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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Evaluation of residual stresses in electron-beam welded Zr2.5Nb0.9Hf Zircadyne flange mock-up of a reflector vessel beam tube flange
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Evaluation of residual stresses in electron-beam welded Zr2.5Nb0.9Hf Zircadyne flange mock-up of a reflector vessel beam tube flange

机译:反射器容器束管法兰的电子束焊接Zr2.5Nb0.9Hf Zircadyne法兰模型中的残余应力评估

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摘要

The dual-phase alloy Zr2.5Nb alloy is an important nuclear material, because of its use in current and possible use in future nuclear reactors. It is, however, well-known that Zr2.5Nb weldments can fail through a time-dependent mechanism called delayed hydride cracking which is typically driven by the presence of tensile residual stresses. With a view to understanding the development of residual stresses associated with Zr2.5Nb welds the current study focuses on the evaluation of the residual stresses in a mock-up of a reactor beam tube flange made from Zr2.5Nb0.9Hf. The present results suggests that, like ferritic welds which undergo a solid-state phase transformation upon welding, Zr2.5Nb0.9Hf welds also develop high tensile residual stresses in the heat-affected zone whereas the stresses closer to the weld tip are reduced by the effects of the β → α solid-state phase transformation.
机译:Zr2.5Nb双相合金是一种重要的核材料,因为它在当前使用并且可能在未来的核反应堆中使用。但是,众所周知,Zr2.5Nb焊件会通过一种称为时延氢化物开裂的时间依赖性机制而失效,这种机制通常是由残余拉应力的存在驱动的。为了理解与Zr2.5Nb焊缝相关的残余应力的发展,当前的研究重点是在由Zr2.5Nb0.9Hf制成的反应堆梁管法兰模型中评估残余应力。目前的结果表明,就像铁素体焊缝在焊接后经历固态相变一样,Zr2.5Nb0.9Hf焊缝在热影响区也会产生高的拉伸残余应力,而更靠近焊缝尖端的应力会被降低。 β→α固态相变的影响。

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