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Fracture modes and acoustic emission characteristics of hydrogen-assisted cracking in high-strength low-alloy steel weldment

机译:高强度低合金钢焊缝中氢辅助裂纹的断裂模式和声发射特性

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摘要

The aim of the present paper is to study the relationship between the fracture modes in hydrogen-assisted cracking (HAC) in microalloied steel and the emission of acoustic signals during the fracturing process. For this reason, a flux-cored arc weld (FCAW) was used in a high-strength low-alloy steel. The consumable used were the commercially available AWS E120T5-K4 and had a diameter of 1.6 mm. Two different shielding gases were used (CO2 and CO2+5% H2) to obtain complete phenomenon characterization. The implant test was applied with three levels of restriction stresses. An acoustic emission measurement system (AEMS) was coupled to the implant test apparatus. The output signal from the acoustic emission sensor was passed through an electronic amplifier and processed by a root mean square (RMS) voltage converter. Fracture surfaces were examined by scanning electron microscopy (SEM) and image analysis. Fracture modes were related with the intensity, the energy and the number of the peaks of the acoustic emission signal. The shielding gas CO2+5% H2 proved to be very useful in the experiments. Basically, three different fracture modes were identified in terms of fracture appearance: microvoid coalescence (MVC), intergranular (IG) and quasi-cleavage (QC). The results show that each mode of fracture presents a characteristic acoustic signal.
机译:本文的目的是研究微合金钢中氢辅助裂纹(HAC)的断裂模式与断裂过程中声信号的发射之间的关系。因此,在高强度低合金钢中使用了药芯焊丝电弧焊(FCAW)。所使用的消耗品为可商购的AWS E120T5-K4,直径为1.6毫米。使用两种不同的保护气体(CO2和CO2 + 5%H2)来获得完整的现象表征。在三种水平的限制应力下进行植入物测试。声发射测量系统(AEMS)耦合到植入物测试设备。来自声发射传感器的输出信号通过电子放大器,并由均方根(RMS)电压转换器进行处理。通过扫描电子显微镜(SEM)和图像分析检查断裂表面。断裂模式与声发射信号的强度,能量和峰值数量有关。事实证明,保护气体CO2 + 5%H2在实验中非常有用。基本上,根据断口的外观确定了三种不同的断口模式:微孔聚结(MVC),晶间(IG)和准裂解(QC)。结果表明,每种断裂模式均表现出特征声信号。

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