首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Strength and Fatigue of Silicon Nitride/ Silicon Nitride and Alumina/Alumina Joints
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Strength and Fatigue of Silicon Nitride/ Silicon Nitride and Alumina/Alumina Joints

机译:氮化硅/氮化硅和氧化铝/氧化铝接头的强度和疲劳

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摘要

To investigate the fatigue behavior of bonded ceramics, Si_3N_4/Si_3N_4 and Al_2O_3/ Al_2O_3 joint specimens were three-point-fatigue-tested under static and cyclic loading at temperatures ranging from 300 to 1 038 K in air. Fractographic observation was also carried out using SEM after the fatigue test. Restriction of the strain in the joining layer due to the difference in Young's modulus between ceramics and metals causes triaxial tension in the tension side of the joining layer, accelerating the formation of small cavities. Therefore the process of strength degradation owing to fatigue is controlled by the rate of either the cavity growth or the crack growth, depending on which one is dominant. At low temperatures, the fatigue process is mainly controlled by crack growth; on the other hand, formation of small cavity and its growth seem to be predominant factors in controlling the fatigue process at high temperatures. Therefore, the triaxial tensile stress component is a very important factor in evaluating the fatigue life of joints at high temperatures. However, a fairly good estimation of the fatigue life is obtained Using nominal bending stress in the present investigation. It is also found that the fatigue life can be estimated using the bending strength of joints.
机译:为了研究粘结陶瓷的疲劳行为,对Si_3N_4 / Si_3N_4和Al_2O_3 / Al_2O_3接头样品进行了三点疲劳试验,这些试验在空气和温度为300至1 038 K的静态和循环载荷下进行。疲劳试验后,还使用SEM进行了断口扫描观察。由于陶瓷和金属之间的杨氏模量的差异而导致的接合层中应变的限制在接合层的张力侧引起三轴张力,从而加速了小孔的形成。因此,由于疲劳而导致的强度降低的过程由空洞生长或裂纹生长的速率控制,取决于哪一个占主导。在低温下,疲劳过程主要受裂纹扩展的控制。另一方面,小孔的形成及其生长似乎是控制高温下疲劳过程的主要因素。因此,三轴拉伸应力分量是评估高温接头疲劳寿命的重要因素。但是,在本研究中使用标称弯曲应力可以获得相当不错的疲劳寿命估算。还发现可以使用接头的弯曲强度来估计疲劳寿命。

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