铝硅合金气化程度与“第一次气泡法”和“减压凝固法”的对比评价

J. Zych, M. Piękoś, J. Kolczyk
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引用次数: 0

摘要

所有液态铝合金的特点是容易氧化和从周围环境中吸收氢(这是铸造缺陷的主要原因)。液态合金吸附氢的量主要取决于温度和熔化时间。所进行的调查旨在比较两种已知的测量金属气化度的方法;第一泡法和试样在减压下凝固。液态金属的熔化和保温过程在不同的条件下进行,导致其气体程度的变化,从而导致液态金属的纯度和质量的变化。采用亚共晶铝硅AK7合金进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMPARATIVE ASSESSMENT OF Al-Si ALLOY GASSING DEGREE WITH THE APPLICATION OF THE ‘FIRST BUBBLE’ AND ‘SOLIDIFICATION UNDER DECREASED PRESSURE’ METHODS
All aluminum alloys in a liquid state are characterised by easy oxidation and absorption of hydrogen from the surroundings (which are the main reasons for casting defects). The amount of hydrogen adsorbed by a liquid alloy depends mainly on temperature and melting time. The performed investigations were aimed at comparing two known methods of measuring a metal gassing degree; the first bubble method and sample solidification under decreased pressure. Liquid metal melting and holding processes were performed under different conditions that caused variability of its gassing degree, resulting in a variability of purity and quality of the liquid metal. The investigations were carried out with using the hypoeutectic aluminum-silica AK7 alloy.
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