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    冷轧压下率和时效处理对Fe-40.9Ni-4.1Al-1.9V-1.8W-0.82C合金组织和性能的影响

    Effects of Cold Rolling Reduction Rate and Aging Treatment on Microstructure and Properties of Fe-40.9Ni-4.1Al-1.9V-1.8W-0.82C Alloy

    • 摘要: 通过真空感应熔炼、热锻和热轧制备Fe-40.9Ni-4.1Al-1.9V-1.8W-0.82C合金,并对合金依次进行固溶、不同压下率(10%,20%,30%)冷轧和时效处理(550 ℃×48 h),研究了冷轧压下率和时效处理对合金显微组织和性能的影响。结果表明:冷轧+时效处理后,试验合金的析出相主要为面心立方结构的(V,W)C复合碳化物,镍和铝元素均匀分布在基体中,未观察到明显NiAl金属间化合物。随着冷轧压下率增大,试验合金中出现平面滑移痕迹和类位错胞结构,碳化物发生粗化且数量增多,硬度提高但增速变缓。随着冷轧压下率增大,试验合金的屈服强度和抗拉强度提高,断后伸长率降低。经30%压下率冷轧和时效处理的试验合金的线膨胀系数相较于未进行冷轧处理的下降,但仍未能满足应用需求(400 ℃时小于9.0×10−6 K−1)。

       

      Abstract: The Fe-40.9Ni-4.1Al-1.9V-1.8W-0.82C alloy was fabricated by vacuum induction melting, hot forging and hot rolling. The alloy was successively subjected to solution, cold rolling with different reduction rates (10%, 20%, 30%) and aging treatment (550 ℃×48 h). The effects of cold rolling reduction rate and aging treatment on microstructure and properties of the alloy were investigated. The results show that after cold rolling and aging treatment, the precipitates in test alloy were mainly (V,W) C composite carbides with a face-centered cubic structure. The nickel and aluminum elements were uniformly distributed in the matrix and no NiAl intermetallic compounds were observed. With the increase of cold rolling reduction rate, plane slip traces and dislocation-like cell structures appeared in the test alloy, carbides became coarser, the number of carbides increased, and the hardness increased but the rate of increase became slower. With the increase of cold rolling reduction rate, the yield and tensile strengths of the test alloy increased and the elongation after fracture decreased. The coefficient of linear expansion of the test alloy with 30% cold-rolling reduction rate was lower than that without cold rolling treatment, but did not meet the application requirement (less than 9.0 × 10−6 K−1 at 400 ℃).

       

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