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Design and Analysis of Bionic Cutting Blades Using Finite Element Method

机译:使用有限元法的仿生切割刀片的设计与分析

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摘要

Praying mantis is one of the most efficient predators in insect world, which has a pair of powerful tools, two sharp and strong forelegs. Its femur and tibia are both armed with a double row of strong spines along their posterior edges which can firmly grasp the prey, when the femur and tibia fold on each other in capturing. These spines are so sharp that they can easily and quickly cut into the prey. The geometrical characteristic of the praying mantis’s foreleg, especially its tibia, has important reference value for the design of agricultural soil-cutting tools. Learning from the profile and arrangement of these spines, cutting blades with tooth profile were designed in this work. Two different sizes of tooth structure and arrangement were utilized in the design on the cutting edge. A conventional smooth-edge blade was used to compare with the bionic serrate-edge blades. To compare the working efficiency of conventional blade and bionic blades, 3D finite element simulation analysis and experimental measurement were operated in present work. Both the simulation and experimental results indicated that the bionic serrate-edge blades showed better performance in cutting efficiency.
机译:祈祷螳螂是昆虫世界中最有效的掠夺者之一,拥有一双强大的工具,两个锋利和强壮的前腿。它的股骨和胫骨均沿着沿着它们的后边缘的双排强刺,当股骨和胫骨互相捕获时,可以牢固地抓住猎物。这些刺如此尖锐,它们可以轻松快速地切入猎物。螳螂的前肢的几何特征,特别是其胫骨,具有重要的农业土制品设计的重要参考价值。从这些刺的轮廓和布置中学习,在这项工作中设计了具有牙齿型材的切割刀片。在切削刃上的设计中使用了两种不同尺寸的牙齿结构和布置。传统的光滑边缘叶片用于与仿生锯齿状刀片进行比较。为了比较常规刀片和仿生叶片的工作效率,3D有限元模拟分析和实验测量在现有工作中运营。模拟和实验结果表明,仿生锯齿状刀片在切割效率方面表现出更好的性能。

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