首页> 外文期刊>Journal of Materials Processing Technology >Analysis of processing parameters and characteristics of selective laser melted high strength Al-Cu-Mg alloys: From single tracks to cubic samples
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Analysis of processing parameters and characteristics of selective laser melted high strength Al-Cu-Mg alloys: From single tracks to cubic samples

机译:选择性激光熔化高强度Al-Cu-Mg合金的处理参数和特性分析:从单轨到立方样本

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摘要

The ever-increasing demands for lightweight alloys parts with complex shapes In the aerospace industries lead the development of selective laser melting (SLM) technology. The effect of changing scanning speed on the formation of single track, as well as the overlapping rate to form multi tracks during SLM processed (SLMed) Al-Cu-Mg alloy was investigated. A processing map for SLMed single track of Al-Cu-Mg alloys was developed. Under different processing parameters, the single track can be characterized as unstable, stable with cracks and stable without cracks. For geometrical characteristic of melt pool of single track, the width and remelted depth are positively correlated with energy input, whereas the height and the contact angle are to the contrary. As for multi tracks, four typical morphologies have been identified, and a processing map was established to select the optimum processing parameters for the SLMed parts without defects. Finally, high density cubic samples (99.91%) without imperfections and microcracks were obtained using optimum processing parameters. In addition, the relationship between microstructure and hardness was discussed. The results provide an important experimental guidance for obtaining high-strength Al-Cu-Mg alloys dense parts with good performance.
机译:在航空航天行业中具有复杂形状的轻质合金零件的不断增长的需求引发了选择性激光熔化(SLM)技术的发展。研究了改变扫描速度对单轨道的形成的影响,以及在SLM加工(SLM)Al-Cu-Mg合金中形成多轨的重叠速率。开发了用于SLMED单轨道的Al-Cu-Mg合金的处理图。在不同的加工参数下,单轨道可以表征为不稳定,稳定,裂缝和稳定而无裂缝。对于单轨道的熔体池的几何特性,宽度和重熔深度与能量输入呈正相关,而相反的高度和接触角是相反的。至于多轨,已经识别了四种典型的形态,并建立了处理图以选择没有缺陷的SLMED部件的最佳处理参数。最后,使用最佳加工参数获得高密度立方样本(99.91%)而不进行缺陷和微裂纹。另外,讨论了微观结构与硬度之间的关系。结果提供了获得具有良好性能的高强度Al-Cu-Mg合金的重要实验指导。

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