首页> 外文期刊>Journal of Magnesium and Alloys >Dependence of flow strength and deformation mechanisms in common wrought and die cast magnesium alloys on orientation, strain rate and temperature
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Dependence of flow strength and deformation mechanisms in common wrought and die cast magnesium alloys on orientation, strain rate and temperature

机译:常见的锻造和压铸镁合金的流动强度和变形机理对取向,应变率和温度的依赖性

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摘要

The controlling plastic deformation mechanisms (i.e. slip or twinning) and the structural crash performance of Mg alloys are strongly influenced by loading mode, texture and microstructure. This paper summarizes the main results from an experimental program to assess these effects for commercial Mg alloy extrusions (AM30 and AZ31), sheet (AZ31), and high pressure die castings (HPDC, AM50 and AM60). Uniaxial tensile and compressive tests were performed over a wide range of strain rate and temperature (i.e. 0.00075–2800?s?1and 100?°C to ?150?°C) using conventional servo-hydraulic and high-strain-rate universal test machines and a split-Hopkinson-bar (SHB) apparatus. In primarily-slip-dominant deformation, the true stress–strain curves showed approximate power-law behavior, and the effects of strain rate and temperature on yield strength could be approximately described by constitutive equations linearly dependent on the rate parameter,Tln(5.3×107/?˙)whereTis test temperature in Kelvin and?˙is strain rate in s?1. In primarily-twin-dominant deformation, the effects of strain rate and temperature on yield and initial flow stress were negligible or small from quasi-static to 2800?s?1owing to the athermal characteristics of mechanical twinning; the effects may become more pronounced with exhaustion of twinning and increasing proportion of slip.
机译:镁合金的可控塑性变形机制(即滑移或孪生)和结构崩溃性能受加载方式,织构和微观结构的强烈影响。本文总结了一个实验程序的主要结果,该程序评估了商用镁合金挤压件(AM30和AZ31),薄板(AZ31)和高压压铸件(HPDC,AM50和AM60)的这些效果。使用常规伺服液压和高应变率通用试验机,在很宽的应变速率和温度范围(即0.00075–2800?s?1和100?C至?150?C)下进行了单轴拉伸和压缩测试和分裂霍普金森酒吧(SHB)设备。在主要为滑动为主的变形中,真实的应力-应变曲线显示出近似的幂律行为,应变速率和温度对屈服强度的影响可以通过线性方程式(取决于速率参数,Tln(5.3× 107 /?),其中Tis测试温度以开尔文(Kelvin)为单位,应变率以s?1为单位。在双胞胎主要变形中,由于机械孪晶的无热特性,从准静态到2800?s?1,应变速率和温度对屈服和初始流动应力的影响可以忽略不计或很小。随着孪晶的耗尽和滑移比例的增加,效果可能会更加明显。

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