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首页> 外文期刊>Journal of Materials Research >Colloidal processing of chemically prepared zinc oxide varistors. Part Ⅰ: Milling and dispersion of powder
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Colloidal processing of chemically prepared zinc oxide varistors. Part Ⅰ: Milling and dispersion of powder

机译:化学制备的氧化锌压敏电阻的胶体加工。第一部分:粉末的研磨和分散

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摘要

Chemically prepared zinc oxide powders are fabricated for the production of high aspect ratio varistor components. Colloidal processing was performed to reduce agglomerates to primary particles, form a high solids loading slurry, and prevent dopant migration. The milled and dispersed powder exhibited a viscoelastic to elastic behavioral transition at a volume loading of 43-46%. The origin of this transition was studied using acoustic spectroscopy, zeta potential measurements, and oscillatory rheology. The phenomenon occurs due to a volume fraction solids dependent reduction in the zeta potential of the solid phase. It is postulated to result from divalent ion binding within the polyelectrolyte dispersant chain and was mitigated using a polyethylene glycol plasticizing additive. This allowed for increased solids loading in the slurry and a green body fabrication study to be presented in our companion paper.
机译:制造化学制备的氧化锌粉末以生产高纵横比的压敏电阻器组件。进行胶体处理以将附聚物减少为初级颗粒,形成高固含量的浆料,并防止掺杂剂迁移。研磨和分散的粉末在43-46%的体积载荷下表现出粘弹性到弹性的行为转变。使用声学光谱,ζ电势测量和振荡流变学研究了这种转变的起源。该现象的发生是由于固相的ζ电势中固体的体积分数依赖性降低。推测这是由于聚电解质分散剂链中的二价离子键合所致,并使用聚乙二醇增塑剂加以缓解。这样可以增加浆料中的固体含量,并在我们的配套论文中介绍了生坯制造研究。

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