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Modeling and Optimization of HAZ Characteristics for Submerged Arc Welded High Strength Pipeline Steel

机译:埋弧焊高强度管钢堆积特性的建模与优化

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摘要

Heat affected zone (HAZ) is the most critical part of welded pipe in oil and gas pipelines as HAZ shows more susceptibility toward embrittlement and weld cracking. It happens because microstructural changes occur due to high heat of welding. Heat input and preheating temperature together control the cooling time of weld which in turn determines the weld microstructure and its mechanical properties. Therefore, in the present study, effect of heat input as well as preheating temperature on the characteristics of the HAZ in submerged arc-welded high-strength low alloy (HSLA) pipeline steel was studied. Hardness and area of HAZ were observed and analyzed as HAZ characteristics. Heat input of the process was varied by changing the voltage, welding speed, wire feed rate and contact tube to work distance. Experiments were designed using central composite rotatable design (CCRD) approach, and using response surface methodology (RSM), process modeling was done. For the purpose of single- as well as multi-characteristic optimization, desirability approach was used. Relationship of heat input and critical cooling rate with HAZ characteristics and its microstructure was also revealed. Inclusion of preheating temperature led to significant improvement in the HAZ characteristics of the weld.
机译:热影响区域(HAZ)是油气管道中最关键的部分焊接管道,因为HAZ显示出更多易感性对脆化和焊接开裂。它发生了,因为由于焊接的高热量而发生微观结构变化。热输入和预热温度在一起控制焊缝的冷却时间,从而确定焊接微观结构及其机械性能。因此,在本研究中,研究了热输入的影响以及预热温度对浸没式弧焊高强度低合金(HSLA)管钢中的HAZ的特性。观察到HAZ的硬度和区域,并分析为HAZ特征。通过将电压,焊接速度,送丝速率和接触管改变为工作距离来改变该过程的热输入。使用中央复合可旋转设计(CCRD)方法设计实验,并使用响应面方法(RSM),完成工艺造型。出于单一以及多种特征优化,使用了期望方法。还揭示了热量输入和临界冷却速率的关系及其微观结构。包含预热温度导致焊缝的HAZ特性的显着改善。

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