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Geometric characterization of moldboard plough using coupled close photography and surface fitting model

机译:用耦合关闭摄影和表面拟合模型的塑料板犁的几何特征

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摘要

Designing a moldboard plow is a complex task, In many cases, moldboard plows are manufactured mostly based on experience and empirical methods The objective of this study is to identify a way to use a mathematical approach for the design. Therefore, both the mathematical surface (multi variable equations, NURBS and Bezier) and the number of control points required for its adjustment (A, B, C, D), are examined to produce optimal modeling of the semi helical moldboard plough geometry. The 3D coordinates of 196 marked points on the plough surface were acquired using image processing techniques. The results obtained indicate that the surface of the moldboard plough can be shaped with R-2 = 0.81 and RMSE = 13.35, by the adjustment of a coupled fifth order polynomial, exponential and sinus functions. Furthermore, the guide curve and angles of generatrix lines can be represented with a coupled first-order polynomial, exponential and sinus functions and fourth-order polynomial function, respectively, by high R-2 = 0.9998 and low RMSE = 8.5 x 10(-5). Overall the results confirmed that our method is suitable and effective for designing the moldboard plough.
机译:设计刮刀犁是一项复杂的任务,在许多情况下,模板犁主要基于经验和经验方法制造本研究的目的是识别使用数学方法的设计方法。因此,检查数学表面(多变量方程,NURBS和BEZIER)和其调整(A,B,C,D)所需的控制点的数量,以产生半螺旋模板犁几何形状的最佳建模。使用图像处理技术获取犁表面上的196个标记点的3D坐标。所获得的结果表明,通过调节耦合的第五阶多项式,指数和鼻窦功能,可以用R-2 = 0.81和RMSE = 13.35形状成形。此外,通过高R-2 = 0.9998和低RMSE = 8.5×10( - 5)。总体而言,结果证实,我们的方法适用于设计刮刀犁。

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