavity of the holding tank is L-shaped, L-type storage
One section of slot inner cavity is located in storage basal disc 1-1.The inner cavity of the i.e. described first holding tank 1-2 is L-shaped, the second holding tank 1-
4 inner cavity is L-shaped.It is advantageous in that, more fluids can be stored in holding tank, save space, it is easy to use.
Embodiment 3:
As shown in Figure 9, Figure 10, embodiment 3 is similar to Example 1, the difference is that, including fluid storage dish and detection plate,
The fluid storage dish includes storage basal disc 1-1, holding tank and sealer, and the holding tank is fixed on storage basal disc 1-1, described
Sealer and holding tank are tightly connected and form locker room;The locker room includes the first locker room and the second locker room, and described the
One locker room includes the first holding tank 1-2 and the first sealer 1-3, and second locker room includes the second holding tank 1-4 and second
Sealer 1-5.
The detection plate includes detection basal disc 2-1, first entrance room 2-2, the first non-functional room 2-8 and the first bayonet fittings
2-4, the first entrance room 2-2 are provided with detection basal disc 2-1 left part, and the first non-functional room 2-8 is provided with detection basal disc
2-1 right part, the first bayonet fittings 2-4 are located in the 2-2 of first entrance room;The first entrance room 2-2 is deposited with first respectively
Storage chamber, the second locker room are adapted, and the first non-functional room 2-8 is adapted with the first locker room, the second locker room respectively, when
First bayonet fittings 2-4 described in when first entrance room 2-2 and locker room nest together punctures sealer.
The side 2-2-1 of first entrance room is than the first holding tank 1-2 along radially of the axis of rotation more outward.
3 operation instruction of embodiment:
Embodiment 3 is similar to Example 1, the difference is that,
As shown in figure 9, the first rotating shaft and the second shaft of operation rotation monitor station are further close to each other, so that the first thorn-like knot
The first fluid that structure 2-4 is punctured in the first sealer 1-3, the first holding tank 1-2 is dumped into first entrance under the influence of centrifugal force
Room 2-2, the second holding tank 1-4 is located in the first non-functional room 2-8 at this time.
As shown in Figure 10, first rotating shaft and the second shaft of operation rotation monitor station separate, relative rotation 180 degree, mutually
It is close, so that the first bayonet fittings 2-4 punctures the second fluid in the second sealer 1-5, the second holding tank 1-4 in the work of centrifugal force
First entrance room 2-2 is dumped under, the first holding tank 1-2 is located in the first non-functional room 2-8 at this time.
The inventive concept of embodiment 3: by the locker room Liang Ge, an inlet chamber, a non-functional room and one be located at into
The indoor bayonet fittings of mouth, realize two different detection reagents gradually instilling the same inlet chamber, easy to operate, efficiency
It is high.
Embodiment 4:
As shown in Fig. 2, Figure 11, embodiment 4 is similar to Example 3, the difference is that,
The locker room includes the first locker room and the second locker room, and the inlet chamber includes that first entrance room 2-2 and second enter
Mouth room 2-3, the non-functional room include the first non-functional non-functional room 2-9 of room 2-8 and second, and the bayonet fittings include being located at
The first bayonet fittings 2-4 in the 2-2 of first entrance room and the second bayonet fittings 2-5 in the 2-3 of second entrance room, described
One locker room is adapted with first entrance room 2-2, the second non-functional room 2-9 respectively, and second locker room enters with second respectively
Mouth room 2-3, the first non-functional room 2-8 are adapted.
4 operation instruction of embodiment:
Embodiment 4 is similar to Example 3, the difference is that,
As shown in figure 11, the first rotating shaft and the second shaft of operation rotation monitor station are further close to each other, so that the first thorn-like
The first fluid that structure 2-4 punctures in the first sealer 1-3, the first holding tank 1-2 is dumped into first under the influence of centrifugal force and enters
Mouth room 2-2, the second holding tank 1-4 is located in the first non-functional room 2-8 at this time.
First rotating shaft and the second shaft of operation rotation monitor station separate, and 60 degree of rotation, close to each other counterclockwise, so that the
The second fluid that two bayonet fittings 2-5 are punctured in the second sealer 1-5, the second holding tank 1-4 is dumped under the influence of centrifugal force
Second entrance room 2-3, the first holding tank 1-2 is located at the second non-functional room 2-9 at this time.
