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Barkhausen Noise Emission in Hard-Milled Surfaces

机译:硬质铣削表面中的Barkhausen噪声排放

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This paper reports on an investigation treating a hard-milled surface as a surface undergoing severe plastic deformation at elevated temperatures. This surface exhibits remarkable magnetic anisotropy (expressed in term of Barkhausen noise). This paper also shows that Barkhausen noise emission in a hard-milled surface is a function of tool wear and the corresponding microstructure transformations initiated in the tool/machined surface interface. The paper discusses the specific character of Barkhausen noise bursts and the unusually high magnitude of Barkhausen noise pulses, especially at a low degree of tool wear. The main causes can be seen in specific structures and the corresponding domain configurations formed during rapid cooling following surface heating. Domains are not randomly but preferentially oriented in the direction of the cutting speed. Barkhausen noise signals (measured in two perpendicular directions such as cutting speed and feed direction) indicate that the mechanism of Bloch wall motion during cyclic magnetization in hard-milled surfaces differs from surfaces produced by grinding cycles or the raw surface after heat treatment.
机译:本文报道了将硬铣削表面视为在高温下会发生严重塑性变形的表面的调查报告。该表面表现出显着的磁各向异性(用巴克豪森噪声表示)。本文还表明,硬铣削表面中的巴克豪森噪声发射是刀具磨损的函数,并且是在刀具/机加工表面界面中引发相应的微观结构转变的。本文讨论了巴克豪森噪声爆发的特殊特征以及巴克豪森噪声脉冲异常高的幅度,特别是在工具磨损程度较低的情况下。在特定的结构和表面加热后的快速冷却过程中形成的相应区域配置中可以看出主要原因。区域不是随机的,而是优先沿切削速度的方向定向。 Barkhausen噪声信号(在两个垂直方向(例如切削速度和进给方向)上测量)表明,硬铣削表面中循环磁化过程中Bloch壁运动的机理不同于研磨周期产生的表面或热处理后的原始表面。

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