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Compact Disc Laser Cleaning for Polycarbonate Recovering

机译:光盘激光清洗用于聚碳酸酯恢复

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In this research work, laser cleaning of Compact Discs (CDs) through the employment of a 30 W MOPFA Q-switched pulsed Yb:YAG fibre laser is investigated. The laser beam is used to ablate the metal substrate located between the polycarbonate layer and the outer serigraphy of CDs with the final aim to recover the polycarbonate layer and make it available for further applications. Compared to traditional cleaning processes, this method offers several advantages, including: absence of mechanical contact, reduction of secondary pollutants, low energy consumption, greater flexibility of use and possibility to work small batches. Two experimental test series were carried out. First, linear scans were executed at the maximum average power (30W) by changing scanning speed and pulse energy. The width of the ablated material was then measured on the test CDs. Furthermore, the mechanism of separation between the deposition layers and the polymer substrate is observed and described. The second experimental testing series was performed to identify the process conditions that could ensure a 100% cleaned surface without polymer degradation and to evaluate the corresponding process time. On the basis of the test results, three different conditions were observed: incomplete cleaning, complete cleaning and cleaning with polymer degradation.
机译:在本研究工作中,通过采用30W MOPFA Q开关脉冲YB的激光清洁光盘(CDS):对YAG光纤激光器进行了研究。激光束用于烧蚀位于聚碳酸酯层和CD的外部序列之间的金属基材,最终目的是回收聚碳酸酯层并使其可用于进一步的应用。与传统的清洁过程相比,该方法提供了几个优点,包括:没有机械接触,减少二次污染物,低能耗,使用的灵活性以及工作小批次的可能性。进行了两种实验测试系列。首先,通过改变扫描速度和脉冲能量,在最大平均功率(30W)处执行线性扫描。然后在测试CD上测量烧蚀材料的宽度。此外,观察和描述沉积层与聚合物基板之间的分离机制。进行第二种实验测试系列以确定可以确保100%清洁表面而无需聚合物劣化的过程条件并评估相应的处理时间。在测试结果的基础上,观察到三种不同的条件:清洁,完全清洁和聚合物降解清洗。

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