首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Mechanical behavior of AISI 304SS determined by miniature test methods after neutron irradiation to 28 dpa
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Mechanical behavior of AISI 304SS determined by miniature test methods after neutron irradiation to 28 dpa

机译:中子辐照至28 dpa后,通过微型测试方法确定的AISI 304SS的力学行为

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摘要

The mechanical properties of AISI 304 stainless steel irradiated for over a decade in the Experimental Breeder Reactor (EBR-II) were measured using miniature mechanical testing methods. The shear punch method was used to evaluate the shear strengths of the neutron-irradiated steel and a correlation factor was empirically determined to predict its tensile strength. The strength of the stainless steel slightly decreased with increasing irradiation temperature, and significantly increased with increasing dose until it saturated above approximately 5 dpa. An effective tensile strain hardening exponent was also obtained from the data which shows a relative decrease in ductility of steel with increased irradiation damage. Ferromagnetic measurements were used to observe and deduce the effects of the stress-induced austenite to martensite transformation as a result of shear punch testing.
机译:使用微型机械测试方法测量了在实验增殖反应堆(EBR-II)中辐照了十多年的AISI 304不锈钢的机械性能。剪切冲头法用于评估中子辐照钢的剪切强度,并凭经验确定相关因子以预测其抗张强度。不锈钢的强度随辐照温度的升高而略有降低,并随剂量的增加而显着提高,直至其饱和度超过约5 dpa。从数据还获得有效的拉伸应变硬化指数,该数据表明钢的延展性相对降低,而辐照损伤则增加。铁磁测量被用来观察和推论剪切冲头试验的结果,应力诱发的奥氏体向马氏体转变的影响。

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