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Microstructure and elevated temperature mechanical properties of IN718 alloy fabricated by laser metal deposition

机译:激光金属沉积制备IN718合金的组织和高温力学性能

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摘要

The microstructure and mechanical properties of IN718 alloy fabricated by laser metal deposition were investigated. The continuous dendritic Laves generated by Nb/Mo microsegregation is dissolved by homogenization, the strengthening phase gamma '' with dimension about 30 nm precipitates during full heat treatment. The ambient temperature tensile strength of laser metal deposited (LMDed) 1N718 alloy is enhanced by heat treatment, and the elevated temperature mechanical properties vary with heat treatment temperature and forming direction. Laves dissolution and complete/partial recrystallization depend on heat treatment, stress release and Nb/Mo concentration gradient. The anisotropy of elevated temperature mechanical properties of LMDed IN718 alloy is caused by the combined effect of directional grains size, higher relative content of texture, superior intergranular strength and residual Laves particles. The fracture mechanism of LMDed 1N718 alloy varies with heat treatment temperature. The LMDed IN718 alloy with full heat treatment exhibits superior elevated temperature mechanical properties at 650 degrees C along building direction. The elevated temperature tensile fracture surfaces consist of cleavage plane and/or dimples, the microvoid coalescence (MVC) occurs in the alloy with full heat treatment, the intergranular (IG) fracture and cleavage plane or quasicleavage (QC) exist in the alloys with 980STA and double ageing.
机译:研究了通过激光金属沉积制备的IN718合金的显微组织和力学性能。 Nb / Mo微偏析产生的连续枝状Laves通过均质化而溶解,在完全热处理期间,析出了尺寸约为30 nm的强化相γ'。激光金属沉积(LMDed)1N718合金的环境温度抗拉强度可通过热处理提高,并且高温机械性能会随热处理温度和成形方向而变化。 Laves溶解和完全/部分再结晶取决于热处理,应力释放和Nb / Mo浓度梯度。 LMDed IN718合金高温力学性能的各向异性是由定向晶粒尺寸,较高的织构相对含量,优异的晶间强度和残余Laves颗粒共同作用引起的。 LMDed 1N718合金的断裂机理随热处理温度而变化。经过全面热处理的LMDed IN718合金在650摄氏度下沿建筑方向显示出卓越的高温机械性能。高温拉伸断裂面由劈裂面和/或凹坑组成,经过充分热处理的合金中发生微孔聚结(MVC),980STA合金中存在晶间(IG)断裂和劈裂面或准断裂(QC)和双重老化。

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