CN203318984U - Novel piston type vacuum container - Google Patents
Novel piston type vacuum container Download PDFInfo
- Publication number
- CN203318984U CN203318984U CN2013203659543U CN201320365954U CN203318984U CN 203318984 U CN203318984 U CN 203318984U CN 2013203659543 U CN2013203659543 U CN 2013203659543U CN 201320365954 U CN201320365954 U CN 201320365954U CN 203318984 U CN203318984 U CN 203318984U
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- bottle
- piston type
- type vacuum
- bottleneck
- skeleton
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Abstract
A novel piston type vacuum container comprises a bottle body and a suction nozzle, wherein an upper bottle opening is formed in the upper end of the bottle body, the suction nozzle is mounted in the upper bottle opening, a lower bottle opening is formed in the lower end of the bottle body, a framework is movably sealed and mounted on the inner wall, close to the lower bottle opening, of the bottle body, the upper end surface of the framework is a bottom surface of an inner cavity of the container, the bottle body is hollow, the inner cavity of the bottle body is distributed in a uniform cross section manner from top to bottom, and a blocking piece used for preventing the framework from sliding out of the lower bottle opening is arranged in the lower bottle opening. The provided novel piston type vacuum container is convenient to use and operate.
Description
Technical field
The utility model relates to a kind of vacuum vessel, the liquid container of especially Gong drinking.
Background technology
Existing vacuum vessel, comprise bottle, bottleneck and suction nozzle, described bottleneck is positioned at the bottle top, and described bottleneck upper end is upper bottleneck, and described upper bottleneck is installed described suction nozzle, described bottle is hollow form, the lower end of described bottle is lower bottleneck, and at the bottle inner wall sealing mounting framework near described lower bottleneck, described skeleton is arranged on the bottle inwall movably, the upper surface of described skeleton is the container intracavity bottom surface, and the actuating mechanism moved up and down in order to drive skeleton is installed in the bottom surface of described skeleton.
The defect of its existence: because the bottle upper end is provided with bottleneck, the internal diameter of bottleneck is less than bottle bottom, therefore can block skeleton, can not all the liquid in container all be released, and uses inconvenient; During operation, need by actuating mechanism, skeleton to be moved to the lower end of bottle at every turn, operate cumbersome.
Summary of the invention
For the use that overcomes existing vacuum vessel is inconvenient, the deficiency of troublesome poeration, the utility model provides a kind of easy to use, easy to operate piston type vacuum vessel.
The utility model solves the technical scheme that its technical matters adopts:
A kind of piston type vacuum vessel, comprise bottle and suction nozzle, described bottle upper end is upper bottleneck, described upper bottleneck is installed described suction nozzle, the lower end of described bottle is lower bottleneck, at the bottle inner wall sealing mounting framework near described lower bottleneck, described skeleton is arranged on the bottle inwall movably, the upper surface of described skeleton is the container intracavity bottom surface, described bottle is hollow form, the inner chamber of described bottle uniform cross section from top to bottom distributes, and described lower bottleneck is provided with the block piece that skids off lower bottleneck under described skeleton for stopping.
Further, described bottle upper end outer wall is installed block, and described block and described suction nozzle clamping, install over cap on described block.
Or: described upper bottleneck and liner are tightly connected, and described suction nozzle is positioned at described being lining with, and described bottle upper end outer wall is installed block, and described block and described suction nozzle clamping, install over cap on described block.
The middle part of described skeleton is arch upwards.This version can reduce surplus and convenient operation as far as possible.
The bottom surface of described skeleton is provided with connecting rod.This structure convenient operation.
Described block piece is bottom, and the bottom outer wall of described bottle is installed bottom, and described bottom extend in described lower bottleneck.In this structure, bottom can disassemble from bottle bottom outer wall, and skeleton can be installed from top to bottom from upper bottle mouth position, or certainly descends bottle mouth position to install from bottom to top; Skeleton can be at the bottle intracavity up-and-down movement.
Or: described block piece is the evagination step, and described outer lug boss component level is in the bottle lower inner wall.In this structure, skeleton can be installed from top to bottom from upper bottle mouth position, and skeleton can be at the bottle intracavity up-and-down movement.
Or be: described block piece is the elasticity step, and described elasticity step is arranged on described lower bottleneck, and described elasticity step extend in described lower bottleneck.In this structure, be retracted into lower bottleneck inwall after the male end of elasticity step is squeezed, therefore, skeleton can be installed from top to bottom from upper bottle mouth position, or certainly descends bottle mouth position to install from bottom to top; Skeleton can be at the bottle intracavity up-and-down movement.
Certainly, block piece can be also other forms, as long as skeleton can be blocked in to bottle intracavity.
Described outside bottle is provided with containment shell, between described bottle and containment shell, is vacuum chamber.
