The present invention relates generally to a tail gate locking system, and more particularly, to a rotation-absorbing device capable of absorbing rotational force of a lock lever to prevent the rotational force of the lock lever from being transmitted to a tail gate latch in a locking system.
In a coupling structure between a tail gate lock and a tail gate latch, which are components of a tail gate locking system, the lock and latch are directly connected via either one or two rods and an intermediate crank lever. As a lock lever connected to the rod(s) is rotated right or left through a designated angle, the tail gate lock is locked or unlocked by the tail gate latch via the rod(s) connected therebetween.
However, where conventional coupling structures provide further function in addition to the function of controlling the locking/unlocking between the lock and latch, e.g., where it is necessary to increase the rotation angle of the lock lever by a further angle in order to control a window latch, such coupling structures may have potential problems in operation. For example, as the lock lever is rotated further, beyond the point necessary for operation of the latch, the rod(s) and the crank lever, if any, transmit the further rotational force to the latch without absorbing the further unnecessary rotational force.
In a coupling structure according to an embodiment of the present invention, a control latch is mounted to be capable of absorbing the further rotational force of the lock lever for accomplishing an additional function. Thus, both a tail gate latch and a window latch can be controlled in common with one lock without further mounting any additional device for controlling the window latch and the like.
In a further alternative embodiment of the present invention, a tail gate locking system comprises a lock mechanism including a lock lever. A window rod is linked to the lock lever for actuating a window latch. A first latch rod is linked to the lock lever opposite the window rod. A control latch is linked to the first latch rod opposite the lock lever, and a second latch rod is linked to the control latch for actuating a door latch. Preferably, the control latch comprises a base member and two linkage members. The first linkage member is pivotably mounted on the base member at a pivot point and defines an opening with peripheral camming surfaces. The first linkage member is also connected to the first latch rod. The second linkage member is pivotably mounted on the base member and includes a pin cooperating with the camming surface of the first linkage member. The second linkage member is connected to the second latch rod.
In a preferred embodiment, the camming surfaces of the first linkage member are disposed around the edges of the opening. These camming surfaces include a first camming surface corresponding to an arc defined by a first radius from the pivot point, a second camming surface corresponding to an arc defined by a second, longer radius from the pivot point, and at least a third camming surface corresponding to an arc defined by a third radius, longer than the first and second radii, extending from the pivot point.
The features and other advantages of the present invention will be more clearly understood from the following detailed description taken in conjunction with the accompanying drawings, in which:
The following detailed description will present a preferred embodiment of the invention in reference to the accompanying drawings.
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According to the coupling structure having the above construction and operation, both the tail gate latch and the window latch can be controlled in common with one lock. Further, since it is unnecessary to mount any additional device for controlling the window latch, components can be reduced in number so as to save cost as well as simplify assembly process.
While the present invention has been shown and described in connection with the preferred embodiment, it is intended that the present invention is not limited to the foregoing embodiment but those skilled in the art can make various modifications and variations without departing from the principle of the invention as defined in the appended claims.
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Number | Date | Country | |
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20040094966 A1 | May 2004 | US |