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电磁噪声水平对汽车零部件激光微穿孔工艺的影响

The Electromagnetic Noise Level Influence on the Laser Micro-Perforation Process Specific to Automotive Components.

作者信息

Rusu Alexandru-Nicolae, Dumitrascu Dorin-Ion, Dumitrascu Adela-Eliza

机构信息

Department of Manufacturing Engineering, Transilvania University of Brasov, 5 Mihai Viteazul, 500036 Brasov, Romania.

Department of Automotive and Transport Engineering, Transilvania University of Brasov, 1 Politehnicii, 500036 Brasov, Romania.

出版信息

Materials (Basel). 2024 Aug 21;17(16):4131. doi: 10.3390/ma17164131.

Abstract

This article focuses on the influence of generated electromagnetic noise (energy) during the micro-perforation process. This study aims to investigate the critical parameters and effects of using laser technology in the processing of textile materials for airbags. Different levels of electromagnetic noise and material thicknesses were investigated to ensure the quality of manufactured parts and the best component performance. A factorial analysis (DOE) was developed to evaluate the influence of electromagnetic noise levels over pull test results and its effect on the micro-perforation process. The overall inferential analysis concludes a significant influence of the noise levels on micro-perforation processing. The detailed analysis suggests that 1.2 V is an optimal level of electromagnetic noise where the material maintains its mechanical properties in a more predictable and consistent manner. Additionally, the factorial design provides significant evidence for an interaction and main effects' influences of analyzed factors. The obtained results in this study have demonstrated that monitoring and controlling the noise level have beneficial effects over the laser processing. This ensures that the safety aspect of the produced parts is entirely upheld and protected. Also, this research contributes to improving the manufacturing process and ensures that high-quality products are obtained, being suitable for use in sensitive applications such as automotive airbags.

摘要

本文重点关注微穿孔过程中产生的电磁噪声(能量)的影响。本研究旨在调查在用于安全气囊的纺织材料加工中使用激光技术的关键参数和效果。研究了不同水平的电磁噪声和材料厚度,以确保所制造部件的质量和最佳部件性能。开展了析因分析(实验设计)以评估电磁噪声水平对拉伸试验结果的影响及其对微穿孔过程的作用。整体推断分析得出噪声水平对微穿孔加工有显著影响。详细分析表明1.2伏是电磁噪声的最佳水平,在此水平下材料能以更可预测和一致的方式保持其机械性能。此外,析因设计为分析因素的交互作用和主效应影响提供了重要证据。本研究获得的结果表明,监测和控制噪声水平对激光加工有有益影响。这确保了所生产部件的安全方面得到充分维护和保护。而且,本研究有助于改进制造工艺并确保获得高质量产品,适用于汽车安全气囊等敏感应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2081/11356014/54c79a74dd57/materials-17-04131-g001.jpg

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