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Effect of Cutting-Edge Shape on Ductile Regime Grinding of Optical Glass in Single-Grit Diamond Grinding

机译:刃口形状对单粒金刚石磨削光学玻璃延性区磨削的影响

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摘要

A series of single-grit grinding is carried out using single-crystal diamond grit as the cutting tool and borosilicate glass as the workpiece. The three-dimensional shape of cutting edges is measured using a scanning laser microscope (SLM), and the three characteristic angles, rake angle, edge angle and wedge angle, are introduced for one-faced and two-faced cutting edges. The critical depth of cut dc, at which the machining process changes from the ductile regime to the ductile-to-brittle intermediate regime and below which lateral cracks disappear, is observed using an atomic force microscope (AFM) and the depth is measured using the SLM. It is found from the experiments that the critical depth of cut varies from 60 to 160 nm depending on the rake angle and roundness of the cutting edge. As to the effect of grinding direction, the value of dc in the case of up-cut grinding is 20 nm larger than that in the case of down-cut grinding.
机译:使用单晶金刚石砂砾作为切削工具,并使用硼硅酸盐玻璃作为工件,进行一系列的单粒度研磨。使用扫描激光显微镜(SLM)测量切削刃的三维形状,并为一面和两面切削刃引入三个特征角,前角,刀刃角和楔角。使用原子力显微镜(AFM)观察临界切削深度dc,在该临界深度下,加工过程从延性状态转变为延性至脆性中间状态,在该深度以下,横向裂纹消失。 SLM。从实验中发现,切削的临界深度取决于前角和切削刃的圆度,从60到160 nm不等。关于磨削方向的影响,向上磨削时的dc值比向下磨削时的dc大20nm。

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