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DESIGN AND OPTIMIZATION OF HYBRID COMPLIANT NARROW-GAUGE SURGICAL FORCEPS

机译:混合型窄规外科手术前排便器的设计与优化

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This work describes a design and optimization method for developing hybrid, multi-material, compliant instruments which are expected to be useful in mini-laparoscopy and natural orifice translumenal endoscopic surgery. These two-material devices are designed specifically for Penn State's lost mold rapid infiltration process, which is capable of fabricating hundreds of freestanding meso-scale parts in parallel. New narrow-gauge surgical procedures impose severe geometric constraints that challenge traditional compliant mechanism design methods. Since narrow-gauge constraints leave geometry optimization ineffective, new design methods are explored to improve the performance of a 1 mm diameter contact-aided compliant forceps. By considering hybrid designs, new design possibilities are enabled through material variation. The hybrid forceps has desired regions of flexibility and stiffness that can be isolated to improve tool performance. For instance, a hybrid forceps can be designed with greater flexibility in some regions to provide larger jaw openings while maintaining high stiffness in other regions to obtain large grasping forces, both vital features in a surgical forceps. Using ANSYS to model large deformation and contact, an optimization problem is formulated to maximize tool performance and to determine optimal segregation of hybrid materials considering a range of modulus ratios. Materials under consideration include nanoparticulate 3 mol% yttria partially stabilized zirconia (3YSZ) and austenitic (300 series) stainless steel. All results arc compared to previously optimized homogeneous designs.
机译:这项工作描述了一种设计和优化方法,用于开发混合,多材料,顺应性的器械,这些器械有望在微型腹腔镜检查和自然孔腔内腔镜手术中使用。这两种材料的设备是专门为宾夕法尼亚州立大学的模具快速渗透工艺而设计的,该工艺能够并行制造数百个独立的中尺度部件。新的窄轨外科手术程序施加了严峻的几何约束,对传统的顺应性机构设计方法提出了挑战。由于窄规格的约束使几何优化无效,因此探索了新的设计方法来改善直径为1 mm的接触式辅助钳的性能。通过考虑混合设计,可以通过材料变化实现新的设计可能性。混合式镊子具有所需的柔韧性和刚度区域,可以将其隔离以提高工具性能。例如,可以将混合钳设计为在某些区域具有更大的柔韧性,以提供更大的钳口,同时在其他区域中保持较高的刚度,从而获得较大的抓紧力,这是外科手术钳的重要特征。利用ANSYS对大变形和接触进行建模,制定了一个优化问题,以最大化工具性能并考虑多种模数比,确定混合材料的最佳偏析。所考虑的材料包括3摩尔%的氧化钇纳米颗粒部分稳定的氧化锆(3YSZ)和奥氏体(300系列)不锈钢。与先前优化的同类设计相比,所有结果都是如此。

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