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Manufacturing of electrical discharge machinable ZTA-TiC - hot pressing vs. spark plasma sintering

机译:制造放电可加工ZTA-TIC - 热压与火花等离子烧结

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摘要

Hot pressing and spark plasma sintering were applied to manufacture electrical discharge machinable ZTA-TiC ceramics containing 17 vol.% zirconia (1.5Y) and 24 vol.% titanium carbide in an alumina matrix. Sintering was carried out at 1450-1600 degrees C and 40 MPa pressure with 2 h dwell for HP and 10 mm for SPS. The influence of sintering conditions on mechanical properties, microstructure, phase composition and electrical conductivity was investigated. Both sintering technologies lead to fully densified samples with similar strength and toughness. Hardness was generally lower for SPS. SPS samples develop a finer microstructure. HP samples the TiC grains tend to merge at high sintering so that HP materials reach significantly higher conductivities. Productivity and energy consumption per piece can be significantly decreased by shifting to SPS. Both types of material were ED-machinable. Hot pressed ceramics showed better cutting performance and improved surface quality in trimming operations.
机译:应用热压和火花等离子体烧结制造含有17体积%的电气放电可加工ZTA-TIC陶瓷。%氧化锆(1.5Y)和24体积%的碳化钛。烧结在1450-1600℃,40MPa压力下进行,2小时,用于HP和10mm的SPS。研究了研究烧结条件对机械性能,微观结构,相组成和电导率的影响。烧结技术都导致完全致密的样品,具有相似的强度和韧性。 SPS通常较低的硬度。 SPS样品开发出更好的微观结构。 HP样品TIC晶粒倾向于在高烧结中合并,使得HP材料达到明显更高的导电性。通过转移到SPS,每件的生产率和能量消耗可以显着降低。两种类型的材料是可加工的。热压陶瓷显示出更好的切割性能和改进的修剪操作表面质量。

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