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Promising Tensile and Fatigue Properties of Commercially Pure Titanium Processed by Rotary Swaging and Annealing Treatment

机译:通过旋转锻炼和退火处理处理的商业上纯钛的抗拉和疲劳性能

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摘要

The effect of the grain refinement and texture on tensile and fatigue properties in commercially pure titanium (grade 2) processed by rotary swaging (RS) and an annealing treatment is investigated. The as-processed sample consists of band-like grains on the longitudinal section and equiaxed grains on the transversal section and revealed an obvious <10-10> fiber texture with respect to the rod axis. Through this technique, a sample with a high tensile strength of 870 MPa, a high uniform elongation of 8.5%, and a high fatigue limit of 490 MPa can be achieved, and the tensile and fatigue properties are almost the same as those of a conventional Ti-6Al-4V alloy. The enhanced mechanical properties and plastic deformation mechanism are discussed in terms of the observed ultrafine-grained microstructure and strong fiber texture.
机译:研究了晶粒细化和质地对通过旋转锻炼(RS)加工的市售钛(2级)中的拉伸和疲劳性能的影响和退火处理。由加工的样品由纵向截面上的带状晶粒和横向部分的等轴晶粒组成,并相对于杆轴揭示了明显的<10-10纤维纹理。通过该技术,可以实现具有高抗拉强度的样品,高870MPa,高均匀伸长率为8.5%,并且可以实现490MPa的高疲劳极限,并且拉伸和疲劳性质与常规的抗疲劳性质几乎相同TI-6AL-4V合金。在观察到的超细粒度微观结构和强纤维质地方面讨论了增强的机械性能和塑性变形机制。

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