金属液滴沉积增材制造电力配件的工艺研究

Haihua Wu, Guangxi Zhao, Zhengying Wei
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引用次数: 0

摘要

金属液滴沉积是一种增材制造(3D打印)技术,通过液滴沉积制造近净零件,具有成本低、效率高的优点。针对电力配件库存大、采购成本高、制造效率低、运输成本高等问题,提出了一种解决方案。采用增材制造技术——金属液滴沉积技术,在电力施工现场制造电力配件。介绍了典型薄壁样品(基于增材制造原理优化的结构)和电力配件球头环的制造工艺。针对球型和球插座型电动配件整体增材制造的特点,研制了一种新型易拆卸的成型支撑材料(陶瓷和石膏混合UV固化树脂)。在这里,这种支撑材料被用来制造嵌套的整体工件。对试件的尺寸精度和显微组织进行了分析。成形工件的高度和宽度误差在5%以内。未观察到明显的重叠痕迹(如重叠线和裂纹),内部组织为等轴晶。该组分的平均密度为99.51%,比浇注原料的平均密度高13.39%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Additive Manufacturing Process of Electric Power Fittings Fabricated by Metal Droplet Deposition
Metal droplet deposition is a kind of additive manufacturing (3D Printing) technique that fabricates near-net part through droplets deposition with lower cost and higher efficiency. This paper proposed a solution to problems of electric power fittings that large inventories, high procurement costs, low manufacturing efficiency and transportation cost. Using additive Manufacturing technique - metal droplet deposition, electric power fittings fabricated on power construction site. This paper describes the manufacturing process of typical thin-walled samples (the structure optimized based on additive manufacturing principle) and ball head rings of electric power fittings. Aiming at the integral AM forming for ball and ball socket electric power fitting workpiece, a novel easy removal forming support material (ceramics and gypsum mixed with UV cured resin) have been developed. Here this support material was used to fabricate nested integral workpieces. Dimensional accuracy and microstructure of the test pieces were analyzed. The error of the height and width of the forming workpiece is within 5%. No obvious overlap trace (such as overlap line and cracks) observed, and the internal microstructure is equiaxial crystal. The average density of the component is 99.51%, which measured by drainage method and 13.39% higher than the cast raw material.
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