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Effects of hydride precipitation on the mechanical property of cold worked zirconium alloys in fully recrystallized condition

机译:氢化物沉淀对完全重结晶条件下冷加工锆合金力学性能的影响

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The effects of hydrogen precipitation on the mechanical properties of Zircaloy–4 and Zirlo alloys were examined with uniaxial tensile tests at room temperature and at 400?°C and accompanying microstructural changes in the Zircaloy–4 and Zirlo alloy specimens were discussed. The elastic moduli of Zircaloy–4 and Zirlo alloys decreased with increasing hydrogen concentrations. Yield strengths of both materials tended to decrease gradually. The reductions of yield stress seems to be caused by the dissipation of yield point phenomena shown in stress-strain curves. Ultimate tensile strengths (UTS) of Zircaloy–4 and Zirlo slightly increased at low hydrogen contents, and then decreased when the concentrations exceeded 500 and 700 wppm, respectively. Uniform elongations were stable until 600 wppm and drops to 0% around 1400 wppm at room temperature.
机译:氢沉淀对Zircaloy-4和Zirlo合金力学性能的影响在室温和400°C下通过单轴拉伸试验进行了检验,并讨论了Zircaloy-4和Zirlo合金试样的显微组织变化。 Zircaloy-4和Zirlo合金的弹性模量随氢浓度的增加而降低。两种材料的屈服强度都倾向于逐渐降低。屈服应力的减小似乎是由应力-应变曲线中所示的屈服点现象的散布引起的。在低氢含量下,Zircaloy-4和Zirlo的极限抗拉强度(UTS)略有增加,而当浓度分别超过500和700 wppm时,极限抗拉强度会下降。均匀伸长率稳定到600 wppm,并在室温下降至1400 wppm左右的0%。

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