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A hardness–microstructure correlation study of anodised powder-metallurgical Al–Cu alloy composites

机译:阳极氧化粉末冶金Al-Cu合金复合材料的硬度-微观结构相关性研究

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摘要

Powder-metallurgical Al–Cu alloy composites with Al_2O_3 and SiC particles have been anodised. The microstructure of the resulting oxide layers with respect to the composition of the matrix and the reinforcing particles has been correlated to nanoindentation results. The reinforcing particles are well-bonded in the conversion layer regardless of remaining stable (Al_2O_3) or being converted to mixed oxides (SiC→Al_xSi_yO_z). The distinctive pore structure of the matrix conversion layer is known fromanodising of bulk Al–Cu alloys and impedes the formation protective coatings on the studied composites. A shell of partly or completely converted aluminiumon the Al–Cu composite shows options to improve the hardness of anodised aluminium oxide coatings on Al–Cu alloy composites.
机译:具有Al_2O_3和SiC颗粒的粉末冶金Al-Cu合金复合材料已经过阳极氧化处理。相对于基质和增强颗粒的组成,所得氧化物层的微观结构已与纳米压痕结果相关。增强颗粒在转换层中结合良好,而与保持稳定状态(Al_2O_3)或转换为混合氧化物(SiC→Al_xSi_yO_z)无关。从块状Al-Cu合金的阳极氧化中可以知道基质转化层的独特孔隙结构,这阻碍了所研究复合材料上形成保护涂层。在Al-Cu复合材料上部分或完全转化为铝的外壳显示出可以提高Al-Cu合金复合材料上阳极氧化铝涂层硬度的选项。

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