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Description
  • Austenitic heat resistant steel Sanicro 25 developed for high temperature applications in power generation industry has been subjected to selected low cycle fatigue tests at ambient and at elevated temperature. Saturated hysteresis loops at both temperatures were analyzed to deduce the probability density distribution of the internal critical stresses and to estimate the contribution of the effective stress for different strain amplitudes. The internal structure of the material at room and elevated temperature was studied using transmission electron microscopy and the results were discussed in relation to the cyclic stress-strain response.
  • Austenitic heat resistant steel Sanicro 25 developed for high temperature applications in power generation industry has been subjected to selected low cycle fatigue tests at ambient and at elevated temperature. Saturated hysteresis loops at both temperatures were analyzed to deduce the probability density distribution of the internal critical stresses and to estimate the contribution of the effective stress for different strain amplitudes. The internal structure of the material at room and elevated temperature was studied using transmission electron microscopy and the results were discussed in relation to the cyclic stress-strain response. (en)
Title
  • Analysis of cyclic plastic response of heat resistant Sanicro 25 steel at ambient and elevated temperatures
  • Analysis of cyclic plastic response of heat resistant Sanicro 25 steel at ambient and elevated temperatures (en)
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  • Analysis of cyclic plastic response of heat resistant Sanicro 25 steel at ambient and elevated temperatures
  • Analysis of cyclic plastic response of heat resistant Sanicro 25 steel at ambient and elevated temperatures (en)
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  • RIV/68081723:_____/14:00432669!RIV15-GA0-68081723
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  • I, P(GA13-23652S)
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  • 2642
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  • RIV/68081723:_____/14:00432669
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  • heat resistant steel; Sanicro 25; cyclic plasticity; dislocation structure; effect of temperature (en)
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  • [55397DB44407]
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  • Verbania
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  • Amsterdam
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  • XVII International Colloquium on Mechanical Fatigue of Metals (ICMFM17)
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  • Kruml, Tomáš
  • Polák, Jaroslav
  • Petráš, Roman
  • Heczko, Milan
  • Chai, G.
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http://linked.open.../riv/zahajeniAkce
issn
  • 1877-7058
number of pages
http://bibframe.org/vocab/doi
  • 10.1016/j.proeng.2014.06.226
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  • Elsevier
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