Effect of heat-treatment on material properties of L-DED printed austenistic alloy 08CH18N10T for nuclear reactor applications

Štěpán Jedlan, Martin Ševeček, A. Prantl, J. Hodek, Pavel Podaný, Michal Brázda
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Abstract

This paper deals with the evaluation of material properties of the additively manufactured austenistic alloy 08CH18N10T, which is widely used in the Czech Republic nuclear power plants Temelín and Dukovany and other VVER reactors around the world. For purposes of utilization of additive manufacturing technologies for nuclear core components fabrication, two sets of samples were prepared from horizontally and vertically L-DED printed blocks from 08CH18N10T material. Experiments such as microstructure analysis, porosity and Vickers hardness were then performed on L-DED printed and heat-treated 08CH18N10T material, and the obtained material properties were then compared with the properties of L-DED printed 08CH18N10T material without heat-treatment for examination of its effect and also with material properties of conventionally made 08CH18N10T material.
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热处理对用于核反应堆的 L-DED 印刷奥氏体合金 08CH18N10T 材料性能的影响
本文论述了对快速成型奥氏体合金 08CH18N10T 材料特性的评估,这种合金被广泛应用于捷克特梅林核电站、杜科瓦尼核电站和世界上其他 VVER 反应堆。为了将增材制造技术用于核芯部件制造,从 08CH18N10T 材料的水平和垂直 L-DED 打印块中制备了两组样品。然后对 L-DED 印刷和热处理的 08CH18N10T 材料进行了微观结构分析、孔隙率和维氏硬度等实验,并将获得的材料特性与未进行热处理的 L-DED 印刷 08CH18N10T 材料的特性进行了比较,以检查其影响,同时还与传统制造的 08CH18N10T 材料的特性进行了比较。
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