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首页> 外文期刊>Silicon >Establishing Mathematical Relationships to Study Tensile Behavior of Friction Stir Welded AA5086-H32 Aluminium Alloy Joints
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Establishing Mathematical Relationships to Study Tensile Behavior of Friction Stir Welded AA5086-H32 Aluminium Alloy Joints

机译:建立数学关系,以研究摩擦搅拌焊接AA5086-H32铝合金接头的拉伸行为

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摘要

In the present work, 5 mm thick rolled plates of AA5086-H32 alloy were friction stir butt welded, varying the six input process parameters, namely rotational speed, welding speed, tool shoulder diameter, tool hardness, tilt angle, and tool pin profile. Response surface methodology was used to establish mathematical relationship between the input parameters and the joint performance parameters, namely Ultimate Tensile Strength (UTS) and Tensile Elongation (TE). Six factor-five level, rotatable central composite matrix, having 52 experiments, was used for the design of experiments. The developed models are checked for the adequacy using ANOVA. The models were used to explore the individual and interaction effect of input factors on the UTS and TE of the fabricated joints. The optimal combination of studied input parameters was identified to maximize the responses.
机译:在本作工作中,AA5086-H32合金的5毫米厚的轧制板是摩擦搅拌对接焊接,改变六个输入过程参数,即转速,焊接速度,工具肩直径,工具硬度,倾斜角和工具引脚型材。 响应面方法用于建立输入参数和关节性能参数之间的数学关系,即最终拉伸强度(UT)和拉伸伸长率(TE)。 具有52实验的六因素-5,可旋转的中央复合矩阵,用于设计实验。 使用ANOVA检查开发的模型是否有充分性。 该模型用于探索伪造的关节UTS和TE上的输入因素的个体和相互作用。 确定了研究输入参数的最佳组合以最大化响应。

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