亚稳相含量对Zn-22Al合金腐蚀行为的影响

    Effect of Metastable Phase Content on Corrosion Behavior of Zn-22Al Alloy

    • 摘要: 研究了热处理工艺对Zn-22Al合金微观组织和腐蚀行为的影响规律。结果表明,当Zn-22Al合金在共析转变点(277℃)以下等温处理10 h后,冷却速度越慢,合金在NaCl (3.5wt%)水溶液中的耐蚀性越好;合金仅由平衡态的α1相和η相构成,冷却速度不影响合金的相组成和相含量。合金耐蚀性的提高是由于冷却速度较慢时合金中的残余应力、缺陷和成分偏析较少。当等温处理温度高于共析转变点时,则冷却速度越快,合金的耐蚀性越好;当冷却速度较快时,合金中存在亚稳态的α2相,亚稳相的体积分数随冷却速度变慢而减小。由于α2相与α1、η相组织形成的微原电池的电势差小于η相与α1相形成的微原电池的电势差,因此,亚稳α2相的体积分数越大,合金的耐蚀性越好。

       

      Abstract: The effect of heat treatment on the microstructure and corrosion behavior of Zn-22Al alloy was investigated.The results show that, after isothermally heat treatment below the eutectoid point(277 ℃)for 10 h, the slower the cooling rate, the better the corrosion resistance of the alloy in NaCl (3.5wt%)aqueous solution.The alloy only consists of α1 phase and η phase in equilibrium state, and the cooling rate does not affect the phase composition and phase content of the alloy. The increase of corrosion resistance of the alloy is due to the low residual stress, defects and segregation in the alloy at a slower cooling rate.When the isothermal treatment temperature is higher than the eutectoid transition point, the faster the cooling rate is, the better the corrosion resistance of the alloy is. When the cooling rate is fast, there is a metastable α2 phase in the alloy, and the volume fraction of metastable phase decreases with the cooling rate slowing down. Because the potential difference between α2 phase and α1, η phase are smaller than that between η phase and α1 phase, the larger the volume fraction of metastable α2 phase, the better the corrosion resistance of the alloy.

       

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