Modelling and experimental validation of surface roughness in precision turning of dual-phase materials considering process uncertainties

被引:0
|
作者
Samar Elsanabary
Ahmed Elkaseer
Saber Abd-Rabbo
Mohammed AbdElsalam
Shaban Abdou
机构
[1] Port Said University,Department of Production Engineering and Mechanical Design, Faculty of Engineering
[2] Karlsruhe Institute of Technology,Institute for Automation and Applied Informatics
[3] Benha University,Department of Mechanical Engineering, Faculty of Engineering, Shoubra
[4] Ain Shams University,Department of Design and Production Engineering, Faculty of Engineering
关键词
Precision turning; Surface roughness; Minimum chip thickness; Elastic recovery; Dual-phase materials; Simulation;
D O I
暂无
中图分类号
学科分类号
摘要
This paper presents the development and experimental validation of a model to predict the surface roughness generated during precision turning. In particular, in addition to the kinematic parameters of the turning process, the proposed model also takes into consideration the effects of the minimum chip thickness and elastic recovery together with uncertainties attributable to the blend nature of dual-phase materials. The aim of the model is to minimise the contribution of uncertainty errors due to the stochastic distribution of the phases present within the material microstructure, to better predict surface roughness under different cutting conditions. The developed model was experimentally validated by machining two different dual-phase materials, brass 6040 and medium carbon steel AISI 1045, under a range of processing parameters. The roughness of the generated surface was measured and compared with those predicted by the model for similar conditions. Preliminary results indicated that the trend of model’s predictions agreed relatively well with the experimental results. However, the proposed model was then experimentally calibrated and lower differences between measured and predicted values were obtained, these varied between 16.5 and 23.3%. If results obtained at very low feed rates were excluded, the average differences for brass 6040 were substantially reduced from 20.5 and 16.5 to 11.2 and 10.3%, using cutting tools with nose radii of 200 and 400μm\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$400 \, {\upmu }\hbox {m}$$\end{document}, respectively. Similarly, when machining medium carbon steel AISI 1045 using 200 and 400μm\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$400 \, {\upmu }\hbox {m}$$\end{document} nose-radii cutting tools, the average differences decreased substantially, from 23.3 and 18.8 to 18.5 and 14.6%, respectively. Simulation-based study of the surface generation process in precision turning of dual-phase materials was conducted, and the results of the simulation trials have been utilised to optimise the cutting process.
引用
收藏
页码:59 / 74
页数:15
相关论文
共 50 条
  • [31] Experimental investigation of process parameters on surface roughness and dimensional accuracy in hard turning of EN24 steel
    Gundarneeya, T. P.
    Golakiya, V. D.
    Ambaliya, S. D.
    Patel, S. H.
    MATERIALS TODAY-PROCEEDINGS, 2022, 57 : 674 - 680
  • [32] Experimental investigation and modelling of surface roughness and resultant cutting force in hard turning of AISI H13 Steel
    Boy, M.
    Yasar, N.
    Ciftci, I.
    20TH INNOVATIVE MANUFACTURING ENGINEERING AND ENERGY CONFERENCE (IMANEE 2016), 2016, 161
  • [33] Ultra-precision Turning Process of 6061 Aluminum Alloy Based on Multi-objective Optimization of Surface Roughness and Reflectivity
    Wang G.
    Jin G.
    Li Z.
    Tan H.
    Zhan Q.
    Lin H.
    Wang X.
    Surface Technology, 2024, 53 (12): : 193 - 206
  • [34] Experimental and modeling study of surface topography generation considering tool-workpiece vibration in high-precision turning
    Xingying ZHOU
    Henan LIU
    Tianyu YU
    Ruiyang GUO
    Guangzhou WANG
    Yazhou SUN
    Mingjun CHEN
    Chinese Journal of Aeronautics, 2023, 36 (07) : 194 - 212
  • [35] Experimental and modeling study of surface topography generation considering tool-workpiece vibration in high-precision turning
    Zhou, Xingying
    Liu, Henan
    Yu, Tianyu
    Guo, Ruiyang
    Wang, Guangzhou
    Sun, Yazhou
    Chen, Mingjun
    CHINESE JOURNAL OF AERONAUTICS, 2023, 36 (07) : 194 - 212
  • [36] Experimental and modeling study of surface topography generation considering tool-workpiece vibration in high-precision turning
    Xingying ZHOU
    Henan LIU
    Tianyu YU
    Ruiyang GUO
    Guangzhou WANG
    Yazhou SUN
    Mingjun CHEN
    Chinese Journal of Aeronautics , 2023, (07) : 194 - 212
  • [37] Utilization of Metal Forming Process Mathematical Modelling to Predict the Spring-back of the Dual-phase Steel Stamping
    Korecek, David
    Solfronk, Pavel
    Sobotka, Jiri
    MANUFACTURING TECHNOLOGY, 2023, 23 (06): : 827 - 836
  • [38] Experimental and modelling study of the effect of martensite volume fraction on friction and wear of dual-phase steel at microscopic scale
    Penfornis, C.
    Jourani, A.
    Mazeran, P. -E.
    WEAR, 2021, 484
  • [39] MODELLING AND EXPERIMENTAL INVESTIGATION OF LARGE-STRAIN CYCLIC PLASTIC DEFORMATION OF HIGH STRENGTH DUAL-PHASE STEELS
    Tisza, Miklos
    Lukacs, Zsolt
    11TH WORLD CONGRESS ON COMPUTATIONAL MECHANICS; 5TH EUROPEAN CONFERENCE ON COMPUTATIONAL MECHANICS; 6TH EUROPEAN CONFERENCE ON COMPUTATIONAL FLUID DYNAMICS, VOLS II - IV, 2014, : 1622 - 1633
  • [40] Research experimental on surface integrity and parameters optimization of micro-milling dual-phase titanium alloy
    Zhao, Haiyue
    Cao, Yan
    Gorbachev, Sergey
    Kuzin, Victor
    Du, Jiang
    He, Weiliang
    SURFACE TOPOGRAPHY-METROLOGY AND PROPERTIES, 2025, 13 (01):