This application is based on and claims priority under 35 U.S.C. ยง119 with respect to Japanese Patent Application No. 2004-076916 filed on Mar. 17, 2004, the entire content of which is incorporated herein by reference.
The present invention relates to a door handle device for vehicle.
A known door handle device for vehicle is described in JP2002-13320A. The known door handle device for vehicle described in JP2002-13320A includes a counterweight in order to prevent a vehicle door from erroneously opening because of unintentional release of a door lock mechanism caused by an impact at vehicle collision.
In case plural door lock mechanisms for locking a vehicle door are provided (e.g., the vehicle door corresponds to a slide door), in order to simultaneously transmit operational force of a handle to the plural door lock mechanisms, the door handle device for vehicle may include an intermediary (i.e., remote controller) for relaying the operational force. In this case, a door handle device for vehicle and the intermediary are connected by means of a connection member with high rigidity, and the operational force of the handle is simultaneously transmitted to the door lock mechanism via the intermediary.
With the construction of the known door handle device for vehicle described in JP2002-13320A, a vehicle door may be erroneously opened because of release of the door lock mechanism by means of the moment of force generated by inertia of the connection member when the vehicle collides. A countermeasure against the erroneous opening of the vehicle door is desired.
A need thus exists for a door handle device for vehicle which prevents erroneous opening of a vehicle door when a vehicle collides without undermining assembling performance.
In light of the foregoing, the present invention provides a door handle device for vehicle rotatably supported by a vehicle door, which includes a handle portion extended in a first radial direction relative to a rotational axis and positioned outside the vehicle door, a lever portion extended in a second radial direction relative to the rotational axis and positioned in the vehicle door, the lever portion being connected to a connection member for transmitting operational force of door lock release to a door lock mechanism, and a counterweight provided at the handle portion.
The foregoing and additional features and characteristics of the present invention will become more apparent from the following detailed description considered with reference to the accompanying drawings, wherein:
One embodiment of the present invention will be explained with reference to illustrations of drawing figures as follows.
The slide door 11 opens and closes an opening portion provided on a lateral surface of a vehicle body by moving (i.e., sliding) in a longitudinal direction (i.e., right-left direction of
The outside handle 12 is connected to the connection member 13. The connection member 13 made from structural material with rigidity such as metal bar is positioned to extend in a longitudinal direction (i.e., right-left direction of
The remote controller 14 is positioned at a central portion of the slide door 11, and is connected to the front lock 15 and the rear lock 16 via connection cables 17, 18 respectively. The front lock 15 and the rear lock 16 includes known lock mechanisms including a latch and a pawl, and locks a front portion and a rear portion of the slide door 11 respectively by engaging with the vehicle body. The remote controller 14 releases the front lock 15 and the rear lock 16 via the connection cables 17, 18 respectively by pulling the connection member 13 back to the front side, and thus to unlock the front portion and the rear portion of the slide door 11.
In other words, when the outside door handle 12 is operated in the foregoing manner to release the door lock, the operational force is transmitted to the remote controller 14 via the connection member 13, and is further transmitted to the front lock 15 and the rear lock 16 via the connection cables 17, 18 respectively. Accordingly, the front lock 15 and the rear lock 16 are released, and the slide door 11 thus becomes cable of being opened.
The connection member 13 weighs relatively large because the connection member 13 is extended to the central portion of the slide door 11 and connected to the remote controller 14.
The construction of the outside door handle 12 will be explained as follows. The line II-II of
As shown in
As shown in
The handle body 21 includes a handle portion 24 projected in a radial direction to a first side (i.e., top side of
A counterweight 25 made of metal such as stainless is accommodated in the accommodation concave portion 24a of the handle portion 24. The counterweight 25 is formed into a cylinder shape having a diameter slightly larger than a diameter of a circle depicted by three-point method taking tips of the projected wall portions 24b. A diameter of a first end (i.e., top side of
The handle body 21 includes supporting wall portions 27, 28 extended in a radial direction to a second side (i.e., left side of
Further, the handle body 21 includes a lever portion 29 extended from peripheral central portion of the shaft portion 23 to a second side (i.e., left of
The handle body 21 includes a projection 30 extended in a radial direction (i.e., left side of
The handle case 22 is configured into a frame shape having an opening for positioning the supporting wall portions 27, 28 of the handle body 21 by insertion. Supporting wall portions 31, 32 extended in a left direction of
The handle case 22 includes a projection 33 extended in a left direction of
Operation of the handle body 21 will be explained as follows. When the handle body 21 is supported by the handle case 22 fixed at the slide door 11, the handle portion 24 is extended in a radial direction to a first side relative to the rotational axis C to be positioned outside the slide door 11. In this case, the lever portion 29 connected to the connection member 13 is extended in a radial direction to a second side relative to the rotational axis C to be positioned in the slide door 11. Thus, the handle portion 24 and the lever portion 29 are extended in opposite radial directions relative to the rotational axis C. The counterweight 25 is provided at the handle portion 24. Accordingly, for example, when the vehicle collides, the moment of force generated at the lever portion 29 by inertia of the connection member 13 and the moment of force generated at handle portion 24 by inertia of the counterweight 25 cancel each other. Accordingly, erroneous opening of the slide door 11 by transmission of operational force for releasing the door lock from the connection member 13 to the front lock 15 and the rear lock 16 via the remote controller 14 caused by an impact when the vehicle collides is prevented.
