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Metallurgical Aspects of Inclusion Assessment in Al–6%Si Casting Alloy Using the LiMCA Technique

机译:使用LIMCA技术在Al-6%Si铸造合金中纳入评估的冶金方面

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In the production of high-quality aluminum castings, melt cleanliness is important in regard to the performance and quality of the cast part and is determined, among other factors, by the inclusions present in the molten metal. Besides causing problems in process and quality control, other harmful consequences include reduced mechanical properties, poor machinability and increased porosity. Thus, control of melt cleanliness requires monitoring and minimizing the presence of impurities and inclusions. The liquid metal cleanliness analyzer (LiMCA) technique was used in the present study to investigate its capability for measuring inclusions such as Al~(2)O~(3), Al~(4)C~(3), MgO, CaO, TiB~(2)and TiAl~(3)typically found in aluminum alloys, where these inclusions were added to Al–6%Si alloy melts using powder, master alloy, pure metal and metal matrix composite sources. Melts containing the different inclusion types were prepared, and the melt cleanliness was quantified using the LiMCA technique. Samplings for microstructural examination were also taken simultaneously. Evidence of the agglomeration of a vast amount of TiB~(2)inclusions as captured by the LiMCA probe tube shows that LiMCA is the only technique that is able to capture such agglomerates in-line, without any problem, as other techniques such as the PoDFA and Prefil cannot measure such TiB~(2)agglomerates without their filter systems getting clogged and interrupting the measurements. This is a significant finding and demonstrates a very important aspect of the LiMCA technique, particularly in view of the fact that Al–Ti–B master alloys are regularly employed for grain refining aluminum casting alloys.
机译:在优质铝制铸件的生产中,熔体清洁度对于铸件的性能和质量而言是重要的,并且在其他因素中,通过熔融金属中存在的夹杂物来确定。除了在过程和质量控制中引起问题之外,其他有害后果包括降低机械性能,可加工性差和孔隙率增加。因此,对熔融清洁的控制需要监测和最小化杂质和夹杂物的存在。本研究中使用液态金属清洁度分析仪(LIMCA)技术,研究其测量夹杂物的能力,例如Al〜(2)O〜(3),Al〜(4)C〜(3),MgO,CaO,通常在铝合金中发现的Tib〜(2)和Tial〜(3),其中使用粉末,母料合金,纯金属和金属基质复合材料来源将这些夹杂物加入到Al-6%Si合金熔体中。制备含有不同包涵式的熔化,并使用LIMCA技术定量熔融清洁度。还同时采取微观结构检查的采样。由于LIMCA探针管捕获的大量TIB〜(2)夹杂物附聚的证据表明,LIMCA是能够在线捕获这种附聚物的唯一技术,而没有任何问题,如其他技术PODFA和PREFIL无法测量此类TIB〜(2)附聚物,无需其过滤系统堵塞和中断测量。这是一个重要的发现和演示了LIMCA技术的非常重要方面,特别是考虑到Al-Ti-B主合金经常用于晶粒精炼铝铸造合金。

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