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首页> 外文期刊>International journal of materials engineering and technology >MORPHOLOGY AND QUANTITY OF GAS POROSITY AS THE RESULT OF DURALUMIN CAST ON REVEBERATORY FURNACE
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MORPHOLOGY AND QUANTITY OF GAS POROSITY AS THE RESULT OF DURALUMIN CAST ON REVEBERATORY FURNACE

机译:硬质合金铸造炉产生的气孔形态和数量

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摘要

The porosity defects on high castability aluminum alloy like Al-Si alloys was investigated but in the low castability aluminum alloys like Al-Cu alloy had been rarely conducted. However, low fluidity of Al-Cu alloys became enthused material in the future. Gas porosity characterization studies are useful for quality improvement of Al-Cu alloy. The paper aims to explore about gas porosity formation with the addition of copper in the casting process to reduce porosity defects. The experimental object melted aluminum ingot and copper together at clay bowl on reveberatory furnace. The copper added by weight analysis and the optical emission spectrometry was the measure of weight percentage of element in duralumin. Identification of the morphology and quantity of gas porosity at the cut surface of casting duralumin was done by using scanning electron and optic microscopy, and pycnometry and planemetry. The experimental results showed the gas porosity dimensionally, while the non-dimensionally caused by hydrogen gas. Gas porosity in Al-Cu alloys hypoeutectic increased with the increasing copper content. Gas porosity to be ordered or round shape which depends on high or low copper content, respectively.
机译:研究了高铸造性铝合金(如Al-Si合金)的孔隙缺陷,但在低铸造性铝合金(如Al-Cu合金)中却很少进行。然而,铝-铜合金的低流动性在将来成为人们热衷的材料。气孔特征研究对于改善Al-Cu合金的质量很有用。本文旨在探讨在铸造过程中添加铜以减少孔隙缺陷的气体孔隙形成问题。实验对象在回火炉上的粘土碗中将铝锭和铜熔化在一起。通过重量分析和光发射光谱法添加的铜是硬脑膜素中元素重量百分比的量度。利用扫描电子和光学显微镜,比重法和平面法对铸铁硬铝的切割表面上的气孔形态和数量进行鉴定。实验结果表明,气体的孔隙度是三维的,而三维是由氢气引起的。 Al-Cu合金的亚共晶气体孔隙率随铜含量的增加而增加。气孔率有序或呈圆形,分别取决于高或低铜含量。

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