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A model material approach to the study of fracture process zone of quasi-brittle materials

机译:研究准脆性材料断裂过程区的模型材料方法

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摘要

A new approach to study the fracture of quasi-brittle materials is introduced: the design and testing of model materials. By model material is understood a material with enlarged microstructure and which material parameters, such as stacking and mechanical properties of particles and cohesion force, can be fully controlled. In this paper a first example to the model materials approach is presented, consisting in 5 mm steel particles bonded in a precise stacking with an epoxy-based glue. It is shown how it is possible to correlate the different fracture mechanisms and ultimate peak load of the model material to the particle pair force and to the fracture process zone size. It is also seen how a quasi-brittle behaviour is produced in the presence of mechanisms that induced the crack to shift fracture planes, that is, in presence of energy dissipative mechanisms. (C) 2003 Kluwer Academic Publishers. [References: 29]
机译:介绍了一种研究准脆性材料断裂的新方法:模型材料的设计和测试。通过模型材料可以理解为具有扩大的微观结构的材料,并且可以完全控制材料参数,例如颗粒的堆积和机械性能以及内聚力。在本文中,提出了模型材料方法的第一个示例,其中包括5毫米钢颗粒,这些颗粒以精确的堆叠方式与环氧胶粘在一起。它显示了如何将模型材料的不同断裂机制和最终峰值载荷与颗粒对力和断裂过程区大小相关联。还可以看到,在存在导致裂纹移动断裂面的机制的情况下,即在存在耗能机制的情况下,如何产生准脆性行为。 (C)2003 Kluwer学术出版社。 [参考:29]

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