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首页> 外文期刊>Journal of thermal analysis and calorimetry >Optimisation of heat treatment of Al-Cu-(Mg-Ag) cast alloys
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Optimisation of heat treatment of Al-Cu-(Mg-Ag) cast alloys

机译:Al-Cu-(Mg-Ag)铸造合金热处理优化

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The optimisation of heat treatment parameters for Al-Cu-(Mg-Ag) cast alloys (2xxx) having different microstructural scales was investigated. Thermo-Calc software was used to design optimal alloy compositions. Differential scanning calorimetry (DSC), scanning electron microscopy and wavelength-dispersive spectroscopy technique were employed to determine proper solution heat treatment temperature and homogenisation time as well as incidence of incipient melting. Proper artificial ageing temperature for each alloy was identified using DSC analysis and hardness measurement. Microstructural scale had a pronounced influence on time and temperature required for complete dissolution of Al2Cu and homogenisation of Cu solute atoms in the alpha-Al matrix. Refined microstructure required only one-step solution treatment and relatively short solution treatment of 10 h to achieve dissolution and homogenisation, while coarser microstructures desired longer time. Addition of Mg to Al-Cu alloys promoted the formation of phases having a rather low melting temperature which demands multi-step solution treatment. Presence of Ag decreases the melting temperature of intermetallics (beside Al2Cu) and improvement in age-hardening response. Peak-aged temperature is primarily affected by the chemical composition rather than the microstructural scale.
机译:研究了具有不同微结构尺度的Al-Cu-(Mg-Ag)铸造合金(2xxx)的热处理参数的优化。热量计算软件用于设计最佳合金组合物。采用差分扫描量热法(DSC),扫描电子显微镜和波长分散光谱技术来确定适当的溶液热处理温度和均质化时间以及初生熔化的发生率。使用DSC分析和硬度测量鉴定了每个合金的适当人工老化温度。微观结构尺度对Al2Cu完全溶解的时间和温度具有明显的影响,以及α-Al基质中的Cu溶质原子的均质化。精细的微观结构只需要一步溶液处理和相对较短的溶液处理10小时以实现溶解和均匀化,而粗糙的微观结构所需的时间较长。向Al-Cu合金中加入Mg促进具有相当低熔点温度的相的形成,这需要多步溶液处理。 Ag的存在降低了金属间金属间(Al2Cu旁边)的熔融温度和改善年龄 - 硬化反应。峰值老化温度主要受化学成分而不是微观结构尺度的影响。

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