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AISI 1045钢干式车削中刀具磨损对表面完整性的影响

Tool Wear Effect on Surface Integrity in AISI 1045 Steel Dry Turning.

作者信息

Magalhães Laurence Colares, Carlesso Gabriel Catarino, López de Lacalle Luis Norberto, Souza Marcelo Tramontin, de Oliveira Palheta Fabiana, Binder Cristiano

机构信息

Department of Industrial Technology, Federal University of Espírito Santo (UFES), Vitória 29075-910, Brazil.

Department of Mechanical Engineering, CFAA-University of the Basque Country (UPV/EHU), Zamudio Technologic Park, 48170 Bilbao, Spain.

出版信息

Materials (Basel). 2022 Mar 9;15(6):2031. doi: 10.3390/ma15062031.

Abstract

In the present work, the surface integrity and flank wear of uncoated cermet inserts in dry turning of AISI 1045 steel were evaluated. Three-dimensional techniques were used to assess the surface roughness. Previously, finite element analysis was carried out to predict the cutting forces and heat distribution in the chip formation region. Cutting speed and feed were the parameters varied in the experiments. Feed is decisive in the final quality of the turned surface and cutting speed had little influence on this aspect. The surface was significantly damaged with the progression of the insert flank wear. Considering an average flank wear of 0.1 mm, a tool life of 35 min was achieved using a cutting speed of 175 m/min, and of 23 min for a cutting speed of 275 m/min. Abrasive wear was predominant during the experiments. No microstructure defects were observed, as well as crack propagation or accentuated deformations near the machined surface region. Therefore, the dry turning of 1045 steel with cermet inserts route has proven extremely viable from the standpoints of tool life, surface integrity, chip formation, and sustainability.

摘要

在本研究中,对AISI 1045钢干式车削中未涂层金属陶瓷刀片的表面完整性和后刀面磨损进行了评估。采用三维技术评估表面粗糙度。此前,进行了有限元分析以预测切屑形成区域的切削力和热分布。切削速度和进给量是实验中变化的参数。进给量对车削表面的最终质量起决定性作用,而切削速度在这方面影响较小。随着刀片后刀面磨损的进展,表面受到显著损伤。考虑到平均后刀面磨损为0.1 mm,切削速度为175 m/min时刀具寿命为35分钟,切削速度为275 m/min时刀具寿命为23分钟。实验过程中磨料磨损占主导。未观察到微观结构缺陷,以及加工表面区域附近的裂纹扩展或明显变形。因此,从刀具寿命、表面完整性、切屑形成和可持续性的角度来看,使用金属陶瓷刀片车削1045钢的干式加工方法已被证明是非常可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/047d/8949504/05686e5e9c50/materials-15-02031-g001.jpg

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