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High-adhesion Cu patterns fabricated by nanosecond laser modification and electroless copper plating

机译:通过纳秒激光修饰和化学镀铜制成的高附着力铜图案

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摘要

Adhesion strength is a crucial factor for the performance and reliability of metallic patterns on insulator substrates. In this study, we present an efficient technique for selective metallization of alumina ceramic with high adhesion strength by using nanosecond laser modification and electroless copper plating. Specifically, a 355 nm Nd:YVO4 ultraviolet (UV) laser was employed not only to decompose palladium chloride film locally for catalyzing the electroless reaction, but also to modify the ceramic surface directly using its high fluence. An orthogonal experiment was undertaken to study the effects of processing parameters including laser fluence, scanning speed and scanning line interval on adhesion strength. The adhesion strength was measured by pulling a metallic wire soldered into the copper coating perpendicular to the substrate using a pull tester. The results have shown that a strong adhesion between the copper coating and the alumina ceramic, higher than the tensile strength of tin-lead solder was obtained. Surface and interface characteristics were investigated to understand that, whose results have shown that the high-aspect-ratio microstructures formed by the laser modification is the major reason for the improvement of adhesion. (C) 2015 Elsevier B.V. All rights reserved.
机译:粘合强度是影响绝缘体基板上金属图案性能和可靠性的关键因素。在这项研究中,我们提出了一种有效的技术,可通过使用纳秒激光改性和化学镀铜来选择性地金属化具有高附着强度的氧化铝陶瓷。具体地,使用355nm的Nd:YVO 4紫外(UV)激光不仅局部分解氯化钯膜以催化化学反应,而且利用其高通量直接改性陶瓷表面。进行正交试验,研究激光注量,扫描速度和扫描线间隔等工艺参数对粘合强度的影响。通过使用拉力测试仪将焊接在垂直于基材的铜涂层中的金属线拉出来测量粘合强度。结果表明,获得了比锡铅焊料的拉伸强度更高的铜涂层与氧化铝陶瓷之间的强粘附力。对表面和界面特性进行了研究,以了解其结果表明,通过激光改性形成的高纵横比显微组织是提高附着力的主要原因。 (C)2015 Elsevier B.V.保留所有权利。

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