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A study on laser-processed grinding burn simulation and analysis based on Barkhausen noise measurement

机译:基于巴克豪森噪声测量的激光磨削烧伤模拟与分析研究

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摘要

Barkhausen noise (BN) is widely used as a quality control method for grinding burn detection in ferromagnetic materials such as the case-hardened steels used in gears. The study of grinding burns with BN equipment requires, however, a calibration reference sample with a known BN response. The demand for better calibration samples is well recognised. In this study, artificial grinding burns with laser processing were produced in case-hardened steel. The laser was selected because it is a surface-sensitive heating method and it accurately simulates the heat generation during grinding between the grinding wheel and work-piece. A test series was made by changing the laser input power and traverse rate to process the surface of a ground gear wheel sample. The laser-processing parameters were optimised experimentally. The BN measurement data was used in the modelling of selected quality measures: hardness and residual stress (RS). The BN measurement device provided some features from the time-domain analysis of the signal and a new feature, BN entropy, was also used. The modelling was done with Matlab? using linear regression. The results showed that laser processing had a clear effect on the BN features and residual stresses.
机译:巴克豪森噪声(BN)被广泛用作铁磁性材料(例如齿轮中使用的表面硬化钢)中磨削燃烧检测的质量控制方法。但是,用BN设备研究磨削烧伤需要具有已知BN响应的校准参考样品。人们对更好的校准样品的需求已得到公认。在这项研究中,在表面硬化钢中进行了激光加工的人工磨削烧伤。选择激光是因为它是一种表面敏感的加热方法,并且可以精确地模拟砂轮和工件之间在研磨过程中产生的热量。通过改变激光输入功率和横移速率来处理磨削齿轮样品的表面,进行了一系列测试。实验中优化了激光加工参数。 BN测量数据用于所选质量度量的建模:硬度和残余应力(RS)。 BN测量设备从信号的时域分析中提供了一些功能,并且还使用了新功能BN熵。建模是用Matlab完成的吗?使用线性回归。结果表明,激光加工对BN特征和残余应力有明显的影响。

著录项

  • 来源
    《Insight》 |2010年第6期|P.293-297|共5页
  • 作者单位

    University of Oulu, Control Engineering Laboratory, PO Box 4300, FIN-90014, Oulu, Finland;

    rnUniversity of Oulu, Control Engineering Laboratory, PO Box 4300, FIN-90014, Oulu, Finland;

    rnTampere University of Technology, Department of Materials Science, PO Box 589, FIN-33101, Tampere, Finland;

    rnTampere University of Technology, Department of Materials Science, PO Box 589, FIN-33101, Tampere, Finland;

    rnTampere University of Technology, Department of Materials Science, PO Box 589, FIN-33101, Tampere, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:38:21

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