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The design of adjustable spherical mechanisms using plane-to-sphere and sphere-to-plane projections.

机译:使用平面到球面和球到面投影的可调球面机构设计。

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摘要

The spherical mechanism is a particular type of spatial mechanism. Due to the orientation of its joint axes and the curvature of its links, the workspaces of spherical mechanisms (whether line segments, closed loops or area regions) are spherical in curvature. This characteristic of spherical mechanisms makes them quite effective and practical in motion path and function generation applications requiring spherical rigid body kinematics.; Although there are design methods available for spherical mechanisms, most of these methods do not consider the design of a single adjustable spherical mechanism. With an adjustable spherical mechanism, the user could for example, relocate the fixed or moving pivots of the spherical mechanism to achieve a greater range of rigid body locations and orientations. Having adjustability would make a single mechanism effective for multiple design applications.; Numerous methods have been published for the design of adjustable planar mechanisms. Unfortunately, the number of design methods for adjustable spherical mechanisms, in comparison, is extremely modest. This research bridges the gap between the need for adjustable spherical mechanism design methods and the design methods available for adjustable planar mechanisms.; This research presents a new method for synthesizing adjustable spherical four and five-bar motion, path and function generators using planar motion, path and function generation methods respectively. The benefits of this method are twofold. One benefit is that the user can design spherical mechanisms to approximate multiple phases of prescribed rigid-body path points. Another benefit is that the user can design spherical path generators using synthesis methods for planar path generators. By projecting the coordinates of a given spherical mechanism on a plane or the coordinates of a given planar mechanism on a sphere using the method introduced in this work, the user can design both planar and spherical mechanisms respectively. This research introduces sphere-to-plane and plane-to-sphere projection methods with optimization methods to minimize the structural error between the prescribed performance of the adjustable spherical mechanism and the performance achieved by the synthesized adjustable spherical mechanism.
机译:球形机构是一种特殊类型的空间机构。由于其关节轴的方向和其链接的曲率,球形机构的工作空间(无论是线段,闭环还是区域区域)的曲率均为球形。球形机构的这种特性使其在需要球形刚体运动学的运动路径和函数生成应用中非常有效和实用。尽管存在可用于球形机构的设计方法,但是这些方法大多数都没有考虑单个可调节球形机构的设计。借助可调球形机构,用户可以例如重新定位球形机构的固定或移动枢轴,以实现更大范围的刚体位置和方向。具有可调整性将使单一机制对多个设计应用程序有效。已经公开了许多方法来设计可调平面机构。不幸的是,相比之下,可调节球形机构的设计方法数量非常有限。这项研究弥合了可调球形机构设计方法与可调平面机构可用设计方法之间的差距。这项研究提出了一种新的方法,分别使用平面运动,路径和函数生成方法来合成可调节球形四杆和五杆运动,路径和函数发生器。这种方法的好处是双重的。好处之一是,用户可以设计球形机构来近似规定的刚体路径点的多个相位。另一个好处是,用户可以使用平面路径生成器的合成方法来设计球形路径生成器。使用本工作介绍的方法,通过将给定的球形机构的坐标投影在平面上或将给定的平面机构的坐标投影在球体上,用户可以分别设计平面和球形机构。本研究介绍了球面到平面和面到球的投影方法以及优化方法,以最大程度地减小可调球面机构的规定性能与合成可调球面机构所实现的性能之间的结构误差。

著录项

  • 作者

    Lee, Wen-Tzong.;

  • 作者单位

    New Jersey Institute of Technology.;

  • 授予单位 New Jersey Institute of Technology.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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