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On Comparative Evaluation of Accuracy, Repeatability and Reproducibility of Laser Micromachining Systems

机译:关于激光微机械系统的准确度,重复性和再现性的比较评价

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Although laser structuring and texturing have attracted the attention of research communities and industry as emerging viable technologies for surface functionalisation and micro-manufacturing, their implementation in practice requires a very high precision. Any small deviation from the nominal dimensions may lead to substandard components and products, especially a mismatch with their technical requirements and the functionalities envisaged in their designs. Therefore, a systematic investigation of key component technologies in the beam delivery sub-systems of laser micromachining platforms is required in order to quantify their contributions to the overall process uncertainty, particularly in terms of positional accuracy and repeatability in regards to their technical specifications. In this context, the aim of the research was to evaluate the capabilities of state-of-the-art laser processing systems that were specially designed and implemented for laser micro structuring and texturing. An empirical comparative study was conducted to quantify the contributions of key component technologies of four state-of-the-art systems towards their accuracy, repeatability and reproducibility (ARR), and thus to assess the capabilities of their optical and mechanical axes when they were utilised separately or in combination for precision laser surface structuring/texturing.
机译:虽然激光结构化和纹理引起了研究社区和行业的注意,但是对于表面官能化和微制造的新兴的可行技术,但其在实践中的实施需要非常高的精度。任何与标称尺寸的小偏差可能导致不合标准的组件和产品,尤其是具有其技术要求的不匹配,以及其设计中设想的功能。因此,需要对激光微加工平台的光束输送子系统中的关键部件技术进行系统研究,以便量化它们对整个过程不确定性的贡献,特别是在其技术规范方面的位置准确性和可重复性方面。在这种情况下,研究的目的是评估专门设计和实施的最先进的激光加工系统的能力,用于激光微结构和纹理。经验比较研究,以量化四状态的最先进的系统的关键部件技术朝向它们的精度,可重复性和再现性(ARR)的贡献,并因此当他们评估其光学和机械轴的能力单独使用或组合用于精密激光表面结构/纹理。

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