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Fast and cheap prototyping of non-standard optical components for sensing speckle dynamics

机译:用于感测散斑动态的非标准光学元件的快速且廉价的原型设计

摘要

As a part of the work carried out a project supported by the Danish council for technology and innovation, we have investigated the option of smoothening standard CNC machined surfaces. In the process of constructing optical prototypes, involving custom-designed optics, the development price and time can become a prohibitively large part of a research budget. Machining the optical surfaces of a molding tool may be done directly using diamond turning, but it is expensive and time consuming. Alternatively, a more standardized and cheaper machining method can be used, however,calling for manual polishing afterwards. Particularly, this last process is expensive as well, and will introduce an uncertainty in precisely how much material the polishing process will remove, introducing roughness on a larger lateral scale, such as waviness. Therefore, we have investigated the possibilities of smoothening surfaces of various shapes succeeding a standard CNC machining process. Different coatings have been tested for their abilities to fill and smoothen out structures of larger scales, while removing the small-scale roughness, which is critical for optical uses. In this work we will present an optical element, designed for optical spatial filtering velocimetry. The spatial filter is the key component in an optical sensor for non-contact measurement of surface vibrations, based on speckle dynamics. The optical element is casted in silicon. The results of smoothing an optical element will be demonstrated, and the sensor will be demonstrated for real-time measurements.
机译:作为丹麦技术与创新委员会支持的项目的一部分,我们研究了对标准CNC机械加工表面进行平滑处理的选项。在构建涉及定制设计光学器件的光学原型的过程中,开发价格和时间可能会成为研究预算中不可思议的很大一部分。可以使用金刚石车削直接加工成型工具的光学表面,但是这既昂贵又耗时。可替代地,可以使用更标准化和更便宜的加工方法,但是随后需要手工抛光。特别地,该最后的过程也是昂贵的,并且将在抛光过程中将去除多少材料的精确度方面引入不确定性,从而在较大的横向尺度上引入粗糙度,例如波纹度。因此,我们研究了在标准CNC加工过程之后对各种形状的表面进行平滑处理的可能性。已经测试了各种涂层的功能,它们可以填充和平滑较大规模的结构,同时可以消除小规模的粗糙度,这对于光学用途至关重要。在这项工作中,我们将介绍一种设计用于光学空间滤波测速的光学元件。空间滤光片是光学传感器中基于斑点动力学进行非接触式表面振动测量的关键组件。光学元件铸造在硅中。将演示使光学元件平滑的结果,并将演示用于实时测量的传感器。

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