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Influence of strain rate and temperature on the compressive deformation of a eutectic Al-Si alloy based composite reinforced with -Si_3N_4 whisker

机译:应变速率和温度对-Si_3N_4晶须增强共晶Al-Si合金基复合材料压缩变形的影响

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The compressive properties characterized as a function of the true stress-strain response of α-Si_3N_4 whisker reinforced 4032 aluminum alloy composite were examined at strain rates ranging from 10~(-3) to 10~0s~(-1) in the temperature interval 500~620℃. The effect of compressive deformation parameters such as strain rate and temperature on the mechanical behavior was systematically investigated. The strain rate sensitivity exponent and activation energy were calculated. The activation energy is 126 KJmol~(-1) at 500℃ to 540℃, close to that for lattice self-diffusion in aluminum (142KJmor~(-1), and is 210 KJmol~(-1) at 540℃ to 580℃ (ε=0.37s~(-1)). The compressive deformation behavior of the composite can be described quantified by the Zener-Hollomon parameters (Z) for the solid state and the Non Newton-fluid for the semi-solid state of the composite. It is demonstrated that a linear equation of the logarithmic Z fits the flow stress of the composite at elevated temperatures. The compressive deformation mechanisms of the α-Si_3N_4w/4032Al composite were discussed preliminarily.
机译:在温度区间内应变率为10〜(-3)至10〜0s〜(-1)的条件下,研究了表征为α-Si_3N_4晶须增强4032铝合金复合材料真实应力-应变响应的函数的压缩性能500〜620℃。系统地研究了诸如应变速率和温度等压缩变形参数对机械性能的影响。计算应变率灵敏度指数和活化能。活化能在500℃至540℃时为126 KJmol〜(-1),接近铝的晶格自扩散活化能(142KJmor〜(-1),在540℃至580时为210 KJmol〜(-1)。 ℃(ε= 0.37s〜(-1))。复合材料的压缩变形行为可以用Zener-Hollomon固态参数(Z)和非牛顿流体的半固态描述。结果表明,对数Z的线性方程拟合了复合材料在高温下的流动应力,并初步讨论了α-Si_3N_4w/ 4032Al复合材料的压缩变形机理。

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