选择性激光熔化马氏体时效钢铣削的各向异性切削力特性

Shoichi Tamura, T. Matsumura, A. Ezura, K. Mori
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引用次数: 6

摘要

研究了马氏体时效钢的增材制造工艺,用于航空航天和汽车工业的高价值零件。混合增材/减材制造可以有效地实现严格的公差和表面光洁度。添加工艺诱发马氏体时效钢的各向异性力学性能,这种各向异性力学性能与激光扫描方向有关。由于工件材料的各向异性对切割过程有影响,表面光洁度和尺寸精度随刀具进给方向相对于激光扫描方向的变化而变化。因此,应考虑材料的各向异性,确定切削参数以控制切削力。本文讨论了选择性激光熔化堆垛马氏体时效钢增材制造工艺的切削力。通过对0/90度和45/−45度叠置工件的重复激光扫描铣削过程中切削力的变化率,证明了各向异性对切削力的影响。然后,在正交切屑堆积的切屑流模型中对切削力进行了分析。力模型将各向异性与剪切面上的剪应力联系起来。在切削试验和分析中,讨论了切削力随进给方向的变化规律。
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Anisotropic Cutting Force Characteristics in Milling of Maraging Steel Processed Through Selective Laser Melting
Additive manufacturing process of maraging steel has been studied for high value parts in aerospace and automotive industries. The hybrid additive / subtractive manufacturing is effective to achieve tight tolerances and surface finishes. The additive process induces anisotropic mechanical properties of maraging steel, which depends on the laser scanning direction. Because anisotropy in the workpiece material has an influence on the cutting process, the surface finish and the dimension accuracy change according to the direction of the cutter feed with respect to the laser scanning direction. Therefore, the cutting parameters should be determined to control the cutting force considering material anisotropy. The paper discusses the cutting force in milling of maraging steel stacked with selective laser melting, as an additive manufacturing process. Anisotropic effect on the cutting forces is proved with the changing rate of the cutting force in milling of the workpieces stacked by repeating laser scanning at 0/90 degrees and 45/−45 degrees. The cutting forces, then, are analyzed in the chip flow models with piling up of orthogonal cuttings. The force model associates anisotropy with the shear stress on the shear plane. The changes in the cutting forces with the feed direction are discussed in the cutting tests and analysis.
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