1. Technical Field
The present invention generally pertains to a seat for a motor vehicle and, more particularly, to a linear seat recliner for a motor vehicle passenger seat.
2. Discussion
Most motor vehicles are equipped with seats having a seat bottom, a seat back pivotally secured to the seat bottom and a recliner mechanism for latching the seat back in a desired use position relative to the seat bottom. Generally, the recliner mechanism may be selectively actuated for adjusting the angularity of the seat back relative to the seat bottom through a range of use positions defined between an upright position and a fully reclined position. One type of recliner mechanism, referred to as a linear seat recliner, typically includes a housing and an elongated recliner rod having a first end supported by the housing. The housing is adapted to be mounted to the seat bottom frame and the second end of the recliner rod is pivotally secured to a lever arm extension of the seat back frame. A latch assembly normally functions to latch the first end of the recliner rod to the housing. Upon release of the latch assembly, linear movement of the recliner rod relative to the housing results in angular movement of the seat back relative to the seat bottom.
Conventionally, the recliner rod is constructed from a generally cylindrical smooth rod having a circular cross section. A portion of the rod is subsequently machined to include a plurality of teeth spaced along the recliner rod. Standard manufacturing techniques such as broaching require the recliner rod to be fixed while the teeth are machined. Unfortunately, the use of a generally cylindrical recliner rod make it difficult to properly form teeth on the rod. Specifically, the round rod has a tendency to rotate during machining making it difficult to properly align the teeth on the rod. Alternatively, the smooth cylindrical rod is commonly first machined to provide a planar segment and then broached in order to produce a suitable tooth width. Accordingly, it would be desirable to construct a linear seat recliner having a recliner rod with an economically manufactured, properly formed set of teeth.
In addition, many linear recliner mechanisms utilize a stop radially protruding from an end of the recliner rod in order to limit the travel of the rod in relation to the housing. While the stop is useful in limiting the travel of the seat back relative to the seat bottom, it is time consuming and therefore costly to manufacture and attach a separate stop to a recliner rod. Therefore, it would be advantageous to design a recliner rod that is capable of providing an integral stop for minimal cost.
Lastly, some recliner mechanisms do not function properly as a result of binding of the recliner rod with the mating components. These recliner rods are typically not well supported within the housing and may excessively bend due to input loading. Accordingly, a guided recliner rod with an increased resistance to bending would be a welcome improvement.
Accordingly, it is an object of the present invention to provide a linear seat recliner including a recliner rod having parallel top and bottom faces extending substantially between first and second rod ends.
It is another object of the present invention to provide a recliner rod which is adapted to accommodate the formation of axially spaced pawl engagement teeth along a portion of the length of the rod.
It is yet another object of the present invention to provide a recliner rod having improved bending load resistance.
It is an additional object of the present invention to provide a recliner rod having an integral stop.
The present invention includes a linear seat recliner for use in a motor vehicle having a seat with a seat back pivotally connected to a seat bottom. The seat is operable in a plurality of use positions ranging from an upright position to a fully reclined position. The linear seat recliner includes a housing adapted to be coupled to one of the seat back and the seat bottom, a latching mechanism coupled to said housing, and a recliner rod. The recliner rod includes a body having a first end and a second end. The body has a substantially planar top flat diametrically opposed and parallel to a substantially planar bottom flat. The top flat includes a plurality of teeth positioned at the first end of the body. The first end of the recliner rod selectively engages the latching mechanism and the second end of the recliner rod is adapted to be coupled to the other of the seat back and the seat bottom.
Additional benefits and advantages of the present invention will become apparent to those skilled in the art to which this invention relates from a reading of the subsequent description of the preferred embodiment and the appended claims, taken in conjunction with the accompanying drawings.
With initial reference to
The seat assembly 12 has an underlying frame structure including a pair of lateral side rails 18 which support the seat bottom 16 and a pair of lateral support rails 20 which support the seat back 14. The lateral support rails 20 are pivotally coupled at pivots 22 to the lateral side rails 18. As such, the seat back 14 is supported for angular movement relative to the seat bottom 16. However, those skilled in the art will appreciate that the linear seat recliner 10 can be installed in virtually any seat application where reclining and/or forward dumping of the seat back 14 is required. For example, the seat assembly 12 can be used with a seat having a separate restraint system as well as an “all-belts-to seat” type (i.e., stand-alone structural seat). The linear seat recliner 10 is preferably located on the outboard lateral side of the seat assembly 12 to permit convenient actuation of its reclining and dumping features.
