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Fabrication of High Strength α-SiAlON/BN Composition Ceramics by Hot Pressing

机译:热压法制备高强度α-SiAlON/ BN复合陶瓷

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Dense Y~(3+)-dopted a-SiAION/BN composition ceramics were fabricated by hot pressing sintering at 1900 °C holding for 1 h, then flexural strength was investigated through three-point bending test at room and 1000 °C. The results show that h-BN contributes to the densification of the powder, but which has little affect on the key temperature region of sintering densification of α-SiAlON ceramics. When content of BN is lower, which don't affect on the phase transformation of α-SiAlON, but when content of BN is higher, besides of major phase α-SiAlON, a little of β-SiAlON were also formed. For the α-SiAlON/BN composite ceramics content of 20 wt.% h-BN, the higher flexural strength (room-temperature and 1000 °C) is obtained, the formation of β-SiAlON should be an important reason for the higher strength, more important is , whose flexural strength at 1000 °C was higher 50 MPa than at room temperature, the difference of thermal properties between SiAlON and BN should contribute to the improve of high-temperature flexural strength.
机译:通过在1900℃下热压烧结1h,制备致密的Y〜(3 +)-a-SiAION / BN复合陶瓷,然后通过室温和1000℃下的三点弯曲试验研究其弯曲强度。结果表明,h-BN有助于粉末的致密化,但对α-SiAlON陶瓷的烧结致密化的关键温度区域影响很小。当BN含量较低时,对α-SiAlON的相变没有影响,但是当BN含量较高时,除了主相α-SiAlON以外,还形成少量的β-SiAlON。对于h-BN含量为20 wt。%的α-SiAlON/ BN复合陶瓷,可以获得较高的抗弯强度(室温和1000°C),β-SiAlON的形成应该是较高强度的重要原因更重要的是,SiAlON和BN的热性能差异应有助于提高高温抗弯强度,在1000°C时的抗弯强度比室温高50 MPa。

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