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Rapid method for testing efficacy of nano-engineered coatings for mitigating tin whisker growth

机译:测试纳米工程涂料减轻锡晶须生长功效的快速方法

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The risk of failure of electronic components due to tin (Sn) whiskers growth has become an issue with the current regulations limiting the use of lead in Sn solders. New strategies using engineered coatings for mitigating Sn whiskers are being developed. Typically, these coatings are evaluated by an aging process where whiskers are allowed to grow naturally. Unfortunately, this process can produce unreliable growth results and can take several years. Thus, faster, more reliable methods are needed. In this study, a simple, rapid (3-10 days), and cost-effective method was developed for testing the efficacy of nano-engineered coatings for mitigating the growth of Sn whiskers. This method consisted of a micro-indentation process using a ball-bearing adhered to a few hundred gram weight, which are placed in a stabilizing printed holder. For uncoated samples, Sn whiskers and hillocks were abundant near the indentation area, while only hillocks were found further outside the area (i.e., >0.2 mm). For samples coated with nano-engineered ceramic or polymeric coatings, the indentation method was observed to damage coatings only at the point of contact (e.g., no delamination), while still allowing Sn whiskers and hillocks to grow outside the indentation area. (C) 2015 Elsevier Ltd. All rights reserved.
机译:当前的法规限制了锡焊料中铅的使用,由于锡(Sn)晶须的生长而导致电子部件发生故障的风险已成为一个问题。正在开发使用工程涂料减轻锡晶须的新策略。通常,这些涂层通过老化过程进行评估,在该过程中,晶须可以自然生长。不幸的是,此过程可能会产生不可靠的增长结果,并且可能需要几年时间。因此,需要更快,更可靠的方法。在这项研究中,开发了一种简单,快速(3-10天)且具有成本效益的方法来测试纳米工程涂层在减轻锡晶须生长方面的功效。该方法由微压痕过程组成,该过程使用附着到几百克重的滚珠轴承进行,然后将其放置在稳定的印刷支架中。对于未镀膜的样品,在压痕区附近有大量的锡晶须和小丘,而在该区域以外(> 0.2 mm)处仅发现小丘。对于涂有纳米工程陶瓷或聚合物涂层的样品,观察到压痕方法仅在接触点(例如无分层)损坏涂层,同时仍允许锡晶须和小丘在压痕区域之外生长。 (C)2015 Elsevier Ltd.保留所有权利。

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