Results 241 to 250 of about 166,094,873 (284)
Dynamic Analysis on Crank-Slider Mechanism of Reciprocating Pump
The crank-slider mechanism is the key component in reciprocating pumps. With the increase of the rotational speed of the crank-slider mechanism, the vibration and working noise of reciprocating pumps increase. Based on the multi-body dynamics theory, the dynamic model of the crank-slider mechanism of reciprocating pumps is proposed. A numerical example
Z.G. Han, Qing Jian Liu
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Dynamic analysis of a slider–crank mechanism with eccentric connector and planetary gears
Mechanism and Machine Theory, 2007Abstract In this study, the kinematic and dynamic analysis of a modified slider–crank mechanism which has an additional eccentric link between connecting rod and crank pin, as distinct from a conventional mechanism, are presented. This new extra link that may be called the eccentric connector transmits gas forces to the crank, and it also drives a ...
Selcuk Erkaya
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Investigation of dynamic loads on the crank mechanism of a truck
Truck, 2022In this work, a one-dimensional model of the crank and gas distribution mechanisms of a diesel engine has been developed and verified, taking into account the mass of parts and inertial forces. Simulation of their joint operation at different engine speeds has been carried out. The data on the dynamic loads on the crankshaft and camshafts were obtained.
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Mechanical System Dynamics Simulation of Crank Linkage Mechanism Based on Pro/E
The simulation analysis and research on crank linkage mechanism, which is the core part of the engine, are of important significance. Based on related theory, this paper introduces a simulation analysis method for crank linkage mechanism, which is using ...
De Gong Chang
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Dynamic analysis of a flexible slider–crank mechanism with clearance
European Journal of Mechanics - A/Solids, 2008zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Khemili, Imed, Romdhane, Lotfi
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Dynamic modeling and identification of a slider-crank mechanism
Journal of Sound and Vibration, 2006In this paper, Hamilton's principle, Lagrange multiplier, geometric constraints and partitioning method are employed to derive the dynamic equations of a slider-crank mechanism driven by a servomotor. The formulation is expressed by only one independent variable and considers the effects of mass, external force and motor electric inputs.
Jih-Lian Ha +3 more
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Dynamic simulation of a smart crank and slider mechanism
Journal of Marine Science and Application, 2002In this paper, a smart crank and slider mechanism is analyzed mostly from a dynamic view. By means of dynamic explicit finite element method, 3D nonlinear structure is simulated. It is proved that the mechanism can effectively accomplish smart movement prescribed.
Hai-tao Zhu +3 more
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Simulation of the Dynamics of a Crank Mechanism with Elastic Links
Strength of Materials, 2002The methods for theoretical simulation of the dynamics of high-speed crank mechanisms with elastopliant links, based on the numerical integration of differential equations of a hybrid type, are proposed. Numerical studies demonstrated that the account of elastic pliability of these links as compared to the case of absolutely rigid links of an ...
V. I. Gulyaev, A. N. Ikonnikov
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With the Backlash Dynamics Simulation of a Crank-Slider Mechanism
Advanced Materials Research, 2012On the basis of flexible multi-body system dynamics theory, we built flexible multi-body system dynamics models which include a backlash, and to a slider-crank mechanism as the research object, we made a preliminary study on the effect on the flexible components and the backlash of the kinematic pair on mechanical system dynamics characteristics.
Shao Jun Bo, Kui Ji
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Chaotic And Periodic Dynamics Of A Slider-Crank Mechanism With Slider Clearance
Journal of Sound and Vibration, 1994Abstract The problem of a planar slider-crank mechanism with clearance at the sliding (prismatic) joint is investigated. In this study the influence of the clearance gap size, bearing friction, crank speed and impact parameters on the response of the system are investigated. Three types of responses are observed: chaotic, transient chaos and periodic.
Farahanchi, F., Shaw, S. W.
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