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Candidate Structural Materials for In-Core VHTR Application

机译:核心VHTR应用的候选结构材料

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Selection of VHTR in-core structural material will depend on the ability for the material to withstand extreme temperatures and irradiation. The use of Alloy 800H for control rod applications is preferred, but will require designing with a relatively low strength material which becomes brittle upon modest irradiation. Presently, more fidelity in both design and the available Alloy 800H database are required to judge the lifetime this alloy will have in service.The only currently envisioned alternative to Alloy 800H are the CFC and SiC/SiC composites, which are currently challenged by code qualification issues. As with Alloy 800H, the composite irradiation data-base is inadequate, though it appears that the CFC service lifetime will be limited due to its anisotropic dimensional change under irradiation to doses somewhat higher than Alloy 800H (1-5×10~(25) n/m~2), while SiC/SiC composites appear to retain their mechanical properties to doses in excess of the VHTR lifetime dose. As the path to qualification of both CFC and SiC/SiC are similar, it appears that SiC/SiC is more attractive for high-dose Gen IV application unless high thermal conduction is required.
机译:VHTR核内结构材料的选择将取决于该材料承受极端温度和辐射的能力。优选将800H合金用于控制棒应用,但需要设计强度相对较低的材料,该材料在适度照射下会变脆。目前,需要更高的设计保真度和可用的Alloy 800H数据库来判断这种合金的使用寿命。目前仅能想到的800H合金替代品是CFC和SiC / SiC复合材料,它们目前受到代码认证的挑战问题。与800H合金一样,复合辐照数据库是不充分的,尽管看起来CFC的使用寿命会受到限制,因为其在辐照下的各向异性尺寸变化会比800H更高(1-5×10〜(25)) n / m〜2),而SiC / SiC复合材料似乎在超过VHTR寿命剂量的情况下仍保留其机械性能。由于CFC和SiC / SiC的鉴定途径相似,因此,除非需要高导热性,否则SiC / SiC对于高剂量Gen IV应用更具吸引力。

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