The present invention relates to a handle with safety device for vehicles, in particular a handle with a lever which can be used for unlocking and simultaneously opening the door of a motor vehicle and is provided with an inertial safety device which prevents the accidental opening of this door in case of an accident.
WO 2004/042177 discloses a vehicle handle, which comprises a rocker which can rotate with respect to a frame which rotatably supports a lever mechanically connected to the rocker, so that the latter can rotate when the lever is driven, wherein a pendulum provided with an inertial mass is pivoted to the frame for oscillating in case of strong accelerations, for example due to an impact. The rocker is provided with a shoulder suitable for being intercepted by a stop member integral with the pendulum for preventing the rotation of the rocker, the operation of the handle and thus the accidental opening of the door.
However, during an impact, the direction of said accelerations is not constant but may oscillate with a waveform evolution, for example sinusoidal, so that the stop member of the pendulum may move away from the shoulder, so as to unlock the lever of the handle before the impact has ended.
It is therefore an object of the present invention to provide a handle, which is free from said disadvantage, namely a handle wherein the rocker can be locked when the pendulum oscillates in both directions due to strong accelerations. Said object is achieved with a handle, whose main features are disclosed in the first claim, while other features are disclosed in the remaining claims.
Thanks to its particular second rocker, which releases the movement of the pendulum from the one of the stop member, the first rocker of the handle according to the present invention can be locked when the pendulum oscillates in one direction and in the opposite direction.
Thanks to the particular mutual arrangement, relative dimensions and mechanical connection of the parts of the pendulum and of the second rocker, the handle according to the present invention is more compact and lighter than the known handles and further it allows faster reaction times.
The first rocker is preferably provided with a cam surface on which a tappet of the pendulum can slide for driving the pendulum and the second rocker during the normal use, so as to prevent their malfunctions, due to the prolonged inactivity, in case of impact.
Further advantages and features of the handle according to the present invention will become clear to those skilled in the art from the following detailed and non-limiting description of two embodiments thereof with reference to the attached drawings, wherein:
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First rocker 1 is provided with a cam surface 4 on which a tappet 5 arranged on a first arm 6a of a pendulum 6 pivoted to frame 2 or to a body integral therewith can slide for oscillating around a second axis 7 substantially perpendicular to first axis 3 around which first rocker 1 rotates. A second arm 6b of pendulum 6 opposite to first arm 6a with respect to second axis 7 is provided with an inertial mass 8. First rocker 1 is provided with a shoulder 9 arranged at a distance from cam surface 4 higher than the height of tappet 5 of pendulum 6. Tappet 5 passes then under shoulder 9 without touching it if it slides on cam surface 4.
According to the invention, a second rocker 10 is mechanically connected to pendulum 6 for oscillating around a third axis 11 substantially parallel to second rotation axis 7 of pendulum 6 when the latter oscillates around second axis 7. Second rocker 10 comprises an arm 10a provided with a stop member 12 suitable for intercepting shoulder 9 during an oscillation of second rocker 10 for preventing at least partially the rotation of first rocker 1. Second rocker 10 further comprises a tongue 10b arranged on the side opposite to aim 10a with respect to third axis 11. Pendulum 6 is provided with a tongue 6c arranged on the same side of first arm 6a with respect to second axis 7. The mechanical connection between pendulum 6 and second rocker 10 is obtained by means of the engagement, in particular the contact, of tongue 6c of pendulum 6 with tongue 10b of second rocker 10. Through this first mechanical connection, the rotation of pendulum 6 in one direction 13, for example clockwise as in
A second mechanical connection between pendulum 6 and second rocker 10 is obtained by means of the engagement, in particular the contact, of first arm 6a of pendulum 6 with arm 10a of second rocker 10. Through this second mechanical connection, the rotation of pendulum 6 in one direction 15, for example counterclockwise as in
A hydraulic, pneumatic or electric damper 17 which is arranged between frame 2 and pendulum 6 dampens the oscillations of the latter. Cam surface 4 of first rocker 1 is further provided with a hollow 18 suitable for housing at least partially tappet 5 for allowing its free movement. Tongue 6c of pendulum 6, arm 10a and tongue 101) of second rocker 10 are arranged along a fourth axis 19 substantially perpendicular to second axis 7 and/or to third axis 11. Tappet 5 and stop member 12 are arranged along a fifth axis 20 substantially perpendicular to first axis 3.
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Further modifications and/or additions may be made by those skilled in the art to the hereinabove disclosed and illustrated embodiments while remaining within the scope of the following claims.
Number | Date | Country | Kind |
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MI2008A001235 | Jul 2008 | IT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2009/058365 | 7/2/2009 | WO | 00 | 3/16/2011 |