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首页> 外文期刊>Canadian Biosystems Engineering >Critical state elasto-plastic constitutive models for soil failure in tillage - A review
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Critical state elasto-plastic constitutive models for soil failure in tillage - A review

机译:耕作土壤破坏的临界状态弹塑性本构模型-综述

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摘要

Soils, in general, undergo both elastic and plastic deformations upon loading. A realistic constitutive model of soil behaviour must be able to distinguish between the elastic and plastic deformations. A large number of isotropic elasto-plastic constitutive models have been developed for sand, clay, and rock during the last four decades. These models have been used for analysing tillage tool interaction with soil. To describe the behaviour of soil subjected to a tillage tool with a rather complex loading path, the model should also account for the dependency of certain material properties on the stress history of the soil. In this article, an attempt has been made to review some of these critical state elasto-plastic models with reference to their application in soil-tool interaction. Strain dependant anisotropic elasto-plastic models have been found to be a need for realistic modeling for agricultural soil-tool mechanics.
机译:通常,土壤在加载时会同时发生弹性和塑性变形。一个真实的土性本构模型必须能够区分弹性变形和塑性变形。在过去的40年中,已经为沙子,粘土和岩石开发了许多各向同性的弹塑性本构模型。这些模型已用于分析耕作工具与土壤的相互作用。为了描述使用耕作工具的土壤的行为,该耕作工具具有相当复杂的加载路径,该模型还应考虑某些材料特性对土壤应力历程的依赖性。在本文中,已尝试参考这些临界状态弹塑性模型在土壤-工具相互作用中的应用来进行回顾。已经发现,应变相关的各向异性弹塑性模型对于农业土壤工具力学的现实建模是必要的。

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