Velocity of Torsional Waves in Metals Stressed Statically into the Plastic Range

Author:

Convery E.1,Pugh H. LI. D.2

Affiliation:

1. Now at Babcock and Wilcox, Glasgow, Scotland. Associate Member of the Institution.

2. Republic Steel Distinguished Visiting Professor, Case Institute of Technology, Cleveland, Ohio, U.S.A. Normally, Head, Plasticity Division, National Engineering Laboratory, Scotland. Member of the Institution.

Abstract

This paper is concerned with the determination of the velocity of propagation of torsional plastic waves in metals stressed statically into the plastic range. A new method was developed in which a tubular test specimen together with a concentric bar of a brittle material was twisted slowly such that when the specimen was stressed beyond its yield the brittle bar broke suddenly and transmitted a plastic torsional stress increment along the specimen. It was found that the velocity of propagation both in copper and mild steel was the same as the elastic shear wave velocity. Although consistent with the strain-rate dependent theory, the result can be explained in terms of the strain-rate independent theory provided the stress-strain curve for the appropiate strain rate is used.

Publisher

SAGE Publications

Subject

General Engineering

Reference35 articles.

1. Taylor G. I. British Official Report R.C 70, 1940(see also the Scientific Papers of G. I. Taylor, Volume I: Mechanics of solids (Ed. by Batchelor G. K.), 1958, 456, 467 (Cambridge University Press).

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