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首页> 外文期刊>Journal of the Australasian ceramic society >Improvement toughness of SiC ceramic by adding Cr2O3 and annealing process
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Improvement toughness of SiC ceramic by adding Cr2O3 and annealing process

机译:改进碳化硅陶瓷的韧性增加Cr2O3和退火过程

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In this research, the effect of different amounts of Cr2O3 (2.5, 5, 7.5, and 10 wt.%) and sintering temperature (1850, 1900, and 1950 degrees C) on the sinterability and mechanical properties of liquid-phase sintered SiC-matrix composites was studied. First, raw materials were ground for 3 h using a planetary mill whose rotational speed was 180 rpm. The process of pressing the samples was completed using uniaxial pressing with the applied pressure of 90 MPa. Finally, the samples were sintered under an argon atmosphere at various temperatures for 1.5 h. In the end, the best sintered sample was annealed at 2000 degrees C for 2 h. The phases, microstructure, and chemical composition of the samples were studied using X-ray diffraction analysis (XRD) and field emission scanning electron microscopy (FESEM), respectively. The results suggested that the composite that contained 5 wt.% Cr2O3 and that was sintered at 1900 degrees C exhibited the best properties. The relative density, microhardness, elastic modulus, flexural strength, indentation fracture resistance, and brittleness index were 97.45%, 27.50 GPa, 395 GPa, 549 MPa, 6.2 MPa m(1/2), and 282.58 x10(-6) m(-1) respectively. At 1850 degrees C and 1950 degrees C, the best mechanical properties were acquired for the samples containing 5 wt.% Cr2O3. According to microscopic images, the formation of elongated grains and the activation of crack deflection as well as crack bridging mechanisms were the most significant mechanisms enhancing the toughness of these composites. The results showed that the sintered sample at 1900 degrees C, containing 5% additive and annealed at 2000 degrees C for 2 h, reached the highest fracture toughness (6.92 MPa m(1/2)). The microscopic images showed that the matrix grains of the as-annealed samples were elongated. There were signs of transgranular fracture at the cross-section of the samples.
机译:在这个研究中,不同数量的影响Cr2O3(2.5、5、7.5和10 wt. %)和烧结温度(1850、1900和1950摄氏度)sinterability和力学性能液相烧结SiC-matrix复合材料研究。使用一个行星磨机的转速180 rpm。使用单轴压完成应用90 MPa的压力。在氩气氛下烧结各种温度为1.5 h。最后,最佳烧结样品退火在2000度C 2 h。阶段,微观结构,样品的化学成分进行了研究利用x射线衍射分析(XRD)和字段发射扫描电子显微镜(FESEM),分别。综合,包含5 wt. % Cr2O3,烧结在1900摄氏度表现出最好的属性。弹性模量、抗弯强度、缩进断裂阻力,脆性指数97.45%,平均绩点27.50,395 GPa, 549 MPa, 6.2 MPa(1/2)和282.58 x10(6)分别m(1)。1850摄氏度和1950摄氏度,最好的力学性能获得了包含5 wt. % Cr2O3样本。微观图像,细长的形成谷物和裂纹偏转的激活和裂纹桥接机制是最提高韧性的重要机制这些复合材料。烧结样品在1900摄氏度,含有5%添加剂和退火2 h 2000摄氏度,达到最高的断裂韧性(6.92 MPa(1/2))。矩阵退火样品的颗粒细长的。裂缝截面的样品。

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