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首页> 外文期刊>Journal of the European Ceramic Society >Mechanical property degradation of high crystalline SiC fiber–reinforced SiC matrix composite neutron irradiated to ~100 displacements per atom
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Mechanical property degradation of high crystalline SiC fiber–reinforced SiC matrix composite neutron irradiated to ~100 displacements per atom

机译:高结晶SiC纤维增强SiC基质复合中子的机械性能降解辐照〜100个α100位移

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摘要

AbstractFor the development of silicon carbide (SiC) materials for next-generation nuclear structural applications, degradation of material properties under intense neutron irradiation is a critical feasibility issue. This study evaluated the mechanical properties and microstructure of a chemical vapor infiltrated SiC matrix composite, reinforced with a multi-layer SiC/pyrolytic carbon–coated Hi-NicalonTMType S SiC fiber, following neutron irradiation at 319 and 629?°C to ~100 displacements per atom. Both the proportional limit stress and ultimate flexural strength were significantly degraded as a result of irradiation at both temperatures. After irradiation at 319?°C, the quasi-ductile fracture behavior of the nonirradiated composite became brittle, a result that was explained by a loss of functionality of the fiber/matrix interface associated with the disappearance of the interphase due to irradiation. The specimens irradiated at 629?°C showed increased apparent failure strain because the fiber/matrix interphase was weakened by irradiation-induced partial debonding.]]>
机译:<![cdata [ 抽象 用于开发碳化硅(SIC)材料,用于下一代核结构应用,在激烈的中子辐射下的材料特性降解是一种关键可行性问题。该研究评估了化学蒸气渗透的SiC基质复合材料的机械性能和微观结构,用多层SiC /热解碳涂覆的Hi-Nicalon Tm 型S SiC纤维,在319和629℃下的中子辐射,每次原子〜100位。在两个温度下照射的结果,比例极限应力和最终弯曲强度都显着降低。在319℃下照射后,非辐射复合材料的准延展性断裂行为变得脆弱,这是通过与辐射引起的相互作用消失相关的纤维/矩阵界面的功能丧失来解释的结果。在629℃下照射的试样表现出显性失效菌株的增加,因为纤维/基质间差异被辐照诱导的部分剥离削弱。 ]]>

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