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In-situ x-ray monitoring of damage accumulation in SiC/RBSN tensile specimens

机译:SiC / RBSN拉伸试样中损伤累积的原位X射线监测

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摘要

The room-temperature tensile testing of silicon carbide fiber reinforced reaction-bonded silicon nitride (SiC/RBSN) composite specimens was monitored by using in-situ x ray film radiography. Radiographic evaluation before, during, and after loading provided data on the effect of preexisting volume flaws (high density impurities, and local density variations) on the fracture behavior of composites. Results from (0)1, (0)3, (0)5, and (0)8 composite specimens, showed that x ray film radiography can monitor damage accumulations during tensile loading. Matrix cracking, fiber-matrix debonding, and fiber pullout were imaged throughout the tensile loading history of the specimens. Further, in-situ film radiography was found to be a helpful and practical technique for estimating interfacial shear strength between the SiC fiber and the RBSN matrix by the matrix crack spacing method. It is concluded that pretest, in-situ, and post-test radiography can provide for a greater understanding of ceramic matrix composite mechanical behavior, a verification of related experimental procedures, and a validation and development of related analytical models.
机译:碳化硅纤维增强反应结合氮化硅(SiC / RBSN)复合材料标本的室温拉伸试验是通过使用原位X射线胶片照相技术进行监测的。加载之前,期间和之后的射线照相评估提供了有关预先存在的体积缺陷(高密度杂质和局部密度变化)对复合材料断裂行为影响的数据。从(0)1,(0)3,(0)5和(0)8复合样品获得的结果表明,X射线胶片X射线照相可以监测拉伸载荷过程中的损伤累积。在样品的整个拉伸载荷过程中,对基体开裂,纤维基体剥离和纤维拉出进行了成像。此外,发现原位射线照相是一种有用的实用技术,可通过基体裂纹间距法估算SiC纤维与RBSN基体之间的界面剪切强度。结论是,测试前,现场和测试后的射线照相可以提供对陶瓷基复合材料机械性能的更深入的了解,相关实验程序的验证以及相关分析模型的验证和开发。

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