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Mechanical properties of a new hybrid foam: Closed-cell syntactic foam reinforced with an open-cell aluminum metallic foam.

机译:新型混合泡沫的机械性能:用开孔铝金属泡沫增强的闭孔句法泡沫。

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摘要

Syntactic foams are light weight particulate composites employed as core materials in sandwich constructions. They are light in weight; possess superior strength and stiffness as well as enhanced thermal insulation, damping and acoustic properties. These characteristics truly make them multifunctional materials. Their low density characteristic made them ideal candidates for many buoyancy aid applications. Currently, due to their multifunctionality, they are widely employed in many structural load bearing constructions in the defense, aerospace and marine sectors. In this study, a systematic step by step procedure of manufacturing, testing and analyzing novel closed-cell syntactic foam reinforced with open-celled aluminum foam was undertaken. Before exploration of this new hybrid foam in various structural, marine and defense installations, an understanding of the mechanical properties is quite necessary. Two types of syntactic foams are manufactured in this study. The first type was fabricated by dispersing glass microballoons, and the second type was obtained by dispersing polymeric microballoons in an epoxy matrix. Two different volume fractions of 30% and 50% were used in manufacturing the syntactic foams. The aluminum foam essentially consist of a 3-D network with a pore size of 20-PPI (20 pores per inch) and average relative density of 7% (the porosity is about 93%). Quasi-static compression and short beam three point bending tests was conducted on syntactic foams without any aluminum reinforcement as the control specimen, and syntactic foams reinforced with the aluminum foams for comparison purposes. The viscoelastic behavior of these materials was also analyzed by performing Dynamic Mechanical Analysis (DMA) tests in tension mode. The current study provides valuable baseline information required for design of such systems and also facilitates better understanding of these hybrid foams as a core material in advanced sandwich structures.
机译:复合泡沫是用作三明治结构芯材的轻质颗粒复合材料。它们重量轻。具有卓越的强度和刚度,以及增强的隔热,阻尼和声学特性。这些特性真正使它们成为多功能材料。其低密度特性使其成为许多浮力辅助应用的理想选择。当前,由于它们的多功能性,它们被广泛用于国防,航空航天和海洋领域的许多结构承重结构。在这项研究中,系统地逐步进行了制造,测试和分析以开孔铝泡沫增强的新型闭孔复合泡沫的过程。在各种结构,船舶和国防设施中探索这种新型混合泡沫之前,非常有必要了解机械性能。本研究生产两种类型的句法泡沫。第一种是通过分散玻璃微气球制造的,第二种是通过将聚合物微气球分散在环氧基质中获得的。 30%和50%的两种不同体积分数用于制造复合泡沫塑料。泡沫铝基本上由3-D网络组成,其孔径为20-PPI(每英寸20个孔),平均相对密度为7%(孔隙率约为93%)。以无任何铝增强材料的句法泡沫为对照样品,进行了准静态压缩和短梁三点弯曲试验,并以铝泡沫增强句法泡沫进行比较。还通过在拉伸模式下执行动态力学分析(DMA)测试来分析这些材料的粘弹性行为。当前的研究提供了设计此类系统所需的有价值的基准信息,还有助于更好地理解这些混合泡沫作为高级三明治结构的核心材料。

著录项

  • 作者

    Madawela, Raghvan.;

  • 作者单位

    Southern University and Agricultural and Mechanical College.;

  • 授予单位 Southern University and Agricultural and Mechanical College.;
  • 学科 Engineering Mechanical.;Engineering Materials Science.
  • 学位 M.Eng.
  • 年度 2011
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:45:22

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