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Effect of tool Inclination Angle on the Elastic Deformation of Thin-walled Parts in Multi-axis Ball-end Milling

机译:刀具倾斜角度对多轴球头铣削中薄壁零件弹性变形的影响

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Thin-walled freeform surface parts are widely used in many fields, such as aerospace, automotive, etc. However, it is difficult to produce high quality thin-walled freeform parts in Numerical Controlled(NC) machining due to bending and twisting deformations induced by cutting forces. To overcome this problem, key issues are focused on twofold. First, the relationship between the milling force and the tool inclination angle in ball-end milling was established by using the theoretical and experimental methods. Second, the influence of tool inclination angle on the elastic deformation of thin-walled parts was analyzed by the finite element method. Finally, verification experiment was carried out in a 4-axis CNC machine tool, and the deformation values of the stainless steel test workpieces were measured by a coordinate measurement machine(CMM). The results show that when the tool inclination angles are 15° or 45°, both the milling force and the deformation of the test workpieces are the smallest.
机译:薄壁自由曲面零件广泛用于航空航天,汽车等领域。但是,由于数控加工引起的弯曲和扭曲变形,很难在数控加工中生产高质量的薄壁自由零件。切削力。为了克服这个问题,关键问题集中在两个方面。首先,运用理论和实验方法,建立了球头立铣刀的铣削力与刀具倾斜角的关系。其次,通过有限元方法分析了刀具倾斜角对薄壁零件弹性变形的影响。最后,在四轴数控机床上进行了验证实验,并通过坐标测量机(CMM)测量了不锈钢测试工件的变形值。结果表明,当刀具倾斜角为15°或45°时,铣削力和测试工件的变形都最小。

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