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Die soldering: Effect of parameters and alloy characteristics on soldering in the pressure die casting process

机译:压模焊接:压力压铸工艺中参数和合金特性对焊接的影响

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摘要

Die soldering has been a major cause for concern in the aluminium metal mould casting industry for the past few years. In recent times, this defect has posed a major concern because of the notable decrease in productivity and efficiency of casting operations. Due to the high affinity that aluminium has for iron, a vigorous physiochemical reaction occurs at the die/molten metal interface when aluminium melt comes into direct contact with the ferrous die. This reaction results in the immediate formation of a series of iron-aluminium-silicon inter-metallic compounds over the die surface and eventually the cast metal sticks to this inter-metallic layer. The casting parameters, such as the temperature of the melt, the alloy chemistry and the die pre-heat play a significant role in causing soldering. In this study, the critical process parameters affecting soldering have been identified and studied. The effect of seven alloying elements in aluminium 300 series alloy, their interactions, cycle time and temperatures of melt and die have been quantified through various experiments. The experiments were performed in a laboratory environment on an apparatus designed to simulate the harsh casting conditions under which soldering occurs. All the results and conclusions have been verified and validated in several production facilities. Recommendations to mitigate soldering have been proposed based on our conclusions.
机译:在过去的几年中,模具焊接一直是引起铝金属模具铸造行业关注的主要原因。近年来,由于铸件生产率和效率的显着下降,该缺陷引起了人们的极大关注。由于铝对铁具有很高的亲和力,当铝熔体直接与含铁模具接触时,在模具/熔融金属界面会发生剧烈的物理化学反应。该反应导致在模具表面上立即形成一系列铁-铝-硅金属间化合物,最终铸造金属粘在该金属间层上。铸造参数(例如熔体温度,合金化学成分和模具预热)在引起焊接中起着重要作用。在这项研究中,已经确定并研究了影响焊接的关键工艺参数。通过各种实验,定量了铝300系列合金中7种合金元素的影响,它们的相互作用,循环时间以及熔体和模具的温度。实验是在实验室环境中的设备上进行的,该设备设计用于模拟恶劣的铸造条件,在该条件下会发生焊接。所有结果和结论均已在数家生产工厂进行了验证。根据我们的结论,提出了减轻焊接的建议。

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