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Optimization of Sintering Time and Holding Time for 3D Printing of Fe-Based Metallic Glasses

机译:Fe系金属眼镜3D打印烧结时间和保持时间的优化

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摘要

Fe-based metallic glasses are amorphous alloys with high strength, high hardness, and excellent corrosion resistance; however, the immaturity of processing methods has prevented their wide application in industrial production. Fe-based metallic glass parts were manufactured employing pneumatic injection additive manufacturing in this study. An evenly dispersed and stable Fe-based metallic glass powder slurry with a solids content of 50% was prepared firstly. Then the Fe-based metallic glass parts were printed. The printed parts were dried, debinded, and sintered for strengthening. The deformations of the printed parts and sintered parts relative to the original model were then analyzed by a 3D scanning reconstruction method. The slightly average bulging and sunken deformation of the printed parts and sintered parts confirmed the good printing accuracy of the pneumatic injection manufacture system. The effects of the sintering temperature and holding time on the properties of the sintered parts were studied. For a sintering temperature of 580 °C and holding time of 1 h, the surface quality of the sintered parts was better. The sintering of 3D-printed Fe-based metallic glass parts was preliminarily realized in this study, and the feasibility of preparing Fe-based metallic glass using pneumatic injection additive manufacture was verified.
机译:Fe系的金属眼镜是具有高强度,高硬度和优异耐腐蚀性的非晶合金;然而,加工方法的不含滋解已经阻止了它们广泛应用于工业生产。在本研究中,在使用气动注射添加剂制造中制造了Fe系的金属玻璃零件。首先制备具有固体含量为50%的均匀分散的和稳定的Fe基金属玻璃粉末。然后打印Fe系的金属玻璃部件。将印刷部件干燥,脱脂,并烧结以加强。然后通过3D扫描重建方法分析印刷部件和烧结部分相对于原始模型的变形。印刷零件和烧结部件的略微平均凸出和沉阳变形证实了气动注射制造系统的良好印刷精度。研究了烧结温度和保持时间对烧结部分性能的影响。对于580°C的烧结温度和1小时的保持时间,烧结部件的表面质量更好。在本研究中初步实现了3D印刷的Fe基金属玻璃零件的烧结,验证了使用气动注射添加剂制备使用气动注射添加剂制备的Fe系金属玻璃的可行性。

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