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Stress Measurement in Carbon Steel by Magnetic Barkhausen Noise Technique

机译:磁性巴格噪声技术碳钢中应力测量

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The Magnetic Barkhausen Noise (MBN) technique can evaluate the residual stresses in carbon steel and provide information about the relationship between residual stress level and MBN signal. This research work is based on the analysis of MBN signals obtained from carbon steel samples. ASTM A36 and A516 carbon steel were used to vary the residual stress by heat treatment process with 5 conditions: annealing, normalizing, quenching in oil, quenching in water and quenching in salt water. The microstructure and hardness of samples also were varied by these heat treatment processes. Twelve samples (including base materials) were cut to analyze the microstructure and hardness by the microscope and hardness testing machine. Reference materials from each condition were established to represent the MBN signals. The MBN technique was used to evaluate the residual stresses from heat treatment process on each reference material. Then each sample was prepared to tensile specimen. All specimens were applied static tension load below yield point. The load was increased at 25 N/mm~2 (MPa) in increment. Each tensile stress level was measurement by MBN technique at 0 and 90 degree of direction of tension axis. The experimental results found that the MBN signal amplitude changed as the condition of heat treatment changed and the relationship between tensile stress and MBN signal showed linear correlation. This research is useful to understand and guide for establishing the reference materials for residual stress measurement by MBN technique.
机译:磁性巴卡森噪声(MBN)技术可以评估碳钢中的残余应力,并提供关于残余应力水平与MBN信号之间的关系的信息。该研究工作基于对碳钢样品获得的MBN信号的分析。 ASTM A36和A516碳钢用于通过热处理过程改变残留应力,用5条件:退火,归一化,油中的淬火,在水中淬火并在盐水中淬火。这些热处理过程也改变了样品的微观结构和硬度。切割十二个样品(包括基材)以通过显微镜和硬度试验机分析微观结构和硬度。建立了来自每个条件的参考材料以表示MBN信号。 MBN技术用于评估在每个参考材料上的热处理过程中的残余应力。然后将每个样品制备成拉伸样品。所有标本均在屈服点施加静电张力负荷。载荷以25n / mm〜2(MPa)的增量增加。每个拉伸应力水平在0和90的张力轴方向上通过MBN技术进行测量。实验结果发现,随着热处理条件改变的MBN信号幅度改变,拉伸应力与MBN信号之间的关系显示线性相关性。该研究可用于理解和指导,用于通过MBN技术建立用于残余应力测量的参考材料。

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