材料科学
金属间化合物
极限抗拉强度
延展性(地球科学)
合金
变形(气象学)
微观结构
复合材料
扫描电子显微镜
冶金
可塑性
拉伸试验
钛合金
蠕动
作者
I.V. Okulov,U. Kühn,T. Marr,J. Freudenberger,L. Schultz,C.‐G. Oertel,Werner Skrotzki,J. Eckert
摘要
Tensile ductility of the Ti-based composites, which consist of a β-Ti phase surrounded by ultrafine structured intermetallics, is tunable through the control of intermetallics. The two Ti-based alloys studied exhibit similar compressive yield strength (about 1000 MPa) and strain (about 35%–40%) but show a distinct difference in their tensile plasticity. The alloy Ti71.8Nb14.1Ni7.4Al6.7 fractures at the yield stress while the alloy Ti71.8Nb14.1Co7.4Al6.7 exhibits about 4.5% of tensile plastic deformation. To clarify the effect of microstructure on the deformation behavior of these alloys, tensile tests were carried out in the scanning electron microscope. It is shown that the distribution as well as the type of intermetallics affects the tensile ductility of the alloys.
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