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作 者:徐安桃 张睿[2] 张振楠[2] 孙波 XU An-tao ZHANG Rui ZHANG Zhen-nan SUN Bo(Military Transportation University, Military Vehicle Department Postgraduate Training Brigade, Tianjin 300161, China Unit 96274, Luoyang 471003, China)
机构地区:[1]军事交通学院军用车辆系 [2]军事交通学院研究生管理大队 [3]96274部队
出 处:《装备环境工程》2017年第6期29-32,共4页Equipment Environmental Engineering
摘 要:目的研究不同破损程度下军绿有机涂层的腐蚀行为,确定破损率对其防护性能变化的影响。方法通过人工制作不同的破损率,并利用电化学阻抗谱技术,研究不同破损程度下军绿有机涂层的电化学特征。结果根据不同破损程度下的军绿有机涂层的电化学特征,确定了涂层从完好到失效的四个阶段,初始完好阶段(破损率K≤0.0004%)、破损增大阶段(0.0016%<K≤0.04%)、破损过大阶段(0.16%<K≤1%)和失效阶段(4%<K≤16%)。结论破损率K为0.04%的点是该涂层防护性能急转直下的转折点,因此破损率K大于0.04%时,应及时对车辆表面涂层进行修补和防护。Objective To study corrosion behavior of military green organic coating with different damage degree, and to determine influences of damage degree on its protective performance changes. Methods Electrochemical impedance spectroscopy (EIS) technique was applied to study electrochemical characteristics of military green organic coating under different damage degree which were made manually. Results According to electrochemical characteristics of military green coatings under different damage degree, four stages of the coating from good to bad were determined: initial intact stage (damage rate K〈0.0004%), increase damage stage (0.0016%〈damage rate K〈0.04%), excessive breakage stage (0.16%〈damage rate K≤1%) and failure stage (4%〈damage rate K≤ 6%). Conclusion The damage rate K 0.04% is the turning point of the coating's protective performance, when the damage rate K is more than 0.04%, the surface coating should be repaired and protected in time.
分 类 号:TJ03[兵器科学与技术—兵器发射理论与技术]
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