Design and analysis of flexure revolute joint based on four-bar mechanism

作者:Zhang, Jing*; Guo, Hong-wei*; Wu, Juan; Gao, Gui-jun; Kou, Zi-ming; Eriksson, Anders
来源:Acta Astronautica, 2018, 151: 420-431.
DOI:10.1016/j.actaastro.2018.06.046

摘要

In order to avoid the stress concentration and increase rotational angle of a flexure joint, the method of partial separation of storage elements in the motion transmission elements is proposed. A type of flexure revolute joint with large rotational angle is designed based on the block approach. By setting a 4-bar mechanism as the intermediate block which connects the outer ring and the inner ring of the revolute joint, and replacing the rigid bar by a flexible beam, large rotational angles of the joint can be achieved. The basic size of the joint is designed by setting the initial and the constraint condition of the 4-bar mechanism. Then, influence analyses of the size of the linkage joint and large flexible beam on the stress, the torque, and the torsional stiffness are conducted by using nonlinear static analysis method. Based on the requirements for torque and rotational stiffness, the size of the flexure revolute joint is defined. Experiments on the joint, which can rotate 90 degrees, are conducted.