A dynamic simulation of optimized plane four-bar mechanism based on solidworks
Xinyu Jia
Abstract
Xinyu Jia
Abstract
Solidworks possess the abilities of geometry restriction, dimension drive and supporting mouse dynamic drag.A mathematic model could be established according to the movement analysis of delineative curve obtained by a point on plain four-pole framework. By means of inner point punishment function and computer program, the length and angle of each pole could be optimized and the designing efficiency precision could be promoted therefore. The solidworks could realize dynamic simulation of plain four-pole framework and needn't a trivial program to check the precision of a track.
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Solidworks possess the abilities of geometry restriction, dimension drive and supporting mouse dynamic drag.A mathematic model could be established according to the movement analysis of delineative curve obtained by a point on plain four-pole framework. By means of inner point punishment function and computer program, the length and angle of each pole could be optimized and the designing efficiency precision could be promoted therefore. The solidworks could realize dynamic simulation of plain four-pole framework and needn't a trivial program to check the precision of a track.
Key concepts: Point (geometry), Bar (unit), Dynamic simulation, Mechanism (biology), Dimension (graph theory), Track (disk drive), Plane (geometry), Function (biology)