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Numerical and experimental analysis of microstructure evolution during arc welding in armor plate steels

机译:钢板钢板电弧焊过程中微观组织演变的数值和实验分析

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摘要

A modeling approach is presented for assessing microstructure evolution in the solid state after arc welding armor steel plates. Reliability of the proposed approach is appraised using the case study methodology; predictions of microstructure and hardness for as-welded samples of a specific alloy are compared with results of in-depth quantitative microstructure characterization and microhardness measurements. The experimental work was carried out on MIL A46100 armor steel plates welded with AWS E11018M covered electrodes. The modeling approach is implemented in a modular algorithm consisting of diverse tasks, each one of them based on methods described in full in literature. The original contribution of the present work consists the proposed hypothesis that at each point of the weldment the microstructure established at peak temperature during thermal cycles can be (i) assumed to be the same which corresponds to the local equilibrium condition as dictated by thermodynamics, when peak temperature is above AC{sub}1 temperature, or (ii) assumed to be the one corresponding to non-equilibrium martensite decomposition during annealing, when peak temperature is below AC{sub}1 temperature. The most important applications of the algorithm presented are debated.
机译:提出了一种建模方法,用于评估弧焊铠装钢板在固态下的微观组织演变。使用案例研究方法评估了所提出方法的可靠性;将特定合金焊接后样品的显微组织和硬度预测与深度定量显微组织表征和显微硬度测量结果进行了比较。实验工作是在焊接有AWS E11018M覆盖电极的MIL A46100铠装钢板上进行的。建模方法是在包含各种任务的模块化算法中实现的,每个任务都基于文献中全面描述的方法。本工作的原始贡献包括提出的假设,即在焊件的每个点上,在热循环过程中在峰值温度下建立的微观结构可以假设为(i)相同,这对应于热力学规定的局部平衡条件,当峰值温度高于AC {sub} 1温度,或(ii)假定为峰值温度低于AC {sub} 1温度时对应于退火过程中非平衡马氏体分解的温度。所提出的算法的最重要的应用正在辩论中。

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