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W - TiB2 Composite Material for Electro-Spark Deposition

机译:W - TIB2复合材料用于电火花沉积

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The W - TiB2 composite materials were prepared by spark plasma sintering at INM Gliwice, Poland and by solar powder metallurgy at Plataforma Solar de Almeria (PSA), Spain. Composites were prepared by sintering of green compacts of W powder with 60 vol.% of TiB2 powder. During the spark plasma sintering the sintering temperature was 1800 °C, pressure of 22kN, time of 300 s and heating rate of 1.67 °C/s. In solar furnace the sintering temperature was 1820 °C, pressure less, time 600 s and heating rate of 2.33 °C/s. The resulting composites prepared by spark plasma sintering possess 95 - 97 % of theoretical density. The composites prepared in solar furnace have porosity of 49%. Both composites are brittle and prone to cracking. The following phases were observed by EDS and XRD analyses: After solar sintering only W and TiB2 phases were observed. After spark plasma sintering WB and TiB2 phases were observed. The reason is different method of preparation. Finally it was proved experimentally that both composites can be successfully used as electrodes for electro spark deposition of hard wear resistant layers on metallic substrates.
机译:W - Tib2复合材料通过Spart血浆烧结在Inm Gliwice,Polanda Solar de Almeria(PSA),西班牙,西班牙的Sloct血浆烧结制备。复合材料通过烧结W粉末的绿色块,60体积粉末。占TIB2粉末的%。在火花等离子体烧结期间,烧结温度为1800℃,压力为22kN,时间为300秒,加热速率为1.67°C / s。在太阳能炉中,烧结温度为1820℃,压力较少,时间600秒和加热速率为2.33°C / s。通过火花等离子体烧结制备的所得复合材料具有95-97%的理论密度。在太阳能炉中制备的复合材料具有49%的孔隙率。两种复合材料都很脆弱,易于破裂。通过EDS和XRD分析观察以下阶段:在太阳烧结后仅观察到W和TIB2相。在火花血浆烧结WB和TIB2相后观察到。原因是不同的准备方法。最后,实验证明,两种复合材料都可以成功用作金属基板上硬耐磨层的电火花沉积的电极。

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