The inventive concept of embodiment 4: pass through the locker room Liang Ge, two entrances room, two non-functional rooms and two thorn-like knots
Structure, a bayonet fittings are located in an inlet chamber, and two different detection reagents are gradually instilled different one and entered by realization
Mouth room, it is easy to operate, high-efficient.
Embodiment 5:
As shown in Figure 12 and Figure 13, embodiment 5 is similar to Example 1, the difference is that, the height of the first bayonet fittings 2-4
The height dimension that size is greater than the second bayonet fittings 2-5 is spent, the height dimension of the first bayonet fittings 2-4 is 9mm, described the
The height dimension of two bayonet fittings 2-5 is 4mm.
5 operation instruction of embodiment:
Embodiment 5 is similar to Example 1, the difference is that,
As shown in figure 12, the first rotating shaft and the second shaft of operation rotation monitor station are close to each other and are maintained at the first height, make
The first bayonet fittings 2-4 puncture the first fluid in the first sealer 1-3, the first holding tank 1-2 under the influence of centrifugal force by
It gets rid of into first entrance room 2-2, meanwhile, the second bayonet fittings 2-5 does not reach the second sealer 1-5.
As shown in figure 13, the first rotating shaft and the second shaft of operation rotation monitor station continue close to each other and are maintained at second
Highly, so that the first bayonet fittings 2-4 deeply punctures the first sealer 1-3, meanwhile, the second bayonet fittings 2-5 punctures the second sealer
Second fluid in 1-5, the second holding tank 1-4 is dumped into second entrance room 2-3 under the influence of centrifugal force.
The inventive concept of embodiment 5: by the locker room Liang Ge, two entrances the room bayonet fittings different with two height,
Two different detection reagents are gradually instilled a different inlet chamber by realization, are operated easier, more efficient.
Embodiment 6:
As shown in Figure 14, Figure 15, embodiment 6 is similar to Example 1, the difference is that, the inner cavity of the holding tank is L-shaped, L
One section of type holding tank inner cavity is located in storage basal disc 1-1.The height dimension of first locker room is greater than the second locker room
Height dimension, i.e., the height dimension of described first locker room are 15mm, and the height dimension of second locker room is 10mm.
6 operation instruction of embodiment:
Embodiment 6 is similar to Example 1, the difference is that,
As shown in figure 14, the first rotating shaft and the second shaft of operation rotation monitor station are close to each other and are maintained at the first height, make
The first bayonet fittings 2-4 puncture the first fluid in the first sealer 1-3, the first holding tank 1-2 under the influence of centrifugal force by
It gets rid of into first entrance room 2-2, meanwhile, the second bayonet fittings 2-5 does not reach the second sealer 1-5.
As shown in figure 15, the first rotating shaft and the second shaft of operation rotation monitor station continue close to each other and are maintained at second
Highly, so that the first bayonet fittings 2-4 deeply punctures the first sealer 1-3, meanwhile, the second bayonet fittings 2-5 punctures the second sealer
Second fluid in 1-5, the second holding tank 1-4 is dumped into second entrance room 2-3 under the influence of centrifugal force.
The inventive concept of embodiment 6: by the different locker room of two height, two entrances room and two bayonet fittings,
Two different detection reagents are gradually instilled a different inlet chamber by realization, are operated easier, more efficient.
Embodiment 7:
As shown in figure 16, embodiment 7 is similar to Example 1, the difference is that,
The bayonet fittings include the first bayonet fittings 2-4 and third bayonet fittings 2-6 in the 2-2 of first entrance room, also
The second bayonet fittings 2-5 and the 4th bayonet fittings 2-7 including being located at 2-3 in second entrance room.
7 operation instruction of embodiment:
Embodiment 7 is identical as the application method of embodiment 1.
The inventive concept of embodiment 7: puncturing a locker room by two bayonet fittings, realizes that at least two puncture mouth,
It is flowed out so that storing indoor fluid from along the mouth that punctures outer radially of the axis of rotation, while gas can be by radial inner
It punctures mouth and enters locker room, be conducive to fluid and flowed out from locker room.
It in the above-described embodiments, wherein can be only equipped with a part of liquid reagent and a part of compressible in the locker room
Medium, such as air.It can make after the sealer of the locker room of sealing is punctured in this way, locker room can be made by heating
Compressible medium expansion is discharged with this to assist to be stored in the indoor liquid of storage.
