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Growth Morphologies and Primary Solidification Modes in a Dissimilar Weld between a Low-Alloy Steel and an Austenitic Stainless Steel

机译:低合金钢与奥氏体不锈钢之间不同焊接中的生长形态和初级凝固模式

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摘要

Dissimilar welds close to the fusion boundary exhibit a variety of solidification microstructures that strongly impact their service behavior. Investigations were therefore undertaken to clarify the origins of the morphological and microstructural evolutions encountered in a 18MND5/309L dissimilar joint produced by submerged arc welding, using a combination of microstructural characterizations, thermodynamic computations, and solidification modelling. An unexpected evolution was observed in the solidification mode, from primary austenite towards primary ferrite with increasing growth rate. Solidification of austenite at the fusion boundary was assigned to its epitaxial growth on the metastable austenitic structure of the base metal resulting from an incipient melting mechanism. The evolution of the solidification mode toward primary ferrite was explained based on computations of the solute built up between austenite cells followed using the so-called “interface response function model”. Analyzing macro- and microstructural characteristic lengths with the published solidification model and data enabled evaluation of local values of the solidification rate, thermal gradient, and cooling rate close to the fusion boundary, thus providing useful data for numerical modelling of the submerged arc-welding process.
机译:异种焊缝靠近熔合边界表现出多种凝固组织强烈影响他们的服务行为。因此调查开展了澄清通过埋弧焊产生的18MND5 / 309L相异材料接头遇到的形态和微结构演进的起源,使用微观结构的表征,热力学计算,和凝固模拟的组合。在凝固模式下观察意想不到的演变,从朝向主铁氧体主奥氏体随着生长速率。在融合边界奥氏体凝固被分配到它的外延生长上从初期熔化机构产生的基体金属的亚稳奥氏体结构。凝固模式朝向主铁氧体的演变是基于奥氏体小区之间建立的溶质的计算说明,接着使用所谓的“接口响应函数模型”。判断的宏观和微观结构的特征长度与已发表的凝固模型和数据使能凝固速率的局部值,热梯度的评价,和冷却速度接近熔融边界,从而为埋弧焊焊过程的数值模拟提供有用的数据。

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