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首页> 外文期刊>International Journal of Plasticity >Cyclic deformation response of AISI 316L at room temperature: Mechanical behaviour, microstructural evolution, physically-based evolutionary constitutive modelling
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Cyclic deformation response of AISI 316L at room temperature: Mechanical behaviour, microstructural evolution, physically-based evolutionary constitutive modelling

机译:室温下AISI 316L的循环变形响应:机械行为,微观结构演化,基于物理的演化本构模型

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摘要

Deformation (e.g. cyclic hardening, softening and saturation) response and the corresponding microstructural evolution of AISI 316L during cyclic loading at room temperature are exhaustively studied. In particular, the physical interpretation and the role of internal stresses are thoroughly evaluated in order to better comprehend the relationship between microstructural evolution and cyclic deformation response. The understanding obtained provides a basis for the development of a physically-based evolutionary constitutive model which aims to accurately represent the complex cyclic deformation response of the material. The developed constitutive model represents the change in microstructural condition and its relationship with internal stress variables. The model parameters are identified by a systematic evaluation of mechanical and microstructural observations from a number of experimental tests. The proposed model is shown to effectively represent the complex cyclic elasto-plastic deformation behaviour of the material for a range of strain amplitudes.
机译:详尽地研究了室温下循环加载过程中AISI 316L的变形(例如循环硬化,软化和饱和)响应以及相应的微观组织演变。特别是,对物理解释和内应力的作用进行了彻底评估,以更好地理解微观结构演变与循环变形响应之间的关系。获得的理解为开发基于物理的演化本构模型提供了基础,该模型旨在精确表示材料的复杂循环变形响应。建立的本构模型代表了微观结构条件的变化及其与内部应力变量的关系。通过对许多实验测试中的机械和微观结构观察进行系统评估,可以确定模型参数。所提出的模型显示出可以有效地表示材料在一定应变范围内的复杂循环弹塑性变形行为。

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