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Metal foaming by powder metallurgy process: investigation of different parameters on the foaming efficiency

机译:粉末冶金法进行金属发泡:研究不同参数对发泡效率的影响

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Aluminium foams, produced by powder metallurgy process, have significant potential applications for uses in weight-sensitive structural parts. Problems in the production of metal foams arise from the lack of knowledge in the control of process parameters. The results are frequently uneven and un-predictable variations in the structure and properties of the final foamed parts are observed. This paper aims to investigate the effect of different para-meters of the powder metallurgy with foaming agents process on the foaming efficiency. The parameters examined included the powder morpho-logy, the compaction pressure and the foaming temperature. During the foaming stage, for each set of parameters the porosity-time (P_(f-t)) diagrams were created and the foaming efficiency was calculated (η=P_(fmax)). Results indicated that the highest foaming efficiency was observed at the specimens with the fine alu-min-ium powder, with high (700 MPa) compaction pressure and high foaming temperatures (800 ~(o)C). Finally, compression tests were per-formed on the foamed specimens with the higher foaming efficiency in order to investigate their s-e response. Furthermore, average compressive strength and density were estimated and presented.
机译:通过粉末冶金工艺生产的泡沫铝在重量敏感的结构部件中具有重要的潜在应用。金属泡沫生产中的问题是由于缺乏对工艺参数控制的知识而引起的。结果经常是不均匀的,并且观察到最终发泡部件的结构和性能发生不可预测的变化。本文旨在研究发泡剂工艺中粉末冶金的不同参数对发泡效率的影响。检查的参数包括粉末形态,压实压力和发泡温度。在发泡阶段,对于每组参数,均会创建孔隙率时间(P_(f-t))图,并计算出发泡效率(η= P_(fmax))。结果表明,在细铝粉,高压实压力(700 MPa)和高发泡温度(800〜(o)C)的样品上,发泡效率最高。最后,对具有较高发泡效率的发泡样品进行压缩试验,以研究其s-e响应。此外,估计并给出了平均抗压强度和密度。

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