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首页> 外文期刊>Journal of Materials Processing Technology >Effects of cell size on compression and bending strength of aluminum-foamed material by complex stirring in induction heating
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Effects of cell size on compression and bending strength of aluminum-foamed material by complex stirring in induction heating

机译:感应加热中复杂搅拌下泡孔尺寸对铝泡沫材料压缩和弯曲强度的影响

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摘要

This paper investigated the effects of various process parameters on the mechanical properties of aluminum-foamed material. For the sake of this, complex stirring, which combined electromagnetic stirring with mechanical stirring, was used to fabricate aluminum foam materials by varying fabrication conditions. Pore size and its volume fraction increased as temperature of molten metal increased. When stirring, pore generation increased and distribution state improved as the stirring velocity increased. Pore size and porosity fraction increased as the foaming velocity increased. It resulted in pore size and shape to be poor material properties. Pore size and porosity fraction increased as the foaming temperature increased. However, the inner flow by the expansion in the molten metal due to temperature gradient and gravitational liquid metal drainage into inter-pores would occur, which caused pores deformed. The compressive strength was inversely proportional to the cell sizes. The yield strength below 2 mm of cell size changed gradually, but the yield strength over 2 mm of cell size drastically decreased because the shape of cell changed from spheroidal to polyhedral structure.
机译:本文研究了各种工艺参数对泡沫铝材料力学性能的影响。为此,将电磁搅拌与机械搅拌相结合的复杂搅拌被用于通过改变制造条件来制造泡沫铝材料。孔的尺寸及其体积分数随着熔融金属温度的升高而增加。当搅拌时,随着搅拌速度的增加,孔的产生增加并且分布状态改善。孔尺寸和孔隙率随发泡速度的增加而增加。这导致孔尺寸和形状差的材料性能。孔尺寸和孔隙率随发泡温度的升高而增加。但是,由于温度梯度引起的熔融金属膨胀引起的内部流动以及重力液体金属向孔间的排泄将发生,这导致孔变形。抗压强度与泡孔尺寸成反比。孔尺寸小于2mm的屈服强度逐渐变化,但孔尺寸超过2mm的屈服强度急剧降低,因为孔的形状从球形改变为多面体结构。

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