TECHNICAL PAPERS

Transverse Vibration of a Composite Shaft

Date Published: 2009-05-19
Paper Number: 2009-01-2066
DOI: 10.4271/2009-01-2066

Citation:

Qatu, M. and Iqbal, J., "Transverse Vibration of a Composite Shaft," SAE Technical Paper 2009-01-2066, 2009, doi:10.4271/2009-01-2066.

Author(s):

Abstract:

The advantages of having higher stiffness to weight ratio and strength to weigh ratio that composite materials have resulted in an increased interest in them. In automotive engineering, the weight savings has positive impacts on other attributes like fuel economy and possible noise, vibration and harshness (NVH). The driveline of an automotive system can be a target for possible use of composite materials. The design of the driveshaft of an automotive system is primarily driven by its natural frequency. This paper presents an exact solution for the vibration of a composite driveshaft with intermediate joints. The joint is modeled as a frictionless internal hinge. The Euler-Bernoulli beam theory is used. Lumped masses are placed on each side of the joint to represent the joint mass. Equations of motion are developed using the appropriate boundary conditions and then solved exactly.

File Size: 210K

Product Status: In Stock

See papers presented at SAE 2009 Noise and Vibration Conference and Exhibition, May 2009, St. Charles, IL, USA, Session: Driveline (Part 4 or 4)

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