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Subsurface damage depth and distribution in rotary ultrasonic machining and conventional grinding of glass BK7

机译:旋转超声加工和玻璃BK7的常规研磨中的亚表面损伤深度和分布

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摘要

The morphology, depth, and distribution of subsurface damage (SSD) on glass BK7 specimens produced in rotary ultrasonic machining (RUM) and conventional grinding (CG) processes with three diamond tools were investigated. The ultrasonic effects on the SSD characteristics were also explored with respect to the material removal mechanisms and the specific kinematics principles of the abrasives. The experimental results demonstrated that the increased cutting velocity would improve the subsurface qualities, while the increased feed speed and cutting depth would deteriorate SSD depth of the RUM/CG specimens. Superimposition with the ultrasonic vibration increased the maximum cutting depth of each abrasive by an amplitude and also resulted in the cyclical variation in abrasive trajectories, hereby worsening the SSD depth of the final RUM surfaces. A large amount of incipient cracks which pulverized the material were just concentrated on the top RUM surface, thus increasing the subsurface crack distributions. With the abrasive moving ahead, these incipient cracks would propagate forward, hereby hindering the nucleation of the fresh cracks, and decreasing the subsurface crack obscurations of the RUM surface at a local level. Some rogue cracks were occasionally found to be located in deeper subsurface of the RUM/CG specimens, and the mutual interactions between the adjacent abrasive indentations would promote the propagations of the subsurface cracks, which gave rise to the nucleation of these rogue cracks.
机译:研究了使用三种金刚石工具在旋转超声加工(RUM)和常规磨削(CG)工艺中生产的玻璃BK7标本的形态,深度和亚表面损伤(SSD)的分布。还针对材料去除机理和磨料的特定运动学原理,探讨了超声波对SSD特性的影响。实验结果表明,提高切削速度将改善表面质量,而提高进给速度和切削深度将降低RUM / CG样品​​的SSD深度。超声振动的叠加使每种磨料的最大切削深度增加了一个幅度,并且还导致了磨料轨迹的周期性变化,从而使最终RUM表面的SSD深度变差。粉碎材料的大量初期裂纹仅集中在RUM的顶部表面,因此增加了地下裂纹的分布。随着磨料的向前移动,这些初期裂纹将向前传播,从而阻碍了新鲜裂纹的成核作用,并在局部水平上降低了RUM表面的次表面裂纹。偶尔发现一些流氓裂纹位于RUM / CG标本的更深的地下,并且相邻磨料压痕之间的相互作用将促进地下裂纹的扩展,从而导致这些流氓裂纹的形核。

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