1. Field of the Invention
The present invention relates to an inflatable packaging bag and more particularly, to such an inflatable packaging bag, which comprises a plurality of independent air bags joined together by heat sealing. The independent air bags surround a storage space for receiving storage items requiring protection from impact etc. Even if some of the independent air bags are punctured, the inflatable packaging bag can still work well to protect storage items against vibration and impact.
2. Description of Related Art
Conventionally, plastic packing sheets with small air cells may be used to pack storage items in cartons and to protect storage items against vibration and impact. These plastic packing sheets are effective to absorb weak shock waves, however they cannot protect storage items against significant impact.
Taiwan patent publication no. 363600 discloses a buffer packing bag, which comprises an inner wall, an outer wall, and an air chamber defined between the inner wall and the outer wall. When the buffer packing bag is inflated, the inner wall is closely attached to the storage item, and the inflated air chamber gives protection to the storage item. Taiwan patent publication no. 128326 discloses a buffer packing material, which comprises a rectangular air bag with a check valve. According to this design, the body of the buffer packing material is folded up, forming two air bag portions, which have respective inner sides sealed to each other with a sealing line. When inflating the buffer packing material, the sealing line limits the inflation status of the corresponding side of the buffer packing material.
The aforesaid two prior art designs use the air chamber or air bag portions to protect storage items against vibration etc. However, if the air chamber or one air bag portion is penetrated or ruptured during transportation, air immediately leaks out of the buffer packing bag or buffer packing material, and the buffer packing bag or buffer packing material will soon lose the buffering and protecting feature. Further, the air valve structures of the aforesaid two prior art designs are complex and require too much labor during fabrication, thereby resulting in high manufacturing cost.
The inflatable packaging bag comprises a plurality of independent air bags joined to one another by way of heat sealing, each independent air bag having an air passage hole, and an air inlet in communication with the air passage hole of each independent air bag for input of compressed air to inflate the independent air bags. Each independent air bag is formed of four thin-sheet flexible layers including a top layer, a bottom layer, a top air-valve layer, and a bottom air-valve layer. Each independent air bag comprises two peripheral heat sealed seams longitudinally disposed at two opposite lateral sides to seal the four thin-sheet flexible layers of the respective independent air bag together, a narrow opening transversely extended between the peripheral heat sealed seams at a top side, first and second top heat sealed seams and a third top heat sealed seam connected between the peripheral heat sealed seams and extended along the opening at two sides. The first top heat sealed seam and the third top heat sealed seam seal the top layer and the bottom layer together, defining with the peripheral heat sealed seams an air chamber. The second top heat sealed seam extends along one side of the narrow opening opposite to the third top heat sealed seam and seals the top layer and the bottom layer together, defining with the first top heat sealed seam the air passage hole of the respective independent air bag. When the independent air bags are inflated, the independent air bags define a receiving space for receiving storage items requiring protection, and keep storage items well protected by the inflated independent air bags against vibration and collision. Even if some of the independent air bags are punctured, the inflatable packaging bag can still work well to effectively protect storage items against vibration and collision.
Referring to
The air bag 10 further has two fourth top heat sealed seams 32 that are spaced between the peripheral heat sealed seams 31 to seal the top layer 21, the top air-valve layer 25 and the bottom air-valve layer 26 together, defining an air input port 35. In order to prevent complete bonding between the top air-valve layer 25 and the bottom air-valve layer 26, a skin of heat resisting substance 33 is provided between the top air-valve layer 25 and the bottom air-valve layer 26 such that the air input port 35 is kept open after the formation of the fourth top heat sealed seams 32. Two oblique reinforcing heat sealed seams 39 are formed and extended across the connection between the first top heat sealed seam 37 and the fourth top heat sealed seams 32 to seal the top layer 21 and the bottom layer 22 together, preventing leakage of air out of the air bag 10.
Referring to
Referring to
Referring to
As stated before, the air passage hole 14 is formed in the neck of the respective air bag 10. Alternatively, the air passage hole 14 can be formed in the top side of the air bag 10 like the cover flap of an envelope, or any suitable location at the air bag 10.
A prototype of the inflatable packaging bag has been constructed with the features of
The air bags 10 may be inflated with air or an inert gas whereby the latter can provide some protection against fire.
Although the present invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
Number | Date | Country | Kind |
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92220419 U | Nov 2003 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
4465188 | Soroka et al. | Aug 1984 | A |
5451179 | LaRoi et al. | Sep 1995 | A |
5469966 | Boyer | Nov 1995 | A |
5564143 | Pekar et al. | Oct 1996 | A |
6629777 | Tanaka et al. | Oct 2003 | B2 |
6827099 | Tanaka et al. | Dec 2004 | B2 |
6913803 | Peper | Jul 2005 | B2 |
20020064319 | Tanaka et al. | May 2002 | A1 |
Number | Date | Country | |
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20050103676 A1 | May 2005 | US |