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    魏祥飞, 张平则, 魏东博, 沙李丽, 周鹏, 张扬. γ-TiAl合金表面双层辉光等离子铬钨共渗层的高温氧化行为[J]. 机械工程材料, 2014, 38(5): 12-16.
    引用本文: 魏祥飞, 张平则, 魏东博, 沙李丽, 周鹏, 张扬. γ-TiAl合金表面双层辉光等离子铬钨共渗层的高温氧化行为[J]. 机械工程材料, 2014, 38(5): 12-16.
    WEI Xiang-fei, ZHANG Ping-ze, WEI Dong-bo, SHA Li-li, ZHOU Peng, ZHANG Yang. High-Temperature Oxidation Behavior of Double Glow Plasma Cr-W Alloying Layer on γ-TiAl Alloy Surface[J]. Materials and Mechanical Engineering, 2014, 38(5): 12-16.
    Citation: WEI Xiang-fei, ZHANG Ping-ze, WEI Dong-bo, SHA Li-li, ZHOU Peng, ZHANG Yang. High-Temperature Oxidation Behavior of Double Glow Plasma Cr-W Alloying Layer on γ-TiAl Alloy Surface[J]. Materials and Mechanical Engineering, 2014, 38(5): 12-16.

    γ-TiAl合金表面双层辉光等离子铬钨共渗层的高温氧化行为

    High-Temperature Oxidation Behavior of Double Glow Plasma Cr-W Alloying Layer on γ-TiAl Alloy Surface

    • 摘要: 采用双层辉光等离子表面技术在γ-TiAl合金表面制备铬钨共渗层, 用SEM、EDS和XRD分析等方法结合高温氧化试验, 研究了该共渗层在高温下的氧化(共100 h)行为。结果表明: γ-TiAl合金经双层辉光等离子铬钨共渗后, 共渗层表面形貌完好, 组织均匀, 与基体连接紧密, 结合处无孔洞及裂纹等缺陷存在; 铬钨共渗层在高温下可形成保护性氧化膜, 有效降低了氧化速率, 与γ-TiAl合金基体相比, 氧化增重降低, 抗氧化能力明显提高; 随氧化温度升高, 铬钨共渗层的氧化增重明显增大, 但氧化机制不变; 在氧化过程中, 除了铬、钨发生内扩散外, 基体中的钛、铝元素均发生了显著的外扩散。

       

      Abstract: Cr-W alloying layer was prepared on TiAl alloy by using the double glow plasma surface alloying technology(DGP), and the high temperature oxidation behavior of the alloying layer was tested by SEM, EDX, XRD and high temperature oxidation experiment. The results show that the surface morphology of the Cr-W alloying layer is smooth and the microstructure is uniform. The alloying layer closely connects with the matrix, without holes, cracks and other defects on the joint. The Cr-W alloying layer at high temperature can form a protective film to reduce the rate of oxidation effectively. The anti-oxidantion capacity of the alloying layer is significantly improved, and the oxidation weight gain is lower than that of the matrix. With the increase of the oxidation temperature, the oxidation weight gain of the alloying layer increases significantly and the oxidation mechanism is unchanged. In the oxidation process, the internal diffusion of Cr and W is found, together with the external diffusion of Ti and Al.

       

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