玻璃-环氧树脂夹层结构吸湿性能研究

A. Pietrikova, T. Lenger, L. Livovsky, I. Vehec, Peter Lukacs
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引用次数: 1

摘要

讨论了两种电子玻璃/环氧树脂夹层结构在多层印制板吸湿性能方面的比较。在湿度从5% RH到85% RH的多个湿度测试中,在40°C下监测基于测量1、3和5层压层质量变化的水分扩散特性。根据理论计算的吸水和解吸到填充玻璃纤维的环氧树脂样品所需的时间,它们的吸收率取决于样品的厚度,也取决于它们的制备技术(玻璃-环氧层压结构的1和2阶段层压)。从我们的实验数据中,我们得到了湿度水平从5% RH到85% RH下的水分饱和浓度。我们的分析结果表明,虽然环氧树脂结构对湿气渗透的抵抗力增强,但不可能完全防止这些结构内部的湿气。最终,在构造包含不能被认为是密封的嵌入式组件的包时,应该考虑到这一点。我们的样品暴露在s5%的水分中,而水分只显示在预浸料夹层的各个层之间的潜在泄漏中,但也由于材料本身的饱和,它与样品的界面一起被特别激活。实验结果可用于多层嵌入夹层结构的设计,特别是其可靠性方面。
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Moisture Absorption of Glass-Epoxy Sandwich Structure
The authors discuss the comparison of two types of E-glass/epoxy sandwich structures for multi-layer PWB (Printed Wiring Boards) in relation to moisture absorption. Moisture diffusion characteristics based on measuring the mass change of l, 3, and 5 laminated layers were monitored at 40°C within multiple humidity tests at humidity levels from 5% RH to 85% RH. Based on the theoretically calculated time required for water absorption and desorption into epoxy samples filled with glass fibres, their absorption was experimentally confirmed depending on the thickness of the samples and also depending on the technology of their preparation (1 and 2 stage lamination of glass– epoxy laminated structure). From our experimental data, we obtained moisture saturation concentration at the humidity level from 5 % RH to 85% RH. The results of our analysis have shown that although epoxy constructions exhibit increased resistance to moisture penetration, it is not possible to completely prevent moisture inside these constructions. Ultimately, this should be taken into account when constructing packages with embedded components that cannot be considered to be hermetic. Our samples were exposed to S5 % moisture, while the moisture has been shown only in potential leaks among individual layers of pre-pregs sandwich, but also due to the saturation of the material itself, which is particularly activated along with the interface of samples. The results of the experiments can be used in creating multi-layer embedded sandwich structures, especially in terms of their reliability.
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