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On the mechanical anisotropy of the compressive properties of aluminium perlite syntactic foam

机译:珍珠岩铝复合泡沫塑料压缩性能的力学各向异性

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摘要

A novel metallic syntactic foam is produced using a counter-gravity infiltration casting method. To this end, expanded perlite particles are combined with an aluminium alloy matrix. This enables close control of geometry at a relatively low production cost. The mechanical properties of the material are studied using finite element analysis. Numerical calculation models are generated directly from micro-computed tomography in order to capture their complex internal geometry. For verification purposes, numerical results are compared with experimental measurements of similar samples where available. But in contrast to experimental testing the numerical analysis is non-destructive and hence allows the repeated testing of samples in multiple loading directions. Thus, material anisotropy can be investigated for the first time. To this end, the quasi-elastic gradient, the 1% offset yield stress and the plateau stresses are obtained from virtual compression tests in three perpendicular directions (one coincides with the casting direction). Results indicate a weak anisotropy of the mechanical properties. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用反重力渗透浇铸法生产新型的金属复合泡沫。为此,将膨胀的珍珠岩颗粒与铝合金基质结合。这使得能够以相对较低的生产成本来紧密控制几何形状。使用有限元分析来研究材料的机械性能。数值计算模型是直接从微计算机断层扫描生成的,以捕获其复杂的内部几何形状。为了进行验证,将数字结果与可用的相似样品的实验测量结果进行比较。但是与实验测试相反,数值分析是无损的,因此可以在多个加载方向上对样品进行重复测试。因此,可以首次研究材料各向异性。为此,通过在三个垂直方向(一个与铸造方向一致)上的虚拟压缩试验获得了准弹性梯度,1%偏移屈服应力和平台应力。结果表明机械性能的各向异性很弱。 (C)2015 Elsevier B.V.保留所有权利。

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