According to the embodiment of the present invention, the erroneous opening of the slide door 11 by transmission of operational force of the door lock release from the connection member 13 to the front lock 15 and the rear lock 16 via the remote controller 14, or the like, caused by an impact when the vehicle collides can be prevented.
Particularly, by providing the counterweight 25 at the handle portion 24 positioned outside the slide door 11, the assembling performance of the handle body 21 (outside handle 12) can be improved compared to a case, for example, the counterweight 25 is provided inside the slide door 11. Further, compared to a case that the counter weight is accommodated in the slide door, with the construction, of the embodiment of the present invention, accommodation space which should be ensured inside the slide door 11 can be reduced.
According to the embodiment of the present invention, by accommodating the counterweight 25 in the handle portion 24, the counterweight 25 is not exposed to the outside of the slide door 11 and does not influence the design, which improves appearance of the slide door 11. Further, the size of the slide door 11 can be restrained compared to a case that the counterweight is externally provided on the handle portion 24.
According to the embodiment of the present invention, the counterweight 25 is accommodated in the accommodation concave portion 24a with restrained shakiness by being adhered to the projected portion 24 by means of pressure.
According to the embodiment of the present invention, the counterweight 25 is prevented to be pulled out relative to the handle portion 24 by staking the reduced diameter portion 25b penetrating through the supporting wall portion 24c while the washer plate 26 is attached to the reduced diameter portion 25b.
According to the embodiment of the present invention, the handle portion 24 is arranged so that the rotational axis C is extended in a top-bottom direction of the slide door 11, and the connection member 13 is positioned to extend in back and forth direction of the slide door 11. Thus, mainly when the vehicle collides headed-on (i.e., including rear end collision), the moment of force generated at the lever portion 29 by inertia of the connection member 13 and the moment of force generated at the handle portion 24 by inertia of the counterweight 25 cancel each other. Accordingly, the erroneous opening of the slide door 11 can be prevented particularly when the vehicle collides headed-on. However, even when the vehicle collides from a lateral direction, the moment of force generated at the lever portion 29 by a component of inertia of the connection member 13 and the moment of force generated at the handle position by a component of inertia of the counterweight 25 cancel each other. Accordingly, the erroneous opening of the slide door 11 caused by an impact when the vehicle collides from the lateral direction can be prevented.
The construction of the door handle device according to the embodiment of the present invention may be varied as follows. It is not required to accommodate the counterweight 25 in the handle portion 24. Instead, for example, a part of the counterweight 25 may be embedded into the handle portion 24.
Positioning of the remote controller 14, or the like, in the slide door 11 is not limited, and may be varied. Connecting construction for transmitting operational force for unlocking-the door lock from the connection member 13 is not limited and may be varied. The handle body 21 may include pull-up type for unlocking the door lock by being rotated to be pulled upward as long as the-handle body 21 is supported rotatably relative to the vehicle door.
The embodiment of the present invention may be applied to a handle body of an inside handle. The outside of the vehicle door according to the embodiment of the present invention is defined as a side which exposed to outside (i.e., not inside), and is differentiated from outside of the vehicle per se.
According to the embodiment of the present invention, the vehicle door may include a swing door.
According to the embodiment of the present invention, the handle portion is extended in the radial direction at the first side relative to the rotational shaft and outside the vehicle door, and the lever portion connected to the connection member is extended in the radial direction at the second side relative to the rotational shaft and positioned in the vehicle door. The counterweight is provided at the handle portion. Thus, for example, when the vehicle collides, the moment of force generated at the lever portion by inertia of the connection member and the moment of force generated at the handle portion by inertia of the counterweight cancel each other. Accordingly, erroneous opening of the vehicle door by transmission of operational force of door lock release from the connection member to the door lock mechanism caused by an impact when the vehicle collides can be prevented. Particularly, by providing the counterweight at the handle portion positioned outside the vehicle door, the assembling performance of the door handle device can be improved compared to a case that the counterweight is positioned in the vehicle door.
According to the embodiment of the present invention, by providing the counterweight inside the handle portion, the appearance can be improved because the counterweight is not exposed to outside the vehicle door serving as a design surface.
According to the embodiment of the present invention, the counterweight is accommodated in the accommodation concave portion while restraining shakiness by adhering the counterweight to the projected wall portion by pressure.
The principles, preferred embodiment and mode of operation of the present invention have been described in the foregoing specification. However, the invention which is intended to be protected is not to be construed as limited to the particular embodiment disclosed. Further, the embodiments described herein are to be regarded as illustrative rather than restrictive. Variations and changes may be made by others, and equivalents employed, without departing from the spirit of the present invention. Accordingly, it is expressly intended that all such variations, changes and equivalents which fall within the spirit and scope of the present invention as defined in the claims, be embraced thereby.
Number | Date | Country | Kind |
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2004-076916 | Mar 2004 | JP | national |