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Extended Application of Hardness Prediction System for Temper Bead Welding of A533B Steel to Various Low-Alloy Steels

机译:硬度预测系统在A533B钢到各种低合金钢的回火焊缝焊接中的扩展应用

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摘要

Temper bead welding is one of effective repair welding methods in case that post weld heat treatment is not easily applied. In order to evaluate the effectiveness of temper bead welding, hardness in HAZ becomes important factor. The neural network-based hardness prediction system of HAZ in temper bead welding for A533B low-alloy steel has been constructed by the authors in the previous study. However, for HAZ hardness prediction of other steels, it is necessary to obtain hardness database for each steel which is time-cost consuming, if the same method is used. The present study has been conducted to develop the generalized hardness prediction method applicable for other steels by utilizing the hardness data-base of A533B steel assuming that the hardness in HAZ of steels after tempering have a linear relationship with LMP (Larson-Miller parameter). On using the newly proposed extended method, only a few hardness data-base for the other steels is needed to obtain. Hardness distribution in HAZ of temper bead welding for other steels was calculated by using the extended hardness prediction system. The thermal cycles used for calculation were numerically obtained by a finite element method. The experimental results have shown that the predicted hardness is in good accordance with the measured one for steels without secondary hardening. It follows that the currently proposed extended method is effective for estimating the tempering effect during temper bead welding for the steels without secondary hardening.
机译:如果焊后热处理不容易进行,回火焊缝焊是有效的补焊方法之一。为了评估回火焊道焊接的有效性,HAZ中的硬度成为重要的因素。作者在先前的研究中已经构建了基于神经网络的A533B低合金钢回火焊缝热影响区硬度预测系统。但是,对于其他钢的HAZ硬度预测,如果使用相同的方法,则需要获得每种钢的硬度数据库,这是费时的。假设回火后钢中HAZ的硬度与LMP(Larson-Miller参数)呈线性关系,本研究通过利用A533B钢的硬度数据库来开发适用于其他钢的通用硬度预测方法。使用新提出的扩展方法时,仅需要几个其他钢的硬度数据库即可获得。通过使用扩展的硬度预测系统,可以计算出其他钢的回火焊缝的热影响区中的硬度分布。用于计算的热循环通过有限元法数值获得。实验结果表明,对于没有二次硬化的钢,预测的硬度与测得的硬度很好。由此可见,当前提出的扩展方法有效地估计了在不进行二次硬化的钢的回火焊道焊接期间的回火效果。

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