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Boundary element formulation for two-dimensional creep problems using isoparametric quadratic elements

机译:等参二次元用于二维蠕变问题的边界元公式

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摘要

A boundary element formulation for creep and time-dependent material behaviour problems based on an initial strain approach is presented. The details of numerical algorithm are shown where isoparametric quadratic elements are used both for the boundary elements and the quadrilateral domain cells. The Euler method with automatic time-step control scheme is implemented for time integration. Two creep power laws, time-hardening and strain-hardening, are employed to analyse a number of problems, including a square plate, a plate with a circular hole and a plate with a semi-circular notch subjected to a uniaxial load. The results are compared with analytical solutions where available and the corresponding finite element solutions.
机译:提出了基于初始应变方法的蠕变和时变材料行为问题的边界元公式。显示了数值算法的详细信息,其中等参二次元既用于边界元素,又用于四边形域单元。实现了具有自动时步控制方案的Euler方法进行时间积分。时变硬化和应变硬化这两个蠕变幂律被用来分析许多问题,包括方形板,带有圆孔的板和带有半圆形缺口的板承受单轴载荷。将结果与可用的解析解和相应的有限元解进行比较。

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