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镍合金因科镍合金625垂直薄壁铣削试样的表面形貌与变形评估

Evaluation of the Surface Topography and Deformation of Vertical Thin-Wall Milled Samples from the Nickel Alloy Inconel 625.

作者信息

Kurpiel Szymon, Zagórski Krzysztof, Cieślik Jacek, Skrzypkowski Krzysztof, Tuleshov Amandyk

机构信息

Faculty of Mechanical Engineering and Robotics, AGH University of Krakow, Mickiewicza 30 Av., 30-059 Krakow, Poland.

Faculty of Civil Engineering and Resource Management, AGH University of Krakow, Mickiewicza 30 Av., 30-059 Krakow, Poland.

出版信息

Materials (Basel). 2024 Jan 7;17(2):295. doi: 10.3390/ma17020295.

Abstract

During the production of components, manufacturers of structures are obliged to meet certain requirements and ensure appropriate quality characteristics. It is especially important during the manufacturing of thin-walled structures, which are subject to many errors during machining due to the reduced rigidity of the products, including the deformation of thin walls, which may be the result of the vibration of the system. The appearance of vibrations reduces the quality of the machined surface affecting the increase in the values of surface topography parameters-waviness and roughness. Thin-wall structures-titanium or nickel alloy, among others-play a key role in the aerospace industry, which constantly strives to reduce the weight of the entire structure while meeting requirements. The present work focuses on the evaluation of the parameters of surface topography, dimensional and shape accuracy during the milling of nickel alloy Inconel 625 samples containing a thin wall in a vertical orientation. The experiment was conducted under controlled cutting conditions using a constant material removal rate. As part of the surface topography section, the distribution of waviness, Wa and Wz, and roughness, Ra and Rz, was determined in selected measurement areas in the direction parallel to the direction of the feed motion. Dimensional deviations, measured with a 3D optical scanner, were determined in selected cross sections in the direction perpendicular and parallel to the bottom of the sample presenting the deflection of the thin-walled structure. The results provide information that the used parameter sets affect the measured quantities to varying degrees.

摘要

在零部件生产过程中,结构件制造商有义务满足特定要求并确保适当的质量特性。这在薄壁结构制造过程中尤为重要,由于产品刚度降低,薄壁结构在加工过程中容易出现许多误差,包括薄壁变形,这可能是系统振动的结果。振动的出现会降低加工表面的质量,影响表面形貌参数——波纹度和粗糙度值的增加。薄壁结构,如钛合金或镍合金等,在航空航天工业中起着关键作用,该行业一直在努力在满足要求的同时减轻整个结构的重量。目前的工作重点是评估垂直方向含有薄壁的镍合金Inconel 625样品铣削过程中的表面形貌参数、尺寸和形状精度。实验在受控切削条件下以恒定的材料去除率进行。作为表面形貌部分的内容,在与进给运动方向平行的方向上选定的测量区域中确定了波纹度(Wa和Wz)以及粗糙度(Ra和Rz)的分布。使用3D光学扫描仪测量的尺寸偏差,在与样品底部垂直和平行的方向上选定的横截面中确定,以呈现薄壁结构的挠度。结果提供了信息,即所使用的参数集对测量量有不同程度的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d46/10820099/060ff4735e6f/materials-17-00295-g0A1.jpg

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