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AN INVESTIGATION INTO THE EFFECT OF ECAE PROCESS ON MECHANICAL AND MICROSTRUCTURAL PROPERTIES OF MIDDLE LAYER IN COPPER CLAD ALUMINUM COMPOSITE
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نویسنده
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Tolaminejad B ,Karimi Taheri A ,Arabi H ,Shahmiri M
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منبع
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iranian journal of materials science and engineering - 2009 - دوره : 6 - شماره : 4 - صفحه:26 -34
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چکیده
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Equal channel angular extrusion (ecae) is a promising technique for production of ultra fine-grain (ufg) materials of few hundred nanometers size. in this research, the grain refinement of aluminium strip is accelerated by sandwiching it between two copper strips and then subjecting the three strips to ecae process simultaneously. the loosely packed copper-aluminium-copper laminated billet was passed through ecae die up to 8 passes using the bc route. then, tensile properties and some microstructural characteristics of the aluminium layer were evaluated. the scanning and transmission electron microscopes, and x-ray diffraction were used to characterize the microstructure.the results show that the yield stress of middle layer (ai) is increased significantly by about four times after app lication of ecae throughout the four consecutive passes and then it is slightly decreased when more ecae passes are applied. an ultrafine grain within the range of 500 to 600 nm was obtained in the al layer by increasing the thickness of the copper layers. it was observed that the reduction of grain size in the aluminium layer is nearly 55% more than that of a eca- extruded single layer aluminium billet, i.e. extruding a single aluminium strip or a billet without any cladforthe same amount of deformation . this behaviour was attributed to the higher rates of dislocations interaction and cellformation and texture development during the ecae of the laminated composite compared to those of a single billet.
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کلیدواژه
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Severe plastic deformation ,Laminated composite ,Equal channel angular extrusion. UFG materials ,Aluminium/Copper
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آدرس
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iran university of science and technology, School of Metallurgy and Materials Engineering, ایران, sharif university of technology, Department of Materials Science and Engineering, ایران, iran university of science and technology, School of Metallurgy and Material Engineering, ایران, iran university of science and technology, School of Metallurgy and Materials Engineering, ایران
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پست الکترونیکی
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ktaheri@sharif.edu
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Authors
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