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Pulsed current effect on hard anodizing process of 2024-T3 aluminium alloy

机译:脉冲电流对2024-T3铝合金硬质阳极氧化工艺的影响

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This work focused on studying the effects of different electrical parameters on the hard anodizing process (in sulphuric acid bath) of AA 2024-T3, an important heat treated aluminium alloy which has several engineering applications in aerospace, motorsport and automotive fields due to its significant combination of high mechanical properties and low density. Hard anodizing treatment is here crucial for increasing both corrosion and abrasion resistance, but the presence of typical intermetallic precipitates makes the obtainment of a performing non defective oxide difficult. Different anodizing procedures in direct current (DC), multistep direct current (MSDC), pulsed current (PC) (slow square pulse mode) and their appropriate combination (DC&PC) were studied aiming at obtaining the optimal mechanical properties/thickness/defectiveness compromise. DC and MSDC results showed good hardness values while their optical microscopy characterization indicated a poor defectiveness state; PC modality induced a moderate loss in mechanical performances in all the different duty cycles experimented, while an extremely low defected oxide was obtained with a duty cycle of 50%. Proper merge of a soft and long initial DC current step followed by a suitable balanced final stage in PC allowed to obtain an interesting combination of significant hardness (>340 HV) in parallel with a good oxide defectiveness state. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项工作专注于研究不同电参数对AA 2024-T3硬质阳极氧化工艺(在硫酸浴中)的影响,AA2024-T3是一种重要的热处理铝合金,由于其显着的优异性,在航空航天,赛车和汽车领域具有多种工程应用高机械性能和低密度的结合。硬质阳极氧化处理对于提高耐腐蚀性和耐磨性至关重要,但是典型的金属间沉淀物的存在使得难以获得有效的无缺陷氧化物。为了获得最佳的机械性能/厚度/缺陷折衷,研究了直流电(DC),多步直流电(MSDC),脉冲电流(PC)(慢方脉冲模式)及其适当组合(DC&PC)的不同阳极氧化工艺。 DC和MSDC结果显示出良好的硬度值,而其光学显微镜表征表明不良状态。在所有不同的占空比下,PC模态均会导致机械性能的适度降低,而在占空比为50%的情况下,缺陷率极低。适当地合并软的和长的初始DC电流步骤,然后在PC中进行适当的平衡的最终阶段,可以在具有良好的氧化物缺陷状态的同时获得有意义的高硬度(> 340 HV)组合。 (C)2016 Elsevier B.V.保留所有权利。

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