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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Assessment of intermetallic compound formation during solidification of Al-Si piston alloys through thermal analysis technique
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Assessment of intermetallic compound formation during solidification of Al-Si piston alloys through thermal analysis technique

机译:通过热分析技术评估Al-Si活塞合金凝固过程中金属间化合物的形成

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摘要

Multicomponent Al-Si-Ni-Cu-Mg alloys are widely used as automotive piston materials. The aim of the present work is to study the complicated formation of different intermetallic compounds during the solidification of two types of piston alloys: LM13 alloy with 0.9Ni-0.9Cu-1 Mg and 3HA alloy containing 2.6Ni-3Cu-0.2Mg, Solidification events were detected by three-thermocouple thermal analysis technique, and microstructure evaluations were carried out using optical microscopy, scanning electron microscopy, energy dispersive X-ray analysis and quantitative image analysis, in addition to the (AI) + (Si) eutectic reaction, the results show a complicated precipitation of different post-eutectic phases, the most important of which are AI_9FeNi, AI_3Ni, AI_3CuNi and Mg_2Si. Ni rich Al_9FeNi and AI_3Ni phases have the highest formation temperatures among other intermetallics, which are detected in the range of 553-558°C in 3HA alloy and 546-553°C in LM13 alloy.
机译:多组分Al-Si-Ni-Cu-Mg合金被广泛用作汽车活塞材料。本工作的目的是研究两种类型的活塞合金在凝固过程中不同金属间化合物的复杂形成:两种活塞合金:0.9Ni-0.9Cu-1 Mg的LM13合金和2.6Ni-3Cu-0.2Mg的3HA合金;凝固通过三热电偶热分析技术检测到这些事件,除(AI)+(Si)共晶反应外,还使用光学显微镜,扫描电子显微镜,能量色散X射线分析和定量图像分析进行了微观结构评估,结果表明,不同后共晶相的析出较为复杂,其中最重要的是AI_9FeNi,AI_3Ni,AI_3CuNi和Mg_2Si。富镍的Al_9FeNi和AI_3Ni相在其他金属间化合物中具有最高的形成温度,在3HA合金中检测到的范围为553-558°C,在LM13合金中检测到的范围为546-553°C。

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