AbstractThis paper presents an optimization method to find link shapes for a dynamically balanced planar four-bar mechanism. The shaking force and shaking moment developed in the mechanism due to inertia are minimized by optimally distributing the link masses. The link shapes are then found using cubic B-spline curves and an optimization problem is formulated to minimize the percentage error in resulting links inertia values in which the control points of B-spline curve are taken as the design variables. The effectiveness of the proposed method is shown by applying it to a numerical problem available in the literature
This paper presents a new design methodology for crank-rocker four-bar linkages based on differentia...
none4noThis paper investigates the influence of two common techniques of static balancing on the dyn...
This paper deals with an optimization based method for synthesis of adjustable planar four-bar, cran...
AbstractThis paper presents an optimization method to find link shapes for a dynamically balanced pl...
AbstractAn optimization technique for dynamic balancing of planar mechanisms is presented in this pa...
This paper focusses on reducing the dynamic reactions (shaking force, shaking moment and driving tor...
Design of spatial four-bar mechanisms in which the skew crank axes are at right angles is investigat...
International audienceMost of existing works on the optimal design of balanced four-bar linkages dea...
In this study, force and moment balance of a planar four-bar linkage is implemented using evolutiona...
This paper focusses on reducing the dynamic reactions (shaking force, shaking moment and driving tor...
The shaking moment balancing is gained based on the angular momentum principle. This technique can b...
Several synthesis methods, graphical, analytical and computer-aided technique, have been proposed fo...
Graphical mobility analysis methods are used to develop a comprehensive four-bar mechanism synthesis...
An infinite number of planar four-bar mechanism solutions exist for a series of prescribed rigid-bod...
AbstractA mechanism is statically balanced if for any motion, it does not apply forces on the base. ...
This paper presents a new design methodology for crank-rocker four-bar linkages based on differentia...
none4noThis paper investigates the influence of two common techniques of static balancing on the dyn...
This paper deals with an optimization based method for synthesis of adjustable planar four-bar, cran...
AbstractThis paper presents an optimization method to find link shapes for a dynamically balanced pl...
AbstractAn optimization technique for dynamic balancing of planar mechanisms is presented in this pa...
This paper focusses on reducing the dynamic reactions (shaking force, shaking moment and driving tor...
Design of spatial four-bar mechanisms in which the skew crank axes are at right angles is investigat...
International audienceMost of existing works on the optimal design of balanced four-bar linkages dea...
In this study, force and moment balance of a planar four-bar linkage is implemented using evolutiona...
This paper focusses on reducing the dynamic reactions (shaking force, shaking moment and driving tor...
The shaking moment balancing is gained based on the angular momentum principle. This technique can b...
Several synthesis methods, graphical, analytical and computer-aided technique, have been proposed fo...
Graphical mobility analysis methods are used to develop a comprehensive four-bar mechanism synthesis...
An infinite number of planar four-bar mechanism solutions exist for a series of prescribed rigid-bod...
AbstractA mechanism is statically balanced if for any motion, it does not apply forces on the base. ...
This paper presents a new design methodology for crank-rocker four-bar linkages based on differentia...
none4noThis paper investigates the influence of two common techniques of static balancing on the dyn...
This paper deals with an optimization based method for synthesis of adjustable planar four-bar, cran...