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Prediction of Surface Roughness by 3D-CAD Model in Helical Scan Grinding and Groove Grinding

机译:3D CAD模型在螺旋扫描研磨和沟槽研磨中预测表面粗糙度

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This paper deals with prediction of improvement in surface roughness in helical scan grinding by simulation of virtual ground surface with a 3D-CAD model. It has been found that, by choosing the value of parameters of four grit conditions such as grit arrangement, protrusion height, apex angle and inclination angle randomly to a real wheel, the maximum unevenness of the virtual ground surface and tendency of its change with feed angle nearly coincide with the surface roughness in the experiment of helical scan grinding. Furthermore, it is demonstrated that this analyzing method can be applied to R-shaped groove grinding and suggested that helical scan grinding is effective in grinding bearing grooves.
机译:本文通过用3D-CAD模型模拟虚拟地面模拟预测螺旋扫描研磨中表面粗糙度的改进预测。已经发现,通过选择四个砂砾条件的参数值,例如砂砾布置,突起高度,顶角和倾斜角度到真正的轮子,虚拟地面的最大不均匀性和饲料变化的趋势角度几乎与螺旋扫描研磨实验中的表面粗糙度一致。此外,证明该分析方法可以应用于R形槽磨削,并建议螺旋扫描研磨在研磨轴承槽中是有效的。

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