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Fabrication of liquid phase sintered SiC materials and their characterization

机译:液相烧结SiC材料的制备及其表征

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This paper concerns the liquid phase sintering (LPS) process for the fabrication of SiC based ceramic materials and their characterization. The submicron SiC powder was also utilized for the improvement of LPS-SiC materials. A thermal exposure test was carried out to examine the high temperature stability of LPS-SiC materials. A mixture of Al_2O_3 and Y_2O_3 particles was used as an additive in the LPS process. LPS-SiC materials were fabricated by various sintering parameters such as sintering temperature, additive composition ratio (Al_2O_3/Y_2O_3) and additive amount (Al_2O_3 + Y_2O_3). The strength of LPS-SiC materials was examined at room temperature using a three-point bending test. LPS-SiC materials fabricated at 1820℃ had a density of about 3.1g/cm~3 and a flexural strength of about 780 MPa. However, the strength of LPS-SiC materials substantially decreased after the thermal exposure at 1400℃ for 10 h in the Ar atmosphere, due to the dramatic increase of weight loss by severe erosion.
机译:本文涉及用于SiC基陶瓷材料的液相烧结(LPS)工艺及其表征。亚微米SiC粉末还用于改善LPS-SiC材料。进行热暴露测试以检查LPS-SiC材料的高温稳定性。在LPS工艺中,使用Al_2O_3和Y_2O_3颗粒的混合物作为添加剂。通过烧结温度,添加剂组成比(Al_2O_3 / Y_2O_3)和添加剂量(Al_2O_3 + Y_2O_3)等各种烧结参数制备LPS-SiC材料。使用三点弯曲试验在室温下检测LPS-SiC材料的强度。在1820℃下制备的LPS-SiC材料的密度约为3.1g / cm〜3,抗弯强度约为780 MPa。然而,由于严重腐蚀引起的重量损失急剧增加,LPS-SiC材料的强度在1400℃的Ar气氛中暴露10 h后大大降低。

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