应用于 Inconel 718 的大进给量铣削和表面质量建模

Thomas Jacquet , Guillaume Fromentin , David Prat , Fabien Viprey
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引用次数: 0

摘要

在现代制造业中,机械加工仍然是复杂机械部件的重要加工工艺。特别是,航空航天工业广泛采用高进给铣削技术来加工镍基超合金的复杂几何形状。本研究的重点是在 2.5 轴加工中对 Inconel 718 的高进给铣削进行分析和建模。其目的是建立一个能预测表面形貌的大进给量铣削通用模型。提出的模型整合了刀具的关键几何参数、刀具在机床内的精确运动学参数以及切削力引起的刀具和机床偏移。这项研究的主要创新点在于它能够根据通用模型确定表面形貌及其质量,这代表了高进给量铣削领域的重大进展。为了验证该模型,对加工过程中的切削力和系统偏差进行了实验测量。所开发的方法证明了其建立表面形貌模型和预测表面粗糙度的能力。它还强调了刀具和机床偏差对表面质量的影响。这项研究通过提高加工能力和改善零件质量,促进了高进给量铣削在航空航天制造中的应用。
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Modeling of high-feed milling and surface quality applied to Inconel 718

In modern manufacturing, machining remains a vital process for complex mechanical components. In particular, the aerospace industry extensively employs high-feed milling techniques to machine complex geometries from nickel-based superalloys. This study focuses on the analysis and modeling of high-feed milling for Inconel 718 in 2.5-axis machining. Its objective is to develop a generalized model of high-feed milling that enables the prediction of surface topography. The proposed model integrates crucial geometric parameters of the tool and its exact kinematic within the machine, along with tool and machine deflections caused by cutting forces. A key novelty of this research lies in its capability to determine surface topography and its quality based on a generalized model, representing significant progress in the field of high-feed milling. To validate the model, experimental efforts are measured to characterize the cutting forces and system deflections during machining. The developed approach demonstrates its ability to model surface topography and to predict surface roughness. It also highlights the influence of tool and machine deflection on surface quality. This research contributes to the advancement of the application of high-feed milling in aerospace manufacturing by enhancing machining capabilities and improving part quality.

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