The present invention relates to a window breaking device, and more particularly, to a pneumatic motor vehicle window breaking device applied to large-sized vehicles such as motor buses, trains, motor cars, and railways.
As motor cars become more and more popular, accidents also increase, which results in casualties. A considerable part of the accidents is caused by that the vehicle is on fire or that driver and/or passenger fall into the water along with the car. Due to water pressure or power failure, the car door cannot be opened. The window glass of the car is very strong, especially a window glass having a tinted window film. It is difficult to crush the window glass, leading to people drowned or burned. There are some motor vehicle window breaking devices on the market. However, the structure is more complex, and some of the window braking devices use a power source as its power. When water enters the vehicle, the window breaking device will not work normally. Accordingly, the present invention intends to provide a dual faucet structure for improving the shortcomings mentioned above.
The primary object of the present invention is to overcome the shortcomings of the prior art and to provide a pneumatic motor vehicle window breaking device which has a simple structure and is reliable.
In order to achieve the aforesaid object, the pneumatic motor vehicle window breaking device of the present invention comprises a cylinder and a spike. One end of the spike is fixedly connected to an end of a piston rod of the cylinder. Another end of the spike is tapered. The cylinder may be mounted on a retaining frame.
Compared with the prior art, since the pneumatic motor vehicle window breaking device of the present invention directly uses the cylinder and takes high-pressure air as power. Only the front end of the spike of the pneumatic motor vehicle window breaking device is required to be mounted at an appropriate position in alignment with a vehicle window before use. An air valve is used to control the high pressure air source to push the spike for breaking the window. The structure is greatly simplified. In addition, even if water enters the vehicle, the high-pressure air source of the vehicle can be used for the normal operation.
Embodiments of the present invention will now be described, by way of example only, with reference to the accompanying drawings.
As shown in
The cylinder 1 can be fixedly mounted on the retaining frame 3. The cylinder 1 can be directly used with high-pressure air as a power for breaking a window. The existing vehicle has air pressure of 5 kg or more to be used normally.
The cylinder 1 of the pneumatic motor vehicle window breaking device may be slidably mounted on the retaining frame 3, such that the pneumatic motor vehicle window breaking device still can be used for breaking a window in the event that a high-pressure air source cannot be used. The sliding direction of the cylinder 1 coincides with the direction of movement of the piston rod 101 of the cylinder 1. The pneumatic motor vehicle window breaking device further comprises an elastic return structure. The elasticity of the elastic return structure enables the tapered end of the spike 2 of the pneumatic motor vehicle window breaking device when in a waiting state won't get into contact with the window to scratch the glass. When it is necessary to break the window, by pressing the cylinder 1 to overcome the elasticity of the elastic return structure, the spike 2 is driven to hit the window, thereby breaking the window.
There are various specific implementations for slide installation. In general, a guide structure is combined with the elastic return structure. In this specific embodiment, as shown in
The locking structure may be in the form of another snap ring 7, that is, the locking structure includes a snap ring 7. The outer wall of the cylinder accommodation chamber 301 and the lower edge of the side wall of the upper cover 11 are formed with corresponding engaging grooves. The snap ring 7 corresponds to the engaging grooves and the outer contour of the cylinder accommodation chamber 301. When the snap ring 7 is engaged in the engaging grooves, it is in a locking state. When the snap ring 7 is disengaged from the engaging grooves, it is in an unlocking state.
In order to be used at different positions, the retaining frame 3 includes a cylinder mounting plate 302 and a retaining plate 303. The cylinder 1 is mounted on the cylinder mounting plate 302. The cylinder mounting plate 302 and the retaining plate 303 are provided with slide grooves 3021 and matching slide ribs 3031, respectively. In the specific embodiment, the cylinder mounting plate 302 is a rectangular metal plate which is folded into an L-shaped cross section. The cylinder 1 is mounted to one side of the L-shaped cylinder mounting plate 302. Two ends of the other side of the L-shaped cylinder mounting plate 302 is formed with the slide ribs 3031. The cylinder mounting plate 302 and the retaining plate 303 have the slide grooves 3021 and the slide ribs 3031 to mate with each other so that the cylinder 1 is slidably mounted on the retaining frame 3. The corresponding sides of the cylinder mounting plate 302 and the retaining plate 303 are formed with screw holes, and the screw holes are provided with fastening screws 8 to constitute a fastening mechanism. When the fastening screw 8 is tightened, the end of the fastening screw 8 is pressed against the retaining plate 303. When the fastening screw 8 is loosened, the cylinder mounting plate 302 can be pulled for a position adjustment.
For a multi-layer window structure, the pneumatic motor vehicle window breaking device of the present invention can be repeatedly hit manually or controls the air valve to connect with a high-pressure air source for consecutively breaking the window several times.
In order to allow the pneumatic motor vehicle window breaking device to be suitable for large-sized vehicles with multiple windows, such as large-sized passenger cars, a plurality of pneumatic motor vehicle window breaking devices can be assembled to form an interlinked pneumatic motor vehicle window breaking device. As shown in
Although particular embodiments of the present invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the present invention. Accordingly, the present invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
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2015 1 0050915 | Jan 2015 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2015/098369 | 12/23/2015 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2016/119541 | 8/4/2016 | WO | A |
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6418628 | Steingass | Jul 2002 | B1 |
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7988078 | Roy | Aug 2011 | B1 |
8727060 | Erickson | May 2014 | B1 |
8869927 | Oosterhuis | Oct 2014 | B2 |
9409043 | Franken | Aug 2016 | B2 |
20030136009 | McNeill | Jul 2003 | A1 |
20040050607 | Souther | Mar 2004 | A1 |
Number | Date | Country | |
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20170341613 A1 | Nov 2017 | US |