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Effect of particle size in Ni screen printing paste of incompatible polymer binders

机译:不相容聚合物粘合剂在镍丝网印刷浆料中的粒径影响

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摘要

Dispersion of nano-sized particles at high solid content has attracted attention in many industrial applications such as printed electronic products. However, the material design and processing heavily depends on experience with little quantitative measure. For fabrication of thinner dielectric layers, Ni size is getting smaller when used as an inner electrode in multilayer chip capacitor (MLCC). In the present study, we investigate the rheological properties and printing performance of the pastes with two different sizes of Ni particles in the same incompatible binder mixtures of ethyl cellulose (EC) and polyvinyl butyral (PVB). The difference in particle size causes different microstructural heterogeneity and highly nonlinear rheological properties upon the external flow field. The printing pattern and the surface profile are also analyzed by confocal images after screen printing. For smaller particle size of Ni, the more heterogeneous microstructure is observed with increasing PVB content, which is evidenced by the screen printing images as well as its rheological behavior. We explain the difference of spatial heterogeneity in terms of different interactions between particle–particle and particle–polymer. This work is believed to contribute to better design of inner electrodes and processing in MLCC manufacturing.
机译:高固含量的纳米尺寸分散体已在许多工业应用(例如印刷电子产品)中引起关注。但是,材料设计和加工在很大程度上取决于经验,而很少采用定量方法。为了制造更薄的介电层,Ni用作多层芯片电容器(MLCC)的内部电极时,尺寸越来越小。在本研究中,我们研究了在乙基纤维素(EC)和聚乙烯醇缩丁醛(PVB)的相同不相容粘合剂混合物中具有两种不同尺寸的Ni颗粒的浆料的流变特性和印刷性能。粒径的差异会导致不同的微观结构异质性和外部流场的高度非线性流变特性。丝网印刷后,还通过共焦图像分析印刷图案和表面轮廓。对于较小的Ni粒度,随着PVB含量的增加,观察到的微观结构更加不均匀,这可以通过丝网印刷图像及其流变行为来证明。我们用粒子间和粒子间的相互作用来解释空间异质性的差异。相信这项工作有助于内部电极的更好设计和MLCC制造中的处理。

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