Described bottle intracavity is installed temperature measurement unit, and described bottle outer wall is installed in order to show the read out instrument of real time temperature, and described temperature measurement unit is connected with described read out instrument.
The beneficial effects of the utility model are mainly manifested in: 1, owing to there is no stopping of bottleneck, after sucking liquid, the block of outwarding winding, just can take out skeleton at upper bottleneck and clean, saved the actuating mechanism moved up and down for driving skeleton, easy to use, more convenient to operate.
If 2 inhale full liquid after, also remain a part of liquid, but wait for when lower meal is inhaled while thinking after the full whole bottle liquid of bubble to inhale again, steep again liquid after can retracting lower bottleneck to skeleton with accessory appliances, simple and convenient.
3, owing to being vacuum in bottle, effectively avoided air to enter in liquid, liquid can not produce bubble, prevents drinking person belly flatulence, has the hiccups; Vacuum-energy reduces liquid nutritional composition oxidation wastage, extends and guarantees the quality the time.
4, outside bottle is provided with containment shell, and between bottle and shell, inner chamber vacuumizes, and can effectively be incubated.
5, be provided with temperature measuring equipment in bottle, the temperature of liquid in display bottle, scald while preventing from drinking accurately.
6, bottle also can adopt glass or plastics or metal or other materials.
The accompanying drawing explanation
Fig. 1 is the schematic diagram of piston type vacuum vessel.
Fig. 2 is the schematic diagram of another kind of block piece.
Fig. 3 is the schematic diagram of another block piece.
Fig. 4 is the connection diagram of another kind of suction nozzle and upper bottleneck.
The specific embodiment
Below in conjunction with accompanying drawing, the utility model is further described.
With reference to Fig. 1 ~ Fig. 4, a kind of piston type vacuum vessel, comprise bottle 1 and suction nozzle 2, described bottle 1 upper end is upper bottleneck, described upper bottleneck is installed described suction nozzle 2, the lower end of described bottle 1 is lower bottleneck, at the bottle inner wall sealing mounting framework 3 near described lower bottleneck, described skeleton 3 is arranged on the bottle inwall movably, the upper surface of described skeleton 3 is the container intracavity bottom surface, described bottle 1 is hollow form, and the inner chamber of described bottle 1 uniform cross section from top to bottom distributes, and described lower bottleneck is provided with the block piece that skids off lower bottleneck under described skeleton for stopping.
Further, described bottle 1 upper end outer wall is installed block 4, and described block 4 and described suction nozzle 2 clampings, install over cap 6 on described block 4.
Or: described upper bottleneck and liner 5 are tightly connected by seal ring, and described suction nozzle 2 is positioned on described liner 5, and described bottle 1 upper end outer wall is installed block 4, and described block 4 and described suction nozzle 2 clampings, install over cap 6 on described block 4.
The middle part of described skeleton 3 is arch upwards.This version can reduce surplus and convenient operation as far as possible.
The bottom surface of described skeleton 3 is provided with connecting rod 7.This structure convenient operation.
Described block piece is bottom 8, and the bottom outer wall of described bottle is installed bottom 8, and described bottom 8 extend in described lower bottleneck.In this structure, bottom can disassemble from bottle bottom outer wall, and skeleton can be installed from top to bottom from upper bottle mouth position, or certainly descends bottle mouth position to install from bottom to top; Skeleton can be at the bottle intracavity up-and-down movement.
Or: described block piece is evagination step 9, and described evagination step 9 is positioned at the bottle lower inner wall.In this structure, skeleton can be installed from top to bottom from upper bottle mouth position, and skeleton can be at the bottle intracavity up-and-down movement.
Or be: described block piece is elasticity step 10, and described elasticity step 10 is arranged on described lower bottleneck, and described elasticity step 10 extend in described lower bottleneck.In this structure, be retracted into lower bottleneck inwall after the male end of elasticity step is squeezed, therefore, skeleton can be installed from top to bottom from upper bottle mouth position, or certainly descends bottle mouth position to install from bottom to top; Skeleton can be at the bottle intracavity up-and-down movement.
Certainly, block piece can be also other forms, as long as skeleton can be blocked in to bottle intracavity.
Described bottle 1 outside is provided with containment shell, between described bottle and containment shell, is vacuum chamber, has heat insulation function.
Described bottle 1 inner chamber is installed temperature measurement unit, and described bottle outer wall is installed in order to show the read out instrument of real time temperature, and described temperature measurement unit is connected with described read out instrument.
The interior cross section of the bottle 1 of the present embodiment is rounded, forms cylindrical cavity.Certainly, can be also other shapes, as long as can guarantee that skeleton can slide from bottom to top or from top to bottom.
