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首页> 外文期刊>Procedia Manufacturing >Ultrasonic Vibration-Assisted Laser Engineered Net Shaping of Inconel 718 Parts: A Feasibility Study
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Ultrasonic Vibration-Assisted Laser Engineered Net Shaping of Inconel 718 Parts: A Feasibility Study

机译:Inconel 718零件的超声振动辅助激光工程网成形:可行性研究

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Laser engineered net shaping (LENS) has been applied as a key technology in direct manufacturing or repairing of high added- value metal parts. Recently, many investigations on LENS manufacturing of Inconel 718 parts have been conducted for potential applications of the aircraft turbine component manufacturing or repairing. However, fabrication defects such as pores, cavities, and heterogeneous microstructures always exist in the parts, affecting part qualities and mechanical properties. Therefore, it is crucial to LENS-manufacture Inconel 718 parts in a high-quality and high-efficiency way. Ultrasonic vibration has been introduced into various melting metal solidification processes for process improvements. However, there are no reported investigations on ultrasonic vibration-assisted (UV-A) LENS of Inconel 718 parts. In this paper, for the first time, UV-A LENS is proposed to reduce the fabrication defects of Inconel 718 parts. The experimental investigation is conducted to study the effects of ultrasonic vibration on microstructures and microhardness of the parts fabricated by UV-A LENS and LENS without ultrasonic vibration. The results showed that ultrasonic vibration could reduce the porosity, refine the microstructure with a smaller average grain size, and fragment the detrimental phase with a uniform distribution, thus enhancing the microhardness of the fabricated parts.
机译:激光工程网成形(LENS)已被用作直接制造或维修高附加值金属零件的关键技术。近来,已经对Inconel 718零件的LENS制造进行了许多研究,以用于飞机涡轮部件的制造或修理的潜在应用。但是,零件中始终存在制造缺陷,例如孔,腔和异质微结构,这会影响零件的质量和机械性能。因此,以高质量,高效率的方式制造LENS的Inconel 718零件至关重要。超声振动已被引入各种熔融金属凝固工艺中以改进工艺。但是,没有关于Inconel 718零件的超声振动辅助(UV-A)LENS的研究报告。本文首次提出了UV-A LENS来减少Inconel 718零件的制造缺陷。进行实验研究以研究超声振动对由UV-A LENS和无超声振动的LENS制造的零件的组织和显微硬度的影响。结果表明,超声振动可以降低孔隙率,以较小的平均晶粒尺寸细化组织,并以均匀的分布破碎有害相,从而提高了零件的显微硬度。

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