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首页> 外文期刊>Journal of Materials Processing Technology >Two-stage sintering of nano-sized yttria stabilized zirconia process by powder injection moulding
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Two-stage sintering of nano-sized yttria stabilized zirconia process by powder injection moulding

机译:粉末注射成型纳米氧化钇稳定氧化锆工艺的两步烧结

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摘要

Powder injection moulding (PIM) is capable of mass producing intricately shaped components. In recent years, this technology has been adopted in the electronic, computer, chemical and medical industries. The 3 mol% yttria stabilized zirconia (Y-TZP) is well recognised for its high fracture toughness. PIM of nano-sized Y-TZP hence offer attractive potential applications. Grain growth however is a major problem for nano-sized powder. Initial researches proposed that high green density and minimum sintering temperature are beneficial in controlling the grain growth of nano-sized powder. In view of the constraint of low green density of PIM samples, grain growth control will be even challenging. Two-stage sintering (2SS) is reported to be able to refine the microstructure and enhance the material properties. This method simply modifies the sintering route by firing the sample at high temperature follow by rapidly cooling down and dwelling at lower temperature. The objective of this work is to monitor the effect of 2SS on the nano-sized Y-TZP process by PIM. Dimensional changes, weight loss, density, hardness as well as microstructure are study after the sintering and compare to the conventional isothermal sintering. The process condition at 1350℃ follow by 900℃ is found to be able to achieve comparable hardness as isothermal sintering at 1500℃. With a finer microstructure, 2SS can potentially improve the grain size dependant material properties of nano-Y-TZP in the near future.
机译:粉末注射成型(PIM)能够大量生产形状复杂的组件。近年来,该技术已被电子,计算机,化学和医疗行业采用。 3摩尔%的氧化钇稳定的氧化锆(Y-TZP)因其高断裂韧性而广为人知。因此,纳米级Y-TZP的PIM提供了诱人的潜在应用。然而,晶粒生长是纳米级粉末的主要问题。初步研究提出,高生坯密度和最低烧结温度有利于控制纳米级粉末的晶粒长大。鉴于PIM样品的低绿色密度的限制,晶粒生长控制将甚至具有挑战性。据报道,两阶段烧结(2SS)能够改善微观结构并增强材料性能。该方法通过在高温下烧结样品,然后迅速冷却并在较低温度下保持,从而简单地修改了烧结路线。这项工作的目的是通过PIM监视2SS对纳米Y-TZP工艺的影响。烧结后研究尺寸变化,重量损失,密度,硬度以及微观结构,并与常规等温烧结进行比较。发现在1350℃和900℃的加工条件下可以达到与1500℃等温烧结相当的硬度。具有更好的微观结构,2SS可以在不久的将来改善纳米Y-TZP的晶粒尺寸依赖性材料性能。

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