首页> 外文会议>Symposium on Mechanisms and Mechanics of Fracture: the John Knott Symposium, Oct 7-10, 2002, Columbus, Ohio, USA >Effects of Microstructure and Stress Triaxiality on Ductility in Alpha/Beta Titanium Alloys
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Effects of Microstructure and Stress Triaxiality on Ductility in Alpha/Beta Titanium Alloys

机译:显微组织和应力三轴性对Alpha / Beta钛合金延展性的影响

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About the α/β titanium alloys with equiaxed α grain, the effects of the microstructure and the stress triaxiality on the process of a micro-void coalescence type of fracture were investigated. Materials tested were 8 types of the titanium alloys with different a grain size. It was shown that the most of micro-voids in the α/β titanium alloys were nucleated at the α/β interfaces, and the microstructural parameter defined as the average distance between the α/β interfaces was closely related with the dimple size observed on the fracture surface. The refinement of the microstructure leads to the deterioration in the ductility, though the near-β titanium alloys with the ultra-fine particle of α (less than 1 μm) have exceptionally a different tendency from other α/β titanium alloys. The dependency of the stress triaxiality on the fracture strain obtained from the notched round bar specimen were also investigated. The significant deterioration in the fracture strain with the increase of the stress triaxiality is observed, and it is shown that the void growth strain in the higher strength materials is relatively small. In addition, the correlation between the toughness and the ductility under the high triaxial stress state was investigated to clarify the dominant factors constructing the fracture toughness.
机译:对于具有等轴α晶的α/β钛合金,研究了显微组织和应力三轴性对微空洞聚结型断裂过程的影响。所测试的材料是8种类型的具有不同晶粒尺寸的钛合金。结果表明,α/β钛合金中的大多数微孔都在α/β界面成核,并且定义为α/β界面之间平均距离的微观结构参数与凹痕尺寸密切相关。断裂面。尽管具有超细颗粒(小于1μm)的近β钛合金与其他α/β钛合金有不同的趋势,但微观结构的细化导致延展性降低。还研究了应力三轴性对从缺口圆棒试样获得的断裂应变的依赖性。随着应力三轴性的增加,观察到了断裂应变的显着恶化,并且表明,高强度材料中的空隙生长应变相对较小。另外,研究了在高三轴应力状态下韧性与延性之间的相关性,以弄清构成断裂韧性的主要因素。

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