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Sintering behavior, microstructural evolution, and mechanical properties of ultra-fine grained alumina synthesized via in-situ spark plasma sintering

机译:通过原位火花等离子体烧结合成超细颗粒氧化铝的烧结行为,微观结构演化和力学性能

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Ultra-fine grained Al2O3 was fabricated by in-situ spark plasma sintering (SPS) process directly from amorphous powders. During in-situ sintering, phase transformation from amorphous to stable alpha-phase was completed by 1100 degrees C. High relative density over 99% of in-situ sintered Al2O3 was obtained in the sintering condition of 1400 degrees C under 65 MPa pressure without holding time. The grain size of in-situ sintered Al2O3 body was much finer (-400 nm) than that of Al2O3 sintered from the crystalline alpha-Al2O3 powders. For in-situ sintered Al2O3 from amorphous powders, we observed a characteristic microstructural feature of highly elongated grains in the ultra-fine grained matrix due to abnormal grain growth. Moreover, the properties of abnormally grown grains were controllable. Fracture toughness of in-situ sintered Al2O3 with the elongated grains was significantly enhanced due to the self-reinforcing effect via the crack deflection and bridging phenomena. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:通过原位火花等离子体烧结(SPS)方法直接来自无定形粉末,制造超细颗粒Al 2 O 3。在原发性烧结期间,从非定形到稳定α相的相转变完成1100℃。在65MPa压力下,在1400℃的烧结条件下,在65MPa压下的烧结条件下获得超过99%的原位烧结Al2O3的高相对密度时间。原位烧结Al2O3体的晶粒尺寸比从结晶α-Al2O3粉末烧结的Al2O3的晶粒尺寸更细(-400nm)。对于来自无定形粉末的原位烧结Al2O3,我们观察到由于晶粒生长异常,在超细颗粒基质中观察到高细长晶粒的特征。此外,异常种植晶粒的性质是可控的。由于通过裂缝偏转和桥接现象的自我增强效果,具有细长晶粒的原位烧结Al2O3的裂缝韧性显着提高。 (c)2015 Elsevier Ltd和Techna Group S.R.L.版权所有。

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