Title :
Inertial Platform System Parameters Drift Finite Element Modeling
Author :
Xiaokai, Huang ; Yunxia, Chen ; Dan, Xu ; Rui, Kang
Author_Institution :
Beihang Univ. of Reliability & Syst. Eng., Beijing, China
Abstract :
The change of screw assembly stress and bearing preload on inertial platform system is the main cause of inertial platform system parameters drift such as constant drift and angular misalignment. The paper appropriately simplifies the complexity structure of the inertial platform system components, discusses the inertial platform system screw assembly stress and bearing preload finite element modeling method, and finally, synthetically obtains the integrated inertial platform integrated structure finite element model and analyzes. The result properly reflects the screw assembly stress and bearing preload transmission mechanism, which finally leads to the drift of the inertial platform system parameters. The paper indicates that the slight change of assembly stress and preload stress can affect the parameter accuracy of inertial platform system which reflects the parameter drift mechanism, and the research of this paper has great significance to the inertial platform system accelerated experiment design which aims on accelerating the stable pace of inertial platform system parameter.
Keywords :
fasteners; finite element analysis; machine bearings; structural engineering; FEM; accelerated experiment design; angular misalignment; bearing preload stress; finite element modeling; inertial platform integrated structure; inertial platform system parameters drift; screw assembly stress; Analytical models; Assembly; Fasteners; Finite element methods; Instruments; Strain; Stress; bearing preload; finite element model; inertial platform system; parameter drift mechanism; screw assembly stress;
Conference_Titel :
Measuring Technology and Mechatronics Automation (ICMTMA), 2011 Third International Conference on
Conference_Location :
Shangshai
Print_ISBN :
978-1-4244-9010-3
DOI :
10.1109/ICMTMA.2011.388