AGMA 05FTM12-2005 Modal Failure Analysis of a Gear and Drive Ring Assembly《齿轮和驱动环组件的模式失效分析》.pdf
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1、05FTM12Modal Failure Analysis of a Gear andDrive Ring Assemblyby: D.D. Behlke, Twin Disc, IncorporatedTECHNICAL PAPERAmerican Gear Manufacturers AssociationModal Failure Analysis of a Gear and Drive RingAssemblyDarwin D. Behlke, Twin Disc, IncorporatedThe statements and opinions contained herein are
2、 those of the author and should not be construed as anofficial action or opinion of the American Gear Manufacturers Association.AbstractAfter years of successful reliable applications, a component failure on a new application cannot be explainedwith static stress analyses, modal failure analyses may
3、 be required. Finite element modal analyses was usedto identify the mode and its frequency that cause a high range gear and drive ring assembly to fail prematurely.A Campbell Diagram was used to identify modes in the operating range of a six-speed transmission that couldcause the drive ring to fail.
4、 Redesigning the assembly to move the critical modes out of the operating range isdescribed.Copyright 2005American Gear Manufacturers Association500 Montgomery Street, Suite 350Alexandria, Virginia, 22314October, 2005ISBN: 1-55589-860-21 Modal Failure Analysis of a Gear and Drive Ring Assembly Darwi
5、n D. Behlke, P.E., Gear Design Specialist Twin Disc, Incorporated, Racine, WI BACKGROUND With the advent of personal computers in the past two decades, modal analysis has become a major technology for determining, improving and optimizing dynamic characteristics of mechanical components. With the re
6、quirements for greater power densities, transmissions are being applied at higher horsepower and lower weight and size. When the vibration of a component is of concern, the challenge lies on better understanding its dynamic properties using analytical means, or experimental, or a combination. In thi
7、s paper, only numerical analysis will be used. To provide background about modal analysis, the following information was paraphrased from He, et al 1. Finite element analysis (FEA) requires rigorous theoretical guidance to ascertain meaningful outcome in the relation to structural dynamics. Modal an
8、alysis (MA) alone cannot determine completely the dynamic behavior of the component, because certain properties such as damping and nonlinearity do not conform to traditional modeling treatment. Also, boundary conditions influence the dynamic analysis and must be applied with great care. Modal analy
9、sis is the process of determining the inherent dynamic characteristics of a component- natural frequencies, damping factors and mode shapes. These characteristics are used to formulate a mathematical model for its dynamic behavior. The formulated mathematical model is referred to as the modal model
10、of the component. The information for the characteristics is known as its modal data. The dynamics of a component are physically decomposed by frequency and position. Modal analysis is based upon the vibration response of the linear time-invariant dynamics system. It can be expressed as the linear c
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