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The distinct influences of pre-strain on low cycle fatigue behavior of CP-Ti along rolling direction at different strain amplitudes

机译:预应变对CP-Ti在不同应变幅度下沿轧制方向的低周疲劳行为的明显影响

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In this paper, the distinct influences of pre-strain on low cycle fatigue (LCF) behavior of CP-Ti at different strain amplitudes are clarified from macroscopic and microscopic aspects. At low strain amplitude, the sample of as-received material (AR) shows pronounced secondary cyclic hardening, however, this phenomenon gradually disappears in pre-strained (PS) sample with the increase of pre-strain. As cyclic stress amplitude and mean stress of PS sample increase with the decrease of strain amplitude, the detrimental effect of pre-strain on LCF life becomes more significant at lower strain amplitude, indicating the pre-strain dependent LCF behavior. At high strain amplitude, due to the more significant cyclic softening and mean stress reduction behavior, cyclic stress amplitude and mean stress rapidly decay to the value of AR sample in the initial few cycles, indicating the pre-strain independent LCF behavior. As the reduction of LCF life is related to the increase of mean stress and stress amplitude, the asymmetry coefficient related model can be applied to predict LCF life of CP-Ti. Further TEM observation shows that at low strain amplitude, dislocation structures of AR sample are mainly composed of planar slip structures and the secondary cyclic hardening is caused by corduroy structure. After pre-strain, both planar slip and wavy slip structures are observed in PS sample, indicating that the irreversibility of the dislocation structures inherited from pre-strain causes the decrease of LCF life. At high strain amplitude, the dislocation structures introduced by pre-strain can be erased completely during subsequent cyclic deformation, consequently, dislocation configurations of AR and PS samples are composed of the same wavy slip structures.
机译:本文从宏观和微观两个方面阐明了预应变对CP-Ti在不同应变幅度下的低周疲劳(LCF)行为的不同影响。在低应变振幅下,按原样(AR)的样品显示出明显的二次循环硬化,但是,随着预应变的增加,这种现象在预应变(PS)样品中逐渐消失。随着PS样品的循环应力幅值和平均应力随应变幅值的减小而增加,在较低的应变幅值下,预应变对LCF寿命的不利影响变得更加显着,表明应变前依赖的LCF行为。在高应变振幅下,由于更显着的循环软化和平均应力减小行为,在最初的几个循环中,循环应力振幅和平均应力迅速衰减到AR样本的值,表明应变前独立的LCF行为。由于LCF寿命的减少与平均应力和应力幅值的增加有关,因此可以使用不对称系数相关模型来预测CP-Ti的LCF寿命。进一步的TEM观察表明,在低应变幅度下,AR样品的位错结构主要由平面滑移结构组成,二次循环硬化是由灯芯绒结构引起的。预应变后,在PS样品中均观察到了平面滑移和波状滑移结构,表明从预应变继承的位错结构的不可逆性导致LCF寿命的降低。在高应变振幅下,预应变引入的位错结构可以在随后的循环变形过程中被完全消除,因此,AR和PS样品的位错构型由相同的波状滑动结构组成。

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