激光直接沉积成形Ni3Al合金的微观组织及热处理研究

    Research on Microstructure and Heat Treatment of Ni3Al Alloy Formed by Laser Direct Deposition

    • 摘要: 研究了激光直接沉积成形高硼Ni3Al合金的微观组织及热处理对合金的影响。结果表明,激光沉积Ni3Al合金组织主要由γ+γ'共晶相、γ'相和硼化物组成。固溶处理时,形状不规则的γ'相和硼化物发生固溶,但随着固溶温度的升高,合金组织中会有β-NiAl相析出;时效过程中,γ'相和硼化物会从基体相中重新析出,新生γ'相和硼化物更加细小、弥散。经过1080℃×4 h,AC+900℃×10 h,AC固溶时效处理后,合金不仅获得了细小弥散的γ'相和硼化物强化组织,且有效抑制了β-NiAl相析出,使得合金力学性能得到了很好的改善。

       

      Abstract: The microstructure of high-boron Ni3Al alloy formed by laser direct deposition and the effect of heat treatment on the alloy were studied.The results show that the microstructure of laser-deposited Ni3Al alloy is mainly composed of γ+γ'eutectic phases, γ' phase and boride. During the solution treatment, the irregularly shaped γ' phase and the boride are dissolved, but as the solution temperature increases, the β-NiAl phase is precipitated in the alloy structure. During the aging process, the γ'phase and the boride are precipitated.It is re-precipitate from the matrix phase, and the new γ'phase and boride are finer and more dispersed. After 1080 ℃×4 h, AC+900 ℃×10 h, AC solution aging treatment, the alloy not only obtains fine dispersed γ' phase and boride reinforced structure, but also effectively inhibits the β-NiAl phase precipitation, which improves the mechanical properties of the alloy.

       

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