首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >In situ observation of interfacial fatigue crack growth in diffusion bonded joints of austenitic stainless steel
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In situ observation of interfacial fatigue crack growth in diffusion bonded joints of austenitic stainless steel

机译:奥氏体不锈钢扩散连接接头界面疲劳裂纹的原位观察。

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摘要

Micro-fatigue tests were performed on 316LSS vacuum diffusion bonded joints to investigate the interfacial fatigue crack growth behavior with discrete micro-voids located ahead of a pre-existing crack tip. In situ observation of the interfacial fatigue crack propagation and micro-voids evolution was carried out during the whole fatigue testing. SEM of the fracture surface was analyzed. The results showed that the interface failure mechanism of similar diffusion bonded joints is different from that of dissimilar materials joints. A brittle mode is observed in the main crack growth. And the ridge interface formed in diffusion bonded joints due to surface roughness can be a resistance to the crack growth. The location of the fatigue crack initiation and the crack propagation direction derived from SEM observation of the fracture surface of the specimen are in consistent with those obtained from the in situ observation by using the optical microscope.
机译:在316LSS真空扩散粘结接头上进行了微疲劳试验,以研究界面疲劳裂纹扩展行为,其中离散微孔位于预先存在的裂纹尖端之前。在整个疲劳测试过程中,对界面疲劳裂纹扩展和微孔演化进行了现场观察。分析断面的SEM。结果表明,相似的扩散粘结接头与异种材料接头的界面破坏机理不同。在主裂纹扩展中观察到脆性模式。并且由于表面粗糙度而在扩散结合接头中形成的脊界面可以抵抗裂纹扩展。疲劳裂纹萌生的位置和从试样的断面的SEM观察得出的裂纹扩展方向与使用光学显微镜原位观察得到的一致。

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