Enhancing Synthetic Leather Airbag Components Through Laser Microperforation Process Optimization: A Noise (Energy) Analysis
摘要
This article presents an analysis of the laser micro-perforation process on synthetic leather parts, focusing on the influence of noise (energy) generated during this process on the quality of the final products. The micro-perforation process is essential to meet the requirements for both aesthetic appearance and high-quality functionality in the airbag area. Since the foaming process is a preliminary step to laser processing, ensuring its uniformity becomes crucial for the stability and subsequent laser processing performance. A detailed analysis of the noise (energy) wave during the laser process is highly important because the set parameters must be within strict limits to minimize waste and ensure the quality of manufactured parts. This approach not only optimizes the production process but also ensures that the resulting parts comply with strict quality and safety standards. The results obtained in this study have demonstrated that the laser processing significantly benefits from monitoring and controlling the noise (energy) wave. This ensures that the safety aspect of the produced parts is entirely upheld and protected. This research contributes to improving the manufacturing process and ensures that the resulting products are of high quality, suitable for use in sensitive applications such as automotive airbags.