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Formation behaviour of blister in cast aluminium alloy

机译:铸铝合金中泡罩的形成行为

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摘要

The formation behaviour of a blister in a die cast aluminium alloy was observed by employing a combined methodology of in situ three-dimensional observation using X-ray microtomography and image based simulation. It has been revealed, via a reverse approach based on the simulation, that nitrogen and carbon dioxide gases fill the blister nucleus. Spontaneous growth of the blister nucleus occurs through creep deformation of the surrounding aluminium due to the blister nucleus’ high internal gas pressure. This internal gas pressure also induces hydrogen precipitation in the form of micropores, which undergo steady growth in a spherical shell region around the blister nucleus. The selective growth of the micropores is attributable to the elevation of hydrostatic stress in directions parallel to the casting surface, thereby promoting the expansion of the blister, also parallel to the casting surface, through the absorption of surrounding micropores into the blister nucleus.
机译:通过使用X射线显微镜监逻和基于图像的模拟来使用原位三维观察的组合方法来观察模具在压铸铝合金中的形成行为。通过基于模拟的反向方法揭示了它,即氮和二氧化碳气体填充泡泡核。由于泡罩核心高内部气体压力,通过蠕变变形,通过蠕变变形发生水疱细胞核的自发生长。该内部气体压力还诱导微孔形式的氢沉淀,这在水疱核周围的球形壳区域中经历稳定的生长。微孔的选择性生长可归因于与铸造表面平行的方向的静液压应力的升高,从而通过将周围微孔的吸收到泡罩核中的吸收,促进泡罩的膨胀,平行于铸造表面。

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