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Interfacial reaction chemistry in Al-based metal-matrix composites

机译:铝基金属基复合材料的界面反应化学

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摘要

The role of Sr in promoting the formation of thin interfacial amorphous films has been studied in a series of Al 6061 alloys reinforced with Si3N4 Or Al18B4O33 whiskers. In the absence of Sr, extensive reaction products (principally MgAl2O4) are formed at the whisker-matrix interface during processing of the alloys by squeeze casting. The addition of 0.5 or 1 wt% Sr to the base alloy suppresses the formation of the spinel phase by forming a thin (1-2 nm thick) amorphous film at the interface. The film has been characterized by analytical electron microscopy, and shown to be an amorphous (Mg,Sr) silicate phase. The thermodynamic and kinetic factors that favour the formation of the amorphous films are discussed in the text; the key factor that emerges from this discussion is the important role that Sr must play in controlling the contact angle of the amorphous phase at the metal-ceramic interface. High-resolution electron microscopy observations show that the contact angle is zero. The amorphous films are remarkably uniform in thickness. The applicability of a model, first developed for intergranular amorphous films in ceramic systems, to the metal-ceramic case, is considered; although the model gives reasonable predictions for the equilibrium film thickness, further experimental evidence is needed to support this conclusion. [References: 33]
机译:在一系列用Si3N4或Al18B4O33晶须增强的Al 6061合金中,已经研究了Sr在促进薄的界面非晶膜形成中的作用。在不存在Sr的情况下,通过挤压铸造加工合金时,在晶须-基体界面处会形成大量的反应产物(主要是MgAl2O4)。向基础合金中添加0.5或1 wt%的Sr可通过在界面处形成薄的(1-2 nm厚)非晶膜来抑制尖晶石相的形成。该膜已经通过分析电子显微镜表征,并且显示为非晶态(Mg,Sr)硅酸盐相。本文讨论了有利于非晶膜形成的热力学和动力学因素。讨论中得出的关键因素是Sr在控制非晶态相在金属-陶瓷界面处的接触角时必须起重要作用。高分辨率电子显微镜观察表明接触角为零。非晶膜的厚度非常均匀。考虑了首先为陶瓷体系中的晶间非晶膜开发的模型对金属陶瓷的适用性;尽管该模型对平衡膜的厚度给出了合理的预测,但仍需要进一步的实验证据来支持这一结论。 [参考:33]

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