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Model-based Design Framework for Shape Memory Alloy Wire Actuation Devices.

机译:形状记忆合金线致动装置的基于模型的设计框架。

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摘要

While Shape Memory Alloys (SMAs) have exceptional actuation characteristics such as high energy density, silent operation, flexible packaging, etc., they have not found widespread use in commercial applications because of the significant learning curve required of engineers before they are capable of designing actuation devices using this unique material. An SMA actuation device design framework consisting of grammar, design methods, and design process enables engineers of different backgrounds to make efficient and appropriate design decisions in different stages of the design process. A reference SMA actuation device structure built on a generalized actuation device hierarchical structure using the actuation device grammar works as a reference structure to identify and populate device design options, and to model and analyze the device actuation performance as well as to enlighten non-expert engineers about the essential elements of SMA actuation devices. Design methods consisting of modular modeling, model aggregation and performance prediction, and visualization approaches support design decisions to serve diverse stakeholders of actuation device design by exposing the effects of individual device elements not only for SMA actuation devices, but also for a wide range of actuation devices. A multi-stage design process is formalized to help engineers create a detailed design including a three-step decoupled equilibrium design procedure which prevents potential iteration by decoupling the force and deflection of actuation output behavior, and hides the complexity of material and SMA architectural models from engineers while still exposing the impact of design parameters. The design framework makes SMA design knowledge more accessible to engineers with different levels of expertise and roles in device development by systematically organizing and presenting the device grammar, design methods, and design process. A design tool software platform based on the framework enables the creation of computer-aided design tools to support a variety of design tasks, which were demonstrated in two use case examples. By having the SMA actuation device design framework, the acceptance of the SMA actuation technology into both research and commercial applications can be increased to utilize promising SMA actuation benefits, and the device development cycle leading to these applications can be streamlined.
机译:尽管形状记忆合金(SMA)具有出色的驱动特性,例如高能量密度,静音运行,柔性包装等,但由于工程师在设计之前需要大量的学习经验,因此并未在商业应用中得到广泛使用使用这种独特材料的驱动装置。由语法,设计方法和设计过程组成的SMA驱动设备设计框架使不同背景的工程师可以在设计过程的不同阶段做出有效而适当的设计决策。使用驱动设备语法在通用驱动设备分层结构上构建的参考SMA驱动设备结构用作识别和填充设备设计选项,对设备驱动性能进行建模和分析以及启发非专家工程师的参考结构关于SMA驱动装置的基本要素。包括模块化建模,模型汇总和性能预测以及可视化方法的设计方法通过暴露单个设备元素不仅对SMA致动设备而且对各种致动均会产生影响,从而支持设计决策,从而为致动设备设计的不同涉众提供服务设备。正式确定了一个多阶段设计过程,以帮助工程师创建详细的设计,包括三步解耦的平衡设计程序,该程序通过将促动输出行为的力和挠度解耦来防止潜在的迭代,并从中隐藏了材料和SMA体系结构模型的复杂性工程师在仍然暴露设计参数的影响的同时。通过系统地组织和展示设备语法,设计方法和设计过程,该设计框架使具有不同专业知识和在设备开发中作用的工程师可以更轻松地访问SMA设计知识。基于该框架的设计工具软件平台可以创建计算机辅助设计工具来支持各种设计任务,这在两个用例中得到了演示。通过拥有SMA致动设备设计框架,可以提高SMA致动技术在研究和商业应用中的接受度,以利用有希望的SMA致动优势,并且可以简化导致这些应用的设备开发周期。

著录项

  • 作者

    Kim, Wonhee.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 360 p.
  • 总页数 360
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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