首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Development of India-specific RAFM steel through optimization of tungsten and tantalum contents for better combination of impact, tensile, low cycle fatigue and creep properties
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Development of India-specific RAFM steel through optimization of tungsten and tantalum contents for better combination of impact, tensile, low cycle fatigue and creep properties

机译:通过优化钨和钽的含量开发印度专用的RAFM钢,以更好地组合冲击,拉伸,低周疲劳和蠕变性能

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摘要

Effects of tungsten and tantalum contents on impact, tensile, low cycle fatigue and creep properties of Reduced Activation Ferritic-Martensitic (RAFM) steel were studied to develop India-specific RAFM steel. Four heats of the steel have been melted with tungsten and tantalum contents in the ranges 1-2 wt.% and 0.06-0.14 wt.% respectively. Increase in tungsten content increased the ductile-to-brittle transition temperature (DBTT), low cycle fatigue and creep strength of the steel, whereas the tensile strength was not changed significantly. Increase in tantalum content increased the DBTT and low cycle fatigue strength of the steel whereas the tensile and creep strength decreased. Detailed TEM investigations revealed enhanced microstructural stability of the steel against creep exposure on tungsten addition. The RAFM steel having 1.4 wt.% tungsten with 0.06 wt.% tantalum was found to possess optimum combination of impact, tensile, low cycle fatigue and creep properties and is considered for Indian-specific RAFM steel.
机译:研究了钨和钽含量对还原活化铁素体-马氏体(RAFM)钢的冲击,拉伸,低周疲劳和蠕变性能的影响,以开发印度专用的RAFM钢。钢的四炉钢已经熔化,钨和钽的含量分别在1-2 wt。%和0.06-0.14 wt。%的范围内。钨含量的增加增加了钢的延展性至脆性转变温度(DBTT),低周疲劳和蠕变强度,而抗拉强度没有明显变化。钽含量的增加增加了钢的DBTT和低周疲劳强度,而抗拉强度和蠕变强度降低了。详尽的TEM研究表明,增强的钢的显微组织稳定性可防止钨添加引起的蠕变。发现具有1.4重量%的钨和0.06重量%的钽的RAFM钢具有冲击,拉伸,低循环疲劳和蠕变性能的最佳组合,并且被认为是印度专用的RAFM钢。

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