Rigidity analysis of elliptic flexible hinges
Yujun Lu
Abstract
Yujun Lu
Abstract
Flexible hinges are widely used in micro robotic. Its rigidity directly influences an organization's terminal localization. Its actual structure geometry size cannot satisfy the theoretical analysis completely in a theoretical supposition condition. In this paper, we analyzed the rotation rigidity of symmetric elliptic flexible hinges and half elliptic flexible hinges in different parameters using finite element software ANSYS. The errors are discovered and compared with theoretical result. An analysis of changes of parameters on the performance of elliptic flexible hinge was carried out, though the graph of the flexible hinge's parameters and its performance. Compared to symmetric elliptic flexure hinge, the performance of half elliptic flexure hinge can be evaluated in terms of flexibility. The key manufacture parameters that affect the performance of elliptic flexible hinge the most and rules of design are given, which can provide directions of design precision for the flexible hinge.
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Flexible hinges are widely used in micro robotic. Its rigidity directly influences an organization's terminal localization. Its actual structure geometry size cannot satisfy the theoretical analysis completely in a theoretical supposition condition. In this paper, we analyzed the rotation rigidity of symmetric elliptic flexible hinges and half elliptic flexible hinges in different parameters using finite element software ANSYS. The errors are discovered and compared with theoretical result. An analysis of changes of parameters on the performance of elliptic flexible hinge was carried out, though the graph of the flexible hinge's parameters and its performance. Compared to symmetric elliptic flexure hinge, the performance of half elliptic flexure hinge can be evaluated in terms of flexibility. The key manufacture parameters that affect the performance of elliptic flexible hinge the most and rules of design are given, which can provide directions of design precision for the flexible hinge.
Key concepts: Hinge, Rigidity (electromagnetism), Finite element method, Structural rigidity, Flexibility (engineering), Structural engineering, Computer science, Mathematics