Multibody approach for tolerance analysis and optimization of mechanical systems

被引:0
|
作者
Hyungho Chun
Sang Jik Kwon
Taeoh Tak
机构
[1] Korean Materials and Components Industry Agency,Division of Electronics Eng.
[2] Kyungwon University,Division of Mechanical and Mechatronics
[3] Kangwon National University,undefined
关键词
Multibody system; Tolerance analysis; Kinematic analysis; Sensitivity analysis; Optimization;
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学科分类号
摘要
A multibody approach is suitable for tolerance analysis of mechanical systems since multibody formulation can directly consider part-level tolerance variables. In this study, procedures for performing tolerance analysis and corresponding sensitivity analysis for spatial multibody systems are proposed. First, statistical formulation for performing multibody system tolerance analysis is developed to obtain system level tolerance for given part-level tolerances. One very useful aspect of the proposed formulation is that in the process of computing system tolerance, the sensitivity of system tolerance with respect to part-level tolerances can be additionally obtained. The kinematics of spatial multibody systems has been redefined in terms of both generalized coordinates and part-level tolerance variables. Tolerances in geometry of a body are specified in terms of the variations in relative locations of joint definition points and relative distance between them. Tolerances in the joint kinematics are defined through variations in vector closure equations and orthogonality equations that are two fundamental constraint equations for most kinematic joints. To demonstrate the validity and effectiveness of the proposed tolerance analysis procedure, tolerance analysis of a spatial 4-bar mechanism and tolerance optimization are performed.
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页码:276 / 286
页数:10
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