Dynamics of the slider-crank mechanism with clearance in the sliding bearing
Mechanism and Machine Theory, 1974Abstract A method of predicting the detailed motion of the slider of a slider crank mechanism within slider-guide clearance is given. The effects of changing the geometry and the mass distribution are presented, and the analysis, which includes the effects of gas loads on the slider, is applied to the motion of a piston in a diesel engine.
R Wilson, J.N Fawcett
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Dynamic modeling of a slider-crank mechanism with coupler and joint flexibility
Mechanism and Machine Theory, 1994Abstract Modeling and dynamic analysis of a slider-crank mechanism with flexible joint and coupler is presented. The equations of motion of the mechanism are formulated using a newly evolving multibody formalism and cast in terms of a minimum set of generalized coordinates through a Jacobian matrix expansion.
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Experimental analysis of dynamics of inverted slider-crank mechanism
2022Makinalarda temel tahrik mekanizmalarından biri olan kol-kızak mekanizması, dönme hareketini kayar uzuv vasıtasıyla çıkış uzvuna aktararak, çıkış uzvunun sarkaç hareketi yapmasını sağlamaktadır. Bu durum mekanizmada ani yön değişimine ve yüksek hız dalgalanmasına yol açmaktadır Bu çalışmada kol-kızak mekanizmasının hareket denkleminin çözümünden elde ...
SEVİM, Çağlar, UZMAY, İbrahim
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Experimental investigation of joint clearance effects on the dynamics of a slider-crank mechanism
Multibody System Dynamics, 2010zbMATH Open Web Interface contents unavailable due to conflicting licenses.
UZMAY, Ibrahim, Erkaya, Selçuk
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Dynamics of Slider-Crank Mechanisms with Flexible Supports and Non-Ideal Forcing
Nonlinear Dynamics, 2004Transient and steady state dynamic response of a class of slider-crank mechanisms is investigated. Specifically, the class of mechanisms examined involves rigid members but compliant supporting bearings. Moreover, the mechanisms are subjected to non-ideal forcing.
Goudas, I., Stavrakis, I., Natsiavas, S.
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Research of Kinematic and Dynamic Errors of Crank-Piston Mechanisms
2016The issue of determination of errors and precision of mechanisms and machines always presents an important problem. This problem is rather urgent in machine building, agriculture machinery, food industry, instrument engineelink and other fields of industry.
Nodar Davitashvili, Valeh Bakhshaliev
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Synthesis of a slider-crank mechanism with consideration of dynamic effects
Journal of Mechanisms, 1970Abstract A method of dynamic synthesis of a slider-crank mechanism to meet specified velocity conditions at three design points including the inertia effects of the masses of the main links is presented. Velocity specifications are developed assuming a constant velocity of the input crank.
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Dynamic Stability of the Flexible Connecting Rod of a Slider Crank Mechanism
Journal of Mechanisms, Transmissions, and Automation in Design, 1986The partial differential equation of motion of the flexible connecting rod of a slider crank is derived, under the assumption of small deflections. Application of the Galerkin procedure, leads to a system of linear ordinary differential equations, with respect to the modal coordinates of vibration of the rod.
Iradj G. Tadjbakhsh, Christos J. Younis
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Refined Dynamic Calculation of a Diesel-Engine Crank Mechanism
Russian Engineering Research, 2018A mathematical model is proposed for the connecting rod of a diesel engine as a deformable component of a crank mechanism. VisSim 6.0 software is used for dynamic simulation of the connecting rod. Vibration is observed when the force exerted by the gas pressure is a maximum.
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Effect of Internal Material Damping on the Dynamics of a Slider-Crank Mechanism
Journal of Mechanisms, Transmissions, and Automation in Design, 1983A study of the effect of internal material damping on the dynamic response behavior of a slider-crank mechanism is presented in this paper. In developing the governing equations of motion, an assumption of a linear viscoelastic model for the connecting rod is made.
M. Badlani, A. Midha
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