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首页> 外文期刊>Archives of Metallurgy and Materials >MICROSTRUCTURE EVOLUTION AT THE Cu-Ti INTERFACE DURING HIGH TEMPERATURE SYNTHESIS OF COPPER-INTERMETALLIC PHASES LAYERED COMPOSITE
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MICROSTRUCTURE EVOLUTION AT THE Cu-Ti INTERFACE DURING HIGH TEMPERATURE SYNTHESIS OF COPPER-INTERMETALLIC PHASES LAYERED COMPOSITE

机译:高温合成铜金属间相阶层复合材料的Cu-Ti界面的微观结构演变

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Structural transformations connected with a new processing technique used for fabrication of the copper-intermetallic phases layered composites from copper and titanium sheets were investigated. Formation and growth of intermetallic phases produced at elevated temperatures at the copper-titanium interface were examined for both polyphase diffusion and for process occurring in the liquid phase presence. Since no exothermic peak has been dedected during differential thermal analysis for the Cu-Ti couple, it is suggested that the process of intermetallic phases synthesis is not of the SHS type. Results of the microscope observations and electron probe microanalysis allowed, on the basis of the Cu-Ti equilibrium diagram, to recognize a row of intermetallic compounds that were synthesised in the layer form at the Cu-Ti interface. The measurements have shown that for intermetallics synthesis with the liquid phase contribution the rate of the layer growth exceeds many times the layer growth rate due to polyphase difussion. It was demonstrated that in the way of high temperature synthesis of intermetallic phases with the liquid phase presence the copper-intermetallic phases layered composite can be processed from copper sheet and titanium foil, stocked alternatively into a packet. As-synthesised composite layers containing intermetallic phases are metallurgically bonded with the copper layers.
机译:研究了与用于制造来自铜和钛板的铜金属间相的制造的新加工技术的结构变换。检查铜钛界面的升高温度下产生的金属间相的形成和生长,用于多相扩散和在液相存在下发生的方法。由于在Cu-Ti耦合的差分热分析期间没有施用于放热峰,因此建议金属间相合成的过程不属于SHS型。显微镜观测结果和电子探针微透析,基于Cu-Ti平衡图允许识别在Cu-Ti界面中以层形式合成的一排金属间化合物。测量表明,对于具有液相贡献的金属间化合物合成,层生长的速率超过多相扩散引起的层生长速率超过多次。据证明,在具有液相存在的金属间相的高温合成的方式存在铜金属间相层层复合材料可以从铜板和钛箔加工,或者替代地储存到包装中。含有金属间相的合成复合层与铜层冶金键合。

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