材料科学
高温合金
冶金
极限抗拉强度
穿晶断裂
成核
钛
沉淀硬化
合金
晶间断裂
碳纤维
脆性
降水
晶间腐蚀
镍
复合材料
复合数
化学
物理
有机化学
气象学
作者
Usman Ali,Muhammad Saqlain Qurashi,Patrick Osei Lartey,Imran Alam,Peter K. Liaw,Jianmin Qiao
出处
期刊:Key Engineering Materials
日期:2023-10-13
卷期号:963: 3-9
摘要
A286 nickel-iron based superalloy used in high temperature applications. Age hardening is done to enhance the creep behavior which is much affected by TiC and eta (ⴄ (Ni 3 Ti)) phases. Effect of carbon and titanium (0.02C-2.46Ti, 0.04C-2.54Ti, 0.05C-2.58Ti, and 0.06C-2.62Ti) on tensile behavior of aged A286 superalloy is systematically investigated via TiC and ⴄ (Ni 3 Ti) phases. It has been revealed that carbon and titanium contents are in proportional to nucleation of TiC and eta phases in the austenitic matrix of this alloy. Precipitation of these phases enhanced yield strength from 354MPa to 501MPa and ultimate tensile strength (UTS) 543MPa to 651MPa. However, plasticity decreased nearly 4%. Fracture topography showed that the ductile transgranular fracture in low C-Ti alloys are due to TiC particles, whereas in high C-Ti alloys fracture nature is found brittle intergranular due to eta phases.
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