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Combined Damage Index to Detect Plastic Deformation in Metals Using Acoustic Emission and Nonlinear Ultrasonics

机译:结合损伤指数利用声发射和非线性超声检测金属中的塑性变形

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摘要

Understanding the amount of degradation using nondestructive evaluation (NDE) methods provides an effective way of determining the fitness to service and the residual life of structural components. Due to uncertainties introduced by the single NDE method, a combined damage index using multi-sensor data increases the reliability of damage assessment. In this paper, the outputs of three NDE methods including acoustic emission (AE), linear ultrasonics (LUT), and nonlinear ultrasonics (NLUT) are merged to identify the amount of plastic deformation in aluminum 1100. The sensitivities of individual and combined methods to microstructural changes are evaluated. The coupon samples are loaded up to different strain levels and then unloaded. AE data is recorded in real time and ultrasonic data is recorded from the unloaded samples. The major features combined in the damage index are cumulative AE absolute energy and nonlinear coefficient. The microstructural state is verified with microscopic analysis and hardness testing. The developed damage index can nondestructively assess the amount of plastic deformation with higher reliability.
机译:使用非破坏性评估(NDE)方法了解退化的程度提供了一种确定服务适用性和结构部件剩余寿命的有效方法。由于单次NDE方法引入的不确定性,使用多传感器数据的综合损伤指数可提高损伤评估的可靠性。在本文中,将三种NDE方法(包括声发射(AE),线性超声(LUT)和非线性超声(NLUT))的输出进行合并,以识别铝1100中的塑性变形量。单独和组合方法对灵敏度的敏感性评估微结构变化。试样样品被加载至不同的应变水平,然后被卸载。实时记录AE数据,并从卸载的样品中记录超声数据。损伤指数中的主要特征是累积AE绝对能量和非线性系数。通过微观分析和硬度测试来验证微观结构状态。所开发的损坏指数可以以更高的可靠性非破坏性地评估塑性变形的量。

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