Results 151 to 160 of about 686 (201)
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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.
Lotfi Romdhane
exaly +2 more sources
Stabilizing slider-crank mechanism with clearance joints
Mechanism and Machine Theory, 2012Abstract In general, in dynamic analysis of mechanical systems, joints are assumed to be ideal without clearance. When joint clearance is introduced, dynamic response is considerably changed. Degradation of dynamic performance, reduction in components fatigue life and generation of undesirable vibrations result from impacts of mating parts in ...
Mohammad Reza Ghazavi
exaly +2 more sources
STUDY THE SLIDER CRANK MECHANISM
International Journal of Engineering Applied Sciences and Technology, 2022The Slider crank mechanism is a specific barlink configuration that exhibits simultaneous rotation and rectilinear motion. This mechanism is often used to study the kinematics of machines and dynamic forces. The position, speed, acceleration and recoil generated by the sliding shaft mechanism during Where, ‘R’is the crank length L>R+E operation can ...
Chander Mohan Aggarwal +3 more
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Synthesis of spatial slider-crank mechanism for given slider stroke and crank length
Mechanism and Machine Theory, 1973Abstract With the end positions of the stroke and the radius of the crank specified, the locus of the fixed end of the crank in the plane of crank rotation can be graphically or analytically determined.
P. Antonescu, C. Udriste
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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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Balancing of Slider-Crank Mechanisms
2015In this Chapter, the balancing methods of slider-crank mechanisms are presented. In Sect. 5.1, the generalized Lanchester balancer is proposed. It allows the balancing of primary and secondary shaking forces of off-set slider-crank mecha-nisms. Section 5.2 deals with the solution of the problem of the shaking force and shaking moment balancing of ...
Vigen Arakelian, Sébastien Briot
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Static equelibrium of the slider crank mechanism
Proceedings. The 8th Russian-Korean International Symposium on Science and Technology, 2004. KORUS 2004., 2005The conditions of an automatic equilibration provided by pendulums of the slider crank mechanism located on a horizontal platform with elastic connections are obtained.
V.M. Zamyatin, V.A. Dubovik
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Dynamics of the Generalized Slider-Crank Mechanism
19th Design Automation Conference: Volume 1 — Mechanical System Dynamics; Concurrent and Robust Design; Design for Assembly and Manufacture; Genetic Algorithms in Design and Structural Optimization, 1993Abstract Dual-number techniques are used to analyze the dynamics of the slider crank mechanism generalized to consider the effects of the cylinder axis being offset and non-perpendicular to the crankshaft axis, conditions which result in reciprocating machinery such as engines and compressors from manufacturing tolerances.
Ian S. Fischer, Sahidur Rahman
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Journal of Mechanical Design, 2005
This paper revisits a classical problem in kinematics, specifically determination of the crank position corresponding to the maximum velocity of the slider in the centric slider-crank mechanism. This position is often critical in designing products constructed using the slider-crank mechanism, e.g., industrial sewing machinery, rotary engine systems ...
W. J. Zhang, Q. Li
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This paper revisits a classical problem in kinematics, specifically determination of the crank position corresponding to the maximum velocity of the slider in the centric slider-crank mechanism. This position is often critical in designing products constructed using the slider-crank mechanism, e.g., industrial sewing machinery, rotary engine systems ...
W. J. Zhang, Q. Li
openaire +1 more source
Kinematics of the Generalized Slider-Crank Mechanism
19th Design Automation Conference: Volume 1 — Mechanical System Dynamics; Concurrent and Robust Design; Design for Assembly and Manufacture; Genetic Algorithms in Design and Structural Optimization, 1993Abstract Dual-number techniques are used to analyze the kinematics and dynamics of the slider crank mechanism generalized to consider the effects of the cylinder axis being offset and non-perpendicular to the crankshaft axis, conditions which result in reciprocating machinery such as engines and compressors from manufacturing tolerances.
Ian S. Fischer, Sahidur Rahman
openaire +1 more source

