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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Microstructure, Composition, and Impact Toughness Across the Fusion Line of High-Strength Bainitic Steel Weldments
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Microstructure, Composition, and Impact Toughness Across the Fusion Line of High-Strength Bainitic Steel Weldments

机译:高强度贝氏体钢焊融合线上的微观结构,组成和冲击韧性

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This paper analyzed the evolution of microstructure, composition, and impact toughness across the fusion line of high-strength bainitic steel weldments with different heat inputs. The main purpose was to develop a convenient method to evaluate the HAZ toughness quickly. The compositions of HAZ were insensitive to higher contents of alloy elements (e.g., Ni, Mo) in the weld metal because their diffusion distance is very short into the HAZ. The weld metal contained predominantly acicular ferrite at any a heat input, whereas the main microstructures in the HAZ changed from lath martensite/bainite to upper bainite with the increasing heat input. The evolution of HAZ toughness in relation to microstructural changes can be revealed clearly combined with the impact load curve and fracture morphology, although the results of impact tests do not show an obvious change with heat input because the position of Charpy V notch contains the weld metal, HAZ as well as a part of base metal. As a result, based on the bead-on-plate welding tests, the welding parameter affecting the HAZ toughness can be evaluated rapidly.
机译:本文分析了在具有不同热输入的高强度贝氏体钢焊机中微观结构,组合物和冲击韧性的演化。主要目的是开发一种方便的方法,可以快速评估HAZ韧性。 HAZ的组合物对焊接金属中的合金元素(例如,Ni,Mo)的更高含量不敏感,因为它们的扩散距离非常短地进入HAZ。焊接金属在任何热量输入的任何热量输入中都包含针状铁氧体,而HAZ中的主要微观结构从Lath Martensite / Bainite改变了上贝氏体,随着热量的增加。由于撞击试验结果没有显示出热量输入的结果,因此可以明确结合微观结构变化与微观结构变化相关的Haz韧性的演变,因为夏比V缺口含有焊接金属的位置,因此撞击试验结果没有显示出明显的变化。 ,HAZ以及底座金属的一部分。结果,基于珠子板焊接试验,可以快速评估影响HAZ韧性的焊接参数。

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