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Effect of Cutting Parameters on the Cutting Force in the End Milling of GH4169 Superalloy

机译:切削参数对GH4169高温合金立铣中切削力的影响

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GH4169 is a difficult-to-cut nickel-based superalloy commonly used in aerospace industry. This paper presents a cutting force prediction model in the end milling of GH4169 superalloy with carbide tools by orthogonal experiment. The variance analysis is applied to check the significance of the model, accuracy of the model is verified by experiment. The effect of cutting parameters on the cutting force is also studied. The results show that the prediction model is reliable. Among all four parameters the most influential parameter is axial depth of cut, followed by feed per tooth. The cutting force decreases as the cutting speed increases. On the contrary, the cutting force increases as the feed per tooth, axial depth of cut and radial depth of cut increase.
机译:GH4169是一种难于切割的镍基高温合金,通常用于航空航天工业。通过正交试验,建立了GH4169合金硬质合金立铣刀的切削力预测模型。应用方差分析检查模型的有效性,通过实验验证模型的准确性。还研究了切削参数对切削力的影响。结果表明,该预测模型是可靠的。在所有四个参数中,最具影响力的参数是轴向切削深度,其次是每齿进给量。切削力随着切削速度的增加而减小。相反,切削力随着每齿进给量,轴向切削深度和径向切削深度的增加而增加。

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