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Spooled packaging of shape memory alloy actuators.

机译:形状记忆合金执行器的假包装。

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摘要

A vast cross-section of transportation, manufacturing, consumer product, and medical technologies rely heavily on actuation. Accordingly, progress in these industries is often strongly coupled to the advancement of actuation technologies. As the field of actuation continues to evolve, smart materials show significant promise for satisfying the growing needs of industry. In particular, shape memory alloy (SMA) wire actuators present an opportunity for low-cost, high performance actuation, but until now, they have been limited or restricted from use in many otherwise suitable applications by the difficulty in packaging the SMA wires within tight or unusually shaped form constraints. To address this packaging problem, SMA wires can be spool-packaged by wrapping around mandrels to make the actuator more compact or by redirecting around multiple mandrels to customize SMA wire pathways to unusual form factors. The goal of this dissertation is to develop the scientific knowledge base for spooled packaging of low-cost SMA wire actuators that enables high, predictable performance within compact, customizable form factors. In developing the scientific knowledge base, this dissertation defines a systematic general representation of single and multiple mandrel spool-packaged SMA actuators and provides tools for their analysis, understanding, and synthesis. A quasi-static analytical model distills the underlying mechanics down to the three effects of friction, bending, and binding, which enables prediction of the behavior of generic spool-packaged SMA actuators with specifiable geometric, loading, frictional, and SMA material parameters. An extensive experimental and simulation-based parameter study establishes the necessary understanding of how primary design tradeoffs between performance, packaging, and cost are governed by the underlying mechanics of spooled actuators. A design methodology outlines a systematic approach to synthesizing high performance SMA wire actuators with mitigated material, power, and packaging costs and compact, customizable form factors. By examining the multi-faceted connections between performance, packaging, and cost, this dissertation builds a knowledge base that goes beyond implementing SMA actuators for particular applications. Rather, it provides a well-developed strategy for realizing the advantages of SMA actuation for a broadened range of applications, thereby enabling opportunities for new functionality and capabilities in industry.
机译:运输,制造,消费产品和医疗技术的大部分领域都严重依赖于驱动。因此,这些行业的进步通常与致动技术的进步紧密相关。随着致动领域的不断发展,智能材料有望满足工业不断增长的需求。特别地,形状记忆合金(SMA)线致动器为低成本,高性能致动提供了机会,但是直到现在,由于难以将SMA线封装在紧密的内部,它们一直被限制或限制在许多其他合适的应用中使用或形状异常的形状约束。为了解决该包装问题,可以通过围绕心轴缠绕以使致动器更加紧凑,或者通过围绕多个心轴重定向以定制SMA导线路径以适应异常的形状因子,来对SMA线进行线轴包装。本文的目的是为低成本SMA导线执行器的线轴包装开发科学的知识库,从而在紧凑,可定制的外形尺寸内实现高,可预测的性能。在发展科学知识库的过程中,本文定义了单轴和多轴芯轴式SMA执行机构的系统通用表示,并为其分析,理解和综合提供了工具。准静态分析模型将基本机械原理精简为摩擦,弯曲和约束的三种影响,从而可以预测具有特定几何,载荷,摩擦和SMA材料参数的通用阀芯包装SMA执行器的性能。广泛的基于实验和基于仿真的参数研究建立了对如何在性能,封装和成本之间进行主要设计折衷的必要理解,这些因素是如何通过假脱机执行器的基础力学来控制的。一种设计方法论概述了一种系统化的方法,该方法可用于合成高性能SMA导线执行器,并具有降低的材料,功率和封装成本以及紧凑的可定制形状因数。通过研究性能,封装和成本之间的多方面联系,本论文建立了一个知识库,该知识库不仅仅针对特定应用实施SMA执行器。而是,它提供了一种完善的策略,可实现SMA驱动器在广泛应用中的优势,从而为工业中的新功能和新功能提供机会。

著录项

  • 作者

    Redmond, John A.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Aerospace.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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