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Fabrication and Compressive Properties of Low to Medium Porosity Closed-Cell Porous Aluminum Using PMMA Space Holder Technique

机译:利用PMMA空间支架技术制备中低孔隙度闭孔多孔铝及其压缩性能

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摘要

In recent years, closed-cell porous Aluminum (Al) has drawn increasing attention, particularly in the applications requiring reduced weight and energy absorption capability such as in the automotive and aerospace industries. In the present work, porous Al with closed-cell structure was successfully fabricated by powder metallurgy technique using PMMA as a space holder. The effects of the amount of PMMA powder on the porosity, density, microstructure and compressive behaviors of the porous specimens were systematically evaluated. The results showed that closed-cell porous Al having different porosities (12%–32%) and densities (1.6478 g/cm3, 1.5125 g/cm3 and 1.305 g/cm3) could be produced by varying the amount of PMMA (20–30 wt %). Meanwhile, the compressive behavior results demonstrated that the plateau stress decreased and the energy absorption capacity increased with increasing amount of PMMA. However, the maximum energy absorption capacity was achieved in the closed-cell porous Al with the addition of 25 wt % PMMA. Therefore, fabrication of closed-cell porous Al using 25 wt % PMMA is considered as the optimal condition in the present study since the resultant closed-cell porous Al possessed good combinations of porosity, density and plateau stress, as well as energy absorption capacity.
机译:近年来,闭孔多孔铝(Al)引起了越来越多的关注,特别是在要求减轻重量和吸收能量的应用中,例如在汽车和航空航天工业中。在本工作中,通过粉末冶金技术成功地使用PMMA作为空间保持器,制造了具有闭孔结构的多孔Al。系统地评估了PMMA粉末的添加量对多孔试样的孔隙率,密度,微观结构和压缩行为的影响。结果表明,闭孔多孔铝具有不同的孔隙率(12%–32%)和密度(1.6478 g / cm 3 ,1.5125 g / cm 3 和1.305 g) / cm 3 )可以通过改变PMMA的量(20–30 wt%)来生产。同时,压缩行为结果表明,随着PMMA含量的增加,平台应力减小,能量吸收能力增强。然而,通过添加25重量%的PMMA,在闭孔多孔Al中实现了最大的能量吸收能力。因此,在本研究中,使用25 wt%PMMA制备闭孔多孔Al被认为是最佳条件,因为所得的闭孔多孔Al具有良好的孔隙率,密度和平台应力以及能量吸收能力的组合。

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