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Fracture of sintered silicon nitride in tension, creep, fatigue and creep-fatigue at high temperatures

机译:烧结氮化硅骨折在张力,蠕变,疲劳和蠕变 - 疲劳高温下

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In order to investigate the fracture process of a sintered silicon nitride at high temperatures, tensile, static creep, and fatigue tests were carried out at temperatures from room temperature up to 1573K, and the fracture surface of each specimen was carefully observed by means of optical and scanning electron microscopes. Fracture of the silicon nitride can be classified into two types from the viewpoint of cracking morphology. One is "single cracking type" where only a single crack brings aboutthe fracture. As the crack is initiated at the largest pre-existing defect, distribution and size of the defects greatly affect the fracture strength. The other is "multiple cracking type" where several cracks were observed on the fracture surface as well as on the specimen surface. As the cracks are initiated by viscous sliding of glassy phase along grain boundaries, pre-existing defects affect little the fracture strength. The latter type is apt to appear in the tests with lower tensile stress or lowerstress rate at higher temperature.
机译:为了研究高温下的烧结氮化硅的断裂过程,在室温高达1573k的温度下进行拉伸,静态蠕变和疲劳试验,通过光学仔细观察每个样本的断裂表面和扫描电子显微镜。从裂化形态的观点来看,氮化硅的骨折可以分为两种类型。一个是“单裂缝类型”,其中只有一个裂缝带来骨折。随着裂缝在最大的预先存在的缺陷中开始,缺陷的分布和大小大大影响了断裂强度。另一个是“多裂解型”,其中在断裂表面以及样品表面上观察到几个裂缝。由于裂缝通过沿着晶界玻璃相的粘性滑动引发,因此预先存在的缺陷影响裂缝强度少。后一型易于在较高温度下具有较低拉伸应力或较低的速率的测试中。

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