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首页> 外文期刊>Metallurgical and Materials Transactions B >Marangoni Convection during Free Electron Laser Nitriding of Titanium
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Marangoni Convection during Free Electron Laser Nitriding of Titanium

机译:钛的自由电子激光渗氮过程中的Marangoni对流

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摘要

Pure titanium was treated by free electron laser (FEL) radiation in a nitrogen atmosphere. As a result, nitrogen diffusion occurs and a TiN coating was synthesized. Local gradients of interfacial tension due to the local heating lead to a Marangoni convection, which determines the track properties. Because of the experimental inaccessibility of time-dependent occurrences, finite element calculations were performed, to determine the physical processes such as heat transfer, melt flow, and mass transport. In order to calculate the surface deformation of the gas-liquid interface, the level set approach was used. The equations were modified and coupled with heat-transfer and diffusion equations. The process was characterized by dimensionless numbers such as the Reynolds, Peclet, and capillary numbers, to obtain more information about the acting forces and the coating development. Moreover, the nitrogen distribution was calculated using the corresponding transport equation. The simulations were compared with cross-sectional micrographs of the treated titanium sheets and checked for their validity. Finally, the process presented is discussed and compared with similar laser treatments.
机译:在氮气气氛中,通过自由电子激光(FEL)辐射处理纯钛。结果,发生了氮扩散并且合成了TiN涂层。由于局部加热而引起的界面张力的局部梯度导致Marangoni对流,这决定了轨道的特性。由于时间依赖性事件的实验不可访问性,因此进行了有限元计算,以确定物理过程,例如传热,熔体流动和传质。为了计算气液界面的表面变形,使用了液位设置方法。对方程进行了修改,并与传热和扩散方程耦合。该过程的特征在于无量纲的数,例如雷诺数,佩克利数和毛细管数,以获取有关作用力和涂层发展的更多信息。此外,使用相应的迁移方程计算氮分布。将模拟与处理过的钛片的横截面显微照片进行比较,并检查其有效性。最后,对提出的过程进行了讨论,并与类似的激光处理进行了比较。

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  • 来源
    《Metallurgical and Materials Transactions B》 |2009年第4期|497-507|共11页
  • 作者单位

    Universität Göttingen II. Physikalisches Institut 37077 Göttingen Germany;

    Universität Göttingen II. Physikalisches Institut 37077 Göttingen Germany;

    Institut für Numerische und Angewandte Mathematik 37083 Göttingen Germany;

    Thomas Jefferson National Accelerator Facility Free Electron Laser Group Newport News VA 23606 USA;

    TU Ilmenau Institut für Werkstofftechnik FG Werkstoffe der Elektrotechnik 98684 Ilmenau Germany;

    TU Ilmenau Institut für Werkstofftechnik FG Werkstoffe der Elektrotechnik 98684 Ilmenau Germany;

    TU Ilmenau Institut für Werkstofftechnik FG Werkstoffe der Elektrotechnik 98684 Ilmenau Germany;

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