Title of article :
Classification of stress modes in assumed stress fields of hybrid finite elements
Author/Authors :
W. Feng، نويسنده , , S. V. Hoa، نويسنده , , Q. Huang، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1997
Abstract :
A classiÞcation method is presented to classify stress modes in assumed stress Þelds of hybrid Þnite element
based on the eigenvalue examination and the concept of natural deformation modes. It is assumed that there
only exist m ("n!r) natural deformation modes in a hybrid Þnite element which has n degrees of freedom
and r rigid-body modes. For a hybrid element, stress modes in various assumed stress Þelds proposed by
di¤erent researchers can be classiÞed into m stress mode groups corresponding to m natural deformation
modes and a zero-energy stress mode group corresponding to rigid-body modes by the m natural deformation
modes. It is proved that if the ßexibility matrix [H] is a diagonal matrix, the classiÞcation of stress
modes is unique. Each stress mode group, except the zero-energy stress mode group, contains many stress
modes that are interchangeable in an assumed stress Þeld and do not cause any kinematic deformation
modes in the element. A necessary and su¦cient condition for avoiding kinematic deformation modes in
a hybrid element is also presented. By means of the m classiÞed stress mode groups and the necessary and
su¦cient condition, assumed stress Þelds with the minimum number of stress modes can be constructed and
the resulting elements are free from kinematic deformation modes. Moreover, an assumed stress Þeld can be
constructed according to the problem to be solved. As examples, 2-D, 4-node plane element and 3-D, 8-node
solid element are discussed
Keywords :
?nite element , Classi?cation , stress modes
Journal title :
International Journal for Numerical Methods in Engineering
Journal title :
International Journal for Numerical Methods in Engineering