Experimental investigation of surface integrity in finish dry hard turning of hardened tool steel at different hardness levels
Tang, Linhu1,2,2; Gao, Chengxiu1,2,2; Huang, Jianlong3; Shen, Hao3; Lin, Xiaojun1,2,2
2015-04-01
发表期刊International Journal of Advanced Manufacturing Technology
ISSN02683768
卷号77期号:9-12页码:1655-1669
摘要In this paper, the influences of cutting speed, depth of cut, feed, workpiece hardness (51, 55, 58, 62, and 65 ± 1 HRC), and nose radius on surface integrity in finish dry hard turning (FDHT) of the hardened tool steel AISI D2 by utilizing the polycrystalline cubic boron nitride (PCBN) inserts were experimentally investigated. Experimental results showed that the ploughing effect, serious squeeze, and elastic deformation have more significant on the surface roughness than those black fusion welding materials and side flows, and the surface roughness values are in the range of 0.34–0.86 μm between 150- and 301-m/min cutting speeds and totally attains a surface finish of grinding. The surface roughness is not very sensitive to the depth of cut in the range from 0.10 to 0.25 mm. The "residual cutting" materials, material plastic deformation, and even cohesion in the machined surface and cold welding effect do occur and hence influence on the surface integrity. The tiny grooves, severe plastic flow, and extensive material flows at lower feeds have significant influence on the surface integrity. The subsurface damages produced by the turning process also do occur and become severer at the larger feeds due to the localized stretch, plastic deformation, and even dilacerations of subsurface material induced by the friction from the tool flank face. The thermal softening, serious material side flows, and squeezing have significant effect on surface integrity when FDHT of the hardened tool steel AISI D2 at different hardness levels. And the heat effect is greater than the geometry effect as the nose radius attains a certain value. © 2014, Springer-Verlag London.
关键词Cold welding Cubic boron nitride Cutting Cutting tools Hardening Hardness III-V semiconductors Morphology Plastic deformation Surface morphology Tool steel Experimental investigations FDHT Ploughing effects Polycrystalline cubic boron nitride Sub-surface damage Sub-surface materials Surface integrity Workpiece
DOI10.1007/s00170-014-6484-1
收录类别EI
语种英语
出版者Springer London
EI入藏号20144700226108
EI主题词Surface roughness
EI分类号537.1 Heat Treatment Processes - 538.2.1 Welding Processes - 545.3 Steel - 603.2 Machine Tool Accessories - 812.1 Ceramics - 931.2 Physical Properties of Gases, Liquids and Solids - 951 Materials Science
来源库Compendex
分类代码537.1 Heat Treatment Processes - 538.2.1 Welding Processes - 545.3 Steel - 603.2 Machine Tool Accessories - 812.1 Ceramics - 931.2 Physical Properties of Gases, Liquids and Solids - 951 Materials Science
引用统计
被引频次:29[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符https://ir.lut.edu.cn/handle/2XXMBERH/113378
专题机电工程学院
作者单位1.Provincial Key Laboratory for Green Cutting Technology and Application of Gansu Province (University), Lanzhou Institute of Technology, Lanzhou, China;
2.College of Mechano-Electronic, Lanzhou Institute of Technology, No. 1 Gongjiaping East Road, Lanzhou; Gansu Province; 730050, China;
3.College of Mechano-Electronic, Lanzhou University of Technology, Lanzhou; Gansu Province; 730050, China
推荐引用方式
GB/T 7714
Tang, Linhu,Gao, Chengxiu,Huang, Jianlong,et al. Experimental investigation of surface integrity in finish dry hard turning of hardened tool steel at different hardness levels[J]. International Journal of Advanced Manufacturing Technology,2015,77(9-12):1655-1669.
APA Tang, Linhu,Gao, Chengxiu,Huang, Jianlong,Shen, Hao,&Lin, Xiaojun.(2015).Experimental investigation of surface integrity in finish dry hard turning of hardened tool steel at different hardness levels.International Journal of Advanced Manufacturing Technology,77(9-12),1655-1669.
MLA Tang, Linhu,et al."Experimental investigation of surface integrity in finish dry hard turning of hardened tool steel at different hardness levels".International Journal of Advanced Manufacturing Technology 77.9-12(2015):1655-1669.
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