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In situ coagulation moulding: a new route for high quality, net-shape ceramics

机译:原位凝固成型:高质量,净形陶瓷的新途径

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摘要

A fast, near-net shape route for the production of advanced ceramic components has been developed that uses carboxylic acid derivatives as coagulants for electrosterically dispersed, high solids content ceramic suspensions. The time dependent in situ hydrolysis of the coagulant D-gulonic-γ-lactone progressively destabilises the suspension to form a viscoelastic solid within which the homogeneity of the initial dispersion is maintained. Constraining this hydrolysis reaction within a non-porous mould leads to the formation of green bodies. After drying, the ceramic components can be sintered without special debinding operations since only a small amount of organic additive, less than 1 wt.% of the total batch mass, is needed. Since the forming process takes place without pressure and at temperatures around ambient conditions, inexpensive moulds and tools can be used. As applied to A16-SG grade α-alumina, this new forming technology, called in situ coagulation moulding, produces components that possess high sintered densities, ~99% theoretical, high average mechanical strengths, σ{sup}(3pt) ≈ 4.50 MPa, good reliability, Weibull modulus, m = 10, and uniform microstructures.
机译:已经开发出一种用于生产高级陶瓷组件的快速,接近最终形状的路线,该路线使用羧酸衍生物作为静电空间分散的高固含量陶瓷悬浮液的凝结剂。凝结剂D-古洛糖基-γ-内酯的时间依赖性原位水解逐渐使悬浮液不稳定,形成粘弹性固体,在其中保持初始分散体的均质性。将这种水解反应限制在无孔模具中会导致生坯的形成。干燥后,由于仅需要少量的有机添加剂,少于批料总量的1 wt%,因此无需特殊的脱脂操作即可烧结陶瓷组件。由于成形过程是在无压力且在环境温度附近的温度下进行的,因此可以使用便宜的模具和工具。应用于A16-SG级α-氧化铝的这种新成型技术,称为原位凝固成型,可生产出具有高烧结密度,〜99%理论值,高平均机械强度,σ{sup}(3pt)≈4.50 MPa的组件,可靠性好,威布尔模量(m = 10)和均匀的微观结构。

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