Search Results - "Purzyńska, H."
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The Microstructural Evolution of the Welded Joint of Super 304H Stainless Steel after 1000 Hours of Ageing at 700 and 750°C
Published in Archives of metallurgy and materials (24-09-2024)“…This study presents the results of microstructure and hardness tests of a homogenous welded joint made of Super 304H stainless steel after 1000 h of ageing at…”
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Microstructure characterization and mechanical properties of austenitic Super 304H steel after operation
Published in The International journal of pressure vessels and piping (01-10-2024)“…The paper presents the results of testing the microstructure and mechanical properties of austenitic Super 304H steel after approximately 31,000 h of operation…”
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Numerical Modeling of Precipitation Processes in Heat Resistant HR3C Austenitic Steel Using CALPHAD Method
Published in Acta physica Polonica, A (01-07-2022)Get full text
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Mechanical Properties of P92 Welded Joint after 3000 Hours of Annealing at 600 and 650°C
Published in Archives of metallurgy and materials (01-01-2024)“…P92 steel is a modern martensitic heat-resistant steel currently used for seamless products for pressure equipment operating in supercritical operating…”
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Evaluation of Creep Strength of Heterogeneous Welded Joint in HR6W Alloy and Sanicro 25 Steel
Published in Archives of metallurgy and materials (01-12-2017)“…This article presents the results of investigations on HR6W alloy and Sanicro 25 steel and the dissimilar welded joint made of them. The characteristic images…”
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Changes In Properties and Microstructure of High-Chromium 9-12%Cr Steels Due to Long-Term Exposure at Elevated Temperature
Published in Archives of metallurgy and materials (01-06-2016)“…This paper presents the characteristics of the performance of P91 (X10CrMoVNb9-1), P92 (X10CrWMoVNb9-2) and VM12 (X12CrCoWVNb12-2-2) steels used for condition…”
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Mechanical properties of Super 304H steel after long-term ageing at 650 and 700°C
Published in Bulletin of the Polish Academy of Sciences. Technical sciences (01-04-2023)“…The paper shows the degradation process of the modern austenitic Super 304H (X10CrNiCuNb18-9-3) steel which was subjected to long-term aging for up to 50,000 h…”
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