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Effect of Si 3 N 4 Addition on Oxidation Resistance of ZrB 2 -SiC Composites

机译:Si 3 N 4的添加对ZrB 2 -SiC复合材料抗氧化性的影响

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The oxidation behavior of ZrB 2 -20 vol % SiC and ZrB 2 -20 vol % SiC-5 vol % Si 3 N 4 composites prepared by hot-pressing and subjected to isothermal exposure at 1200 or 1300 °C for durations of 24 or 100 h in air, as well as cyclic exposure at 1300 °C for 24 h, have been investigated. The oxidation resistance of the ZrB 2 -20 vol % SiC composite has been found to improve by around 20%–25% with addition of 5 vol % Si 3 N 4 during isothermal or cyclic exposures at 1200 or 1300 °C. This improvement in oxidation resistance has been attributed to the formation of higher amounts of SiO 2 and Si 2 N 2 O, as well as a greater amount of continuity in the oxide scale, because these phases assist in closing the pores and lower the severity of cracking by exhibiting self-healing type behavior. For both the composites, the mass changes are found to be higher during cyclic exposure at 1300 °C by about 2 times compared to that under isothermal conditions.
机译:通过热压制备的ZrB 2 -20体积%SiC和ZrB 2 -20体积%SiC-5体积%Si 3 N 4复合材料的氧化行为,并在1200或1300°C下等温暴露24或100已研究了在空气中的h以及在1300°C下24小时的循环暴露。发现在1200或1300°C的等温或循环暴露过程中,添加5 vol%的Si 3 N 4可使ZrB 2 -20 vol%SiC复合材料的抗氧化性提高约20%–25%。这种抗氧化性的提高归因于形成了更高含量的SiO 2和Si 2 N 2 O,以及在氧化皮中具有更大的连续性,因为这些相有助于封闭孔并降低氧化锌的严重性。通过表现出自愈型行为而开裂。对于两种复合材料,发现其质量变化在1300°C的循环暴露过程中要比等温条件下的质量变化高出约2倍。

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