Title :
MEMS slide block locking mechanism based on elastic supporting structure
Author :
Fan Chenyang ; Li Xiaojie ; Wang Falin
Author_Institution :
Sci. & Technol. on Electromech. Dynamic Control Lab., Xi´an, China
fDate :
Aug. 29 2012-Sept. 1 2012
Abstract :
Aiming at the condition that when the Fuze MEMS (micro electro mechanical system) S&A system bears setback/centrifugal overload in an experiment, the clamping head of a setback/centrifugal slide block deforms considerably when entering the clamping seat of a base plate, so that the slide block cannot be locked successfully by the clamping seat of the base plate, this paper presents an MEMS slide block locking mechanism with an elastic supporting structure. The structure of the mechanism, which is contrary to the original structure, is that rigid barbs are arranged on the clamping head, and an elastic supporting arm is arranged on the base plate. The finite element simulation with ANSYS shows that when the clamping head and the clamping arm of the locking mechanism with the elastic supporting structure bear overload, the stress of the dangerous cross-section of the locking mechanism is reduced by 52%, compared with that of the original mechanism, so that plastic deformation is avoided, and the slide block can enter the clamping seat smoothly and locked. Therefore, it can provide selection and reference for the design of locking mechanisms of MEMS S&A system in future.
Keywords :
clamps; finite element analysis; mechanical guides; micromechanical devices; ANSYS; MEMS slide block locking mechanism; base plate; clamping arm; clamping head; elastic supporting arm; elastic supporting structure; finite element simulation; fuze MEMS; rigid barbs; setback-centrifugal overload; Clamps; Micromechanical devices; Plastics; Safety; Strain; Stress; Fuze; Locking Mechanism; MEMS;
Conference_Titel :
Manipulation, Manufacturing and Measurement on the Nanoscale (3M-NANO), 2012 International Conference on
Conference_Location :
Shaanxi
Print_ISBN :
978-1-4673-4588-0
Electronic_ISBN :
978-1-4673-4589-7
DOI :
10.1109/3M-NANO.2012.6472985