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Laser additive manufacturing of 3D meshes for optical applications

机译:用于光学应用的3D网格的激光增材制造

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摘要

Selective laser melting (SLM) is a widely used additive manufacturing process that can be used for printing of intricate three dimensional (3D) metallic structures. Here we demonstrate the fabrication of titanium alloy Ti–6Al–4V alloy based 3D meshes with nodally-connected diamond like unit cells, with lattice spacing varying from 400 to 1000 microns. A Concept Laser M2 system equipped with laser that has a wavelength of 1075 nm, a constant beam spot size of 50μm and maximum power of 400W was used to manufacture the 3D meshes. These meshes act as optical shutters / directional transmitters and display interesting optical properties. A detailed optical characterisation was carried out and it was found that these structures can be optimised to act as scalable rotational shutters with high efficiencies and as angle selective transmission screens for protection against unwanted and dangerous radiations. The efficiency of fabricated lattice structures can be increased by enlarging the meshing size.
机译:选择性激光熔化(SLM)是一种广泛使用的增材制造工艺,可用于印刷复杂的三维(3D)金属结构。在这里,我们演示了基于钛合金Ti-6Al-4V合金的3D网格的制造,该网格具有节点连接的类金刚石晶胞,其晶格间距从400到1000微米不等。使用配备有波长为1075 nm,恒定束斑大小为50μm,最大功率为400W的激光器的Concept Laser M2系统来制造3D网格。这些网格充当光学快门/定向发射器,并显示出令人感兴趣的光学特性。进行了详细的光学表征,发现可以对这些结构进行优化,以高效地用作可缩放的旋转百叶窗,并用作角度选择性透射屏,以防止有害辐射和危险辐射。可以通过扩大啮合尺寸来提高制造的晶格结构的效率。

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