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首页> 外文期刊>Macromolecular materials and engineering >Effective Control of Laser‐Induced Carbonization Using Low‐Density Polyethylene/Polystyrene Multilayered Structure via Nanolayer Coextrusion
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Effective Control of Laser‐Induced Carbonization Using Low‐Density Polyethylene/Polystyrene Multilayered Structure via Nanolayer Coextrusion

机译:有效控制激光诱导碳化使用低密度聚乙烯/聚苯乙烯通过Nanolayer多层结构复合挤压

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摘要

Abstract Controlled carbonization is very critical in improving the effect of laser‐induced patterns on a polymer surface. In the present work, the effects of a multilayered structure on the physical and laser‐marking properties of a low‐density polyethylene/polystyrene (LDPE/PS) multilayered film are studied. The multilayered film is prepared using nanolayer coextrusion and treated in air by scanning with a neodymium‐doped yttrium aluminum garnet (Nd:YAG) pulsed laser beam. Based on various analyses, the laser‐induced patterns on the LDPE/PS multilayered film are significantly different from those on a conventional LDPE/PS blend. Furthermore, a mechanism for controlling the carbonized area of a multilayered film is proposed. This study also provides an effective method to fabricate laser‐patterning polymer materials based on a multilayered structure. Nanolayer coextrusion will have broad application prospects in the field of polymer laser marking. Importantly, this work opens up a valuable and viable direction for the practical application of these multilayered polymer materials.
机译:<标题在提高碳化是非常关键的激光诱导模式应承担对聚合物的影响表面。在物理和多层结构激光标记一个低密度的性质聚乙烯/聚苯乙烯(LDPE / PS)多层电影进行了研究。准备使用nanolayer复合挤压和治疗在空气中通过扫描一个钕掺杂钇铝石榴石Nd: YAG脉冲激光光束。在各种分析,激光诱导模式低密度聚乙烯/ PS多层膜从那些明显不同传统的LDPE / PS共混。机制控制的碳化区提出了一种多层膜。提供了一个有效的方法来制造激光检测模式基于聚合物材料多层结构。将有广阔的应用前景聚合物激光打标。工作打开了一个有价值的和可行的方向这些多层次的实际应用聚合物材料。

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