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Strengthening mechanism and yield strength prediction of cold-drawn commercially pure aluminum wire

机译:冷绘制商业纯铝丝的强化机理及产量强度预测

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Commercially pure aluminum is a widely used conductive material in the field of overhead transmission. Yield strength, which is closely related to the reliability of conductive material in service, is an important parameter of mechanical property. Aluminum wire, which is widely used as the outer layer of steel core aluminum strand, is usually prepared by cold-drawing process. With the increase of area reduction, the strength of aluminum wire increases continuously and thus yield strength prediction becomes a very important scientific issue based on the strengthening mechanism analysis. In this paper, the contributions of grain refinement and hard texture to the yield strength were calculated by characterizing the microstructure of aluminum wire with different area reductions. Subsequently, the yield strength prediction model was set up by means of the quantitative calculation and function fitting of grain refinement strengthening and texture strengthening. By using this model, the yield strength of aluminum wire can be well predicted based on the average grain size of initial aluminum rod and this model can also guide the design and production of aluminum wire in industry field.
机译:商业纯铝是架空传输领域中广泛使用的导电材料。屈服强度与服务中导电材料的可靠性密切相关,是机械性能的重要参数。广泛用作钢芯铝链外层的铝线通常通过冷拉伸工艺制备。随着面积减小的增加,铝线的强度连续增加,因此屈服强度预测基于强化机制分析成为一个非常重要的科学问题。本文通过表征具有不同面积减少的铝线微观结构来计算晶粒细化和硬质纹理对屈服强度的贡献。随后,通过晶粒细化强化和纹理强化的定量计算和功能拟合建立屈服强预测模型。通过使用该模型,可以基于初始铝棒的平均晶粒尺寸进行良好预测铝线的屈服强度,并且该模型也可以引导工业领域铝线的设计和生产。

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