1. Field of the Invention
The present invention relates to an automatically inflatable safety device, and more particularly to an automatically inflatable safety device for use in the land and the water.
2. Description of the Related Art
A conventional automatically inflatable safety device comprises an inflatable safety jacket mounted on a user's body and having an inner face formed with an air valve, and an inflation mechanism mounted on the air valve of the safety jacket to supply air into the safety jacket. In practice, when the user is riding the motorcycle, the inflatable safety jacket is put on the user's body, and the inflation mechanism has a connecting ring fastened on the motorcycle. When the user is thrown out of the motorcycle due to an accident, the connecting ring is pulled outward to open the inflation mechanism to release the hydraulic gas contained in the inflation mechanism. Then, the hydraulic gas contained in the inflation mechanism flows into the air valve of the safety jacket to inflate the safety jacket instantaneously so as to protect the user's body.
In accordance with the present invention, there is provided an automatically inflatable safety device, comprising an inflatable safety jacket having an inner face formed with an air valve, and an inflation mechanism mounted on the air valve of the safety jacket, wherein:
The primary objective of the present invention is to provide an automatically inflatable safety device that is available for traffic vehicles applied in the land (such as the motorcycle) and the water (such as the boat or ship).
Another objective of the present invention is to provide an automatically inflatable safety device having an amphibious effect, thereby greatly enhancing the versatility of the automatically inflatable safety device.
A further objective of the present invention is to provide an automatically inflatable safety device that is inflated instantaneously in a rapid and exact manner so as to protect a user exactly safely.
Further benefits and advantages of the present invention will become apparent after a careful reading of the detailed description with appropriate reference to the accompanying drawings.
Referring to the drawings and initially to
The inflation mechanism 20 includes a hollow main body 21 having an inside formed with a stepped receiving chamber 210 and having a periphery formed with a hollow inflation seat 211 communicating with the receiving chamber 210 of the main body 21, an inflation nozzle 218 protruded from and connected to an inside of the inflation seat 211 and having a distal end inserted into the air valve 11 of the safety jacket 10 and a passage 219 communicating with the receiving chamber 210 of the main body 21, an air tank 22 mounted on the inflation seat 211 and containing a high-pressure hydraulic gas, a firing pin 213 movably mounted in the inflation seat 211 and having a first end movable into the air tank 22 and formed with a plurality of slits 2130 to allow passage of the hydraulic gas contained in the air tank 22, a drive shaft 23 movably mounted in the receiving chamber 210 of the main body 21 to drive the firing pin 213 to move toward the air tank 22 and having a first end formed with two opposite locking portions 235, a retaining ring 24 rotatably mounted in the receiving chamber 210 of the main body 21 and having an inner wall formed with two opposite stop portions 241 each detachably locked on a respective one of the two locking portions 235 of the drive shaft 23, and a pull wire 244 wound around a periphery of the retaining ring 24 to rotate the retaining ring 24 and having a first end secured on the retaining ring 24 and a second end protruding outward from the passage 219 of the main body 21.
The receiving chamber 210 of the main body 21 has a first end formed with an opened wall formed with a plurality of through holes 2102 each communicating with the receiving chamber 210 of the main body 21 and a second end formed with a closed wall formed with two opposite guide rails 2100. The opened wall of the receiving chamber 210 of the main body 21 is formed with an annular locking groove 2104.
The first end of the drive shaft 23 has a periphery formed with an annular flange 234, and the two locking portions 235 of the drive shaft 23 are mounted on the flange 234 in an oblique manner. The drive shaft 23 has a second end having an inside formed with a mounting recess 231 and a periphery formed with two opposite guide slots 233. Each of the two guide rails 2100 of the main body 21 is slidably mounted in a respective one of the two guide slots 233 of the drive shaft 23. The inflation mechanism 20 further includes an elastic member 232 mounted in the receiving chamber 210 of the main body 21 and urged between the second end of the drive shaft 23 and the main body 21. Preferably, the elastic member 232 is mounted in the mounting recess 231 of the drive shaft 23. The drive shaft 23 has a tapered outer wall having a thickness gradually increased from the first end to the second end of the drive shaft 23.
