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Crack-healing Under Cyclic Stress and Improvement of the Resultant Fatigue Strength of Si_3N_4/SiC

机译:循环应力下的裂纹愈合及Si_3N_4 / SiC合成疲劳强度的提高

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摘要

Si_3N_4/SiC composite ceramics were hot-pressed in order to investigate their crack-healing behavior under cyclic stress and the resultant static fatigue strength. Semi-elliptical surface cracks of 100 μm in surface length were made on each specimen. The pre-cracked specimens were crack-healed under a cyclic bending stress of 210MPa in air at 900, 1000, 1100, and 1200℃. The bending strength and static fatigue strength of the crack-healed specimens were systematically investigated at each healing temperature. The specimens which has been crack-healed and static fatigue-tested at 900 and 1000℃ showed lower static fatigue strength than those tested at 1100 and 1200℃. Detailed investigation on the fracture surface of static fatigue-tested specimens showed that oxidation of the base material had strong effects on the static fatigue strength. It was found that when the specimens were pre-oxidized in air at 1300℃, the surface was covered by a protective oxide layer, leading to a significant improvement of static fatigue strength at 900 and 1000℃.
机译:热压Si_3N_4 / SiC复合陶瓷,以研究其在循环应力下的裂纹修复行为以及所得的静态疲劳强度。在每个样品上形成表面长度为100μm的半椭圆形表面裂纹。将预开裂的试样在900、1000、1100和1200℃的空气中于210MPa的循环弯曲应力下进行裂纹修复。在每个愈合温度下,系统地研究了裂纹愈合试样的弯曲强度和静态疲劳强度。在900和1000℃下进行裂纹愈合和静态疲劳测试的试样,其静态疲劳强度低于在1100和1200℃下测试的试样。对静态疲劳测试样品的断裂表面进行的详细研究表明,基材的氧化对静态疲劳强度具有很强的影响。结果发现,当样品在1300℃的空气中被预氧化时,其表面被保护性氧化层覆盖,从而显着提高了900和1000℃下的静态疲劳强度。

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