土壤弹塑性旋转硬化研究

IF 5.6 1区 工程技术 Q1 ENGINEERING, GEOLOGICAL
Giuseppe Mortara, Claudio di Prisco
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引用次数: 0

摘要

本文提出了一种新的弹塑性旋转硬化方法。在讨论了岩土材料的标准屈服准则和以往提出的旋转硬化模型之后,作者引入了纯旋转硬化的概念,即屈服面的刚性旋转,不含任何变形。在论文的第二部分,提出了一种基于Householder变换的旋转硬化新方法。该方法允许相对于给定的超平面反射矢量,由于通常不用于地质力学,因此对该方法进行了简要描述。此外,作者澄清,任何屈服面或塑性潜在旋转,不是滚动,是一个变换保持不变的第一和第二不变量,但不是第三。因此,当引入旋转硬化时,使用第三种混合不变量在偏离平面上定义屈服面形状是不合适的。最后,简要讨论了包含屈服面依赖于Lode角的非耦合屈服准则和混合屈服准则的各向异性弹塑性应变硬化本构模型的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

On rotational hardening in soil elastic-plasticity

On rotational hardening in soil elastic-plasticity

In this paper, a new approach for rotational hardening in elastic-plasticity is formulated. After discussing the standard yield criteria employed for geomaterials and the rotational hardening models proposed in the past, the authors introduce the concept of pure rotational hardening, that is a rigid rotation of the yield surface not implying any distortion of it. In the second part of the paper, a new approach for rotational hardening, based on Householder transformations, is proposed. The method, that allows to reflect vectors with respect to a given hyper-plane, is briefly described since not usually employed in geomechanics. Moreover, the authors clarify that any yield surface or plastic potential rotation, not being a rolling, is a transformation keeping unaltered first and second invariants, but not the third. As a consequence, when rotational hardening is introduced, the use of the third mixed invariant, for defining in the deviatoric plane the yield surface shape, is not appropriate. Finally, the application of the proposed approach in the formulation of anisotropic elastic–plastic strain hardening constitutive models is briefly discussed for the classes of uncoupled and hybrid yield criteria that include a dependence of the yield surface on Lode angle.

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来源期刊
Acta Geotechnica
Acta Geotechnica ENGINEERING, GEOLOGICAL-
CiteScore
9.90
自引率
17.50%
发文量
297
审稿时长
4 months
期刊介绍: Acta Geotechnica is an international journal devoted to the publication and dissemination of basic and applied research in geoengineering – an interdisciplinary field dealing with geomaterials such as soils and rocks. Coverage emphasizes the interplay between geomechanical models and their engineering applications. The journal presents original research papers on fundamental concepts in geomechanics and their novel applications in geoengineering based on experimental, analytical and/or numerical approaches. The main purpose of the journal is to foster understanding of the fundamental mechanisms behind the phenomena and processes in geomaterials, from kilometer-scale problems as they occur in geoscience, and down to the nano-scale, with their potential impact on geoengineering. The journal strives to report and archive progress in the field in a timely manner, presenting research papers, review articles, short notes and letters to the editors.
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