首页> 外文期刊>Journal of Materials Science >Aqueous electrophoretic deposition as a method for producing an investment casting shell mould ceramic face-coat. Part 1: formation of a carbon-filled investment casting wax electrode material
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Aqueous electrophoretic deposition as a method for producing an investment casting shell mould ceramic face-coat. Part 1: formation of a carbon-filled investment casting wax electrode material

机译:作为电泳熔模铸造壳型陶瓷面涂层的制造方法,可进行水系电泳沉积。第1部分:填充碳的熔模铸造蜡电极材料的形成

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Aqueous electrophoretic deposition (EPD), using a zircon, i.e., zirconium silicate (ZrSiO_4) suspension, has been investigated as an alternative to the conventional slurry dip-coating process for producing the face-coat of investment casting ceramic shell moulds. This is because EPD has the potential to (a) increase dimensional tolerances in the resultant casting, and (b) form a uniform facecoat on the entire mould-surface of complex shell moulds, including the small and/or complex cavities that are a problem for conventional dip-coating. Part 1 of this work addresses the formation of carbon-filled investment casting wax composite electrode materials. A carbon black powder and a micronised graphite powder were used as the alternative fillers in a water-emulsified pattern wax, an unfilled pattern wax and an unfilled runner wax. The runner wax composites exhibited consistently higher resistivities for both filler types and across the range of filler concentrations. Electrical resistivities of 1200 and 240 Ω cm were attained for the 16 vol% micronised graphite-filled and carbon black-filled straight pattern wax composites, respectively. The higher conductivity values associated with the use of carbon black filler are attributed to its highsurface area and hierarchical agglomerated structure. Rheologically, the micronised graphite-filled runner wax and water-emulsified pattern wax composites followed the Krieger–Dougherty model, which is helpful given that investment casting waxes are invariably injection moulded. In summary, these results confirm, in conjunction with Part 2, the feasibility of developing EPD as a promising technique for forming the investment casting shell mould ceramic face-coat.
机译:已经研究了使用锆石,即硅酸锆(ZrSiO_4)悬浮液的水电泳沉积(EPD),以代替传统的浆料浸涂工艺来生产熔模铸造陶瓷壳模具的表面涂层。这是因为EPD可能(a)增大最终铸件的尺寸公差,并且(b)在复杂壳体模具的整个模具表面上形成均匀的表面涂层,包括存在问题的小和/或复杂的型腔用于常规浸涂。这项工作的第1部分介绍了碳填充熔模铸造蜡复合电极材料的形成。炭黑粉末和微粉化的石墨粉末被用作水乳化的图案蜡,未填充的图案蜡和未填充的流道蜡中的替代填料。流平蜡复合材料在两种填料类型以及整个填料浓度范围内均表现出始终较高的电阻率。 16%(体积)的微粉化石墨填充和炭黑填充直纹蜡复合材料的电阻率分别为1200和240Ωcm。与使用炭黑填料相关的较高电导率值归因于其高表面积和分层的聚集结构。在流变学上,微粉化的填充石墨的流道蜡和水乳化的图案蜡复合材料遵循Krieger-Dougherty模型,这对精铸铸模蜡始终是注塑模制是有帮助的。总而言之,这些结果与第2部分相结合,证实了开发EPD作为形成熔模铸造壳模陶瓷面涂层的有前途技术的可行性。

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