About: Comparison of microfractographic behaviour of acicular ferrite and bainite and hydrogen cracking resistance     Goto   Sponge   NotDistinct   Permalink

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  • Acicular ferrite (AF) microstructure represents an excellent contribution of mechanical properties and the toughness level detected in low-alloy steel. Majority of neighbouring plates (laths) have mutual high-angle misoreintation in contradistinction to upper bainite (B) microstructure. High-angle interfaces are only formed between B-packets consisting of low-angle plates (laths) set. The cleavage unit crack path (UCP) has been found to be a distance between two grains of high-angle ferrite regions (corresponding to the two crystallographic B-packets boundaries). In the AF the UCP value is defined as a distance between two neighbouring highly misorientated plates. It shows the UCP values are shorter what results in higher deviation frequency and consequently in limited (retarded) cleavage crack propagation. The nucleation AF conditions in austenite matrix after application of an optimized thermomechanically controlled process consisting of the consecutive straining processes realized in recrystallizat
  • Acicular ferrite (AF) microstructure represents an excellent contribution of mechanical properties and the toughness level detected in low-alloy steel. Majority of neighbouring plates (laths) have mutual high-angle misoreintation in contradistinction to upper bainite (B) microstructure. High-angle interfaces are only formed between B-packets consisting of low-angle plates (laths) set. The cleavage unit crack path (UCP) has been found to be a distance between two grains of high-angle ferrite regions (corresponding to the two crystallographic B-packets boundaries). In the AF the UCP value is defined as a distance between two neighbouring highly misorientated plates. It shows the UCP values are shorter what results in higher deviation frequency and consequently in limited (retarded) cleavage crack propagation. The nucleation AF conditions in austenite matrix after application of an optimized thermomechanically controlled process consisting of the consecutive straining processes realized in recrystallizat (en)
Title
  • Comparison of microfractographic behaviour of acicular ferrite and bainite and hydrogen cracking resistance
  • Comparison of microfractographic behaviour of acicular ferrite and bainite and hydrogen cracking resistance (en)
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  • Comparison of microfractographic behaviour of acicular ferrite and bainite and hydrogen cracking resistance
  • Comparison of microfractographic behaviour of acicular ferrite and bainite and hydrogen cracking resistance (en)
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  • RIV/61989100:27360/08:00019133!RIV10-MPO-27360___
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  • P(FI-IM3/159)
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  • 360617
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  • RIV/61989100:27360/08:00019133
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  • acicular ferrite; upper bainite; high and low angle interface; hydrogen induced cracking (en)
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  • [569F9B239676]
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  • Istanbul
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  • Zenica
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  • Trends in the development of machinery and associated technology
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  • Mazancová, Eva
  • Mazanec, Karel
  • Rucká, Zdeňka
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issn
  • 9958-6177
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  • Faculty of Mechanical Engineering
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  • 27360
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