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首页> 外文期刊>International journal of engineering research in Africa >Microstructural and Mechanical Characterization of the Yb: YAG Laser Welding of High-Pressure Die-Casting Mg-Al-Mn Magnesium Alloy
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Microstructural and Mechanical Characterization of the Yb: YAG Laser Welding of High-Pressure Die-Casting Mg-Al-Mn Magnesium Alloy

机译:Yb的微观结构和力学表征:高压压铸Mg-Al-Mn镁合金的YAG激光焊接

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摘要

In this work, the Yb:YAG laser beam welding of the magnesium alloy AM60 was studied. A laser power of 2 kW and a welding speed of 3.5 m / min give a different welding quality than that obtained by CO2 laser with the same parameters. The metallurgical characterization, by optical microscopy, showed the formation of four distinct zones : base metal (BM), heat affected zone (HAZ), the partially fusion zone (PFZ) and the fusion zone (FZ), due to the thermal effect produced by the laser welding thermal cycle. Their dimensions are quantified. The microstructural examination using scanning electron microscopy showed the presence of fine dendritic structure in the FZ although the use of electron dispersive spectroscopy analysis confirm that an eutectic Mg17Al12 phase are surrounded by alpha-Mg solid solution in the HAZ. Electron backscattered diffraction technique revealed an important grain refinement in FZ and considerable twining phenomena in HAZ, but no texture. X-ray diffraction technique has been used, full width at half maximum of diffraction peaks is measured; it also confirmed the grain refinement in FZ in comparison to BM and HAZ. Both microhardness and tensile proprieties of the complete weld joint are similar to those of the BM.
机译:在这项工作中,研究了镁合金AM60的YB:YAG激光束焊接。激光功率为2千瓦,焊接速度为3.5米/分钟,提供与具有相同参数的CO2激光器获得的不同焊接质量。通过光学显微镜表表征冶金表征,表明,由于产生的热效应,形成了四种不同的区域:基础金属(BM),热影响区(HAZ),部分融合区(PFZ)和融合区(FZ)通过激光焊接热循环。它们的尺寸量化。使用扫描电子显微镜的微观结构检查显示FZ中的细树突结构,尽管使用电子色散光谱分析确认共晶Mg17Al12相被HAZ中的α-Mg固体溶液包围。电子背散射衍射技术揭示了FZ中的重要晶粒细化,危险中的相当大的缠绕现象,但没有质地。已经使用了X射线衍射技术,测量了衍射峰的半部最大宽度的全宽;与BM和HAZ相比,它还确认了FZ中的晶粒细化。完整焊接接头的微硬度和拉伸专用均类似于BM的微硬度和抗拉塞型。

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