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Molding and hot forming techniques for fabricating plastic aspheric lenses with high blue-light transmittance

机译:用于制造具有高蓝光透射率的塑料非球面镜片的成型和热成型技术

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摘要

The purpose of this paper is to use micro-electroforming and hot-embossing technology as an alternative to high-cost precision cutting or traditional injection molding in the fabrication of plastic aspheric lenses with high Blu-Ray transmittance. The female dies for the aspheric lenses are fabricated from UV-cured SU-8 polymer via electrostatic attraction. However, SU-8 has a 405 nm Blu-Ray transmittance of only roughly 40-50%, which is not appropriate for use in high-density optical pickup systems. This paper, therefore, uses low stress, low surface roughness, nickel micro-electroforming and molding technologies and employs a micro hot-embossing system to form aspheric lenses with high Blu-Ray transmittance from COC plastic (transmittance: 88% at 405 nm). The resulting lenses have a clear aperture of approximately 1 mm and a numerical aperture of roughly 0.6. The electroforming mold has a roughness of approximately 8 nm as measured by AFM. The roughness of COC (n = 1.53) aspheric lenses after hot-embossing is approximately 146 nm (300 μm × 220 μm) as measured by white light interferometer (WYKO). The shape precision of the hot-embossing COC and original SU-8 in = 1.67) aspheric lenses can be controlled with approximately 2.638% error. The spot size of the hot-embossed COC and original SU-8 aspheric lenses can be controlled with approximately 11% error. This error should account for the material refractive index difference and the shape error. The roughness and spot size were also tested using different pressing temperatures and forces. This technology could be developed to fabricate lenses in Blu-Ray 405 nm micro-optical systems.
机译:本文的目的是在制造具有高蓝光透射率的塑料非球面镜片时,使用微电铸和热压印技术替代高成本的精密切割或传统的注塑成型。非球面镜片的母模通过静电吸引,由UV固化的SU-8聚合物制成。但是,SU-8的405 nm蓝光透射率仅为大约40-50%,不适合用于高密度光学拾取系统。因此,本文采用低应力,低表面粗糙度,镍微电铸和成型技术,并采用微热压花系统,由COC塑料形成具有高蓝光透射率的非球面透镜(在405 nm处透射率:88%) 。所得的透镜具有约1mm的净孔径和约0.6的数值孔径。电铸模具具有通过AFM测量的约8nm的粗糙度。通过白光干涉仪(WYKO)测量,热压花后COC(n = 1.53)非球面透镜的粗糙度约为146 nm(300μm×220μm)。可以控制热压印COC和原始SU-8 in = 1.67)非球面透镜的形状精度,误差约为2.638%。热压印COC和原始SU-8非球面镜片的光斑尺寸可以控制,误差约为11%。该误差应考虑材料折射率差和形状误差。还使用不同的压制温度和力测试了粗糙度和斑点尺寸。可以开发该技术来制造405纳米蓝光微光学系统中的透镜。

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