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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >The asymmetric pre-yielding behaviour during tension and compression for a rolled AZ31 Mg alloy
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The asymmetric pre-yielding behaviour during tension and compression for a rolled AZ31 Mg alloy

机译:轧制AZ31 Mg合金在拉伸和压缩过程中的不对称预屈服行为

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摘要

Tensile and compressive pre-yield mechanical behavior of a rolled AZ31 Mg alloy sheet was studied by cyclic loading-unloading tests along rolling direction (RD) and transverse direction (TD). The results show that the mechanical response of pre-yielding is not linear elasticity. Microplasticity with irreversible strain and energetic dissipation is observed during tension. While anelasticity with reversible strain and dissipative energy is detected during compression. A stress dependent varied elastic modulus model was built by introducing a stress factor to capture the asymmetric behavior. Three model parameters are tensile yield strength, initial elastic modulus and critical modulus at tensile yield point. Consequently, this model is verified by comparison with the experimental observations. The anelastic and micro-plastic deformation are ascribed to the glide of mobile dislocations. The asymmetric behavior of tension and compression is clarified by the nucleation mechanism of {10-12} twinning.
机译:采用轧制方向(RD)和横向(TD)循环上下料试验,研究了AZ31 Mg轧制合金薄板的拉伸和压缩预屈服力学行为。结果表明:预屈服的力学响应不是线弹性。在张力期间观察到具有不可逆应变和能量耗散的微塑性。同时在压缩过程中检测到具有可逆应变和耗散能量的非弹性。通过引入应力因子来捕捉不对称行为,建立了应力相关变弹性模量模型。三个模型参数是拉伸屈服强度、初始弹性模量和拉伸屈服点的临界模量。因此,通过与实验观察结果的比较验证了该模型的正确性。非弹性变形和微塑性变形归因于移动位错的滑动。拉伸和压缩的不对称行为通过{10-12}孪晶的成核机制得到澄清。

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