Suspension Design for Linear Toe Curves: A Case Study in Mechanism Synthesis

Author:

Raghavan Madhusudan1

Affiliation:

1. Powertrain Systems Research Lab, GM R&D Center, Warren, Michigan 48090-9055

Abstract

We present an algorithm for synthesizing the attachment point locations of the tie-rod of an automotive suspension, to achieve linear toe change characteristics with jounce and rebound of the wheel. This behavior is considered desirable for achieving good ride and handling. The algorithm reduces the synthesis problem to the computation of the center and normal of a circle, given the coordinates of 3 points on the circle. This procedure is significant because it eliminates numerous cycles of design iterations in traditional analysis-based design methods. Furthermore, the locus of acceptable solutions allows the designer to comply with suspension packaging constraints.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference23 articles.

1. Suh, C.H., “Synthesis and Analysis of Suspension Mechanisms with Use of Displacement Matrices,” SAE 890098.

2. Brinks, G. , 1978, “MacPherson and His Struts,” Road and Track, November, pp. 162–164.

3. Enke, K. , 1983, “Improvements of the Ride/Handling Compromise by Progress in the Elastokinematic System of Wheel Suspension,” I. Mech. E., C117/83.

4. Von der Ohe, M., 1983, “Front and Rear Suspension of the New Mercedes Model W201,” SAE 831045.

5. Anon , 1990, “Fifth Link Improves Rear Suspension,” Mach. Des., Feb 8.

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