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Computational models for design and analysis of compliant mechanisms .

机译:用于柔顺机构设计和分析的计算模型。

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摘要

We consider here a class of mechanisms consisting of one or more compliant members, the manipulation of which relies on the deflection of those members. Compared with traditional rigid-body mechanisms, compliant mechanisms have the advantages of no relative moving parts and thus involve no wear, backlash, noises and lubrication. Motivated by the need in food processing industry, this paper presents the Global Coordinate Model (GCM) and the generalized shooting method (GSM) as a numerical solver for analyzing compliant mechanisms consisting of members that may be initially straight or curved.;As the name suggests, the advantage of global coordinate model is that all the members share the same reference frame, and hence, greatly simplifies the formulation for multi-link and multi-axis compliant mechanisms. The GCM presents a systematic procedure with forward/inverse models for analyzing generic compliant mechanisms. Dynamic and static examples will be given and verified experimentally. We also develop the Generalized Shooting Method (GSM) to efficiently solve the equations given by the GCM. Unlike FD or FE methods that rely on fine discretization of beam members to improve its accuracy, the generalized SM that treats the boundary value problem (BVP) as an initial value problem can achieve higher-order accuracy relatively easily.;Using the GCM, we also presents a formulation based on the Nonlinear Constrained Optimization (NCO) techniques to analyze contact problems of compliant grippers. For a planar problem it essentially reduces the domain of discretization by one dimension. Hence it requires simpler formulation and is computationally more efficient than other methods such as finite element analysis.;An immediate application for this research is the automated live-bird transfer system developed at Georgia Tech. Success to this development is the design of compliant mechanisms that can accommodate different sizes of birds without damage to them. The feature to be monolithic also makes compliant mechanisms attracting in harsh environments such as food processing plants. Compliant mechanisms can also be easily miniaturized and show great promise in microelectromechanical systems (MEMS). It is expected that the model presented here will have a wide spectrum of applications and will effectively facilitate the process of design and optimization of compliant mechanisms.
机译:在这里,我们考虑一类机制,该机制由一个或多个兼容成员组成,其操纵取决于这些成员的偏转。与传统的刚体机构相比,顺应机构的优点是没有相对的运动部件,因此没有磨损,间隙,噪音和润滑。由于食品加工行业的需求,本文提出了全局坐标模型(GCM)和广义射击方法(GSM)作为数值求解器,用于分析由最初可能是直的或弯曲的成员组成的顺应性机制。建议,全局坐标模型的优点是所有成员共享相同的参考系,因此,大大简化了多链接和多轴兼容机制的制定。 GCM提出了带有正向/反向模型的系统程序,用于分析通用兼容机制。将给出动态和静态示例,并通过实验进行验证。我们还开发了通用射击方法(GSM),以有效求解GCM给出的方程。与依靠梁构件的精细离散化来提高其精度的FD或FE方法不同,将边值问题(BVP)视为初始值问题的广义SM可以相对轻松地实现高阶精度。还提出了一种基于非线性约束优化(NCO)技术的公式,用于分析顺从式抓爪的接触问题。对于平面问题,它实质上将离散化域减小了一维。因此,与其他方法(例如有限元分析)相比,它需要更简单的公式化并且在计算上更加高效。这一发展的成功是顺应性机制的设计,该机制可以容纳不同大小的鸟类而不会对其造成损害。整体的功能还使得顺应性机制在诸如食品加工厂等恶劣环境中具有吸引力。顺应性机制也可以轻松地小型化,并在微机电系统(MEMS)中显示出巨大的希望。期望这里介绍的模型将具有广泛的应用范围,并将有效地促进顺应性机制的设计和优化过程。

著录项

  • 作者

    Lan, Chao-Chieh.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 177 p.
  • 总页数 177
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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