The inside of the inflation seat 211 is formed with a threaded stepped receiving hole 2110 communicating with the inflation nozzle 218 for mounting the firing pin 213, and the inflation mechanism 20 further includes a threaded sealing cover 216 screwed into the receiving hole 2110 of the inflation seat 211 and formed with a through hole 217 to allow passage of the firing pin 213, an urging spring 215 mounted in the receiving hole 2110 of the inflation seat 211 and urged between the sealing cover 216 and the firing pin 213 to press the firing pin 213 toward the drive shaft 23, an urging ball 212 mounted in the receiving chamber 210 of the main body 21 and urged between a second end of the firing pin 213 and the tapered outer wall of the drive shaft 23, and an O-ring 214 mounted on a periphery of the firing pin 213 and urged on the receiving hole 2110 of the inflation seat 211. Preferably, the sealing cover 216 has a periphery formed with two spaced insertion holes 2160 for insertion of two tools, such as sticks (not shown), to facilitate rotation of the sealing cover 216. In addition, the firing pin 213 has a mediate portion formed with a shoulder 2132 rested on the urging spring 215, and the second end of the firing pin 213 is formed with a semi-spherical recess 2134 for mounting the urging ball 212.
The retaining ring 24 is rotatably mounted on the flange 234 of the drive shaft 23. Each of the two stop portions 241 of the retaining ring 24 is substantially V-shaped. The retaining ring 24 has a side formed with two opposite protruding locking blocks 242 and has an outer wall formed with an annular groove 243 for mounting the pull wire 244. In addition, the second end of the pull wire 244 is connected to a loop 245 which is fastened on a traffic vehicle, such as the motorcycle or the like.
The inflation mechanism 20 further includes a drive ring 25 rotatably mounted in the receiving chamber 210 of the main body 21 for rotating the retaining ring 24 and having a first side formed with two opposite protruding drive blocks 251 engaged with the two locking blocks 242 of the retaining ring 24, a water solvable wire 253 wound around a periphery of the drive ring 25 and urged on a wall of the receiving chamber 210 of the main body 21 to releasably fix the drive ring 25 in the receiving chamber 210 of the main body 21, an end cap 27 mounted on the opened wall of the receiving chamber 210 of the main body 21, and a torsion spring 26 mounted in the end cap 27 and biased between the end cap 27 and the drive ring 25 to rotate the drive ring 25.
The water solvable wire 253 has a first end fixed on the periphery of the drive ring 25 and a second end extended from the inner wall to the outer wall of the main body 21 and fixed to the main body 21 as shown in
The end cap 27 has an opened end mounted on the main body 21 and formed with an annular locking groove 271, and the inflation mechanism 20 further includes a snap ring 272 mounted in the locking groove 271 of the end cap 27 and the locking groove 2104 of the main body 21.
The drive ring 25 has a second side formed with a locking hole 252 (see
In operation, referring to
Alternatively, referring to
Accordingly, the automatically inflatable safety device is available for traffic vehicles applied in the land and the water, so that the automatically inflatable safety device has an amphibious effect, thereby greatly enhancing the versatility of the automatically inflatable safety device. In addition, the automatically inflatable safety device is inflated instantaneously in a rapid and exact manner so as to protect a user exactly safely.
Although the invention has been explained in relation to its preferred embodiment(s) as mentioned above, it is to be understood that many other possible modifications and variations can be made without departing from the scope of the present invention. It is, therefore, contemplated that the appended claim or claims will cover such modifications and variations that fall within the true scope of the invention.
Number | Name | Date | Kind |
---|---|---|---|
1782020 | Allen et al. | Nov 1930 | A |
2028651 | Dagnall et al. | Jan 1936 | A |
2347010 | Ward | Apr 1944 | A |
3938704 | Milgram | Feb 1976 | A |
4805802 | MacKendrick et al. | Feb 1989 | A |
5921835 | Gordon et al. | Jul 1999 | A |
6546561 | Duhamell | Apr 2003 | B2 |
Number | Date | Country |
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3-121990 | May 1991 | JP |