The present application is based on, and claims priority from, Korean Application Serial Number 10-2004-0106110, filed on Dec. 15, 2004, the disclosure of which is hereby incorporated by reference herein in its entirety.
The present invention relates to a wheel alignment and vehicle height adjusting apparatus that actively adjusts the camber and caster of the wheel, as well as vehicle height.
The camber and caster of a vehicle can conventionally be adjusted only by separate maintenance. However, if the camber and caster are actively adjusted according to driving conditions, the grip force of the tire, steering stability and ride comfort of the vehicle are improved.
Furthermore, if the vehicle height is adjusted during the vehicle motion, the ride comfort can be greatly improved with the operation of an electronic suspension system, and the like.
Embodiments of the present invention actively adjust the camber, caster, and height of a vehicle, thereby significantly improving the grip force of the tires, steering stability, and ride quality.
A wheel alignment and vehicle height adjusting apparatus includes a strut and a plurality of length varying means installed between the upper end of the strut and vehicle body. The length varying means may be extendably installed such that their lengths vary along a longitudinal direction of said strut, and, in the preferred embodiments, three length varying means are mounted to form a triangle with said strut at the center thereof. The length varying means can include hydraulic cylinders varying in length by hydraulic pressure.
For a better understanding of the nature and objects of the present invention, reference should be made to the following detailed description with the accompanying drawings, in which:
Referring to
Strut 1 is coupled at the lower portion thereof to a knuckle 7 that is connected to a wheel hub 9. Therefore, if the coupled position of the upper end of strut 1 in relation to vehicle body 5 is varied, the camber of the wheel and caster vary accordingly; that is, the upper end of strut 1 of the present invention can actively vary in its coupled position relative to vehicle body 5.
Bracket 3 is formed in the shape of a disk, and the upper end of strut 1 and bracket 3 are fixed via a plurality of mounting bolts 11 (see
Bracket 3 facilitates the performance of the present invention by allowing length varying means 13 to be installed without any significant variation of a commonly used strut 1. Thus, bracket 3 is an element for installing length varying means 13 between strut 1 and vehicle body 5. In another embodiment, described later, length varying means 13 are placed directly on strut 1.
In one embodiment, as illustrated in
The hydraulic cylinders are configured to receive the hydraulic pressure via a hydraulic supplying apparatus (not shown), which is regulated by a controller that receives inputs from sensors that detect various states of the vehicle. The controller may comprise a processor, memory, and associated hardware, software and/or firmware as may be selected and programmed by a person of ordinary skill in the art based on the teachings of the present invention.
Length varying means 13 may be incorporated with an electric motor, worm gear, rack, or the like.
Either the upper or lower end of length varying means 13 is fixed via an extendable member 15 to vehicle body 5 or bracket 3 (see
In the first embodiment, extendable member 15 is interposed between bracket 3 and the lower end of length varying means 13. Extendable member 15 comprises a cylinder 17 penetrating bracket 3, and flanges 19 connected to both ends of cylinder 17.
A support extrusion 23 is formed at the bottom of length varying means 13 to penetrate cylinder 17 of extendable member 15. Support extrusion 23 has at the bottom thereof a support flange 21 that contacts flange 19 of extendable member 15.
Accordingly, the bottom of length varying means 13 indirectly affixes to bracket 3 via extendable member 15, thus allowing the inclination between bracket 3 and extendable member 15 to be varied.
Adjustment of camber, caster, and vehicle height will now be described according to the first exemplary embodiment of the present invention, which is illustrated in
Referring to
In
Provided that all of three length varying means 13 extend or contract to the same length, then the location of strut 1 relative to vehicle body 5 is changed, resulting in the adjustment of the vehicle height.
When the camber, caster, and vehicle height are actively adjusted according to the driving state, the grip force of the tire, steering stability, and ride comfort can remarkably be developed.
Either the upper or lower end of length varying means 113 is fixed via an extendable member 115 to vehicle body 105 or strut top panel 103. Therefore, when three length varying means 113 inconsistently expand or contract and the inclination of strut top panel 103 in relation to vehicle body 105 is adjusted, extendable member 115 absorbs the above inclination change.
Extendable member 115 is disposed between the lower end of length varying means 113 and strut top panel 103 in this embodiment. Extendable member 115 is constituted by a cylinder 117 penetrating the upper end of strut top panel 103, and flanges 119 connected to both ends of the cylinder.
The bottom of length varying means 113 is mounted with a support extrusion 123 that penetrates cylinder 117 of extendable member 115 and has a support flange 121 contacting flange 119 of extendable member 115.
In the second embodiment, the camber, caster, and vehicle height can actively be adjusted in a simpler structure than that of the first embodiment.
As apparent from the foregoing, there is an advantage in that the camber, caster, and vehicle height can be actively adjusted, thereby improving the grip force of the tire, steering stability, and ride comfort of the vehicle.
Number | Date | Country | Kind |
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10-2004-0106110 | Dec 2004 | KR | national |