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Characterisation of the damaging micromechanisms in a pearlitic ductile cast iron and damage assessment by acoustic emission testing

机译:珠光体球墨铸铁中破坏性微力学的表征和声发射测试的损伤评估

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摘要

The damaging micromechanisms in a pearlitic (EN-GJS700-2) ductile cast iron (DCI) are investigated by means of scanning electron microscope (SEM) analysis and acoustic emission (AE) testing. Monotonic uniaxial tensile tests are performed on microtensile specimens under strain control. SEM analysis is applied under in situ conditions by means of a tensile holder. The multiple damaging micromechanisms are identified, and their evolution along with the mechanical response is characterised. The traditional AE features are found to be qualitatively correlated to the onset of the fracture damage over the elastic behaviour. The information entropy of the AEs evaluated according to both Shannon and Kullback-Leibler formulations is proven to be well correlated to the ongoing damage and the incipient failure. Tentative failure criteria are finally proposed. The assessment approach is found to be promising for structural health monitoring purposes.
机译:通过扫描电子显微镜(SEM)分析和声发射(AE)测试,研究了珠光体(EN-GJS700-2)球墨铸铁(DCI)中的破坏性微观机制。在应变控制下,对微拉伸试样进行单调单轴拉伸试验。 SEM分析是通过拉伸支架在原位条件下进行的。确定了多种破坏性的微观机制,并表征了它们的演化以及机械响应。发现传统的声发射特征与弹性行为上的断裂破坏的发生在质量上相关。事实证明,根据香农和库尔贝克-莱布利特公式评估的AE的信息熵与正在进行的破坏和初期破坏具有良好的相关性。最终提出了暂定故障标准。发现该评估方法对于结构健康监测目的是有前途的。

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