首页> 外文期刊>Archives of Metallurgy and Materials >Processing, Microstructure and Properties of Different Method Obtained Cu-Al2O3 Composites/ Wytwarzanie, Mikrostruktura I W?a?ciwo?ci Kompozytów Cu-Al2O3 Otrzymywanych Róznymi Technikami
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Processing, Microstructure and Properties of Different Method Obtained Cu-Al2O3 Composites/ Wytwarzanie, Mikrostruktura I W?a?ciwo?ci Kompozytów Cu-Al2O3 Otrzymywanych Róznymi Technikami

机译:不同方法制得的Cu-Al2O3复合材料的加工,组织和性能/各种技术制得的Cu-Al2O3复合材料的制备,组织和性能

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Alumina/copper composites are used where high thermal conductivity, high absorption and dissipation of heat, high resistance to thermal fatigue and good frictional wear resistance are required. The properties of these composites depend on a number of factors including the content, shape and distribution of the ceramic phase, the method of their obtaining, as well as the conditions under which they are obtained. All these variables have influence on mentioned properties and, in consequence, on the future applications of the final material. The aim of this paper was to develop Cu-Al2O3 composites, processed using two techniques, namely sintering (of Cu /Al2O3 high-energy mixed powders) and tape casting (of slurry of the following composition: 1, 3 and 5 vol.% of Al2O3 phase; the remaining part: Cu). The compositions were determined taking into consideration the planned applications. The paper presents newly developed technologies, the results of both microstructure investigations as well as of the measurements of selected physical and mechanical properties (microhardness, wear resistance, thermal conductivity etc.) and contains the analysis of the influence of selected techniques and processing conditions on the properties and the interface morphology between ceramic and copper
机译:氧化铝/铜复合材料用于需要高导热性,高吸收和散发热量,高耐热疲劳性和良好耐磨性的场合。这些复合材料的性能取决于许多因素,包括陶瓷相的含量,形状和分布,其获得方法以及获得它们的条件。所有这些变量都会影响上述特性,并因此影响最终材料的未来应用。本文的目的是开发使用两种技术处理的Cu-Al2O3复合材料,即烧结(Cu / Al2O3高能混合粉末)和流延成型(以下成分的浆料:1、3和5%(体积)) Al 2 O 3相;剩余部分:Cu)。确定组合物时要考虑计划的应用。本文介绍了最新开发的技术,显微组织研究的结果以及所选物理和机械性能(显微硬度,耐磨性,导热性等)的测量结果,并分析了所选技术和加工条件对陶瓷和铜之间的性质和界面形态

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