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Development of a Hopkinson Bar Apparatus for Testing Soft Materials: Application to a Closed-Cell Aluminum Foam

机译:用于测试软质材料的霍普金森杆设备的开发:在闭孔铝泡沫中的应用

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An increasing interest in lightweight metallic foams for automotive, aerospace, and other applications has been observed in recent years. This is mainly due to the weight reduction that can be achieved using foams and for their mechanical energy absorption and acoustic damping capabilities. An accurate knowledge of the mechanical behavior of these materials, especially under dynamic loadings, is thus necessary. Unfortunately, metal foams and in general “soft” materials exhibit a series of peculiarities that make difficult the adoption of standard testing techniques for their high strain-rate characterization. This paper presents an innovative apparatus, where high strain-rate tests of metal foams or other soft materials can be performed by exploiting the operating principle of the Hopkinson bar methods. Using the pre-stress method to generate directly a long compression pulse (compared with traditional SHPB), a displacement of about 20 mm can be applied to the specimen with a single propagating wave, suitable for evaluating the whole stress-strain curve of medium-sized cell foams (pores of about 1–2 mm). The potential of this testing rig is shown in the characterization of a closed-cell aluminum foam, where all the above features are amply demonstrated.
机译:近年来,人们发现对用于汽车,航空航天和其他应用的轻质金属泡沫越来越感兴趣。这主要归因于使用泡沫可实现的重量减轻以及其机械能吸收和声阻尼能力。因此,必须准确了解这些材料的机械性能,尤其是在动态载荷下。不幸的是,金属泡沫和通常的“软”材料表现出一系列特性,因此很难采用标准的测试技术来表征其高应变速率。本文介绍了一种创新的设备,可以利用霍普金森棒法的工作原理对金属泡沫或其他软材料进行高应变率测试。使用预应力方法直接产生长的压缩脉冲(与传统的SHPB相比),可以用一个传播波将大约20 mm的位移施加到样品上,适合评估中等应力下的整个应力-应变曲线。尺寸的泡孔泡沫(约1-2毫米的孔)。该测试台的潜力在闭孔泡沫铝的特性中得到了展示,其中充分体现了上述所有特征。

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