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PROCESS AND CHARACTERIZATION OF DUAL PHASE STEEL FOAM

机译:双相钢泡沫的制备与表征

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摘要

Porous materials featuring cellular structures are known to have many interesting combinations of physical and mechanical properties. Some of them have been extensively used in the transportation field (i.e. balsa wood). Steel foams presented promising theoretical properties for both functional and structural applications in transportation, but processing of such a kind of foams is complex due to their high melting point. Recently a technique for processing Cu-based alloys open-cell foams through the molten metal infiltration of a leachable bed of amorphous SiO_2 particles was proposed. A variation of the proposed technique that uses SiC particles as space holder is now presented and was recently successfully applied for dual phase steel foam processing. Results from a processing of dual phase DP500 steel foams, including some morphological, micro-structural and mechanical characterization, are here presented.
机译:已知具有多孔结构的多孔材料具有许多有趣的物理和机械性质的组合。其中一些已在运输领域广泛使用(即轻木)。钢泡沫在运输中的功能和结构应用方面都显示出令人鼓舞的理论性质,但是由于其高熔点,这种泡沫的加工非常复杂。最近,提出了一种通过可熔的非晶态SiO_2颗粒浸出床的熔融金属渗透来处理Cu基合金开孔泡沫的技术。现在介绍了使用SiC颗粒作为空间保持器的拟议技术的一种变体,最近已成功应用于双相钢泡沫加工中。本文介绍了双相DP500钢泡沫的加工结果,包括一些形态,微观结构和机械特性。

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