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Peculiar Features of Thermal Aging and Degradation of Rapidly Quenched Stainless Steels under High-Temperature Exposures

机译:高温曝光下快速淬火不锈钢急性老化和劣化的特殊特征

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摘要

This article presents the results of comparative studies of mechanical properties and microstructure of nuclear fuel tubes and semifinished stainless steel items fabricated by consolidation of rapidly quenched powders and by conventional technology after high-temperature exposures at 600 and 700A degrees C. Tensile tests of nuclear fuel tube ring specimens of stainless austenitic steel of grade AISI 316 and ferritic-martensitic steel are performed at room temperature. The microstructure and distribution of carbon and boron are analyzed by metallography and autoradiography in nuclear fuel tubes and semifinished items. Rapidly quenched powders of the considered steels are obtained by the plasma rotating electrode process. Positive influence of consolidation of rapidly quenched powders on mechanical properties after high-temperature aging is confirmed. The correlation between homogeneous distribution of carbon and boron and mechanical properties of the considered steel is determined. The effects of thermal aging and degradation of the considered steels are determined at 600A degrees C and 700A degrees C, respectively.
机译:本文介绍了核燃料管的机械性能和微观结构的比较研究结果,并通过在600和700A的高温曝光后通过常规技术通过常规技术进行了半成品不锈钢物品。核燃料的拉伸试验级AISI 316和铁素体 - 马氏体钢的不锈钢奥氏体钢管环标本在室温下进行。碳和硼的微观结构和分布是通过核燃料管和半成品中的金相和放射自显影分析。通过等离子体旋转电极工艺获得所考虑钢的快速淬火粉末。确认了高温老化后快速淬火粉末固结在高温老化后的力学性能的正面影响。确定了碳和硼均匀分布与所考虑的钢的力学性能之间的相关性。所考虑的钢的热老化和劣化的影响分别在600A的C和700A C度下测定。

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