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Design and fabrication of an elliptical micro-lens array with grating for laser safety

机译:激光光栅椭圆微透镜阵列的设计与制造

摘要

With the enormous expansion of laser usage in medicine, industry and research, all facilities must formulate and adhere to specific safety methods that appropriately address user protection. The protective ellipticalal microstructure with grating is a novel technology which can provide the principal means of ensuring against ocular injury, and must be worn at all times during laser operation. On the basis of Fresnel's law and the diffractive law, Solidworks and Lighttools software are applied to design the elliptical micro-lens array and correspondent grating. The height of the microstructure is 100um and its period is 3mm. The period of grating is 5um. It is shown that the amount of emergent light of a specific wavelength (1064nm) can reflect more than 40° from the incident light through simulation, while the incident light is perpendicular to the microstructure. The fabrication adopts the ultra-precision single point diamond method and injection molding method. However, it is found in the test that the surface roughness has a serious effect on the angle between the emergent and incident light. As a result, the element can reflect the vertical incidence beam into a tilted emergent beam with a certain angular degree, as well as protecting users from laser damage injures.
机译:随着激光在医学,工业和研究领域的广泛应用,所有设施必须制定并遵守适用于用户保护的特定安全方法。具有光栅的椭圆形保护微观结构是一项新颖的技术,可以提供确保避免眼部损伤的主要手段,并且在激光操作过程中必须始终佩戴。根据菲涅尔定律和衍射定律,使用Solidworks和Lighttools软件设计椭圆微透镜阵列和相应的光栅。微结构的高度为100um,周期为3mm。光栅周期为5um。结果表明,通过模拟,特定波长(1064nm)的出射光可以从入射光反射超过40°,而入射光垂直于微观结构。制作采用超精密单点金刚石法和注射成型法。然而,在测试中发现,表面粗糙度对出射光和入射光之间的角度具有严重影响。结果,该元件可以将垂直入射光束反射为具有一定角度的倾斜出射光束,并保护用户免受激光伤害的伤害。

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