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Irreversibility of strain during low-cycle fatigue experiments of a precipitation-hardened alloy

机译:沉淀硬化合金低周疲劳实验中应变的不可逆性

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In this precipitation-hardened alloy, containing delta' (Al3Li) coherent particles, under conditions of peak-aged heat treatment and high applied plastic strain amplitude, the slip mode is mainly inhomogeneous and planar. It is shown that dwell time periods at ambient temperature superimposed on the basic cycling test induces, on reloading, a significant transient hardening. The mean cumulative irreversible shear strain within the bands may be evaluated from a simple geometrical model. This model is based on the variation in the mean sheared section of delta' particles and takes into account the transient hardening measurements. From these results and the quantity of slip bands estimated from transmission electron microscopy observations it has been found that the shearing is relatively irreversible during the first cycles and becomes more and more reversible once a stable deformation substructure is formed. The volume fraction of softest bands, where the particles are entirely sheared, and their mean cumulative shear strain are derived from the preceding results. The present study suggests that these intense slip bands are sufficient to accommodate the applied plastic strain. Accordingly, it seems that the drastic cyclic softening observed after a number of cycles equal to 0.5N(f) (N-f is the life duration) may probably be attributed to the initiation and propagation of microcracks. [References: 21]
机译:在这种含有δ'(Al3Li)相干粒子的沉淀硬化合金中,在峰值时效热处理和高施加塑性应变幅度的条件下,滑模主要是不均匀和平面的。结果表明,在环境温度下的停留时间叠加在基本循环试验上会在重装时引起明显的瞬态硬化。带内的平均累积不可逆剪切应变可以通过简单的几何模型进行评估。该模型基于δ'颗粒平均剪切截面的变化,并考虑了瞬态硬化测量。从这些结果和由透射电子显微镜观察估计的滑移带的数量,已经发现,在第一个循环中剪切是相对不可逆的,并且一旦形成稳定的变形子结构就变得越来越可逆。从前面的结果可以得出最柔软带的体积分数,其中颗粒被完全剪切,它们的平均累积剪切应变。本研究表明,这些强烈的滑动带足以适应所施加的塑性应变。因此,似乎在等于0.5N(f)(N-f是寿命)的循环数之后观察到的剧烈的循环软化可能归因于微裂纹的产生和传播。 [参考:21]

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