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Monitoring of thermal damages upon grinding of hardened steel using Barkhausen noise analysis

机译:使用Barkhausen噪声分析在磨削硬化钢时监测热损坏

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摘要

Thermal damage restrict the capability of grinding in achieving the desired production rate; therefore, the present study focuses on the employment of a non-destructive Barkhausen noise (BN) technique in the assessment of thermal damages produced from grinding of hardened IS 2062 steel under dry (no lubrication) and wet (with lubrication) conditions. Optical microscopy along with microhardness measurement was utilized to reveal the microstructural and hardness alternation occurred in the ground and subsurface of sample. X- ray diffraction peak shift was measured and used for qualitative analysis of residual stress. Furthermore, surface topography was obtained by scanning electron microscope. The magnetic response from ground surface were measured in terms of Barkhausen noise (root mean square) and hysteresis loop (average permeability). The result shows very poor magnetic response from ground hardened steel due to higher carbon content. A non-linear variation is observed between peak shift and root mean square value of Barkhausen noise. However, average permeability derived from hysteresis loop shows good correlation with the peak shift with a correlation coefficient of approximately 0.8149.
机译:热损坏限制磨削能力实现所需的生产率;因此,本研究重点研究了在磨削的磨削中产生的热损坏的噪声(BN)技术的就业,是在干燥(无润滑)下的2062钢(无润滑)和湿(有润滑)条件下。使用光学显微镜以及微硬度测量来揭示在地面和样品的地下发生的微观结构和硬度交替。测量X射线衍射峰值偏移并用于残留应力的定性分析。此外,通过扫描电子显微镜获得表面形貌。根据Barkhausen噪声(均方根)和滞后回路(平均渗透率)来测量来自地面的磁响应。结果表明,由于碳含量较高,从地硬化钢的磁响应非常差。在Barkhausen噪声的峰值偏移和根均方值之间观察到非线性变化。然而,源自滞后环的平均渗透性显示出与具有约0.8149的相关系数的峰值偏移的良好相关性。

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