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Advances in pressureless densification of boron carbide

机译:碳化硼无压致密化研究进展

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The coarsening processes which occur concurrently with the sintering of B4C were deduced using differential dilatometry, weight loss and grain size measurements. B2O3 coatings on B4C particles stalled the onset of densification until these coatings decomposed away at 1840degreesC. Oxide gaseous species formed in this process were postulated to be one conduit of particle coarsening. At higher temperatures, the volatilization of B4C itself were interpreted to be the second vapor phase coarsening mechanism, starting at temperatures above 2000degreesC. Carbon additions or soaking the compact in a hydrogen-containing atmosphere at 1350degreesC removed the oxide coatings at temperatures below those in which sintering or coarsening occurred. Accelerating densification above 2130degreesC was attributed to nonstoichiometric volatilization, leaving carbon behind to facilitate activated sintering. (C) 2004 Kluwer Academic Publishers.
机译:使用差示膨胀法,重量损失和晶粒尺寸测量推导了与B4C烧结同时发生的粗化过程。 B4C颗粒上的B2O3涂层阻止了致密化的开始,直到这些涂层在1840°C分解。假定该过程中形成的氧化物气态物质是颗粒粗化的一个渠道。在更高的温度下,B4C本身的挥发被认为是第二个气相粗化机理,始于2000摄氏度以上的温度。在低于烧结或粗化的温度下,添加碳或将成型体浸泡在1350℃的含氢气氛中,可以除去氧化物涂层。高于2130摄氏度的加速致密化归因于非化学计量挥发,留下了碳以促进活化烧结。 (C)2004 Kluwer学术出版社。

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