TY - JOUR
T1 - Efficient computational method for dynamics of flexible multibody systems based on absolute nodal coordinate
AU - Liu, Cheng
AU - Tian, Qiang
AU - Hu, Haiyan
PY - 2010/11
Y1 - 2010/11
N2 - The absolute nodal coordinate method has been widely used to study the dynamics of flexible multibody systems. The computational efficiency of this method, however, has much room to be improved. Generally, the second kind of Piola-Kirchhoff stress tensor is used to derive the elastic forces and corresponding Jacobians, namely, the partial derivative matrix of the elastic forces with respect to the generalized coordinates. Nevertheless, this method is inefficient enough. Based on the principle of virtual work, the analytical formulations for the elastic forces and their Jacobians are deducted directly by using the first kind of Piola-Kirchhoff stress tensor. Numerical example results based on different methods show that the proposed approach is able to enhance the computational efficiency significantly.
AB - The absolute nodal coordinate method has been widely used to study the dynamics of flexible multibody systems. The computational efficiency of this method, however, has much room to be improved. Generally, the second kind of Piola-Kirchhoff stress tensor is used to derive the elastic forces and corresponding Jacobians, namely, the partial derivative matrix of the elastic forces with respect to the generalized coordinates. Nevertheless, this method is inefficient enough. Based on the principle of virtual work, the analytical formulations for the elastic forces and their Jacobians are deducted directly by using the first kind of Piola-Kirchhoff stress tensor. Numerical example results based on different methods show that the proposed approach is able to enhance the computational efficiency significantly.
KW - Absolute nodal coordinate formulation
KW - Flexible multibody system
KW - Jacobian
KW - The first kind of Piola-Kirchhoff stress tensor
UR - http://www.scopus.com/inward/record.url?scp=78650430192&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:78650430192
SN - 0459-1879
VL - 42
SP - 1197
EP - 1205
JO - Lixue Xuebao/Chinese Journal of Theoretical and Applied Mechanics
JF - Lixue Xuebao/Chinese Journal of Theoretical and Applied Mechanics
IS - 6
ER -