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Analysis of Magnetic Anisotropy and Non-Homogeneity of S235 Ship Structure Steel after Plastic Straining by the Use of Barkhausen Noise

机译:Barkhausen噪声塑性紧张后S235船舶结构钢磁各向异性和非均匀性分析

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摘要

This study investigates the microstructure, residual stress state, and the corresponding magnetic anisotropy of the ship structure samples made of S235 steel after uniaxial tensile deformation. A non-destructive magnetic technique based on Barkhausen noise is employed for fast and reliable monitoring of samples exposed to the variable degrees of plastic straining. It was found that the progressively developed plastic straining of the matrix results in an alteration of the easy axis of magnetization, stress anisotropy (expressed in residual stresses state) as well as the corresponding Barkhausen noise emission. Moreover, remarkable non-homogeneity can be found within the plastically strained region, especially when the localized plastic straining takes place.
机译:本研究研究了单轴拉伸变形后由S235钢制成的船舶结构样品的微观结构,残余应力状态和相应的磁各向异性。基于Barkhausen噪声的非破坏性磁技术用于快速可靠地监测暴露于可变度塑性压力的样品。发现逐渐开发的基质的塑性紧张导致容易磁化轴的变化,应力各向异性(在残余应力状态下表达)以及相应的Barkhausen噪声发射。此外,在塑性应变区域内可以发现显着的非均匀性,特别是当发生局部塑性应变时。

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