Mo、Al、Ti复合合金化高强因瓦合金的组织和性能

    Microstructure and Properties of High-strength Invar Alloy with Co-addition of Mo, Al and Ti Alloying

    • 摘要: 以Ti、Al、Mo复合合金化Fe-36Ni系高强因瓦合金为研究对象,研究时效处理及冷变形对微观组织、力学性能及线膨胀系数的影响。结果表明:合金基体为单相奥氏体,Mo元素固溶于基体,Ti、Al析出(Ti,Mo)C碳化物和Ni3(Al,Ti)γ'相。随着时效温度由660℃升高至820℃,合金强度先上升后下降。在700℃时效处理时,延长时效时间可进一步提高合金强度。结合实际生产条件,700℃保温12 h为最佳时效工艺。冷轧可显著强化合金,当变形量为85%时,屈服强度为1154 MPa、抗拉强度为1301 MPa。合金化引入的析出相提高了合金的线膨胀系数,经时效和冷轧处理后,线膨胀系数进一步增大。

       

      Abstract: The effects of aging treatment and cold rolling on microstructure, mechanical properties and coefficient of thermal expansion of high-strength Invar alloy added with Ti, Al and Mo were studied. The results show that the matrix is single-phase austenite. Mo dissolves in the matrix, and Ti and Al form (Ti, Mo)C carbides and Ni3(Al, Ti) γ' phase. With the aging temperature increasing from 660 ℃ to 820 ℃, the strength of investigated alloy increases first and then decreases. When aged at 700 ℃, the strength of the alloy can be further improved by prolonging the aging time. Considering practical production conditions, the optimal aging parameter is 700 ℃ and 12 hours. The strength of the investigated alloy increases obviously after cold rolling. When the deformation is 85%, the yield strength is 1154 MPa and the tensile strength is 1301 MPa. The addition of alloying elements raises the coefficient of thermal expansion, which increases further after aging treatment and cold rolling

       

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