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通过增材制造和减材制造工艺组合实现的Ti-6Al-4V表面完整性变化

Variations in the Surface Integrity of Ti-6Al-4V by Combinations of Additive and Subtractive Manufacturing Processes.

作者信息

Bejjani Roland, Bamford Erik, Cedergren Stefan, Archenti Andreas, Rashid Amir

机构信息

Department of Mechanical Engineering, Lebanese American University, Byblos 36, Lebanon.

Department of Production Engineering, Manufacturing and Metrology Systems, KTH, Royal Institute of Technology, 100 44 Stockholm, Sweden.

出版信息

Materials (Basel). 2020 Apr 13;13(8):1825. doi: 10.3390/ma13081825.

Abstract

Additive manufacturing (AM) has recently been accorded considerable interest by manufacturers. Many manufacturing industries, amongst others in the aerospace sector, are already using AM parts or are investing in such manufacturing methods. Important material properties, such as microstructures, residual stress, and surface topography, can be affected by AM processes. In addition, a subtractive manufacturing (SM) process, such as machining, is required for finishing certain parts when accurate tolerances are required. This finish machining will subsequently affect the surface integrity and topography of the material. In this research work, we focused on the surface integrity of Ti-6Al-4V parts manufactured using three different types of AM and finished using an SM step. The aim of this study was to gain an understanding on how each process affects the resulting surface integrity of the material. It was found that each AM process affects the materials' properties differently and that clear differences exist compared to a reference material manufactured using conventional methods. The newly generated surface was investigated after the SM step and each combination of AM/SM resulted in differences in surface integrity. It was found that different AM processes result in different microstructures which in turn affect surface integrity after the SM process.

摘要

增材制造(AM)最近受到了制造商的广泛关注。许多制造业,尤其是航空航天领域的企业,已经在使用增材制造零件或正在投资于这种制造方法。重要的材料性能,如微观结构、残余应力和表面形貌,可能会受到增材制造工艺的影响。此外,当需要精确公差时,某些零件的精加工需要采用减法制造(SM)工艺,如机械加工。这种精加工随后会影响材料的表面完整性和形貌。在这项研究工作中,我们专注于使用三种不同类型的增材制造方法制造并通过减法制造步骤进行精加工的Ti-6Al-4V零件的表面完整性。本研究的目的是了解每个工艺如何影响材料最终的表面完整性。研究发现,每种增材制造工艺对材料性能的影响不同,与使用传统方法制造的参考材料相比存在明显差异。在减法制造步骤之后对新生成的表面进行了研究,增材制造/减法制造的每种组合都会导致表面完整性的差异。研究发现,不同的增材制造工艺会导致不同的微观结构,进而影响减法制造工艺后的表面完整性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15b2/7215978/db5e0ff31406/materials-13-01825-g001.jpg

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