Al5052铝合金/C27200铜合金异种材料搅拌摩擦点焊的工艺窗口

来源期刊:中国有色金属学报(英文版)2017年第6期

论文作者:S. SIDDHARTH, T. SENTHILKUMAR M. CHANDRASEKAR

文章页码:1273 - 1284

关键词:搅拌摩擦点焊;异种材料;铝;铜;工艺窗口;响应曲面方法

Key words:friction stir spot welding; dissimilar materials; aluminium; copper; processing windows; response surface methodology

摘    要:采用搅拌摩擦点焊对Al5052铝合金和C27200铜合金进行异种材料焊接,并研究材料有效焊接的工艺窗口如旋转速率-停留时间图和旋转速率-插入深度图。采用中心复合设计模型,建立了预测拉伸剪切失效载荷和界面硬度随旋转速率、插入深度和停留时间变化的经验模型。采用95%置信度的ANOVA分析对模型进行验证。采用响应曲面法对所得模型进行优化,以得到最大拉伸强度和最小界面硬度。在最佳条件下,焊接接头的最大拉伸剪切失效载荷为3850 N,最小界面硬度为 HV81。验证实验表明所得模型的预测误差小于2%。所得工艺窗口可为设计工程师选择搅拌摩擦点焊工艺参数提供参考,以获得良好的接头。

Abstract: Friction stir spot welding technique was used to join dissimilar combinations of aluminium alloy (Al5052) with copper alloy (C27200) and friction stir spot welding windows such as tool rotational speed–dwell time and tool rotational speed-plunge depth diagrams for effective joining of these materials were developed. Using a central composite design model, empirical relations were developed to predict the changes in tensile shear failure load values and interface hardness of the joints with three process parameters such as tool rotational speed, plunge depth and dwell time. The adequacy of the developed model was verified using ANOVA analysis at 95% confidence level. Response surface methodology was used to optimize the developed model to maximize tensile strength and minimize interface hardness. A high tensile shear failure load value of 3850 N and low interface hardness value of HV 81 was observed for joints made under optimum conditions, and validation experiments confirmed the high predictability of the developed model with error less than 2%. The operating windows developed shall act as reference maps for future design engineers in choosing appropriate friction stir spot welding process parameter values to obtain good joints.

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