A moment–curvature-based constitutive model for interactive simulation of visco-plastic rods

IF 8.7 2区 工程技术 Q1 Mathematics
Karthikeyan Panneerselvam, Suvranu De
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Abstract

A moment–curvature constitutive model is proposed for the dynamic simulation of visco-plastic rods subject to time-varying loads and constraints at interactive rates. Smooth spline functions are used to discretize the geometry of the rod and its kinematics with the centerline coordinates as degrees of freedom (DOF) and scalar twist as degrees of freedom (DOF). The plastic curvature is defined as a uniformly varying field in contrast to localized lumped plasticity models, suitable for simulation of spatial rods that undergo uniform plastic deformation such as a cable or surgical suture thread. The yield criterion and plastic/visco-plastic flow rule are developed for spatial rods taking advantage of the availability of smooth moment–curvature fields using the spline-based formulation. With the Bishop frame field as a reference, the material curvatures are quantified using the twist degree of freedom, enabling tracking the plastic fields with scalar twist, thereby eliminating slopes as DOF. Taking advantage of the invariant sub-blocks and the sparsity of the dynamic system matrix arising from the numerical discretization, an hierarchical (H-matrix) solution approach is utilized for efficient computation. Uniform curvature bending tests and moment relaxation tests are performed to study the convergence behavior of the model. Several real-world tests involving contact are performed to demonstrate the applicability of the model in interactive simulations.

Abstract Image

基于弯矩曲率的粘弹性杆互动模拟构成模型
本文提出了一种力矩曲率构成模型,用于粘弹性杆件在交互速率下承受时变载荷和约束的动态模拟。平滑样条函数用于离散杆的几何形状及其运动学,中心线坐标为自由度 (DOF),标量扭转为自由度 (DOF)。塑性曲率被定义为一个均匀变化的场,与局部块状塑性模型不同,适合模拟发生均匀塑性变形的空间杆件,如电缆或手术缝合线。利用基于样条的表述方法获得的平滑力矩曲率场,为空间杆开发了屈服准则和塑性/粘性塑性流动规则。以 Bishop 框架场为参考,使用扭转自由度对材料曲率进行量化,从而能够用标量扭转跟踪塑性场,从而消除了斜率作为 DOF 的影响。利用数值离散化产生的不变子块和动态系统矩阵的稀疏性,采用分层(H 矩阵)求解方法进行高效计算。为研究模型的收敛行为,进行了均匀曲率弯曲试验和力矩松弛试验。还进行了几项涉及接触的实际测试,以证明该模型在交互式模拟中的适用性。
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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来源期刊
Engineering with Computers
Engineering with Computers 工程技术-工程:机械
CiteScore
16.50
自引率
2.30%
发文量
203
审稿时长
9 months
期刊介绍: Engineering with Computers is an international journal dedicated to simulation-based engineering. It features original papers and comprehensive reviews on technologies supporting simulation-based engineering, along with demonstrations of operational simulation-based engineering systems. The journal covers various technical areas such as adaptive simulation techniques, engineering databases, CAD geometry integration, mesh generation, parallel simulation methods, simulation frameworks, user interface technologies, and visualization techniques. It also encompasses a wide range of application areas where engineering technologies are applied, spanning from automotive industry applications to medical device design.
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