In some cases, indoor compressible medium, such as air are stored, the reagent to be stored may be generated certain
Influence, therefore may result in during long-term storage agent of activity and reduce and even change.In this case, it stores
Indoor compressible medium can choose inert gas, avoid influence of the compressible medium to reagent with this.
In an alternative scenario, it can will be completely filled with liquid reagent in locker room, avoids existing in locker room with this
Influence of the compressible medium to reagent.
Other alternatively in scheme, partially liq reagent can be stored in locker room, and by reagent reservoirs
Vacuum pumping avoids in locker room existing influence of other media to reagent with this.
In the above-described embodiments, the most radially outer part of the inlet chamber is than being located at the most radially outer of locker room
Part is more radially outer, and the fluid discharged from locker room can be enabled to flow into inlet chamber in this way, and is unlikely to from entrance
The opening of room flows out.
In the above-described embodiments, what the bayonet fittings were aligned is the most radially outer part of locker room, in this way can
So that under the effect of centrifugation, indoor whole fluids will be stored and discharged.
The non-functional room is temporary room, i.e. turnover room, plays the role of cooperation, transition.
Claims (8)
1. a kind of for discharging the device of fluid, it is characterised in that: including fluid storage dish and detection plate, the fluid storage dish
Including storage basal disc (1-1), holding tank and sealer, the holding tank setting is in storage basal disc (1-1), the sealer and storage
Slot is tightly connected and forms locker room;The detection plate includes detection basal disc (2-1), inlet chamber and bayonet fittings, the entrance
In detection basal disc (2-1), the bayonet fittings are located in inlet chamber for room setting;The inlet chamber and locker room nest together
Or separation cooperation, when inlet chamber nests together with locker room, the bayonet fittings puncture sealer.
2. according to claim 1 a kind of for discharging the device of fluid, it is characterised in that: the locker room includes first
Locker room and the second locker room, the inlet chamber include first entrance room (2-2) and second entrance room (2-3), the thorn-like knot
Structure includes the first bayonet fittings (2-4) in first entrance room (2-2) and the second thorn being located in second entrance room (2-3)
Shape structure (2-5), first locker room are adapted with first entrance room (2-2), second locker room and second entrance room
(2-3) is adapted.
3. according to claim 1 a kind of for discharging the device of fluid, it is characterised in that: the detection plate further includes non-
Functional compartments, the non-functional room setting nest together with locker room or separate cooperation in detection basal disc (2-1).
4. according to claim 3 a kind of for discharging the device of fluid, it is characterised in that: the locker room includes first
Locker room and the second locker room, the inlet chamber include first entrance room (2-2), and the non-functional room includes the first non-functional room
(2-8), the bayonet fittings are located in first entrance room (2-2) or in the first non-functional room (2-8), the first entrance room
(2-2) is adapted with the first locker room, the second locker room respectively, the first non-functional room (2-8) respectively with the first locker room,
Second locker room is adapted.
5. according to claim 3 a kind of for discharging the device of fluid, it is characterised in that: the locker room includes first
Locker room and the second locker room, the inlet chamber include first entrance room (2-2) and second entrance room (2-3), described non-functional
Room includes the first non-functional room (2-8) and the second non-functional room (2-9), and the bayonet fittings include being located at first entrance room (2-
2) the first bayonet fittings (2-4) in and the second bayonet fittings (2-5) in second entrance room (2-3), described first deposits
Storage chamber is adapted with first entrance room (2-2), the second non-functional room (2-9) respectively, and second locker room enters with second respectively
Mouth room (2-3), the first non-functional room (2-8) are adapted.
6. according to claim 1 a kind of for discharging the device of fluid, it is characterised in that: the inlet chamber includes first
Inlet chamber (2-2), the quantity of the bayonet fittings are at least two and are respectively positioned in first entrance room (2-2).
7. a kind of for discharging the device of fluid described in any one of -6 according to claim 1, it is characterised in that: described to deposit
Storage chamber, inlet chamber side along being sequentially distributed outward radially of the axis of rotation.
8. a kind of for discharging the device of fluid described in any one of -6 according to claim 1, it is characterised in that: described to deposit
The inner cavity of storage tank is L-shaped, and one section of L-type holding tank inner cavity is located in storage basal disc (1-1).
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