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A Novel Test Method to Determine the Wear Resistance of Agricultural Cutting Tools with an Analyzing Method Based on an Ellipse-Fit Algorithm

机译:一种基于椭圆拟合算法的农用刀具耐磨性测试方法

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Cutting belongs to the essential techniques in many fields of application in agricultural engineering. Cutting tools in agriculture are exposed to a high amount of abrasive wear and impact stress. Increasing the wear resistance of cuttings tools has a high significance for the efficiency and profitability of agricultural machinery. Blunt and deformed blades decrease the energy efficiency and the cutting quality. Blade failures cause machine breakdowns and increase labor and material costs. To enable a consistent and systematic optimization of the blades, a suitable testing method is necessary. Conventional field tests do not provide comparable and repeatable results. Therefore, a test method developed at the FMDauto in cooperation with the Ennepetaler Schneid- und Mähtechnik (ESM) GmbH & Co. KG is presented. The test bench provides standardized and repeatable conditions with a similar wear pattern which is found during field operations. One of the remaining challenges is a clear wear characterization. Existing analyzing methods do not consider the energy efficiency and do not determine the edge holding property clearly. In this paper, a new analyzing method based on an ellipse-fit method is introduced to rate the geometrical shape of the cutting edge and examine the wear resistance of different blades.
机译:切割属于农业工程应用许多领域中必不可少的技术。农业中的切削工具要承受大量的磨料磨损和冲击应力。提高切削工具的耐磨性对农业机械的效率和盈利能力具有重要意义。刀片过钝和变形会降低能源效率和切割质量。刀片故障会导致机器故障,并增加人工和材料成本。为了使叶片始终如一且系统地优化,必须采用合适的测试方法。常规的现场测试无法提供可比较且可重复的结果。因此,提出了由FMDauto与Ennepetaler Schneid- undMähtechnik(ESM)GmbH&Co. KG合作开发的测试方法。测试台可提供标准化和可重复的条件,并具有与现场操作过程中相似的磨损模式。剩下的挑战之一是明确的磨损特征。现有的分析方法没有考虑能量效率并且不能清楚地确定边缘保持特性。本文介绍了一种基于椭圆拟合方法的新分析方法,可对切削刃的几何形状进行评级并检查不同刀片的耐磨性。

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