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Machining of Micro Grayscale Images on Freeform Surfaces by Vibration-assisted Cutting

机译:通过振动辅助切割在自由形状表面上加工微灰度图像

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摘要

In this paper, a new vibration-assisted cutting method is proposed to machine micro grayscale images onto metal freeform surfaces. Taking advantage of a non-resonant vibration complaint cutting device used in a machining system, two vibration components can be used at the same time in the machining process. One vibration component is used to fabricate the freeform surface, while the other to generate the micro grayscale image on the freeform surface. Based on the working principle of this method, a toolpath generation algorithm is developed by considering the toolpath components for both the grayscale image and the freeform surface. Using the generated toolpath, image machining experiments have been conducted. Images have been successfully machined on saddle surfaces with an average surface roughness of 169 nm, which demonstrates the capability of the proposed method. This technology has potentially wide applications in machining master molds for mass production of patterned plastic components or drugs in the anti-counterfeiting field.
机译:在本文中,提出了一种新的振动辅助切割方法,将微灰度图像加上金属自由形状。利用加工系统中使用的非谐振振动投诉切割装置,可以在加工过程中同时使用两个振动部件。一个振动部件用于制造自由形状表面,而另一个振动部件在自由形状表面上产生微灰度图像。基于该方法的工作原理,通过考虑灰度图像和自由形状表面的刀具路径组件来开发刀具路径生成算法。使用生成的刀具路径,已经进行了图像加工实验。已经成功加工在鞍座表面上,平均表面粗糙度为169nm,这表明了该方法的能力。该技术在抗假冒田中的料理塑料成分或药物的大规模生产母模方面具有广泛的应用。

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