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Titlebook: Component Reliability under Creep-Fatigue Conditions; János Ginsztler,R. Peter Skelton Conference proceedings 1998 Springer-Verlag Wien 19

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Datenerhebung und Erhebungsartentage and on to the possibility of complete penetration across the wall thickness. The causes of such growth are considered, such as thermal shock and other constraints against expansion or contraction and the many ways of simulating propagation behaviour in the laboratory are discussed, where a cycl
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Gemeinsame Verteilung von Zufallsvariablene an elastic or a plastic deformation or the material can fracture. These physical processes are discussed briefly examining them in atomic scale as well as in microscopic and in macroscopic sense. The influence of loading conditions as e.g. temperature or alternating loading are discuss too. The da
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Bernoulli-verwandte Zufallsvariablengh temperature life assessment methods. Following a description of engineering creep parameters basic elasto-plastic fracture mechanics.methods are presented and high temperature fracture mechanics parameters are derived from pasticity concepts. Techniques are shown for determining the creep fractur
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Conference proceedings 1998portant problems in the modern power plant industry. These problems are covered, and industrial examples will be introduced to illustrate the applications of those subjects covered using the results from service records.
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