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A building block synthesis approach for precision flexure systems with integrated, strain-based position sensing

机译:具有基于应变的集成位置感应的精密挠曲系统的构建块综合方法

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Early stage design of precision flexure systems that utilize strain-based displacement sensing is difficult due to the strong coupling between the mechanical and sensing subsystems. Traditional tools for flexure system and compliant mechanism synthesis are not capable of simultaneously optimizing the mechanical and sensing subsystems. The building block synthesis approach developed in this work is the only tool capable of designing compliant mechanisms with integrated strain based sensing. Building block modeling allows for rapid synthesis and vetting of concepts. This approach also allows the designer to determine concept feasibility, identify performance limits and tradeoffs, and obtain 1st order estimates of flexure geometry. In short, this method enables one to find an optimal design and set first order design parameters. The utility of the building block approach is detailed in a case study detailing the synthesis and modeling of three different one degree-of-freedom translational stages that are all derived from the series and parallel addition of fixed-guided cantilever beam building blocks.
机译:由于机械子系统和传感子系统之间的强耦合,利用基于应变的位移传感的精密挠曲系统的早期设计很困难。用于挠曲系统和顺应性机构综合的传统工具无法同时优化机械和传感子系统。这项工作中开发的构件合成方法是唯一能够设计基于集成应变的传感的顺应性机构的工具。构建块建模允许对概念进行快速综合和审查。该方法还允许设计人员确定概念的可行性,确定性能极限和折衷方案,并获得弯曲几何形状的一阶估计。简而言之,该方法使人们能够找到最佳设计并设置一阶设计参数。案例研究中详细介绍了构建模块方法的实用性,该案例详细介绍了三个不同的一自由度转换阶段的合成和建模,这些阶段均来自固定导引悬臂梁构建模块的串联和并行添加。

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