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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Experimental investigation on selective laser melting behaviour and processing windows of in situ reacted Al/Fe2O3 powder mixture
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Experimental investigation on selective laser melting behaviour and processing windows of in situ reacted Al/Fe2O3 powder mixture

机译:原位反应Al / Fe2O3粉末混合物的选择性激光熔化行为和加工窗口的实验研究。

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摘要

This study investigates the material behaviour and processing windows for selective laser melting (SLM), an additive manufacturing (AM) process, to directly fabricate net-shape Al metal matrix composite parts from Al/5wt.%Fe2O3, Al/10wt.%Fe2O3 and Al/15wt.%Fe2O3 powder mixtures. The processing windows of laser powers and scanning speeds are plotted in relation to the resulting surface roughness, density and hardness of SLM specimens. It is found that the in situ reaction of Al/Fe2O3 powder mixtures significantly influences the SLM processability and manipulates the range of applicable processing parameters for the direct production of particle reinforced Al matrix parts. The in situ reaction (affected by the proportion of Fe2O3 additive to the powder mixture) releases extra heat and collaborates with laser energy which can modify the visual surface and microstructural appearance or alter material characteristics in SLM processing windows. Higher Fe2O3 content leads to an increase in hardness, but a decrease in density of the SLM samples may occur.
机译:这项研究调查了选择性激光熔融(SLM),增材制造(AM)工艺的材料行为和加工窗口,以直接从Al / 5wt。%Fe2O3,Al / 10wt。%Fe2O3制备网状Al金属基复合材料零件和Al / 15wt。%Fe2O3粉末混合物。绘制了激光功率和扫描速度的处理窗口,并将它们与SLM样品的表面粗糙度,密度和硬度相关。发现Al / Fe2O3粉末混合物的原位反应显着影响了SLM的可加工性,并控制了直接生产颗粒增强Al基零件的适用加工参数范围。原位反应(受粉末混合物中Fe2O3添加剂的比例影响)释放出更多的热量,并与激光能量协同作用,可以改变视觉表面和微观结构外观或改变SLM处理窗口中的材料特性。较高的Fe2O3含量会导致硬度增加,但SLM样品的密度可能会降低。

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