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采用高压扭转(HPT)工艺对Mg-8Gd-3Y-0.4Zr(GW83K)合金进行剧烈塑性变形加工,通过显微组织观察、物相分析、显微硬度测定、开路电位测试、动极化曲线测试、交流阻抗谱及扫描开尔文探针分析,对比研究了HPT前后GW83K合金的显微组织和耐蚀性.结果表明:经5圈高压扭转后,GW83K合金的晶粒细化不显著,物相结构亦无变化,晶粒中出现大量孪晶和位错,试样中心区域和边缘区域的晶粒尺寸无明显差异,但边缘区域硬度远高于中心区域.HPT后镁合金在空气中伏打电位较低,在3.5%(质量分数)NaCl溶液中浸泡时开路电位迅速稳定(约1 h)但稳定值较负,腐蚀电流密度较大,电化学阻抗较小且随浸泡时间延长而减少,其耐蚀性不及未HPT加工的初始态合金.在0.1 mol/L NaOH溶液中,浸泡初期初始态和HPT态合金开路电位较接近,交流阻抗相差不大,浸泡6h后初始态的电化学阻抗容抗弧直径则明显大于HPT态样品.极化曲线显示HPT态合金在碱性溶液中的维钝区间减小,维钝电流密度增大,初次击穿电压负移.HPT加工虽有助于镁合金表面快速形成钝化膜(不能有效保护基体),却使镁基体更活泼(溶解加速),GW83K镁合金耐蚀性下降.

参考文献

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