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Aluminum foam-polymer hybrid structures (APM aluminum foam) in compression testing

机译:压缩试验中的泡沫铝-聚合物混合结构(APM泡沫铝)

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摘要

The Advanced Pore Morphology (APM) process, a new method for production of aluminum foam-polymer hybrid materials, is described. Small volume aluminum foam spheres are produced first and then adhesively joined in a separate process step to realize an APM foam part. Detailed information on mechanical properties of this new hybrid material is given. Results of uniaxial and hydrostatic compression tests are summarized and evaluated to show how typical parameters characterizing material and process such as spatial arrangement, size and density of the foam elements influence the global properties. Two levels of the hierarchical architecture of the material are evaluated-namely the individual foam spheres and the hybrid structure. Variation of adhesives and adhesive coating thickness used in bonding the spheres in conjunction with study of unbonded specimens provides additional insight in the influence of this bond. First estimates on density dependence of mechanical properties are derived from the experimental data. Distinctive differences between APM and conventional aluminum foams are qualitatively explained. Throughout the study, AlSi7 aluminum foam produced from chemically identical precursor material according to the powder metallurgical FOAMINAL® process is included as reference material. © 2008 Elsevier Ltd. All rights reserved.
机译:描述了高级孔隙形态(APM)工艺,这是一种生产泡沫铝-聚合物杂化材料的新方法。首先生产小体积的铝泡沫球,然后在单独的工艺步骤中粘合在一起,以实现APM泡沫部件。给出了有关这种新型杂化材料机械性能的详细信息。对单轴和静水压缩试验的结果进行了总结和评估,以显示表征材料和过程的典型参数(例如,泡沫元件的空间布置,尺寸和密度)如何影响整体性能。对材料的层次结构的两个层次进行了评估,即各个泡沫球和混合结构。结合球体使用的粘合剂和粘合剂涂层厚度的变化以及未粘合样品的研究为这种粘合的影响提供了更多的见识。从实验数据得出对机械性能的密度依赖性的初步估计。定性地解释了APM和常规铝泡沫之间的显着差异。在整个研究过程中,根据粉末冶金FOAMINAL®工艺由化学上相同的前驱体材料生产的AlSi7泡沫铝都作为参考材料。 ©2008 Elsevier Ltd.保留所有权利。

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