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Acoustic Emission as a Tool of Fatigue Assessment

机译:声发射作为疲劳评估的工具

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A series of laboratory investigations concerned about fatigue assessment with acoustic emission method was presented. Fatigue aspects including cumulative fatigue damage, fatigue crack growth and creep-fatigue interaction were considered. As a basic approach, residual strength and acoustic emission characteristics of fatigue damaged materials were considered from the nominal stress-life (S-N) viewpoint. Acquired signal indicated that counts emission quantity can be a good measure of cumulated fatigue damage. In the fatigue crack growth approach, interrelationship between acoustic emission parameter and stress intensity factor was examined with different stress level and crack length. Experimental results were somewhat scattered since sensitive characteristics of acoustic emission method. However, their empirical relation indicated that counts rate correlated with fracture mechanics parameter. Finally, acoustic emission application was extended to the creep-fatigue interaction at elevated temperature. Emission response under each damage mode was compared and characterized. Based on these characteristics, creep-fatigue interaction was evaluated by use of acoustic emission parameter. Overall investigations concluded acoustic emission is very effective tool of fatigue assessment.
机译:提出了一系列关于用声发射法进行疲劳评估的一系列实验室调查。考虑了包括累积疲劳损伤,疲劳裂纹生长和蠕变 - 疲劳相互作用的疲劳方面。作为一种基本方法,从标称应力 - 寿命(S-N)观点考虑了疲劳损坏材料的剩余强度和声发射特性。所获取的信号表明,计数排放量可以是累积疲劳损坏的良好衡量标准。在疲劳裂纹的生长方法中,用不同的应力水平和裂缝长度检查声发射参数和应力强度因子之间的相互关系。实验结果由于声发射方法的敏感特性,因此略微散布。然而,它们的经验关系表明,计数率与裂缝力学参数相关。最后,声发射施用升高到升高温度下的蠕变疲劳相互作用。比较和表征在每个损坏模式下的发射响应。基于这些特性,通过使用声发射参数评估蠕变 - 疲劳相互作用。总体调查总结声排放是疲劳评估的非常有效的工具。

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