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Manufacturing of three-dimensional optical functional surfaces by diamond engraving of RSA 905

机译:RSA 905钻石雕刻制造三维光学功能表面

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Functional surfaces have been investigated widely due to different applications in industries. In this paper, the surface functionality was the contrast generated by surfaces orthogonally textured with micro ridges. The principle to generate contrast was the anisotropic reflection led by the bevel surfaces of micro ridges. The surface quality of the micro bevels determined the reflection of the features. In the authors’ previous work, such a functionality was successfully achieved on flat and cylinder surfaces of tool steel samples by micro milling. However, due to the limitation of micro milling process for microstructure fabrication, this study investigated the manufacturing of 3D functional surfaces of RSA 905 by diamond engraving. The 3D surface was shaped with hierarchical structures of micro bricks and micro ridges on the bricks: the surface was divided into micro grids then each grid was machined into a flat basic cell by using a round-tipped tool; the micro ridges were engraved on the basic cells with a sharp-tipped tool. In order to determine the feasibility of the microstructures to achieve contrast generation on 3D surfaces, a data matrix consisting of such micro ridges was patterned on a spherical concave and a freeform surface. The surface integrity was evaluated by measuring the surface roughness of the bevels on the micro ridges, characterizing the burr formation and detection of possible defects left on the micro features that affect the surface functionality. The successful scanning of the data matrix proved the microstructures successfully generated enough contrast to form readable codes. Furthermore, the contrast generated by the microstructures was quantified for process optimization by using a customized robotic measuring system.
机译:由于行业的不同应用,已经研究了功能表面。在本文中,表面功能是由微脊正交纹理的表面产生的对比度。产生对比的原理是由微脊的斜面表面引导的各向异性反射。微斜面的表面质量决定了特征的反映。在提交人之前的工作中,通过微铣削成功地在刀具钢样品的平坦和气缸表面上成功实现了这种功能。然而,由于微观铣削过程的微观结构制造的限制,本研究研究了钻石雕刻的RSA 905的3D功能表面的制造。 3D表面用微砖和砖上的微脊形状的形状成形:将表面分成微网格,然后通过使用圆形工具将每个栅格加工成扁平基础电池;微脊刻在具有尖锐的工具上的基本细胞上。为了确定微观结构的可行性,以在3D表面上实现对比产生,将由这种微脊构成的数据矩阵在球面凹凸和自由形状表面上被图案化。通过测量微脊上的斜面的表面粗糙度来评估表​​面完整性,其特征在于毛刺形成和检测影响表面功能的微观特征上的可能缺陷。数据矩阵的成功扫描证明了模拟成功产生足够的对比度以形成可读代码。此外,通过使用定制的机器人测量系统来定量由微结构产生的对比度以进行处理优化。

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