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A new slurry-based shaping process for fabricating ceramic green part by selective laser scanning the gelled layer

机译:通过选择性激光扫描胶凝层制造陶瓷生坯的基于浆料的新型成型工艺

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This paper proposes a new slurry-based shaping process for fabricating ceramic green parts. Slurry was composed of SiO_2 powders (without polymer coating) as a structural element, silica sol and polyvinyl alcohol (PVA) as binders. The new process derived gelling effect from vaporization to generate a uniform gelled layer. By selective laser scanning, an alkali-insoluble 2D pattern was formed on the gelled layer. A green part was built by sequentially layer casting, drying, selective scanning and self-supporting removing. Because gelling occurs uniformly in the whole fresh layer, distortion is minimized. Therefore, this process not only can cast thinner layers to improve the staircase effect but also achieve a better surface by preventing surface pitting induced by laser ablation. No additional design for supports is required since overhangs and undercuts are supported by an inherent gelled support. Compared to other slurry-based processes, the process possesses time-efficiency in slurry preparation and support removal.
机译:本文提出了一种新的基于浆料的成型工艺,用于制造陶瓷生坯。浆料由SiO_2粉末(无聚合物涂层)作为结构元素,硅溶胶和聚乙烯醇(PVA)作为粘合剂组成。新工艺从汽化中产生胶凝作用,从而产生均匀的胶凝层。通过选择性激光扫描,在胶凝层上形成了碱不溶性2D图案。通过依次浇铸,干燥,选择性扫描和自支撑去除来构建绿色零件。因为胶凝在整个新鲜层中均匀地发生,所以变形最小化。因此,该工艺不仅可以浇铸更薄的层来改善阶梯效果,而且还可以通过防止激光烧蚀引起的表面点蚀来获得更好的表面。不需要额外的支撑设计,因为悬垂和底切由固有的凝胶支撑支撑。与其他基于浆料的工艺相比,该工艺在浆料制备和载体去除方面具有时间效率。

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