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Fabrication of hierarchical freeform surfaces by 2D compliant vibration-assisted cutting

机译:通过2D兼容振动辅助切割制造等级自由型表面

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摘要

In this paper, instead of the commonly used fast tool servo method, a two degrees-of-freedom (2D) vibration-assisted machining method is proposed to enable the efficient generation of freeform surfaces with hierarchical micro/nano-structures. With this method, the freeform component of the surface is realized by 1D vibrations in the depth-of-cut direction, whereas the hierarchical micro/nano-structures are generated by elliptical vibrations at high frequency and small vibration amplitudes. The determination of the tool vibration path, considering tool geometry and the interference between the tool's flank surface and the machined surface, is presented and used as the basis to propose a surface generation algorithm for topography prediction. Using a developed 2D vibration compliant cutting system, experiments were conducted to machine hierarchical sinusoidal and discontinuous cubic surface arrays for demonstration. The results show a high consistency between the simulated and generated topographies demonstrating the effectiveness of the proposed method for the efficient machining of hierarchical freeform surfaces. In addition, wettability tests were undertaken to demonstrate that larger wetting angles can be obtained on hierarchical freeform surfaces as compared to their smooth counterparts.
机译:本文提出了代替常用的快速工具伺服方法,提出了一种自由度(2D)振动辅助加工方法,以实现具有分层微/纳米结构的自由形状表面。利用这种方法,表面的自由形状分量通过切割深度方向的1D振动实现,而分层微/纳米结构由高频和小振动幅度处的椭圆形振动产生。考虑工具几何形状和工具侧面和加工表面之间的干扰的刀具振动路径的确定,并用作提出用于地形预测的表面生成算法的基础。使用开发的2D振动柔和的切割系统,进行实验到机器分层正弦和不连续立方面阵列进行示范。结果显示了模拟和产生的地形之间的高一致性,证明了所提出的方法的有效加工的效果。此外,采用润湿性试验证明,与其光滑的对应物相比,可以在等级自由形状表面上获得较大的润湿角度。

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