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High Temperature Deformation Mechanisms and Processing Map for Hot Working of Cast-Homogenized Mg-3Sn-2Ca Alloy

机译:高温变形机制及加工地图,用于浇铸均化Mg-3Sn-2Ca合金的热加工

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The hot working behavior of Mg-3Sn-2Ca alloy has been investigated in the temperature range 300-500°C and strain rate range 0.0003-10 s~(-1), with a view to evaluate the mechanisms and optimum parameters of hot working. For this purpose, a processing map has been developed on the basis of the flow stress data obtained from compression tests. The stress-strain curves exhibited steady state behavior at strain rates lower than 0.01 s~(-1) and at temperatures higher than 350°C and flow softening occurred at higher strain rates. The processing map exhibited two dynamic recrystallization domains in the temperature and strain rate ranges: (1) 300-420°C and 0.0003-0.003 s~(-1), and (2) 420-500°C and 0.003-1.0 s~(-1), the latter one being useful for commercial hot working. Kinetic analysis yielded apparent activation energy values of 161 and 175 kJ/mole in domains (1) and (2) respectively. These values are higher than that for self-diffusion in magnesium suggesting that the large volume fraction of intermetallic particles CaMgSn present in the matrix generates considerable back stress. The processing map reveals a wide regime of flow instability which gets reduced with increase in temperature or decrease in strain rate.
机译:Mg-3Sn-2Ca合金的热工作行为已经在300-500°C的温度范围内进行了研究0.0003-10 s〜(-1),以评估热工作的机制和最佳参数。为此目的,已经基于从压缩测试获得的流量应力数据开发了处理图。应力 - 应变曲线在低于0.01 s〜(-1)的应变率下表现出稳态行为,在高于350℃的温度下,流动软化发生在较高的应变速率下。处理映射在温度和应变速率范围内显示出两个动态再结晶结构域:(1)300-420°C和0.0003-0.003 S〜(2)420-500°C和0.003-1.0 S〜 (-1),后者有助于商业热门工作。动力学分析分别在结构域(1)和(2)中产生了161和175kJ /摩尔的表观活化能量值。这些值高于镁中自扩散的值表明,基质中存在的金属间粒子的大容积分数产生相当大的背应力。处理地图揭示了宽的流量不稳定性,随着温度的增加或应变率降低而降低。

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