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Effect of germanium and silicon additions on the mechanical properties of a near-α titanium alloy

机译:锗和硅的添加对近α钛合金力学性能的影响

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摘要

The effect of Germanium (Ge) addition and simultaneous addition of Ge and Silicon (Si) on the tensile properties, impact toughness, and fracture behavior of the near-a alloy Ti-5Al-2Sn-4Zr-2Mo has been investigated at room temperature and at 650 ℃ Addition of Ge monotonically increases the 0.2% yield stress (YS) and ultimate tensile stress (UTS) at both temperatures, and increases the rupture elongation at 650 ℃; however, the Charpy impact toughness at both temperatures decreased. At 650 ℃, this alloy ruptured in a hybrid manner, showing cracking at the germanide precipitates and plastic deformation in the surrounding matrix forming equiaxed dimples. The effect of simultaneous addition of 1 wt% Ge and 0.1 wt% Si on the mechanical properties is also discussed in relation to the effect of precipitate volume fraction and solid solution strengthening.
机译:在室温下研究了锗(Ge)以及同时添加Ge和硅(Si)对近合金Ti-5Al-2Sn-4Zr-2Mo的拉伸性能,冲击韧性和断裂行为的影响在650℃时,添加Ge单调增加了两个温度下的0.2%屈服应力(YS)和极限拉伸应力(UTS),并增加了650℃时的断裂伸长率。但是,两种温度下的夏比冲击韧性均下降。在650℃,该合金以混合方式破裂,显示出锗化物沉淀处的开裂和周围基体中的塑性变形,形成等轴凹窝。还讨论了相对于沉淀物体积分数和固溶强化的影响,同时添加1 wt%的Ge和0.1 wt%的Si对机械性能的影响。

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