In the present embodiment, described skeleton 3 comprises skeleton main body and ladder skeleton groove, and described ladder skeleton groove is connected with the skeleton main body, and described ladder skeleton groove seals and is arranged on described bottle inwall by piston packing ring.The piston packing ring at this place can be one, two or three.
In the present embodiment, at first skeleton is arranged in the lower bottleneck of bottle, install bottom in lower bottleneck bottom again, then fill liquid, then cover tightly suction nozzle and block, use the hand propelled skeleton, make the skeleton upward movement, discharge air unnecessary in bottle and (or inhale soft suction nozzle with outspoken connecing, siphon away unnecessary air in bottle), while as suction nozzle, adopting the automatic switch export structure, after unclamping mouth, the outlet of the automatic switch at soft suction nozzle top will seal closure, now bottle intracavity will form a vacuum system, while with mouth, inhaling suction nozzle, the automatic switch outlet will be opened, because be vacuum state, lower bottleneck opens wide, so will promoting the skeleton bottleneck direction that makes progress, barometric pressure moves uniformly, face siphons away liquid, open block after sucking liquid, take out the skeleton cleaning and sterilizing.
The nipple of the present embodiment can be selected various common type, and the container of the present embodiment can be applied to feeding bottle, learn drink cup, antistaling container, beverage bottle, yogurt production bottle or other liquid containers.
Claims (10)
1. a piston type vacuum vessel, comprise bottle and suction nozzle, described bottle upper end is upper bottleneck, described upper bottleneck is installed described suction nozzle, the lower end of described bottle is lower bottleneck, at the bottle inner wall sealing mounting framework near described lower bottleneck, described skeleton is arranged on the bottle inwall movably, the upper surface of described skeleton is the container intracavity bottom surface, it is characterized in that: described bottle is hollow form, the inner chamber of described bottle uniform cross section from top to bottom distributes, and described lower bottleneck is provided with the block piece that skids off lower bottleneck under described skeleton for stopping.
2. piston type vacuum vessel as claimed in claim 1 is characterized in that: described bottle upper end outer wall is installed block, and described block and described suction nozzle clamping, install over cap on described block.
3. piston type vacuum vessel as claimed in claim 1; it is characterized in that: described upper bottleneck and liner are tightly connected, and described suction nozzle is positioned at described being lining with, and described bottle upper end outer wall is installed block; described block and described suction nozzle clamping, install over cap on described block.
4. piston type vacuum vessel as described as one of claim 1 ~ 3 is characterized in that: the middle part of described skeleton is arch upwards.
5. piston type vacuum vessel as described as one of claim 1 ~ 3, it is characterized in that: the bottom surface of described skeleton is provided with connecting rod.
6. piston type vacuum vessel as described as one of claim 1 ~ 3, it is characterized in that: described block piece is bottom, and the bottom outer wall of described bottle is installed bottom, and described bottom extend in described lower bottleneck.
7. piston type vacuum vessel as described as one of claim 1 ~ 3, it is characterized in that: described block piece is the evagination step, described outer lug boss component level is in the bottle lower inner wall.
8. piston type vacuum vessel as described as one of claim 1 ~ 3, it is characterized in that: described block piece is the elasticity step, described elasticity step is arranged on described lower bottleneck, and described elasticity step extend in described lower bottleneck.
9. piston type vacuum vessel as described as one of claim 1 ~ 3, it is characterized in that: described outside bottle is provided with containment shell, between described bottle and containment shell, is vacuum chamber.
10. piston type vacuum vessel as described as one of claim 1 ~ 3, it is characterized in that: described bottle intracavity is installed temperature measurement unit, described bottle outer wall is installed in order to show the read out instrument of real time temperature, and described temperature measurement unit is connected with described read out instrument.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2013203659543U CN203318984U (en) | 2013-06-21 | 2013-06-21 | Novel piston type vacuum container |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN2013203659543U CN203318984U (en) | 2013-06-21 | 2013-06-21 | Novel piston type vacuum container |
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CN203318984U true CN203318984U (en) | 2013-12-04 |
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CN2013203659543U Expired - Fee Related CN203318984U (en) | 2013-06-21 | 2013-06-21 | Novel piston type vacuum container |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107049072A (en) * | 2017-06-14 | 2017-08-18 | 周林斌 | The application method of de-airing mixer |
CN109172374A (en) * | 2018-09-13 | 2019-01-11 | 南通瑞童塑业科技有限公司 | A kind of vacuum feeding bottle |
-
2013
- 2013-06-21 CN CN2013203659543U patent/CN203318984U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107049072A (en) * | 2017-06-14 | 2017-08-18 | 周林斌 | The application method of de-airing mixer |
CN109172374A (en) * | 2018-09-13 | 2019-01-11 | 南通瑞童塑业科技有限公司 | A kind of vacuum feeding bottle |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20131204 Termination date: 20170621 |
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CF01 | Termination of patent right due to non-payment of annual fee |