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Cracks in TIG Welded, Neutron-Irradiated 304 Stainless Steel

机译:TIG焊接的裂缝,中子照射304不锈钢

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In fission and fusion reactor applications, properties of welds of welds and welded joints are key factors that limit component service conditions including their lifetime. Therefore, the availability of reliable repair welding techniques is strongly required in order to reduce the cost of electricity. One of the most difficult and unique characteristics, which repair welding has to overcome, is the radiation damaged microstructure including nuclear transformed gaseous atoms, such as helium from the (n, alpha) and hydrogen from the (n, p) reaction. There have been many attempts to investigate weldability of heavily neutron-damaged materials for establishing criteria for the repair welding process. The objective of this research is to clarify the mechanisms of weld cracking, especially for heat affected zone cracking in heavily neutron irradiated stainless steels.
机译:在裂变和熔融反应器应用中,焊接焊缝和焊接接头的性质是限制包括其寿命的部件服务条件的关键因素。因此,强烈要求可靠的修复焊接技术的可用性以降低电力成本。修复焊接必须克服的最困难和独特的特点之一是辐射受损的微观结构,包括核转化的气态原子,例如来自(n,α)和来自(n,p)反应的氢气的氦气。有许多尝试研究严重中子损坏材料的可焊性,以确定修复焊接过程的标准。本研究的目的是阐明焊接裂缝机制,特别是对于沉重的中子照射不锈钢中的热影响区域裂缝。

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