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Determination of tool nose radii of cutting inserts using machine vision

机译:使用机器视觉确定切削刀片的刀尖半径

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Purpose - The nose radii of cutting inserts are normally measured using a profile projector or toolmaker's microscope. Since only a sector of a circle is available for the measurement using such instruments, the radii determined from these methods are inaccurate. The purpose of this paper is to present an alternative method of determining the nose radii more accurately using machine vision. Design/methodology/approach - The 2D images of the cutting inserts were captured using a CCD camera with the aid of back lighting. The tool nose center in each digitized image was located based on the tool geometry. The curved nose profile was transformed into a linear profile using polarradius transformation. The nose radius was then varied within ten pixels of the nominal radius and the average deviation from a straight line profile in the nose region in the polar-radius plot was evaluated. The radius corresponding to the minimum average deviation is identified as the most accurate radius value. Findings - For the 15 simulated images of cutting inserts tested, the error in radii determine by the proposed method varied from24.9 to 3.7 percent. But, the radii were about 9 to 22 percent higher than those measured using the profile projector on commercially available inserts. The radii measured using the profile projector was closer to the nominal radii with an average deviation of 23.2 percent compared to those measured using the proposed method. Research limitations/implications - The cutting inserts must be clean and free from dust particles when capturing the images; and the insert must be aligned accurately so that the plane of the nose profile is perpendicular to the optical axis of the CCD camera. Practical implications - The proposed method can be used to determine the nose radii accurately. If the exact nose radius of an insert is known, the tool path can be programmed precisely to obtain high-dimensional accuracy in the finished product. Originality/value - The paper shows how a new method of determining the tool nose radii of cutting inserts more accurately compared to the conventional methods, based on a sector of the nose profile, has been developed.
机译:目的-切削刀片的刀尖半径通常使用轮廓投影仪或工具制造商的显微镜进行测量。由于使用此类仪器只能测量一个圆的扇区,因此根据这些方法确定的半径是不准确的。本文的目的是提出一种使用机器视觉更准确地确定鼻半径的替代方法。设计/方法/方法-使用CCD摄像头并借助背光捕获切削刀片的2D图像。每个数字化图像中的刀鼻中心都是根据刀具几何形状定位的。使用极半径变换将弯曲的鼻子轮廓转换为线性轮廓。然后,在标称半径的十个像素内改变鼻子半径,并评估极地半径图中鼻子区域中直线轮廓的平均偏差。对应于最小平均偏差的半径被识别为最准确的半径值。结果-对于所测试的15个切削刀片的模拟图像,所建议的方法确定的半径误差范围为24.9%至3.7%。但是,半径比使用轮廓投影仪在市售刀片上测得的半径高约9%至22%。与使用建议的方法测量的半径相比,使用轮廓投影仪测量的半径更接近标称半径,平均偏差为23.2%。研究的局限性/意义-拍摄图像时,切削刀片必须清洁且无灰尘颗粒;并且插入物必须准确对准,以使鼻廓的平面垂直于CCD相机的光轴。实际意义-所建议的方法可用于准确确定鼻半径。如果知道刀片的确切刀尖半径,则可以精确地编程刀具路径,以在成品中获得高尺寸精度。独创性/价值-本文显示了一种新的方法,该方法基于鼻部轮廓,比常规方法更准确地确定了切削刀片的刀尖半径。

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