首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EVALUATION OF FATIGUE CRACK GROWTH CHARACTERISTICS ON STAINLESS STEEL SS 316 LN USING ACOUSTIC EMISSION TECHNIQUE
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EVALUATION OF FATIGUE CRACK GROWTH CHARACTERISTICS ON STAINLESS STEEL SS 316 LN USING ACOUSTIC EMISSION TECHNIQUE

机译:用声发射技术评估不锈钢SS 316 LN上的疲劳裂纹生长特性

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Results of online acoustic emission (AE) monitoring during fatigue crack growth rate (FCGR) experiments on a stainless steel SS 316 LN are presented in this paper. Two specimen geometries - viz., standard compact tension (C(T)) specimens as well as side-grooved C(T) specimens were considered for experiments at ambient temperature and at 600°C (873K). There is a good correspondence between crack length increment and the increase in AE cumulative count and cumulative energy during the experiments. The side grove introduced on the thickness direction of the test specimen constrains the plastic zone ahead of the crack tip, thereby enforcing plane strain conditions at the crack. Reduced AE activity at initial stages of crack growth was observed for side grooved samples. The transition to Stage-Ⅱ crack growth was observed using acoustic emission (AE) technique which otherwise was not visible from the fatigue crack growth plot. The work further attempts to correlate the AE parameters obtained during elevated temperature (873K) fatigue crack growth in stainless steel. For the purpose of acquiring AE signals outside the heated zone, a waveguide was used to transmit the acoustic waves from the specimen at high temperature. A correlation between crack advance and AE parameters was obtained from the elevated temperature tests.
机译:本文介绍了在不锈钢SS 316LN上的疲劳裂纹生长速率(FCGR)实验期间的在线声发射(AE)监测。两个标本几何形状 - 致ZiZ,标准紧凑张力(C(T))样本以及侧槽C(T)样本被认为是环境温度和600℃(873K)的实验。裂缝长度增量与实验期间AE累积计数和累积能量之间存在良好的对应关系。在试样的厚度方向上引入的侧面树叶将塑料区限制在裂缝尖端之前,从而在裂缝处强制平面应变条件。观察到侧沟样品的初始阶段的初始阶段的AE活性降低。使用声发射(AE)技术观察到到阶段-Ⅱ裂纹生长的过渡,否则从疲劳裂纹生长图中不可见。该工作进一步尝试将在不锈钢中升高(873K)疲劳裂纹生长期间获得的AE参数相关联。为了获取加热区外部的AE信号,使用波导将在高温下从样品中传递声波。从升高的温度试验中获得裂纹提前和AE参数之间的相关性。

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