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Innovative Design and Performance Evaluation of Bionic Imprinting Toothed Wheel

机译:仿生印迹齿轮的创新设计与性能评价

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摘要

A highly efficient soil-burrowing dung beetle possesses an intricate outer contour curve on its foreleg end-tooth. This study was carried out based on evidence that this special outer contour curve has the potential of reducing soil penetration resistance and could enhance soil-burrowing efficiency. A toothed wheel is a typical agricultural implement for soil imprinting, to increase its working efficiency; the approach of the bionic geometrical structure was utilized to optimize the innovative shape of imprinting toothed wheel. Characteristics in the dung beetle’s foreleg end-tooth were extracted and studied by the edge detection technique. Then, this special outer contour curve was modeled by a nine-order polynomial function and used for the innovative design of imprinting the tooth’s cutting edge. Both the conventional and bionic teeth were manufactured, and traction tests in a soil bin were conducted. Taking required draft force and volume of imprinted microbasin as the evaluating indexes, operating efficiency and quality of different toothed wheels were compared and investigated. Results indicate that compared with the conventional toothed wheel, a bionic toothed wheel possesses a better forward resistance reduction property against soil and, meanwhile, can enhance the quality of soil imprinting by increasing the volume of the created micro-basin.
机译:一个高效的土壤挖泥甲虫在其前肢牙齿上具有复杂的外轮廓曲线。本研究基于证据表明这种特殊的外部轮廓曲线具有降低土壤穿透性的可能性,并且可以提高土壤钻孔效率。齿轮是土壤印记的典型农业工具,以提高其工作效率;利用仿生几何结构的方法优化印刷齿轮的创新形状。通过边缘检测技术提取和研究了粪甲虫的前肢末端牙齿的特性。然后,这种特殊的外部轮廓曲线被九阶多项式函数建模,并用于印刷牙齿切削刃的创新设计。常规和仿生牙齿都是制造的,并进行土壤箱中的牵引试验。采用所需的牵引力和压印麦细胞素的牵强力和体积作为评估指标,并进行了不同齿轮的操作效率和质量。结果表明,与传统的齿轮相比,仿生齿轮具有更好的抗抗性的抗性降低性能,同时可以通过增加所产生的微盆地的体积来提高土壤印迹的质量。

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