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首页> 外文期刊>Journal of the European Ceramic Society >Effect of microstructure on the mechanical properties of liquid-phase-sintered silicon carbide at pre-creep temperatures
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Effect of microstructure on the mechanical properties of liquid-phase-sintered silicon carbide at pre-creep temperatures

机译:预蠕变温度下微观结构对液相烧结碳化硅力学性能的影响

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摘要

The effect of the microstructure on the mechanical properties of pressureless, liquid-phase-sintered (LPS) α-SiC ceramics above room-temperature was studied. LPS-SiC ceramics were fabricated with different microstructural features (grain size and morphology, and content of the intergranular phase), and their mechanical behaviour under contact stresses was evaluated by high temperature Hertzian testing (HTHT) from room temperature up to the creep temperature (1000 °C). The amount of intergranular phase was found to control the elasto-plastic properties of LPS-SiC at intermediate temperatures. Grain size and morphology had a significant influence only on toughness, since the crack bridging mechanism was enhanced by elongated grains, the more so the larger their size. Implications of these results for the design and fabrication of LPS-SiC ceramics with tailored contact-mechanical properties are discussed.
机译:研究了微结构对室温下无压液相烧结(LPS)α-SiC陶瓷力学性能的影响。 LPS-SiC陶瓷具有不同的微观结构特征(晶粒尺寸和形貌以及晶间相含量),并通过高温赫兹测试(HTHT)从室温到蠕变温度( 1000°C)。发现在中间温度下晶间相的数量可控制LPS-SiC的弹塑性。晶粒尺寸和形态仅对韧性有显着影响,因为拉长晶粒增强了裂纹桥接机理,所以晶粒尺寸越大越好。讨论了这些结果对具有定制的接触机械性能的LPS-SiC陶瓷的设计和制造的影响。

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