The present invention relates to a pouch and particularly to an air suction and injection structure for pouches and method of use.
Please referring to
The zipper bag 1 can also receive injection of inertia fresh-keeping gas such as nitrogen via a gas injection member (not shown in the drawing) through the air valve 2 to reduce food rotten speed and help to maintain freshness of the food.
Depending on different requirements of air suction or gas injection the air valve 2 can be selected a two-way valve to meet air suction or injection requirement, or an one-way air valve, and is bonded to the zipper bag 1 in a selected direction to improve air suction or injection efficiency, and also enhance air-tightness to fully meet use requirements.
While the aforesaid conventional technique can make the zipper bag 1 vacuum or inject gas inside to meet use requirements, due to airtight concern the air valve 2 and the zipper bag 1 often are fixedly fastened by bonding. When the zipper bag 1 cannot be reused and has to be thrown away, the air valve 2 also is discarded. This not only creates environmental concern, also increases the fabrication cost of the zipper bag 1 equipped with the air valve 2. As a result, the price is higher and use requirements cannot be fully met.
Therefore the primary object of the present invention is to provide a detachable pouch air valve and a structure adopted for use on a sealed pouch and a method of use so that the pouch air valve can be repeatedly used.
The pouch air valve according to the invention includes a hollow tube, an air valve, a first suction plate and a second suction plate. The hollow tube has a central passage running through two sides thereof. The air valve fills and seals the central passage. The first suction plate and second suction plate respectively encircle the outer wall of the hollow tube and suck each other.
Use of the pouch air valve includes the steps as follow: first, prepare a pliable sealed pouch and form on the sealed pouch an aperture smaller than suction areas of the first and second suction plates; next, have the hollow tube running through the aperture with the first and second suction plates positioned at two sides of the sealed pouch to allow the first and second suction plates respectively sucking the sealed pouch to couple each other and form an installation structure on the sealed pouch.
By means of the structure set forth above, the pouch air valve can be fastened to the sealed pouch through the first and second suction plates respectively sucking the sealed pouch to couple each other. Such technical features make the pouch air valve detachable and reusable repeatedly on different sealed pouches. The coupling of the first and second suction plates also provides desired air-tightness. As the pouch air valve also provides air deterring effect, it can suck air from the sealed pouch or inject gas into it.
The foregoing, as well as additional objects, features and advantages of the invention will be more readily apparent from the following embodiments and detailed description, which proceed with reference to the accompanying drawings. The embodiments are merely for illustrative purpose and not the limitations of the invention.
Please referring to
The first suction plate 30 and the hollow tube 10 can be integrally formed to increase air-tightness. The outer wall of the hollow tube 10 is formed a latch flange 12 to latch the second suction plate 40 to couple the first suction plate 30. The first and second suction plates 30 and 40 have respectively a groove 31 and 41 at one edge to increase the strength thereof without warping. The first suction plate 30 also may have a plurality of bulged spots 32 formed on one side remote from the hollow tube 10, and another latch flange 13 on a lateral side.
The air valve 20 can be a one-way valve to increase vacuuming or gas filling efficiency. In the event of the one-way valve, the valve 20 includes a ventilation duct 21 with an inner wall gradually shrunk to form an ellipsoidal closed end 22 and an outer wall gradually shrunk to form a duck-beak pointed end 23. The ellipsoidal closed end 22 has a slit 24 extended to the front end of the duck-beak pointed end 23. The geometrical shapes of the duck-beak pointed end 23 and ellipsoidal closed end 22 naturally form a compression force. When the ventilation duct 21 does not have a positive pressure inside, the slot 24 is tightly closed to form the one-way air valve.
Refer to
First, prepare a pliable sealed pouch 50 and form on the sealed pouch 50 an aperture 51 smaller than the suction area of the first and second suction plates 30 and 40 (referring to
Next, have the hollow tube 10 run through the aperture 51. In the event that the first suction plate 30 and the hollow tube 10 are formed integrally, and the latch flange 12 is formed on the outer wall of the hollow tube 10, first, run the hollow tube 10 through the aperture 51 so that the first suction plate 30 is in tight contact with the inner surface of the sealed pouch 50 (referring to
Finally, food 80A can be placed into the sealed pouch 50 and the sealed pouch 50 can be closed; and an air suction member 60 is provided to cover the central passage 11 of the hollow tube 10 (referring to
Aside from using the air suction member 60 to discharge the air from the sealed pouch 50, the air inside the sealed pouch 50 can also be expelled by a pressure difference generated by direct squeezing of the sealed pouch 50.
Please refer to
As a conclusion, the invention provides the first and second suction plates 30 and 40 that are detachably fastened to the hollow tube 10 to be spaced from the seal pouch 50 and form mutual coupling. Not only it can be repeatedly used on different types of seal pouches 50, the mutual coupling also provides desired air-tightness. Hence the pouch air valve can be repeatedly used to alleviate environmental concerns, and fabrication cost also can be reduced to meet use requirements.
Number | Date | Country | Kind |
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100122583 A | Jun 2011 | TW | national |
Number | Name | Date | Kind |
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1702974 | MacDonald | Feb 1929 | A |
8066433 | Sabounjian | Nov 2011 | B2 |
Number | Date | Country | |
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20130000755 A1 | Jan 2013 | US |