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Fracture of metal/ceramic laminates - II. Crack growth resistance and toughness

机译:金属/陶瓷层压板断裂 - II.抗裂纹扩展性和韧性

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The propagation of cracks has been studied through Al/alumina, Cu/alumina and Ni/alumina laminates, with a range of metal and ceramic thicknesses. Two specimen orientations were chosen to propagate a crack either through the metal and ceramic layers in parallel or through the layers sequentially and perpendicular to the laminate. In both orientations a rising T-curve (toughness) was found with increasing crack length with a very steeply rising T-curve at large crack extensions. These observations can be explained by a large-scale bridging model with a crack closure traction imposed by the plastically deforming metal ligaments in the wake of the propagating crack. A simple model is derived which predicts the performance of the Ni/alumina laminates well. It does not predict the behaviour of the lower metal yield strength Cu/alumina and Al/alumina laminates so well, although it does account for the general trend of their behaviour. (C) 1999 Acta Metallurgica Inc. Published by Elsevier Science Ltd. All rights reserved. References: 22
机译:通过各种金属和陶瓷厚度的铝/氧化铝、铜/氧化铝和镍/氧化铝层压板研究了裂纹的扩展。选择两种试样方向以平行地通过金属和陶瓷层或依次垂直于层压板的层来扩展裂纹。在这两个方向上,随着裂纹长度的增加,T曲线(韧性)上升,在较大的裂纹延伸处,T曲线非常陡峭地上升。这些观察结果可以通过一个大规模的桥接模型来解释,该模型在扩展裂纹之后由塑性变形的金属韧带施加裂纹闭合牵引力。推导了一个简单的模型,可以很好地预测镍/氧化铝层合板的性能。它不能很好地预测较低金属屈服强度的铜/氧化铝和铝/氧化铝层压板的行为,尽管它确实解释了它们行为的一般趋势。(c) 1999年Acta Metallurgica Inc.,由Elsevier Science Ltd.出版。保留所有权利。[参考文献: 22]

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