首页> 外文会议>International Workshop on Designing of Interfacial Structures in Advanced Materials and Their Joints; 20060518-20; Osaka(JP) >Prediction of Laser Fusion Zone Profile of Lotus-type Porous Metals by 3D Heat Transfer Analysis
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Prediction of Laser Fusion Zone Profile of Lotus-type Porous Metals by 3D Heat Transfer Analysis

机译:通过3D传热分析预测莲花型多孔金属的激光熔合区轮廓

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摘要

Lotus-type porous metals, whose pores are aligned in one direction by unidirectional solidification, have a unique combination of properties. These are expected as revolutionary engineering materials with anisotropy of the properties. For the industrial use of the lotus-type porous metals, a reliable joining technology is required. We already reported the melting property of a few lotus-type porous metals by laser welding. These results indicated that these materials possessed anisotropy of melting property with the pore direction perpendicular and parallel to the specimen surface, especially remarkable anisotropy was obtained for the copper specimen owing to the difference of the laser energy absorption to the specimen surface. In this report, the three-dimensional heat transfer analyses, which take into account the difference of the laser energy absorption comparing with the anisotropy of thermal conductivity inherent to lotus-type porous metals, were performed by commercial code with user-defined subroutine. Predicted profile of weld fusion zone is in good agreement with the cross-sectional view obtained by experiments.
机译:莲花型多孔金属的孔通过单向凝固在一个方向上排列,具有独特的性能组合。这些有望成为具有各向异性的革命性工程材料。对于莲花型多孔金属的工业用途,需要可靠的连接技术。我们已经通过激光焊接报道了一些莲花型多孔金属的熔融特性。这些结果表明,这些材料在垂直于和平行于样品表面的孔方向上具有熔融性质的各向异性,由于激光能量吸收到样品表面的差异,使得铜样品获得了显着的各向异性。在此报告中,通过商业代码和用户定义的子例程进行了三维传热分析,该分析考虑了激光能量吸收与莲花型多孔金属固有的导热系数各向异性之间的差异。焊接熔合区的预测轮廓与通过实验获得的横截面图非常吻合。

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