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最小化可转向腹腔镜器械原型DragonFlex中滚动关节间隙的方法。

Method for minimising rolling joint play in the steerable laparoscopic instrument prototype DragonFlex.

作者信息

Jelínek Filip, Diepens Tom, Dobbenga Sander, van der Jagt Geert, Kreeft Davey, Smid Annemijn, Pessers Rob, Breedveld Paul

机构信息

BioMechanical Engineering Department, Faculty Mechanical, Maritime & Materials Engineering, Delft University of Technology , Delft , The Netherlands.

出版信息

Minim Invasive Ther Allied Technol. 2015 Jun;24(3):181-8. doi: 10.3109/13645706.2014.968170. Epub 2014 Nov 19.

Abstract

INTRODUCTION

The steerable laparoscopic instrument prototype DragonFlex was recently developed with the vision of a minimalistic fully functional design, readily produced by additive manufacturing and requiring little assembly. Steering functionality is provided by rolling joints that, besides simplifying the assembly, help minimise cable fatigue and equalise force requirements on steering cables. However, the perfectly circular rolling joint design introduced some mechanism play, undermining the joint's bending stiffness. Hence, the aim of this paper is to present an innovative solution for play reduction in rolling joints.

MATERIAL AND METHODS

The original play-compensating mechanism, a shaft-embedded compression spring, proved unsatisfactory for play reduction. Therefore, a new non-circular rolling joint curvature was designed with the objective to compensate for any cable slack and thus minimise the joint play. The new rolling joint design was evaluated in several tip deflection experiments and compared to the original one.

RESULTS AND CONCLUSIONS

The experimental results proved that the optimised rolling joint curvature significantly minimises play, thus being a major improvement compared to the original design. The optimised rolling joint was implemented in a new real-scale DragonFlex prototype. The presented optimisation method enables elimination of a conventionally used cable tensioning device and it is generally applicable to steerable minimally invasive instruments that use a rolling joint.

摘要

引言

可转向腹腔镜器械原型DragonFlex最近被开发出来,其设计理念是简约且功能齐全,易于通过增材制造生产且几乎无需组装。转向功能由滚动关节提供,这不仅简化了组装,还有助于减少电缆疲劳并平衡对转向电缆的力要求。然而,完美的圆形滚动关节设计引入了一些机构间隙,削弱了关节的弯曲刚度。因此,本文的目的是提出一种减少滚动关节间隙的创新解决方案。

材料与方法

原来的间隙补偿机构,即轴内嵌压缩弹簧,在减少间隙方面并不令人满意。因此,设计了一种新的非圆形滚动关节曲率,目的是补偿任何电缆松弛,从而将关节间隙降至最低。新的滚动关节设计在几次尖端偏转实验中进行了评估,并与原始设计进行了比较。

结果与结论

实验结果证明,优化后的滚动关节曲率显著减少了间隙,因此与原始设计相比有了重大改进。优化后的滚动关节被应用于一个新的实际尺寸的DragonFlex原型中。所提出的优化方法能够省去传统使用的电缆张紧装置,并且通常适用于使用滚动关节的可转向微创器械。

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