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首页> 外文期刊>Journal of the Ceramic Society of Japan >Effect of MgO powder addition to alkali and alkaline-earth borosilicate glass paste on the acid durability and peel adhesion characteristics of Ag conductors formed with the glass paste
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Effect of MgO powder addition to alkali and alkaline-earth borosilicate glass paste on the acid durability and peel adhesion characteristics of Ag conductors formed with the glass paste

机译:MgO粉末除碱和碱土硼硅酸盐玻璃浆料对用玻璃浆料形成的Ag导体的酸耐久性和剥离特性的影响

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In this study, we investigated the influence of the addition of MgO powder to the alkali and alkaline-earth borosilicate (AEB) glass paste on acid durability and peel adhesion characteristics of Ag conductors formed on the alumina substrate with the AEB glass paste. It was determined that the addition of the MgO powder to the AEB glass paste promoted crystal precipitation during the firing process of the printed AEB glass thick-film on the substrate at 850 °C. By characterizing the acid corrosion behavior in a Hsub2/subSOsub4/sub aq., the weight loss after immersion for the micro-crystallized AEB glass thick-film with the added MgO powder was reduced by approximately half compared with that of the AEB glass thick-film without the MgO powder. In addition, no cracks were observed on the film surface of the micro-crystallized AEB glass, whereas cracks appeared on the film surface of the non-crystallized AEB glass after the acid corrosion treatment. It is thought that micro-crystallization induced by the addition of MgO powder to the glass paste during the firing process is partly involved in improving the acid resistance of the AEB glass thick-film. During the peel adhesion test of the Ag conductor on the alumina substrate in a Hsub2/subSOsub4/sub aq., the Ag conductor formed with the MgO powder-added AEB glass paste exhibited small deterioration of peel adhesion in comparison to the Ag conductor formed using the AEB glass paste without the MgO powder. These results suggest that the correlation between the improved acid durability and peel adhesion characteristics of the Ag conductor formed with the MgO powder-added AEB glass paste was related to the micro-crystallization of the AEB glass induced by the addition of MgO powder to the thick-film pastes during the annealing process at 850 °C.
机译:在这项研究中,我们研究了将MgO粉末添加到碱和碱土硼硅酸盐(AEB)玻璃浆的对耐酸耐久性和剥离导体与ABB玻璃浆料形成的Ag导体的耐腐蚀性和剥离特性的影响。确定将MgO粉末添加到AEB玻璃浆料的促进在底板上的印刷AEB玻璃厚膜的烧制过程中促进晶体沉淀,以850℃。通过表征H 2 SO 4 aq中的酸腐蚀行为。,浸入与添加的mgO粉末的微结晶的aeb玻璃厚膜后的重量损失与没有MgO粉末的AEB玻璃厚膜相比,减少大约一半。此外,在微结晶的Aeb玻璃的膜表面上没有观察到裂缝,而在酸腐蚀处理之后,在非结晶的Aeb玻璃的膜表面上出现裂缝。据认为,通过向烧制过程中加入MgO粉末诱导的微结晶,部分参与改善AEB玻璃厚膜的耐酸性。在H 2 SO 4 aq中的氧化铝基材上的Ag导体的剥离粘附试验期间。,用MgO粉末添加的Aeb玻璃浆料形成的Ag导体与没有MgO粉末的AEB玻璃浆料形成的Ag导体相比,剥离粘附的小劣化。这些结果表明,用MgO粉末添加的Aeb玻璃浆料形成的Ag导体的改进的酸耐久性和剥离特性之间的相关性与通过向厚的MgO粉末引起的Aeb玻璃的微结晶有关。 - 在850°C的退火过程中的糊状物。

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