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Corrosion Measurement of a Conductive Paste and Anisotropic Conductive Adhesive Films

机译:导电胶和各向异性导电胶膜的腐蚀测量

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We measured corrosion layer thickness on a conductive paste (CP-Ag) and anisotropic conductive adhesive films (ACFs). CP-Ag consist of epoxy resin and silver powder, and ACFs consist of epoxy resin and about 4 驴 m in diameter of uniform plastics particles with Ni and Au/Ni plating. Firstly the conductive paste was printed on the polyimide film, and ACFs were bonded on the glass with polyimide film, and ACFs were bonded on the glass with Indium-Tin-Oxide (ITO) electrodes. After thermal curing, these samples were set in the condition of an acceleration corrosion test; 2 ppm of H2S gas, 4 ppm of NO2 gas, 30掳C, 70%RH. After exposure in corrosive gases for 77.3 hours, these samples were cut to analyze the resultant corrosion, using the SAICAS(Surface And Interfacial Cutting Analysis System) slant-cut method. The sulfur component in the cut section of each sample was measured by using both the Scanning Electron Microscope (SEM) and the Energy Dispersive X-ray microanalysis (EDX) component analysis method. As a result, we found that the corrosion reached a depth of about 2 驴 m on CP-Ag. This depth is our predictive value. But on ACFs, the sulfur component was not found. Then ACFs were set in the condition of other acceleration corrosion test; 0.07 ppm of H2S gas, 1.4 ppm of NO2 gas, 1.4ppm of SO2 gas, 0.07 ppm of Cl2 gas, 35掳C, 85%RH for 96 hours. The affection of corrosive gases reached in the depth of about 1.
机译:我们测量了导电胶(CP-Ag)和各向异性导电胶膜(ACFs)上的腐蚀层厚度。 CP-Ag由环氧树脂和银粉组成,ACF由环氧树脂和直径约4驴米的均匀塑料颗粒组成,并带有Ni和Au / Ni镀层。首先,将导电浆料印刷在聚酰亚胺膜上,然后将ACFs与聚酰亚胺膜粘合在玻璃上,并将ACFs与铟锡氧化物(ITO)电极粘合在玻璃上。在热固化之后,将这些样品置于加速腐蚀试验的条件下。 2 ppm的H2S气体,4 ppm的NO2气体,30°C,70%RH。暴露于腐蚀性气体中77.3小时后,使用SAICAS(表面和界面切割分析系统)倾斜切割法对这些样品进行切割以分析所产生的腐蚀。通过使用扫描电子显微镜(SEM)和能量色散X射线显微分析(EDX)成分分析方法来测量每个样品切割部分中的硫成分。结果,我们发现在CP-Ag上腐蚀达到了大约2驴米的深度。这个深度是我们的预测价值。但是在ACF上,未发现硫成分。然后在其他加速腐蚀试验的条件下设置ACF。持续96小时,其中0.07 ppm的H2S气体,1.4 ppm的NO2气体,1.4ppm的SO2气体,0.07 ppm的Cl2气体,35°C,85%RH。腐蚀性气体的影响达到约1的深度。

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