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首页> 外文期刊>International Journal of Materials Forming and Machining Processes >Experimental Study on Surface Integrity, Dimensional Accuracy, and Micro-Hardness in Thin-Wall Machining of Aluminum Alloy
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Experimental Study on Surface Integrity, Dimensional Accuracy, and Micro-Hardness in Thin-Wall Machining of Aluminum Alloy

机译:铝合金薄壁加工中表面完整性,尺寸精度和显微硬度的实验研究

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摘要

This article presents an experimental investigation into the influence of process parameters viz. feed per tooth, axial depth of cut on milling force, surface finish, wall deflection and micro-hardness during thin-wall machining of an aerospace grade aluminum alloy 2024-T351. Results revealed that the process parameters significantly influence the surface finish and dimensional accuracy of machined thin-walls. High feed rate promoted the formation of built-up-edge (BUE). Combination of high feed and axial depth of cut aided in catastrophic failure of tools. Surface damages such as material plucking, material shearing, material adhesion and deformed feed mark layer formation were observed. Axial depth of cut negatively influenced the wall deflection leading to loss of dimensional accuracy. Interestingly, the micro-hardness at the machined surface was found to be lower than that of the bulk material hardness. These results will be useful in selection of suitable process parameters for quality and precise machining of thin-wall parts.
机译:本文介绍了对工艺参数viz影响的实验研究。每齿进给量,轴向切削深度,铣削力,表面光洁度,壁挠度和航空级铝合金2024-T351的薄壁加工过程中的显微硬度。结果表明,工艺参数显着影响机加工薄壁的表面光洁度和尺寸精度。高进给速度促进了堆积边缘(BUE)的形成。高进给量和轴向切削深度的结合有助于工具的灾难性故障。观察到表面损伤,例如材料拔毛,材料剪切,材料粘附和变形的进料标记层形成。轴向切深对壁变形产生负面影响,导致尺寸精度下降。有趣的是,发现机加工表面的显微硬度低于散装材料的显微硬度。这些结果将有助于选择合适的工艺参数,以确保薄壁零件的质量和精确加工。

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