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Grain refinement and orientation alternation of 10 mm 316L welds prepared by magnetic field assisted narrow gap laser-MIG hybrid welding

机译:通过磁场辅助窄间隙激光焊接制备的10mm 316L焊缝的晶粒细化和取向交替

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摘要

The effect of vertical magnetic field on grain size and orientation of ferrite (delta) and austenite (gamma) in welds of 10 mm 316L stainless steel were investigated during multilayer narrow gap laser-MIG hybrid welding. Results show that shapes of weld beads are changed by the ampere force from "T" to " V" and "boolean OR", which results from arc current and magnetic field. The optimized fusion boundary accelerates thermal diffusion and raises temperature gradient, which reduces duration of high temperature of delta-gamma solid phase transition and heat affected zone (HAZ). As a result, delta-islands and reduction of HAZ are observed. At the meantime, the growth direction of gamma grains are altered from preferred <100>-crystal direction to maximum temperature gradient with the increase of temperature gradient. Moreover, vermicular, continuous and reticular delta dendrites are changed to be skeletal, deflected and seaweed-like in the interface and columnar zone under the effect of magnetic field. The occurrence of this phenomenon is associated with the joint effect of ampere force, viscous resistance and hot metal liquid. And the fragment of primary delta dendrites leads to the refinement of gamma grains and increase of central zone.
机译:在多层窄间隙激光器混合焊接期间研究了垂直磁场对铁素体(δ)和奥氏体(γ)和奥氏体(Gamma)的晶粒尺寸和取向的影响。结果表明,焊珠的形状由安培力从“t”到“v”和“布尔或”,这是由电弧电流和磁场产生的。优化的融合边界加速了热扩散并提高了温度梯度,从而降低了δ-γ固相转变和热影响区(HAZ)的高温持续时间。结果,观察到Δ岛和危害的减少。与此同时,随着温度梯度的增加,从优选的<100> - 晶体方向改变γ晶粒的生长方向与最高温度梯度。此外,在磁场效果下,耳廓,连续和网状δ树突在界面和柱状区域中改变为骨骼,偏转和海藻状。这种现象的发生与安培力,粘性电阻和热金属液体的关节作用有关。初级δ树突的片段导致γ颗粒的细化和中央区的增加。

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