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Research Progress of Arc Additive Manufacture Technology

机译:弧添加制造技术的研究进展

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摘要

Additive manufacturing technology is a special processing technology that has developed rapidly in the past 30 years. The materials used are divided into powder and wire. Additive manufacturing technology using wire as the material has the advantages of high deposition rate, uniform composition, and high density. It has received increasingly more attention, especially for the high efficiency and rapid prototyping of large-size and complex-shaped components. Wire arc additive manufacturing has its unique advantages. The concept, connotation, and development history of arc additive manufacturing technology in foreign countries are reviewed, and the current research status of arc-based metal additive manufacturing technology is reviewed from the principles, development history, process, and practical application of arc additive manufacturing technology. It focuses on the forming system, forming material, residual stress and pores, and other defect controls of the technology, as well as the current methods of mechanical properties and process quality improvement, and the development prospects of arc additive manufacturing technology are prospected. The results show that the related research work of wire arc additive manufacturing technology is still mainly focused on the experimental research stage and has yet not gone deep into the exploration of the forming mechanism. The research work in this field should be more in-depth and systematic from the physical process of forming the molten pool system from the perspectives of stability, the organization evolution law, and performance optimization. We strive to carry out wire arc additive forming technology and theoretical research to promote the application of this technology in modern manufacturing.
机译:添加剂制造技术是一种特殊的加工技术,在过去的30年里迅速发展。使用的材料分为粉末和电线。添加剂制造技术随着材料的优点,沉积速率高,组成均匀,密度高。它受到越来越多的关注,特别是对于大尺寸和复杂的部件的高效率和快速原型设计。电线弧添加剂制造具有独特的优势。综述了外国电弧添加剂制造技术的概念,内涵和发展史,并从弧形添加剂制造的原理,开发历史,过程和实际应用中审查了基于弧形金属添加剂制造技术的当前研究现状技术。它侧重于成型系统,形成材料,残余应力和毛孔,以及该技术的其他缺陷控制,以及目前的机械性能和工艺质量改进方法,并展望了弧度添加剂制造技术的发展前景。结果表明,电弧添加剂制造技术的相关研究工作仍然主要集中在实验研究阶段,尚未深入了解成型机制的探索。从稳定性,组织演化法和性能优化的角度来看,该领域的研究工作应更深入地深入地,从形成熔池系统的物理过程。我们努力进行电弧添加剂形成技术和理论研究,以促进该技术在现代制造中的应用。

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