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From Stochastic Foam to Designed Structure: Balancing Cost and Performance of Cellular Metals

机译:从随机泡沫到设计结构:平衡蜂窝金属的成本和性能

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摘要

Over the past two decades, a large number of metallic foams have been developed. In recent years research on this multi-functional material class has further intensified. However, despite their unique properties only a limited number of large-scale applications have emerged. One important reason for this sluggish uptake is their high cost. Many cellular metals require expensive raw materials, complex manufacturing procedures, or a combination thereof. Some attempts have been made to decrease costs by introducing novel foams based on cheaper components and new manufacturing procedures. However, this has often yielded materials with unreliable properties that inhibit utilization of their full potential. The resulting balance between cost and performance of cellular metals is probed in this editorial, which attempts to consider cost not in absolute figures, but in relation to performance. To approach such a distinction, an alternative classification of cellular metals is suggested which centers on structural aspects and the effort of realizing them. The range thus covered extends from fully stochastic foams to cellular structures designed-to-purpose.
机译:在过去的二十年中,已经开发了许多金属泡沫。近年来,对该多功能材料类别的研究进一步加强。但是,尽管它们具有独特的属性,但仅出现了数量有限的大型应用程序。缓慢吸收的一个重要原因是它们的高成本。许多多孔金属需要昂贵的原材料,复杂的制造程序或其组合。已经进行了一些尝试,以通过基于便宜的部件和新的制造程序引入新型泡沫来降低成本。然而,这经常产生具有不可靠特性的材料,从而抑制了其全部潜力的利用。在这篇社论中探讨了蜂窝金属的成本与性能之间的最终平衡,该尝试试图不以绝对数字来考虑成本,而是考虑性能。为了达到这种区别,建议对细胞金属进行另一种分类,其重点是结构方面和实现这些方面的努力。这样覆盖的范围从完全随机的泡沫延伸到为特定目的而设计的多孔结构。

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