首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of cold deformation on the microstructure and properties of Al-Cu-Mg/Bean pod ash nano-particles composites
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Effect of cold deformation on the microstructure and properties of Al-Cu-Mg/Bean pod ash nano-particles composites

机译:冷变形对Al-Cu-Mg /豆荚灰纳米颗粒复合材料组织和性能的影响

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摘要

During the solidification of casted metal matrix composites there is segregation of the ceramic particles in the matrix which resulted to lower strength and hardness values of the composites, this factor limit the application of the materials in area of high strength and hardness values. In order to overcome this limitation the effect of thermo-mechanical working of aluminium composites by cold working has been investigated. The cold rolling was carried out at room temperature (28 degrees C) on Al-Cu-Mg/Bean pod ash nano-particles composites. The microstructure, hardness, tensile strength, impact energy and electrical resistance were examined. Test samples of were rolled from 0 to 25% thickness reduction and subjected to mechanical and electrical tests. Non-cumulative (X) and cumulative (Y) loading was used for the cold rolling. The hardness, tensile strength and electrical resistance of the composites increased with amount of reduction; this is attributed to the formation of fine texture of bean pod nano-particles that is well distributed in aluminium matrix. The dislocation density obtained is 1.678 x 10(14), 1. 823 x 10(14), 1.843 x 10(14) for 0%, sample X and Y at 25% reduction. The work has established that cold rolled can be used to enhance the mechanical properties and electrical resistance of the composites. (C) 2015 Elsevier B.V. All rights reserved.
机译:在铸造金属基复合材料的固化过程中,陶瓷颗粒在基体中偏析,导致复合材料的强度和硬度值降低,这一因素限制了材料在高强度和硬度值区域中的应用。为了克服该限制,已经研究了通过冷加工对铝复合材料进行热机械加工的效果。在室温(28℃)下对Al-Cu-Mg /豆荚灰纳米颗粒复合材料进行冷轧。检查了组织,硬度,抗张强度,冲击能和电阻。将测试样品的厚度从0减少到25%,并进行机械和电气测试。非累积(X)和累积(Y)加载用于冷轧。复合材料的硬度,拉伸强度和电阻随还原量的增加而增加;这归因于形成在铝基质中分布良好的豆荚纳米颗粒的精细质地。对于0%,获得的位错密度为1.678 x 10(14),1.823 x 10(14),1.843 x 10(14),样品X和Y减少25%。这项工作已经确定,冷轧可用于增强复合材料的机械性能和电阻。 (C)2015 Elsevier B.V.保留所有权利。

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