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Kinematic Solution of Spherical Stephenson-Ⅲ Six-bar Mechanism 被引量:3
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作者 LIU Yanfang YANG Suixian 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第5期851-860,共10页
A closed-form solution can be obtained for kinematic analysis of spatial mechanisms by using analytical method.However,extra solutions would occur when solving the constraint equations of mechanism kinematics unless t... A closed-form solution can be obtained for kinematic analysis of spatial mechanisms by using analytical method.However,extra solutions would occur when solving the constraint equations of mechanism kinematics unless the constraint equations are established with a proper method and the solving approach is appropriate.In order to obtain a kinematic solution of the spherical Stephenson-III six-bar mechanism,spherical analytical theory is employed to construct the constraint equations.Firstly,the mechanism is divided into a four-bar loop and a two-bar unit.On the basis of the decomposition,vectors of the mechanism nodes are derived according to spherical analytical theory and the principle of coordinate transformation.Secondly,the structural constraint equations are constructed by applying cosine formula of spherical triangles to the top platform of the mechanism.Thirdly,the constraint equations are solved by using Bezout’ s elimination method for forward analysis and Sylvester’ s resultant elimination method for inverse kinematics respectively.By the aid of computer symbolic systems,Mathematica and Maple,symbolic closed-form solution of forward and inverse displacement analysis of spherical Stephenson-III six-bar mechanism are obtained.Finally,numerical examples of forward and inverse analysis are presented to illustrate the proposed approach.The results indicate that the constraint equations established with the proposed method are much simpler than those reported by previous literature,and can be readily eliminated and solved. 展开更多
关键词 spherical stephenson-iii six-bar mechanisms kinematic analysis spherical analytical theory Bezout' s elimination method Sylvester' s elimination method
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六连杆硬顶敞篷机构的设计与研究 被引量:3
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作者 张晓 黄强 《机械传动》 CSCD 北大核心 2013年第12期86-89,共4页
提出了一种新型Stephenson Ⅲ型6连杆三段式硬顶敞篷机构。根据位置运动生成法和机构的矢量环方程求出构件尺寸及位置的解析表达式,从而获得杆件的设计参数;以SolidWorks软件进行三维实体建模并通过动态模拟软件Working model检验设计... 提出了一种新型Stephenson Ⅲ型6连杆三段式硬顶敞篷机构。根据位置运动生成法和机构的矢量环方程求出构件尺寸及位置的解析表达式,从而获得杆件的设计参数;以SolidWorks软件进行三维实体建模并通过动态模拟软件Working model检验设计的合理性,对硬顶敞篷机构设计制造有一定的借鉴意义。 展开更多
关键词 硬顶敞篷 stephenson Ⅲ型6连杆机构 矢量环 运动仿真
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混凝土泵车连杆外置式的斯蒂芬森Ⅲ型臂架
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作者 彭湃 鲍涛 《专用汽车》 2014年第3期101-103,共3页
针对混凝土泵车臂架体型臃肿、质量过大的问题,将某款泵车臂架的连杆和三角臂在不改变定位尺寸的条件下调换位置,得到斯蒂芬森Ⅲ型六杆机构,此时液压油缸的最大作用力将得到一定程度的减小,从而可以减小液压油缸的尺寸;将内置式连杆改... 针对混凝土泵车臂架体型臃肿、质量过大的问题,将某款泵车臂架的连杆和三角臂在不改变定位尺寸的条件下调换位置,得到斯蒂芬森Ⅲ型六杆机构,此时液压油缸的最大作用力将得到一定程度的减小,从而可以减小液压油缸的尺寸;将内置式连杆改为外置式,能有效减小臂架头及尾部的截面宽度,降低了臂架质量,减轻了泵车载荷,提高了燃油经济性,使臂架的结构更为紧凑。 展开更多
关键词 混凝土泵车臂架 斯蒂芬森Ⅲ型 液压油缸 连杆外置
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