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Effect of nanoscale powders and microwave sintering on densification of alumina ceramics

机译:纳米尺度粉末和微波烧结对氧化铝陶瓷致密化的影响

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摘要

Nanoscale alumina (Al2O3) powders with an average size of 100, 200, or 300 nm were sintered to investigate the effects of the initial powder size on the densification behavior under the application of microwaves (2.45 GHz, 2 kW). The sintering was performed using microwave-assisted sintering (MWS) and conventional sintering (CS) methods in the temperature range of 1100-1600 A degrees C for 0-180 min. The Al2O3 samples prepared with the 100-nm-sized powders using MWS exhibited a relative density (RD) of over 90% when sintered at 1200 A degrees C for 10 min; the same RD was achieved at 1500 A degrees C when the sintering was performed for the same time using CS. However, a sintering temperature difference of similar to 100 A degrees C for a RD of similar to 90% was observed between the MWS and CS methods for the 300-nm-sized powders. Nano-grained (similar to 290 nm) Al2O3 ceramics with a high density of aeyen90% were obtained from nanoscale powders (similar to 100 nm) using MWS methods. The response of the nanoscale powders to microwaves was more significant as the initial powder size decreased from 300 to 100 nm.
机译:纳米级氧化铝(Al 2 O 3)粉末烧结,平均大小为100,200或300nm,以研究初始粉末大小对微波(2.45GHz,2 kW)的致密化行为的影响。使用微波辅助烧结(MWS)和常规烧结(CS)方法在1100-1600℃的温度范围内进行烧结0-180分钟进行。使用MWS的100nm尺寸粉末制备的Al2O3样品在1200℃下烧结10分钟时,在1200℃烧结时,相对密度(Rd)超过90%;当使用CS同时进行烧结时,在1500℃下实现相同的Rd。然而,在300nm尺寸粉末的MWS和CS方法之间观察到类似于100℃的烧结温度差,类似于90%的RD。使用MWS方法从纳米级粉末(类似于100nm)获得具有高密度AEYEN90%的纳米颗粒(类似于290nm)的Al2O3陶瓷。随着初始粉末尺寸从300至100nm降低,纳米级粉末对微波的响应更显着。

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