Suspension control arm with frangible bushing collar
09676241 ยท 2017-06-13
Assignee
Inventors
Cpc classification
B60G2200/154
PERFORMING OPERATIONS; TRANSPORTING
B60G2204/41
PERFORMING OPERATIONS; TRANSPORTING
B60G2200/1424
PERFORMING OPERATIONS; TRANSPORTING
B60G7/001
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A suspension arm adapted for use in a suspension system of an automotive vehicle including an arm member, a first mounting portion formed at a first end of the arm member and a second mounting portion formed at a second end of the arm member spaced in a first direction relative to the first mounting portion. The first mounting portion including a bushing collar equipped with a frangible portion comprising at least one stress riser, and the longitudinal axis of the collar in the first direction. By adding a frangible feature to the bushing collar of the suspension arm, the breakage mode and breakage timing can be optimized to ensure a tire-and-wheel assembly consistently contacts surrounding parts at the desired time and locations in a predictable sequence and manner during a vehicle impact event.
Claims
1. A suspension arm adapted for use in a suspension system of an automotive vehicle comprising: an arm member; a first mounting portion formed at a first end of the arm member; and a second mounting portion formed at a second end of the arm member spaced in a first direction relative to the first mounting portion, wherein the first mounting portion includes a bushing collar provided with a frangible portion, and the longitudinal axis of the bushing collar is in the first direction, the bushing collar comprises a material of different hardness than a material of the arm member, and the frangible portion is a notch disposed on a first end of the bushing collar.
2. A suspension arm adapted for use in a suspension system of an automotive vehicle comprising: an arm member; a first mounting portion formed at a first end of the arm member; and a second mounting portion formed at a second end of the arm member spaced in a first direction relative to the first mounting portion, wherein the first mounting portion includes a bushing collar provided with a frangible portion, and the longitudinal axis of the bushing collar is in the first direction, the bushing collar comprises a material of different hardness than a material of the arm member, and the frangible portion is a groove disposed on a first end of the bushing collar.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A more complete appreciation of the disclosure and many of the attendant advantages thereof will be readily obtained as the same becomes better understood by reference to the following detailed description when considered in connection with the accompanying drawings, wherein:
(2)
(3)
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(7)
(8) As shown
(9) The front mounting portion 10b of suspension arm 10 is in the form of a cylindrical sleeve that is mounted on the vehicle through a bushing collar 11. The longitudinal axis of the bushing collar 11 is in the first direction. The front mounting portion 10b of suspension arm 10 is mounted on the vehicle for rotary movement about the longitudinal axis of the first direction. The rear mounting portion 10c of suspension arm 10 is in the form of the cylindrical sleeve that is mounted on the vehicle for rotary movement about an axis line orthogonal to the first direction, for example substantially in a vertical direction. The outboard portion 10d of the suspension arm 10 is connected to a carrier of a tire-and-wheel assembly by a ball joint in a usual manner. The suspension arm 10 can be formed by a variety of processes, for example casting or forging. The bushing collar 11 can be formed by a variety of processes, for example forging, welding, stamping, or extrusion. The material of the bushing collar 11 may have a different composition and hardness than the material of the suspension arm 10.
(10) The bushing collar 11 of the front mounting portion 10b of the suspension arm 10 is equipped with a frangible portion. As used herein, the term frangible portion means structure intended to breakaway in an impact collision.
(11) As shown in
(12) Notches 12a and 12b create stress risers and allow optimization of the breakage mode and breakage timing of the bushing collar 11 and front mounting portion 10b to ensure a tire-and-wheel assembly consistently contacts surrounding parts at desired times and locations, in a predictable sequence and manner, during a vehicle impact event.
(13) Although the bushing collar 11 in the above-described embodiment is provided two notches 12a and 12b, it is obvious that said bushing collar 11 can be provided at least one notch.
(14) As shown in
(15) By adding axial groove 13 to the bushing collar 11 of the suspension arm 10, the breakage mode and breakage timing can be optimized to ensure a tire-and-wheel assembly consistently contacts surrounding parts at the desired time and locations, in a predictable sequence and manner, during a vehicle impact event.
(16) Although in the above-described embodiment the axial groove 13 is formed inside a circumference of the bushing collar 11, it is obvious that the axial groove 13 can be formed outside circumference of said bushing collar 11. Also, it is obvious that the axial groove 13 can be formed on a side of the collar proximal from the arm member.