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Transition finite element families for adaptive analysis of axisymmetric elasticity problems

机译:轴对称弹性问题自适应分析的过渡有限元族

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In this paper, four transition element families that comprise five- to seven-node quadrilateral elements are developed based on the hybrid-stress and enhanced assumed strain (EAS) formulations for adaptive analyses of axisymmetric elasticity problems. For members in the first hybrid-stress family, a quasi-linear stress field with ten equilibrating stress modes is derived and employed. To study the effect of including more stress modes in the assumed stress field, another family with two additional stress modes is implemented. On the other hand, two EAS element families are constructed with respect to the incompatible displacement modes of two existing incompatible displacement transition element families. Several numerical examples are exercised. It can be seen that the first hybrid-stress family is the most accurate one among the proposed families. Moreover, the EAS families are close to the respective incompatible families in accuracy yet the former families are not only more efficient in computation but also more concise in formulation.
机译:在本文中,基于混合应力和增强假定应变(EAS)公式,开发了包括五到七个节点四边形元素的四个过渡元素族,用于轴对称弹性问题的自适应分析。对于第一个混合应力族的成员,推导并采用了具有十种平衡应力模式的准线性应力场。为了研究在假定的应力场中包含更多应力模式的效果,实现了另一个具有两个附加应力模式的族。另一方面,针对两个现有不兼容位移过渡元件族的不兼容位移模式构造了两个EAS元素族。进行了几个数值示例。可以看出,第一个混合压力家庭是所提出的家庭中最准确的家庭。此外,EAS系列在准确性上接近于各自不兼容的系列,而以前的系列不仅在计算上更高效,而且在表达方式上更加简洁。

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