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Analysis of surface quality during fabrication of automotive retroreflectors

机译:汽车逆流仪制造过程中的表面质量分析

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摘要

Due to their inherent functionality, retroreflective structures play a vital role in styling and safety that are typically associated with automotive lighting components. The optical performance of the automotive retroreflectors is strongly dependent on the quality of the functional facets that are involved in redirecting the incoming light. To date, virtually all automotive retroreflectors are fabricated through a conventional process commonly termed as "pin-bundling-electroforming" (PBE) or simply "pin-bundling" whose surface quality outcome is largely unknown despite the relatively venerable age of this manufacturing technology. To address this, the main goal of the present study was to perform a quantitative assessment of the quality characteristics associated with the three main phases of the PBE to be then contrasted with those of a newer and more versatile retroreflector fabrication technique called "ultraprecise single point inverted cutting" (USPIC). The results obtained showed that while the average areal roughness of PBE-generated inverted corner cube optical microstructures remains less than half than that of the USPIC-fabricated right triangular prism retroreflectors (9.2-9.5 nm vs 19.7 nm), their average waviness values remain comparable (29.9 nm vs. 32.9 nm). It is expected that the surface assessments presented in the scope of the present study will constitute a valuable baseline for future research efforts aiming to develop retroreflector-fabrication alternatives that are superior to PBE. Crown Copyright (C) 2018 Published by Elsevier Ltd. All rights reserved.
机译:由于其固有的功能,逆向反射结构在造型和安全方面发挥着至关重要的作用,其通常与汽车照明部件相关联。汽车逆向反射器的光学性能强烈地取决于涉及重定向进入光的功能平面的质量。迄今为止,几乎所有汽车逆向反射器都是通过通常称为“引脚捆绑的电铸”(PBE)的传统方法制造的,或者简单地“销捆绑”,尽管该制造技术的相对较大的年龄,但是表面质量结果的表面质量结果在很大程度上是未知的。为了解决这一点,本研究的主要目标是对与PBE的三个主要阶段相关的质量特征进行定量评估,然后与较新的和更通用的逆向反射器制造技术的三个主要阶段对比,称为“超挑单点”倒置切割“(USPIC)。得到的结果表明,虽然PBE引起的倒角隅圆角光学微观结构的平均面积粗糙度仍然小于紫外制造的右三角形棱镜逆向反射器的一半(9.2-9.5nm vs 19.7nm),但它们的平均波纹值保持可比较(29.9 nm vs. 32.9 nm)。预计本研究范围内提出的表面评估将为未来的研究旨在开发优于PBE的替代方案的未来研究努力的宝贵基线。 Crown版权所有(C)2018由elestvier有限公司出版。保留所有权利。

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