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  • This paper is dedicated to the parameter optimization of automated-steel heat treatment to achieve optimal mechanical properties. A quenching was performed at two different temperatures and the quenched samples were tempered subsequently at five different temperatures in range of 250 - 450°C. Two different tempering times were also applied. The three-point flexural test was used to determine a maximum bending stress, Young’s modulus and a maximum strain. The matrix of mechanical properties were constructed on the basis of measured data and the optimal heat treatment parameters were determined.
  • This paper is dedicated to the parameter optimization of automated-steel heat treatment to achieve optimal mechanical properties. A quenching was performed at two different temperatures and the quenched samples were tempered subsequently at five different temperatures in range of 250 - 450°C. Two different tempering times were also applied. The three-point flexural test was used to determine a maximum bending stress, Young’s modulus and a maximum strain. The matrix of mechanical properties were constructed on the basis of measured data and the optimal heat treatment parameters were determined. (en)
Title
  • Optimization of the Automated-steel Heat Treatment.
  • Optimization of the Automated-steel Heat Treatment. (en)
skos:prefLabel
  • Optimization of the Automated-steel Heat Treatment.
  • Optimization of the Automated-steel Heat Treatment. (en)
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  • RIV/46747885:24210/12:#0002795!RIV13-MSM-24210___
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  • 156988
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  • RIV/46747885:24210/12:#0002795
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  • Automated-steel; Heat treatment; Metalography; Mechanical properties (en)
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  • [9EA13F8E3DD3]
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  • Brno
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  • Ostrava
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  • METAL 2012 - Proceedings of 21st International Conference on Metallurgy and Materials
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  • ANDRŠOVÁ, Zuzana
  • KEJZLAR, Pavel
  • VOLESKÝ, Lukáš
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number of pages
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  • Tanger s.r.o.
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  • 978-80-87294-31-4
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  • 24210
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