谷歌浏览器插件
订阅小程序
在清言上使用

Design of Transmission Tubes for Surgical Concentric Push-Pull Robots

Khoa T. Dang, Stephen Qiu, Carter Hatch, Peter Connor, Tony Qin,Ron Alterovitz,Robert J. Webster III,Caleb Rucker

2024 International Symposium on Medical Robotics (ISMR)(2024)

引用 0|浏览0
暂无评分
摘要
The performance of concentric push-pull robots passing through endoscopes is best if their laser-cut transmission tubes exhibit high axial stiffness, high torsional stiffness, and low bending stiffness. In this paper we simultaneously consider all three output stiffness values in the design problem, explicitly considering axial stiffness, whereas prior work has focused on the bending/torsional stiffness ratio. We show that it is very challenging for existing laser-cut patterns to simultaneously achieve high axial stiffness and low bending stiffness because these stiffnesses are tightly coupled. To break this coupling and balance all three stiffness factors independently, we propose a new laser material removal design approach that leverages local stiffness asymmetry (EI x ≠ EI y ) in discrete bending segments separated by segments of solid tube. These discrete asymmetric segments are then rifled down the tube to achieve global stiffness symmetry. We parameterize the design and provide a study of the properties through finite-element analysis. We also consider the effect of interference between the tubes when the discrete segments are not aligned. Results show that our discrete asymmetric segment concept can achieve high axial stiffness and torsional stiffness better than previously suggested laser patterns while maintaining equally low bending stiffness.
更多
查看译文
关键词
Finite Element Analysis,High Stiffness,Low Stiffness,Bending Stiffness,Laser Cutting,Tight Coupling,Local Symmetry,Global Stiffness,Stiffness Ratio,Axial Stiffness,Discrete Segments,Axial Bending,Colorectal Cancer,Friction,Parameter Space,Strong Coupling,Minimally Invasive Surgery,Type Of Design,Design Optimization,Solution Space,Discrete Design,Endoscopic Submucosal Dissection,Conventional Design,Successive Segments,Effective Stiffness,Concentric Tube,Colonoscopy,Parameter Sweep,Neutral Axis,Bending Direction
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要