Modeling the Mechanical Response of Structural Materials: Proceedings of a Symposium Sponsored by the Structural Materials Committee, Held at the 127th Annual Meeting of the Minerals, Metals, & Materials Society in San Antonio, Texas, February 15-19, 1998
Tms, 1998 - Architecture - 280 pages
Predictive modeling of both elastic and plastic material responses in areas such as visco-elasticity, creep, superplasticity, ductile fracture, and fatigue are addressed in these papers from the 1998 TMS Annual Meeting & Exhibition. Materials such as metallic alloys, ceramics, glasses, polymers, and composites are examined.
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23 other sections not shown
Acta Metall activation energy alloys aluminum analysis applied stress biaxial calculated cermet composites constant structure constitutive equation crack length crack tip crater creep behavior creep deformation Cu-Zn-Al curves CWSR decrease diffusion dislocation density dislocation structure disorientation dispersion strengthened distribution ductile ductile layer Edited by E.M. effect elastic strains equation evolution experimental fiber texture fiber volume fractions finite element fracture toughness grain boundary impact increasing Indent interface km/s loading Mahidhara Mahidhara The Minerals Materials Society matrix Mechanical Response Metals & Materials microstructure Modeling the Mechanical observed orientation parameters particles plane plastic deformation pole figures polycrystal powder metallurgy predicted pseudoelastic pseudoelastic strain R.K. Mahidhara recrystallization region residual stress Response of Structural sample shear shown in Figure slip systems specimen strain rate stress exponent Structural Materials Edited subgrain superplastic forming Taylor factor temperature tensile stress tests texture component thickness threshold stress titanium aluminide uniaxial Young's modulus