首页> 外文期刊>Journal of Laser Applications >Individualized and controlled laser beam pretreatment process for adhesive bonding of fiber-reinforced plastics. Ⅱ. Automatic laser process control by spectrometry
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Individualized and controlled laser beam pretreatment process for adhesive bonding of fiber-reinforced plastics. Ⅱ. Automatic laser process control by spectrometry

机译:纤维增强塑料粘合剂的个性化和控制的激光束预处理方法。 Ⅱ。自动激光过程通过光谱测定控制

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摘要

This paper describes the research conducted on the automation for a UV laser-based surface pretreatment of fiber-reinforced composites in order to improve adhesive bonding conditions. In a preceding process step, a laser-line-triangulation system gathered inline information on a composite part's surface like topology and location of surface contaminants. These data are the basis for an automation of the laser-based surface treatment [J. Weiland, B. Kunze, H. Dittmar, B. Marx, A. Schiebahn, P. Jaeschke, L. Overmeyer, and U. Reisgen, Proc. Inst. Mech. Eng. Part E: J. Process Mech. Eng. 234, 1-10 (2020)]. The gathered data describe the position of bonding areas and surface contaminants and are converted into relative coordinates of the laser's scanning field. During the following laser process, the bonding area is ablated to improve adhesive bonding conditions. The process is monitored online by a broad bandwidth spectrometer covering the range of lambda =200-1100nm to detect changes in the surface composition. If the spectrometer detects signals related to specific surface contaminants during the laser process, the position of the contamination is logged. In this case, only the areas that showed traces of surface contaminations are laser treated again until the spectrometer stops detecting the contaminant signature. This work presents results of two series of experiments. During the first series of experiments, the spectrometer monitored a UV laser process on a carbon fiber reinforced epoxy. The laser processing was performed on a clean and contaminated surface. An industry standard release agent contaminated the plastic surface. The spectrometer detected differences between the clean and contaminated surface that will be used for an automatic process control. In a second series of experiments, the authors performed a processing parameter analysis in order to identify a potential process window for laser-based surface pretreatment for glass-fiber reinforced polyamide 6. Contact angle analysis, surface roughness measurements, peel strength, and shear strength tests were performed. The results show that an inline controlled laser process is robustly able to pretreat composite surfaces based on spectrometric measurements.
机译:本文介绍了对纤维增强复合材料的UV激光表面预处理的自动化进行的研究,以改善粘合剂粘合条件。在前面的处理步骤中,激光线 - 三角测量系统在复合部分的表面上聚集在线信息,如拓扑和表面污染物的位置。这些数据是基于激光的表面处理自动化的基础[J. Weiland,B. Kunze,H. Dittmar,B.Marx,A.Schiebahn,P.Jaeschke,L. Overmeyer,以及U. Reisgen,Proc。 Inst。机械。 eng。部分E:J. Process Mech。 eng。 234,1-10(2020)]。聚集的数据描述了粘合区域和表面污染物的位置,并转换成激光扫描场的相对坐标。在以下激光过程中,粘合面积被烧蚀以改善粘合剂粘合条件。该过程通过覆盖Lambda = 200-1100nm的范围来在线监测该过程以检测表面组合物的​​变化。如果光谱仪在激光过程中检测到与特定表面污染物相关的信号,则记录污染的位置。在这种情况下,只有显示表面污染迹线的区域被激光再次处理,直到光谱仪停止检测污染物签名。这项工作提出了两系列实验的结果。在第一系列实验期间,光谱仪在碳纤维增强环氧树脂上监测了UV激光方法。在清洁和污染的表面上进行激光加工。行业标准脱模剂污染塑料表面。光谱仪检测到将用于自动过程控制的清洁和污染的表面之间的差异。在第二系列实验中,作者进行了处理参数分析,以识别用于基于激光的表面预处理的潜在处理窗口,用于玻璃纤维增​​强聚酰胺6.接触角分析,表面粗糙度测量,剥离强度和剪切强度进行测试。结果表明,基于光谱测量,内联控制激光过程稳健地能够预制复合表面。

著录项

  • 来源
    《Journal of Laser Applications》 |2021年第1期|012004.1-012004.7|共7页
  • 作者单位

    Laser Zentrum Hannover eV Hollerithallee 8 D-30419 Hannover Germany;

    Rhein Westfal TH Aachen Welding & Joining Inst Pontstr 49 D-52062 Aachen Germany;

    Laser Zentrum Hannover eV Hollerithallee 8 D-30419 Hannover Germany;

    Rhein Westfal TH Aachen Welding & Joining Inst Pontstr 49 D-52062 Aachen Germany;

    Laser Zentrum Hannover eV Hollerithallee 8 D-30419 Hannover Germany;

    Laser Zentrum Hannover eV Hollerithallee 8 D-30419 Hannover Germany;

    Rhein Westfal TH Aachen Welding & Joining Inst Pontstr 49 D-52062 Aachen Germany;

    Laser Zentrum Hannover eV Hollerithallee 8 D-30419 Hannover Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    composites; adhesive bonding; process control; spectrometry;

    机译:复合材料;粘合剂;过程控制;光谱法;
  • 入库时间 2022-08-18 22:53:55

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