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Analysis of Practical Dynamic Force of Structure with Inverse Problem  

송준혁 (전북대학교 자동차산학협력원)
노홍길 (전북대학교 대학원 정밀기계공학)
김홍건 (전주대학교 공학부 기계공학)
유효선 (전주전주대학교 기계항공시스템공학부, 자동차신기술연구센터대)
강희용 (전주대학교 기계항공시스템공학부, 자동차신기술연구센)
양성모 (전주대학교 기계항공시스템공학부, 자동차신기술연구센터)
Publication Information
Transactions of the Korean Society of Machine Tool Engineers / v.13, no.2, 2004 , pp. 75-80 More about this Journal
Abstract
Vehicle structures are composed of many substructure connected to one another by various types of mechanical joints. In vehicle engineering it is important to study these connected structures under various dynamic forces for the evaluations of fatigue life and stress concentration exactly. It is difficult to obtain the accurate load history of specified positions because of the errors such as modeling, measurement and etc. In the beginning of design exact load data are actually necessary for the fatigue strength and life analysis to minimize the cost and time of designing. In this paper, the procedure of practical dynamic force determination is developed by the combination of the principal stresses of F. E. Analysis and experiment. Least square pseudo inverse matrix is adopted to obtain in inverse matrix of analyzed stresses matrix. The error minimization method utilizes the inaccurate measured error and the shifting error that the whole data is stiffed over real data. The least square criterion is adopted to avoid these non. Finally, to verify the proposed procedure, a bus is analyzed. This measurement and prediction technology can be extended to the structural modification of any geometric shape in complex structure.
Keywords
Practical Dynamic Force; Quasi-Static Analysis; Inertia Relief Method; Least Square Criterion; Inverse problem; Principal Stresses; F. E. Analysis;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
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