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Deposition behavior, microstructure and mechanical properties of an in-situ micro-forging assisted cold spray enabled additively manufacturedlnconel 718 alloy

机译:Inconel 718合金可原位微锻造辅助冷喷涂的沉积行为,微观结构和力学性能

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摘要

Cold spray is capable to additively manufacture oxide-free metallic parts in open air due to its low processing temperature. However, for metals with relatively high hardness such as Inconel 718 super alloy (IN718), it is still a big challenge to get dense deposits by using low-priced nitrogen gas. In this work, In-situ micro-forging (MF) was introduced to cold spray by mechanically mixing big-sized 410 stainless steel (410SS) particles into the IN718 powder so that the deposited IN718 layer can be hammered and plastically deformed by the MF particles during spraying and results in fully dense deposits. As 50 vol%MF particles were mixed into the IN718 powder, the porosity was decreased from 5.6% to 0.26%. Due to the low impact velocity, 41 OSS particles were not embedded into the IN718 deposits and the possible contamination was avoided. An oxide scale removal induced increment in deposition efficiency was detected for the first time. Due to the lower porosity and enhanced interparticle bonding, a great improvement in ultimate strength from 96 to 464 MPa was achieved by the in-situ MF effect. After heat treated at 1200 ℃ for 6 h, the sample fractured at a high strength of 1089 MPa and revealed a ductile fracture manner.
机译:由于其低的加工温度,冷喷涂能够在露天环境中以增材制造无氧化物的金属零件。但是,对于硬度较高的金属(例如Inconel 718超级合金(IN718)),通过使用低价氮气获得致密的沉积物仍然是一个很大的挑战。在这项工作中,通过将大尺寸的410不锈钢(410SS)颗粒机械混合到IN718粉末中,对原位微锻造(MF)进行了冷喷涂,以便可以通过MF锤击沉积的IN718层并使其发生塑性变形在喷涂过程中会产生颗粒,导致沉积物完全致密。当将50vol%MF颗粒混合到IN718粉末中时,孔隙率从5.6%降低到0.26%。由于较低的冲击速度,没有将41个OSS颗粒嵌入IN718沉积物中,从而避免了可能的污染。首次检测到氧化皮去除引起的沉积效率增加。由于较低的孔隙率和增强的颗粒间键合,通过原位MF效应可将极限强度从96 MPa大大提高到464 MPa。 1200℃热处理6 h后,试样以1089 MPa的高强度断裂,呈现延性断裂方式。

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