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A Magnetic Nondestructive Evaluation Method to Simultaneously Determine Chemical Composition and Heat Treatment Characteristics of Plain Carbon Steels: A Statistical Modeling Approach

机译:一种磁性非破坏性评价方法,以同时测定普通碳钢的化学成分和热处理特性:统计建模方法

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摘要

In this paper, combination of multiple regression method, logit model and discriminant analysis is proposed to extract underlying relationships among metallurgical characteristics of steel samples with different carbon contents subjected to various heat-treating cycles and magnetic properties. To investigate the ability of the proposed nondestructive evaluation (NDE) method to determine microstructural features of plain carbon steels, five groups of samples (with different carbon contents from 0.22 to 0.71 wt.%) were heat-treated in various cycles (annealing, normalizing (rapid and slow cooling in air), quenching and quench/tempering in the range of 200-600 degrees C). As a nondestructive characterization method, magnetic hysteresis loop technique was applied to all samples and four magnetic parameters including maximum flux density, coercivity, hysteresis loss and maximum differential permeability have been measured. The correlations among these parameters and phase fraction (for equilibrium heat-treated samples) and tempering temperature (for non-equilibrium heat-treated samples) as well as carbon content of all samples have been evaluated. The results show that the combination of statistical modeling and magnetic hysteresis loop technique enables the proposed NDE system to determine carbon content and phase fraction of equilibrium microstructures or tempering temperature of non-equilibrium ones of a plain carbon steel with unknown carbon content and heat treatment background.
机译:在本文中,提出了多元回归方法,Logit模型和判别分析的组合,以提取钢样品冶金特性的底层关系,其具有各种热处理循环和磁性的不同碳含量。为了探讨所提出的非破坏性评价(NDE)方法以确定普通碳钢的微观结构特征的能力,在各种循环中进行热处理五组样品(具有0.22至0.71重量%的不同碳含量)(退火,归一化(在空气中快速和缓慢冷却),淬火和淬火/回火在200-600℃)。作为非破坏性表征方法,将磁滞回路技术应用于所有样品和四个磁性参数,包括最大磁通密度,矫顽力,滞后损失和最大差异渗透率。已经评估了这些参数和相位级分(用于平衡热处理样品)和回火温度(用于非平衡热处理样品)以及所有样品的碳含量的相关性。结果表明,统计建模和磁滞回路技术的组合使得所提出的NDE系统能够确定具有未知碳含量和热处理背景的普通碳钢中非平衡的碳含量和相位的均衡微观结构或高温温度。

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