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EM Sensor System for Characterisation of Advanced High Strength Strip Steels

机译:EM传感器系统,用于表征先进的高强度条钢

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In order to obtain accurate quality control of steel products, it is desirable to be able to monitor the mechanical properties non-destructively. This study proposes using an electromagnetic (EM) sensor, suitable for use on strip samples, as a tool for non-destructive steel characterisation, in particular phase balance and grain size in dual phase (DP) steels and hence strength. It is known that the low frequency inductance measured using an EM sensor depends on the relative permeability of the sample and that the permeability is affected by microstructural features (i.e. phase fraction/distribution and, to a lesser extent, grain size are the important features in DP steel). EM sensors can be used to characterise austenite and ferrite fraction in hot strip mills (EMspec system) and for statistical correlations to mechanical properties (IMPOC and HACOM systems) in cold strip mills. In this paper an EM sensor system and a finite element based sensor - microstructure model have been used to characterize DP microstructures (using commercial DP600, DP800 and DP1000 grades and a heat treated DP600 grade) taking into account the effect of strip thickness on the signals. This paper also reports on the relationship between the ferrite fraction and tensile strength, which follows the expected relationship from the literature, and the magnetic permeability (determined from the EM sensor signal which is directly related to ferrite fraction and grain size) and tensile strength. The ability of the EM sensor to determine the tensile strength is therefore illustrated taking into account strip thickness and microstructure.
机译:为了获得钢制品的准确质量控制,希望能够不破坏性地监测机械性能。本研究提出使用电磁(EM)传感器,适用于条带样品,作为非破坏性钢表征的工具,特别是双相(DP)钢中的相平衡和晶粒尺寸。已知的是,使用EM传感器测量的低频电感取决于样品的相对磁导率和磁导率是通过显微结构特征(即相分数/分配,以及在较小程度上,晶粒尺寸是在重要的特征的影响DP钢)。 EM传感器可用于在热带轧机(EMSPEC系统)中表征奥氏体和铁氧体分数,并统计与冷轧带钢中的机械性能(IMPOC和HACOM系统)相关的统计相关性。在本文中,EM传感器系统和基于有限元的传感器 - 微结构模型用于表征DP微结构(使用商业DP600,DP800和DP1000等级以及热处理的DP600等级),考虑到条带厚度对信号的影响。本文还报告了铁氧体分数与拉伸强度之间的关系,其遵循文献的预期关系,以及由与铁氧体分数直接相关的EM传感器信号和晶粒尺寸的EM传感器信号测定)和抗拉强度。因此,将EM传感器确定拉伸强度的能力,以考虑条带厚度和微观结构。

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