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Intermediate-temperature mechanical properties of Ni-Si alloys: oxygen embrittlement and its remedies

机译:Ni-Si合金的中温力学性能:氧脆性及其解决方法

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With good corrosion resistance, reasonable room-temperature ductility, and excellent strength up to temperatures of 700 deg C Ni_3Si-based alloys show considerable potential for structural applications. The Ni-Si alloys used for acid-corrosion resistance suffer from a dynamic environmental embrittlement when tested at intermediate temperatures around 600 deg C. To assess these Ni-Si alloys for elevated-temperature structural application, the mechanical properties of these alloys strengthened by Ni_3Si precipitates were systematically evaluated at different temperatures in various test environments. Oxygen was identified as the embrittling species responsible for the low ductility and premature fracture of the Ni-Si alloys. A strong dependence of elongation and fracture mode on strain rate was observed. Based on the understanding of the embrittlement mechanism, some unique approaches for improving the intermediate-temperature ductility, strength and fabricability of Ni-Ni_3Si alloys were identified: reactive element doping (such as Zr and Y) to change the grain boundary chemistry; preoxidation to form adherent oxide layers; and thermomechanical processing to tailor the grain structure/shape. Some other properties such as creep resistance and weldability of these alloys were also briefly evaluated and are discussed in this paper.
机译:Ni_3Si基合金具有良好的耐腐蚀性,合理的室温延展性以及高达700摄氏度的优异强度,显示出在结构应用中的巨大潜力。在大约600摄氏度的中间温度下测试时,用于耐酸腐蚀的Ni-Si合金会遭受动态环境脆化的影响。为了评估这些Ni-Si合金在高温结构应用中的性能,Ni_3Si增强了这些合金的机械性能在各种测试环境中,在不同温度下对沉淀物进行了系统的评估。氧气被认为是造成Ni-Si合金延展性低和过早断裂的脆性物质。观察到伸长率和断裂模式对应变率的强烈依赖性。在了解脆化机理的基础上,确定了一些改善Ni-Ni_3Si合金的中温延展性,强度和可加工性的独特方法:反应性元素掺杂(如Zr和Y)改变晶界化学;预氧化形成粘附的氧化物层;以及热机械加工以调整晶粒结构/形状。还简要评估了这些合金的其他一些性能,例如抗蠕变性和可焊接性,并在本文中进行了讨论。

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