Mechanical Engineering Department, McGill University, Montreal, Quebec, Canada.
J Biomech. 2012 Apr 5;45(6):1028-35. doi: 10.1016/j.jbiomech.2012.01.002. Epub 2012 Feb 2.
In a mechanical component, stress-concentration is one of the factors contributing to reduce fatigue life. This paper presents a design methodology based on shape optimization to improve the fatigue safety factor and increase the radial stiffness of Nitinol self-expandable stent-grafts. A planar lattice free of stress concentrators is proposed for the synthesis of a stent with smooth cell shapes. Design optimization is systematically applied to minimize the curvature and reduce the bending strain of the elements defining the lattice cells. A novel cell geometry with improved fatigue life and radial supportive force is introduced for Nitinol self-expandable stent-grafts used for treating abdominal aortic aneurism. A parametric study comparing the optimized stent-graft to recent stent designs demonstrates that the former exhibits a superior anchoring performance and a reduction of the risk of fatigue failure.
在机械部件中,应力集中是导致疲劳寿命降低的因素之一。本文提出了一种基于形状优化的设计方法,旨在提高镍钛诺自扩张支架移植物的疲劳安全系数和径向刚度。提出了一种无应力集中的平面格子,用于合成具有光滑细胞形状的支架。设计优化系统地应用于最小化定义格子单元的元素的曲率并减少弯曲应变。引入了一种新颖的细胞几何形状,以提高用于治疗腹主动脉瘤的镍钛诺自扩张支架移植物的疲劳寿命和径向支撑力。对优化后的支架移植物与最近的支架设计进行的参数研究表明,前者具有更好的锚固性能和降低疲劳失效风险。