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The role of crystallographic texture on load reversal and low cycle fatigue performance of commercially pure titanium

机译:晶体织构对商业纯钛的载荷反转和低周疲劳性能的作用

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摘要

Microstructural and textural design of hexagonal close packed titanium is of paramount importance for in-service applications comprising of monotonic and cyclic loading. The effect of initial texture on load reversal and low cycle fatigue behaviour of commercially pure titanium was investigated using servohydraulic testing, electron back scatter diffraction (EBSD) and in situ experiments. Uniaxial tensile test on sample A with prismatic texture along the tensile axis showed lower yield strength but higher ductility and twin activity with multiple variants compared to orientation B with basal texture along the tensile axis. Tension-compression load reversal tests show distinct Bauschinger co-efficient for samples A and B at different strain while displacement control cyclic tests yield higher fatigue life for sample B. Higher extent of detwinning in sample B during load reversal in cyclic test releases the backstress and contributes to higher cyclic ductility. In situ EBSD experiments provide evidence of partial reversibility of twinned microstructure in titanium, which explains the formation of thin, small twins during cyclic deformation and rationalizes the difference in monotonic and cyclic ductility. Thus multiple twin variants with intersecting twins contribute to higher strain hardening and ductility in monotonic tension but cyclic life depends on the extent of detwinning.
机译:六方密堆积钛的微观结构和组织结构设计对于包括单调和循环载荷的在役应用至关重要。使用伺服液压测试,电子背散射衍射(EBSD)和原位实验研究了初始织构对商业纯钛负载反向和低周疲劳行为的影响。与具有沿拉伸轴的基础纹理的取向B相比,沿拉伸轴具有棱形纹理的样品A的单轴拉伸试验显示出较低的屈服强度,但具有更高的延展性和双活性,具有多个变体。拉伸-压缩载荷逆转测试显示了样品A和B在不同应变下的明显的鲍辛格系数,而位移控制循环测试则使样品B的疲劳寿命更长。循环测试中载荷逆转期间样品B的解缠程度较高,从而释放了背应力,有助于提高循环延展性。原位EBSD实验提供了钛中孪晶微观结构的部分可逆性的证据,这解释了循环变形过程中细小孪晶的形成,并合理化了单调性和循环延展性的差异。因此,具有双胞胎相交的多个双胞胎变体有助于单调张力中更高的应变硬化和延展性,但是循环寿命取决于解缠的程度。

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