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作 者:张志强 勾青泽 刘博 张天刚 路学成 徐连勇[2] ZHANG Zhiqiang;GOU Qingze;LIU Bo;ZHANG Tiangang;LU Xuecheng;XU Lianyong(Aeronautical Engineering Institute,Civil Aviation University of China,Tianjin 300300,China;School of Materials Science and Engineering,Tianjin University,Tianjin 300350,China)
机构地区:[1]中国民航大学航空工程学院,天津300300 [2]天津大学材料科学与工程学院,天津300350
出 处:《中国表面工程》2023年第6期195-204,共10页China Surface Engineering
基 金:天津市自然科学基金(22JCYBJC01280);国家自然科学基金(51905536);航空科学基金(2020Z049067002);天津市教委科研计划(2020KJ020)资助项目。
摘 要:基于电磁动力学、流体力学及热力学等理论以及高速摄像与电信号采集原位测试手段,考虑等离子体中的金属蒸汽行为建立电弧熔滴一体化多物理场耦合仿真模型,研究双相不锈钢脉冲电弧等离子体的传热传质行为。结果表明,电弧等离子体温度峰值分布在熔滴轴线两侧并与电流值呈正相关,在熔滴缩颈至过渡阶段,基板上表面由电弧等离子体的非对称性影响造成温度分布不均匀;电弧等离子体的流场分布结果与温度场类似,但不同时刻速度峰值除与电流值相关,还与熔滴的过渡状态有关,随着熔滴过渡进行,电弧等离子体的高温区和高速区皆向基板压缩;在熔滴缩颈之前,铁蒸汽随着电流增大逐渐向轴线压缩,在熔滴下方质量分数可以达到100%;在熔滴缩颈之后,熔滴上下的高浓度铁蒸汽会增大等离子体的电导率,进而促进熔滴过渡。Duplex stainless steels contain nearly equal proportions of ferrite(δ) and austenite(γ).Its unique organizational characteristics enable it to combine the good plastic toughness and uniform corrosion resistance of austenitic stainless steel with the high strength and stress corrosion resistance of ferritic stainless steel.Consequently,it is widely used in marine engineering,petrochemical,and other important energy fields.Oil and gas pipelines are the most reliable and cost-effective means for safely transporting energy over long distances.To extend the service life of duplex stainless-steel oil and gas pipelines,arc additive remanufacturing has been developed based on overlay welding technology with special advantages such as high efficiency and low cost,and thus has broader application prospects.Hence,it is necessary to have the capability to effectively control the heat and mass transfer characteristics of the arc plasma and to elucidate the interaction mechanisms between the arc plasma and droplets.These factors have significant effects on the stability,forming quality,and microstructure of the arc additive repair process of duplex stainless steel.However,the high enthalpy,strong arc light characteristics,and non-equilibrium physicochemical reactions of arc plasma impede the quantitative analysis of the heat and mass transfer mechanisms of arc plasma via in situ testing methods.A multiphysics coupling simulation model of arc-droplet integration was established in this study.The model is based on the theories of electromagnetism,fluid dynamics,thermodynamics,and in situ experiments using a high-speed camera and electrical signal acquisition,while considering the behavior of metal vapor in plasma.The Eulerian multiphase flow model was used to improve the computational convergence of the two-phase mixing region of the arc plasma and metallic droplets.The physical fields of the gas and metal were solved separately using two sets of governing equations,and a species transport model was used to calculate the distr
分 类 号:TG141[一般工业技术—材料科学与工程] TG174[金属学及工艺—金属材料]
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