The preferred embodiment of the linear seat recliner 10 of the present invention utilizes one of the lateral support rails 20 as a housing for mounting components which will be described in greater detail hereinafter. However, one skilled in the art will appreciate that the linear seat recliner 10 may alternatively include a housing 24 that is adapted to be secured to one of the lateral support rails 20. Accordingly, the housing 24 may be integral with or separate from one of the lateral support rails 20.
While the housing 24 is shown in
The linear seat recliner 10 further includes a recliner rod assembly 26 comprised of an elongated recliner rod 28 and a ball joint 30. The recliner rod 28 has a first end 32 (
As shown in
A recline actuator mechanism 40 is provided to permit a seat occupant to selectively shift the latching mechanism 38 from its locked mode into its released mode when it is desired to adjust the seat back position. The linear seat recliner 10 may further include a memory dump mechanism (not shown) for causing the latching mechanism 38 to release the seat back 14 for pivotal movement from its use position to its forward dumped position and then automatically re-latch the seat back 14 in its previous use position, and a dump actuator mechanism for controlling actuation of the memory dump mechanism. A detailed discussion of exemplary latching, recliner actuator, and memory dump mechanisms is contained in commonly owned U.S. Pat. No. 5,769,493 entitled “Linear Recliner With Easy Entry Memory Feature,” the disclosure of which is hereby expressly incorporated by reference.
In general, the linear seat recliner 10 includes a recliner rod 28 having improved bending load limits and that is more efficiently guided during movement relative to the housing 24. In addition, the present invention aids in the manufacture of the linear seat recliner 10, specifically, the recliner rod 28. In this regard and with reference to
The recliner rod 28 also includes a paddle 48 positioned at the second end 34 of the recliner rod 28. The paddle 48 includes an aperture 49 for receipt of the ball joint 30 (
The recliner rod 28 further includes a plurality of gear teeth 50 axially spaced along a first flat 52 of the hexagonally shaped body 44. During manufacture of the gear teeth, alignment of the recliner rod 28 relative to the broach or other gear cutting tool is critical to the proper formation and alignment of engagement teeth 50. Accordingly, the recliner rod 28 of the present invention includes two diametrically opposed, parallel flats 52 and 54, extending substantially the entire length of the recliner rod 28. The parallel flats 52 and 54 greatly enhance the manufacturability of the teeth 50. Specifically, the flat 54 acts as a datum plane for aligning the recliner rod 28 with the machine tool used to create the engagement teeth 50. In the preferred embodiment, the hexagonally shaped body 44 has three sets of diametrically opposed parallel flats to ease the task of fixturing and retaining the recliner rod 28 as the teeth 50 are machined.
One skilled in the art will appreciate that other geometrical cross sections may be implemented which do not depart from the scope of the present invention as defined by the appended claims. For example,
With reference to
The second flat 54 also acts to align the teeth 50 with the latching mechanism 38. Specifically, both the recliner rod 28 and the latching mechanism 38 are positioned relative to a common datum, the first and second sidewalls 58 and 60. The latching mechanism 38 includes a pawl 72 for releasable engagement with the teeth 50. Because the latching mechanism is secured to one or both of the sidewalls, the pawl 72 is maintained substantially parallel to the first and second sidewalls. Similarly, the second flat 54B engages the rivets 68 to maintain the recliner rod in perpendicular relation to the first and second sidewalls 58 and 60 of the housing 24. As such, the use of opposed flats 52B and 54B during machining of teeth 50 and assembly of the rod within the housing 24 assures proper tooth alignment with the pawl 72 and the latching mechanism 38.
Referring to
Accordingly, it should be appreciated that the configuration and operation of the linear seat recliner 10 provides both manufacturing and functional advantages over the prior art. Specifically, the recliner rod of the present invention exhibits an improved bending load limit, includes top and bottom flats for improved guidance and manufacturability, and also includes an integral paddle and stop.
The foregoing discussion discloses and describes merely exemplary embodiments of the present invention. One skilled in the art will readily recognize from such discussion, and from the accompanying drawings and claims, that various changes, modifications and variations may be made therein without departing from the spirit and scope of the invention as defined in the following claims.
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