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Titlebook: IUTAM Symposium on Field Analyses for Determination of Material Parameters — Experimental and Numeri; Proceedings of the I P. Ståhle,K. G.

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Estimation of Material Parameters at Elevated Temperatures by Inverse Modelling of a Gleeble Experiated by inverse modelling of a Gleeble compression test during continuous cooling. The direct problem is solved using the implicit finite element program NIKE2D. The material behaviour is described by a rate independent thermo-elastic-plastic model with a nonlinear isotropic hardening law. The objec
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,Hydride-Induced Embrittlement in Metals — Stress and Temperature Effects,the operating physical processes, namely: (i) hydrogen diffusion, (ii) hydride precipitation, (iii) non-mechanical energy flow, and (iv) hydride/solid-solution deformation. Crack growth is simulated by using a new version of de-cohesion model with time-dependent energy of de-cohesion due to the grad
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A Non-Isothermal Model for Phase Transformations and the Mechanical Behaviour of a 12% Chromium Stechromium steel for temperatures between RT and 1600K. Austenite transformation, martensite transformation and the constitution of carbides were identified to affect the mechanical behaviour of the martensitic steel investigated. A generalized Johnson-Mehl-Avrami equation and the Koistinen-Marburger
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