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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Fabrication of anti-reflective surfaces by 3-DOF fast tool servo diamond turning
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Fabrication of anti-reflective surfaces by 3-DOF fast tool servo diamond turning

机译:通过3-DOF快速工具伺服钻石转动制造抗反射表面

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摘要

Surface reflection existed in most optical elements that reduce the light transmission quality and bring down the optical system performance. Freeform optics is the key element in modern optics that it is strongly necessary to improve the anti-reflective performance. Therefore, the design and fabrication of anti-reflective freeform surfaces attract many researchers' attention, and this paper proposed a 3-DOF pseudo random turning method for the fabrication. The core idea is that three-processed random signal is coupled to freeform surface normal turning toolpath, and the new toolpath takes the diamond tool do micro-vibration in three directions in the turning process to break down the periodic tool mark residual structure. This method is implemented by a 3-DOF fast tool servo (FTS) system. The cutting results show that the new toolpath can disrupt the periodic turning residual structures which have the anti-reflective property, and higher hardness material is conductive to the formation of surfaces microstructure. Better anti-reflective surfaces can be obtained by optimizing tool geometric parameters and cutting parameters.
机译:在大多数光学元件中存在表面反射,从而降低光传输质量并降低光学系统性能。 Freeform光学器件是现代光学中的关键元件,即强烈需要提高防反映性能。因此,防反射自由形状表面的设计和制造吸引了许多研究人员的注意力,本文提出了一种用于制造的3-DOF伪随机转动方法。核心思想是,三个处理的随机信号耦合到自由形状正常转动刀具路径,新工具路径采用钻石刀具在转动过程中三个方向进行微振动,以分解周期刀具标记残余结构。该方法由3-DOF快速工具伺服(FTS)系统实现。切割结果表明,新的刀具路径可以破坏具有抗反射性能的周期性转动残余结构,并且更高的硬度材料导致表面微观结构的形成。通过优化工具几何参数和切割参数,可以获得更好的抗反射表面。

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