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首页> 外文期刊>International Journal of Engineering Science >Anisotropic dynamic damage and fragmentation of rock materials under explosive loading
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Anisotropic dynamic damage and fragmentation of rock materials under explosive loading

机译:爆炸载荷下岩石材料的各向异性动力破坏与破碎

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摘要

This paper describes the development of a constitutive model for predicting dynamic anisotropic damage and fragmentation of rock materials under blast loading. In order to take account of the anisotropy of damage, a second rank symmetric damage tensor is introduced in the present model. Based on the mechanics of microcrack nucleation, growth and coalescence, the evolution of damage is formulated. The model provides a quantitative method to estimate the fragment distribution and fragment size generated by crack coalescence in the dynamic fragmentation process. It takes account of the experimental facts that a brittle rock material does not fail if the applied stress is lower than its static strength and certain time duration is needed for fracture to take place when it is subjected to a stress higher than its static strength. Numerical results are compared with those from independent field tests.
机译:本文描述了本构模型的发展,该模型可预测爆炸载荷下岩石材料的动态各向异性破坏和破碎。为了考虑损伤的各向异性,在本模型中引入了第二级对称损伤张量。基于微裂纹成核,生长和聚结的机理,确定了损伤的演变。该模型提供了一种定量方法,可以估算在动态破碎过程中裂纹合并产生的碎片分布和碎片大小。考虑到以下实验事实:如果所施加的应力低于其静态强度,则脆性岩石材料不会失效,并且当承受高于其静态强度的应力时,需要一定的持续时间才能发生破裂。将数值结果与独立现场测试的结果进行比较。

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