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ZrB2–SiC based composites for thermal protection by reaction sintering of ZrO2+B4C+Si

机译:基于ZRO2 + B4C + Si的热保护的基于ZrB2-SiC的复合材料

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摘要

Abstract Synthesis and sintering of ZrB2–SiC based composites have been carried out in a single-step pressureless reaction sintering (PLRS) of ZrO2, B4C, and Si. Y2O3 and Al2O3 were used as sintering additives. The effect of ratios of ZrO2/B4C, ZrO2/Si, and sintering additives (Y2O3 and Al2O3), was studied by sintering at different temperatures between 1500 and 1680 °C in argon atmosphere. ZrB2, SiC, and YAG phases were identified in the sintered compacts. Density as high as 4.2 g/cm3, micro hardness of 12.7 GPa, and flexural strength of 117.6 MPa were obtained for PLRS composites. Filler material was also prepared by PLRS for tungsten inert gas (TIG) welding of the ZrB2–SiC based composites. The shear strength of the weld was 63.5 MPa. The PLRS ZrB2–SiC composites exhibited: (i) resistance to oxidation and thermal shock upon exposure to plasma flame at 2700 °C for 600 s, (ii) thermal protection for Cf–SiC composites upon exposure to oxy-propane flame at 2300 °C for 600 s.
机译:ZrB2-SiC基复合材料的抽象合成和烧结已经在ZrO2,B4C和Si的单步无压反应烧结(PLR)中进行。 Y2O3和Al2O3用作烧结添加剂。通过在氩气氛中在1500-1680℃的不同温度下烧结,研究了ZrO2 / B4C,ZrO2 / Si和烧结添加剂(Y2O3和Al2O3)的效果。在烧结块中鉴定了ZRB2,SiC和YAG阶段。密度高达4.2g / cm3,微硬度为12.7gPa,并为PLRS复合材料获得117.6MPa的弯曲强度。还通过PLRS制备填充材料,用于氧化钨基复合材料的钨惰性气体(TIG)焊接。焊缝的剪切强度为63.5MPa。 PLRS ZRB2-SiC复合材料显示:(i)在2700℃暴露于2700℃时暴露于血浆火焰时对氧化和热冲击的抗性,(ii)在2300°暴露于氧丙烷火焰时对CF-SiC复合材料进行热量保护。 c 600秒。

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