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Fatigue strength of laser sintered flexure hinge structures for soft robotic applications

机译:用于软机器人应用的激光烧结挠曲铰链结构的疲劳强度

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The use of flexure hinges offers significant benefits compared to conventional revolute joints, such as the use for compact monolithic designs of flexural structures, no friction losses and reduced assembly and manufacturing costs. The combination of this design concept with additive manufacturing (AM) techniques provides huge potential for kinematics design, because of the ability to manufacture complex kinematic structures in one part with integrated adjustable functional elements, i.e. flexure hinges. Considering that there is sparse knowledge of thin-walled structures fabricated using additive manufacturing in current literature, it is obvious that the design of flexure hinge mechanisms for soft robotic applications is challenging today. Therefore, this paper describes software for simulation of plane flexure hinge structures based on investigations on the material characteristics of laser sintered polyamide, especially fatigue strength. Furthermore, the software enables automated design of these flexural structures (e.g. manipulator structures) as STL files, representing the standard interface to all additive manufacturing technologies.
机译:与传统的旋转接头相比,挠性铰链的使用具有明显的优势,例如用于挠性结构的紧凑整体设计,无摩擦损失并降低了组装和制造成本。这种设计概念与增材制造(AM)技术的结合为运动学设计提供了巨大的潜力,因为它能够在具有集成可调节功能元件(即挠性铰链)的一部分中制造复杂的运动学结构。考虑到当前文献中使用增材制造技术制造的薄壁结构的知识很少,很明显,当今用于软机器人应用的挠性铰链机构的设计具有挑战性。因此,本文基于对激光烧结聚酰胺材料特性(尤其是疲劳强度)的研究,描述了用于模拟平面挠性铰链结构的软件。此外,该软件能够将这些挠曲结构(例如操纵器结构)作为STL文件进行自动化设计,代表所有增材制造技术的标准接口。

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