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The application of ideas associated with materials with memory to modeling the inelastic behavior of solid bodies

机译:与记忆有关的材料在建模实体的非弹性行为中的应用

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In this paper, we present a new way to describe the rate-independent inelastic behavior of metals undergoing finite deformations. Experiments indicate that the stress often has a stronger dependence on the inelastic history in the more recent past as compared to that in the distant past. For this reason, an "annihilation" function is used to weight the inelastic history so that less importance is given to the strains in the more distant past. This "annihilation" function does not depend explicitly on time, but instead on the pathlength associated with the history of stress-free or natural configurations in the strain space relative to the current natural configuration. lit this formulation the current configuration is adopted as the reference configuration for the kinematic quantities. The constitutive equation for stress is expressed in terms of the strain associated with the current natural configuration relative to the current actual configuration. Equations have been developed to prescribe the change in the natural configuration as the material yields. A general yield function has been defined in terms of the relative natural strain to restrict the manner in which the natural configuration changes. Since the yield conditions are in terms of the relative natural strain, we can account for situations in which a material yields during the process of unloading. For the sake of simplicity, the elastic properties of the material are considered to be constant throughout the deformation with the material remaining isotropic with respect to the natural configuration. With the proposed theory, we have examined the "Bauschinger effect" which is exhibited by metals that are deformed beyond the yield limit before being deformed beyond the yield limit in the reverse direction. (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 22]
机译:在本文中,我们提出了一种新的方法来描述经历有限变形的金属的与速率无关的非弹性行为。实验表明,与遥远的过去相比,应力在最近的过去常常对非弹性历史有更强的依赖性。由于这个原因,“ an灭”功能用于加权非弹性历史,因此在较远的过去对应变的重视程度较低。该“ an灭”功能并不明确地取决于时间,而是取决于与应变空间中相对于当前自然构造的无应力或自然构造的历史相关的光程。根据该公式,当前配置被用作运动量的参考配置。应力的本构方程表示为与当前自然构造相对于当前实际构造相关的应变。已经开发出方程式以规定随着材料产量自然形态的变化。已经根据相对自然应变定义了一般的屈服函数,以限制自然构型变化的方式。由于屈服条件是相对自然应变而言的,因此我们可以解释在卸载过程中材料屈服的情况。为了简单起见,在整个变形过程中,材料的弹性特性被认为是恒定的,并且材料相对于自然构型保持各向同性。利用所提出的理论,我们研究了“鲍辛格效应”,这种效应是在变形超过屈服极限之前在反向变形超过屈服极限之前发生的。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:22]

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