A Stress-State based Peridynamics model for elastio-plastic material modeling

M. Jahjouh
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Abstract

A Stress-State based PD (SSPD) model using a well-known yield criteria is proposed in this paper and tested on the modeling of two dimensional bars under different loading levels as a first step for further development. SSPD is based upon peridynamics (PD) which utilize temporal spatial integro-differential equation of motion and formulates continuum problems in terms of integral equations, which are capable of modeling discontinuities such as cracks. The proposed bond strength not only depends on the bond stretch, but on the current state of all bonds connected to a particle as well. Thus, a stress-based peridynamics model is obtained. The tensile simulation compared to conventional FEM shows promising performance with an error of 5%. Compression simulations, however, need more investigation to include the effect of contact forces. DOI: https://doi.org/10.33976/JERT.8.1/2021/1
基于应力状态的弹塑性材料动力学模型
本文提出了一种基于应力状态的屈服准则(SSPD)模型,并在不同荷载水平下的二维杆的模型上进行了试验,作为进一步发展的第一步。SSPD以周动力学(PD)为基础,利用时空运动的积分微分方程,用积分方程来表述连续体问题,能够模拟裂缝等不连续体。所提出的键强度不仅取决于键的拉伸,还取决于与粒子相连的所有键的当前状态。从而得到了基于应力的周动力学模型。与传统有限元法的拉伸模拟结果相比,拉伸模拟结果具有良好的性能,误差在5%以内。然而,压缩模拟需要更多的研究,以包括接触力的影响。DOI: https://doi.org/10.33976/JERT.8.1/2021/1
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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