An Empirically Determined Design Guideline for Rectangular Cross Section Nitinol Flexure Hinges With the Focus on Flexibility-Strength Trade-Off

Suat Coemert, M. Olmeda, J. Fuckner, C. Rehekampff, Sandra V. Brecht, Tim C. Lueth
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引用次数: 2

Abstract

In our group, we are developing flexure hinge based manipulators made of nitinol for minimally invasive surgery. On the one hand, sufficient flexibility is required from flexure hinges to be able to cover the surgical workspace. On the other hand, the bending amount of the flexure hinges has to be limited below the yielding point to ensure a safe operation. As a result of these considerations, it has to be questioned how much bending angle a nitinol flexure hinge with given geometric dimensions can provide without being subject to plastic deformation. Due to the nonlinearities resulting from large deflections and the material itself, the applicability of the suggested approaches in the literature regarding compliance modeling of flexure hinges is doubtful. Therefore, a series of experiments was conducted in order to characterize the rectangular cross section nitinol flexure hinges regarding the flexibility-strength trade-off. The nitinol flexure hinge samples were fabricated by wire electrical discharge machining in varying thicknesses while keeping the length constant and in varying lengths while keeping the thickness constant. The samples were loaded and unloaded incrementally until deflections beyond visible plastic deformation occured. Each pose in loaded and unloaded states was recorded by means of a digital microscope. The deflection angles yielding to permanent set values corresponding to 0.1% strain were measured and considered as elastic limit. A quasilinear correlation between maximum elastic deflection angle and length-to-thickness ratio was identified. Based on this correlation, a minimal model was determined to be a limit for a secure design. The proposed guideline was verified by additional measurements with additional samples of random dimensions and finite element analysis.
基于柔强权衡的矩形截面镍钛诺柔性铰链经验确定设计准则
在我们的团队中,我们正在开发用于微创手术的镍钛诺柔性铰链机械臂。一方面,柔性铰链需要足够的灵活性,以覆盖手术工作空间。另一方面,柔性铰链的弯曲量必须限制在屈服点以下,以确保安全运行。由于这些考虑,必须质疑具有给定几何尺寸的镍钛诺柔性铰链可以提供多少弯曲角度而不受塑性变形的影响。由于大挠度和材料本身引起的非线性,文献中关于柔性铰链柔度建模的建议方法的适用性值得怀疑。因此,为了表征矩形截面镍钛诺柔性铰链的柔度-强度权衡,进行了一系列的实验。采用线材放电加工方法制备了变厚度不变长度和变长度不变厚度的镍钛诺柔性铰链样品。试样逐渐加载和卸载,直到出现超出可见塑性变形的挠度。通过数码显微镜记录加载和卸载状态下的每个姿势。测量了对应于0.1%应变的永久设定值的挠度,并将其视为弹性极限。确定了最大弹性挠曲角与长厚比之间的拟线性关系。基于这种相关性,最小模型被确定为安全设计的极限。通过额外的随机尺寸样本和有限元分析验证了所提出的准则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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