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首页> 外文期刊>International Journal Cast Metals Research >Thermal and flow modelling of ladling and injection in high pressure die casting process
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Thermal and flow modelling of ladling and injection in high pressure die casting process

机译:高压压铸过程中水包和注射的热流模型

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摘要

Air entrapment arid premature solidification in the shot sleeve of the cold chamber, high pressure die casting process are problems affecting the casting quality. These issues are addressed from several viewpoints, including heat loss during metal ladling, turbulence generation and gas escape during pouring, wave formation and propagation during metal pouring and injection, and heat loss and solid creation in the shot sleeve during metal injection. Measurements and simulations have been conducted for a typical industrial case where the fill ratio of the shot sleeve is about 30%. It has been found that the settling time of the aluminium alloy in the shot sleeve has a profound influence on the air entrapment. The settling time also has a negative effect on the metal quality the solid formation (premature solidification or cold flakes) in the shot sleeve. Fast pouring and quick injection (no settling time) are recommended as a good approach to minimise the air entrapment and cold flakes in the shot sleeve in this particular case.
机译:在冷室的射孔套筒中夹带空气并过早凝固,高压压铸工艺是影响铸造质量的问题。从几个角度解决了这些问题,包括金属水包期间的热损失,浇注期间湍流的产生和气体逸出,金属浇注和注射期间的波形形成和传播,以及金属注射期间的射孔套筒中的热量损失和固体生成。针对典型工业情况进行了测量和模拟,在工业情况中,喷丸套筒的填充率约为30%。已经发现,铝合金在喷丸套筒中的沉降时间对夹带空气有深远的影响。沉淀时间还对射孔套筒中固体形成(过早固化或冷薄片)的金属质量产生负面影响。在这种特殊情况下,建议快速浇注和快速注入(无沉降时间),这是将喷丸套筒中的空气滞留和冷屑最小化的好方法。

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