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A bounding surface plasticity model for highly crushable granular materials

机译:高度可压碎颗粒材料的边界表面可塑性模型

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摘要

A bounding surface plasticity model is presented for crushable rockfills in the framework of the critical state soil mechanics which includes translation of the critical state line due to particle crushing. A translating limiting isotropic compression line is also introduced and incorporated in the model to describe the position and evolution of the bounding surface. A particle breakage index is introduced as a function of stress invariants which controls the translation of the critical state and limiting isotropic compression lines. The performance of the model is demonstrated using the results of experimental tests on different types of rockfill materials conducted under both monotonic and cyclic loading conditions. The study shows the capability of the model in capturing the characteristic features of the behavior of rockfill and other crushable materials such as ballast and coarse gravel under both conventional and complex loading paths.
机译:在临界状态土壤力学的框架内,提出了可破碎碎石的边界表面可塑性模型,该模型包括由于颗粒破碎而导致的临界状态线的平移。还引入了平移极限各向同性压缩线并将其合并到模型中,以描述边界面的位置和演变。引入了颗粒破损指数作为应力不变量的函数,该变量控制临界状态的平移和极限各向同性压缩线。该模型的性能通过在单调和循环载荷条件下对不同类型的堆石料进行实验测试的结果来证明。研究表明,该模型能够捕获传统和复杂载荷路径下堆石和其他可压碎材料(如压载物和粗碎石)的行为特征。

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