O. Sayman et Mr. Ozer, Elastic-plastic thermal stress analysis of aluminum-martix composite beamsunder a parabolically temperature distribution, COMP SCI T, 61(14), 2001, pp. 2129-2137
An elastic-plastic thermal stress analysis has been carried out on steel-fi
bre-reinforced aluminum-matrix composite beams. The temperature takes the v
alues zero and To at the upper-lower surfaces and on the middle axis, respe
ctively, and is chosen to vary parabolically. The solution is executed at 0
, 30, 45, 60 and 90 degrees orientation angles considering the beam is fixe
d by two rigid planes at the ends. The composite beams are taken to be line
ar strain hardening. The plastic region is expanded from the middle axis of
the beam. The intensity of the residual stress component of sigma (x) and
the equivalent plastic strain are maximum at the boundary of the elastic-pl
astic regions. The magnitude of the residual stress is found to be greatest
for the 0 degrees orientation angle; moreover the intensity of the equival
ent plastic strain is the greatest for the same angle. Displacement compone
nts are found to be small. (C) 2001 Elsevier Science Ltd. All rights reserv
ed.