Impact of slide diamond burnishing additional parameters on fatigue behaviour of 2024-T3 Al alloy

被引:25
|
作者
Maximov, Jordan T. [1 ]
Anchev, Angel P. [1 ]
Duncheva, Galya V. [1 ]
Ganev, Nikolaj [2 ]
Selimov, Kenan F. [1 ]
Dunchev, Vladimir P. [1 ]
机构
[1] Tech Univ Gabrovo, Dept Appl Mech, Gabrovo, Bulgaria
[2] Czech Tech Univ, Dept Solid State Engn, Prague, Czech Republic
关键词
2024-T3 Al alloy; bending fatigue tests; fatigue behaviour; fatigue life; slide diamond burnishing; SURFACE-ROUGHNESS; RESIDUAL-STRESSES; LIFE; PERFORMANCE; STEEL;
D O I
10.1111/ffe.12915
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
One of the methods for increasing fatigue life of symmetric rotary metal components is slide diamond burnishing (SDB). This method is implemented on conventional and computer numerical control machine tools by means of simple equipment, which is its main advantage. The SDB basic parameters are diamond insert radius, burnishing force, feed rate, and burnishing velocity. The additional ones are number of passes, working scheme, and lubrication conditions. The effect of SDB additional parameters on the fatigue behaviour of 2024-T3 Al alloy was experimentally studied. Groups of smooth and notched hourglass-shaped specimens were slide burnished using different combinations of additional SDB parameters and then were subjected to bending fatigue tests. The residual stresses, introduced by SDB, were measured by X-ray diffraction technique. The near-surface microstructure of the slide-burnished specimens was investigated. Based on the results obtained, it was established that SDB produces two main effects, which depend on SDB additional parameters. The essence of the macroeffect is creation of residual compressive stresses in the superficial and subsurface layers. This stresses retard the formation and growth of fatigue macrocracks and thus increase the lifetime of slide-burnished components. The microeffect is expressed in modifying the microstructure of the surface and subsurface layers, correspondingly, refining the grain and homogenizing and reducing the pores in the material. Such microstructure is characterized by increased plasticity and fatigue crack resistance. The fatigue life depends on the combination of these two effects. Thus, the desired fatigue behaviour of the slide-burnished component can be ensured through an appropriate selection of the governing additional SDB parameters.
引用
收藏
页码:363 / 373
页数:11
相关论文
共 50 条
  • [41] Experimental and numerical investigation on the fretting fatigue behavior of cold expanded Al-alloy 2024-T3 plates
    Chakherlou, T. N.
    Shahriary, P.
    Akbari, A.
    ENGINEERING FAILURE ANALYSIS, 2021, 123
  • [42] Fatigue Life Prediction of 2024-T3 Clad Al Alloy Based on an Improved SWT Equation and Machine Learning
    Li, Zhaoji
    Dai, Weibing
    Yue, Haitao
    Guo, Chenguang
    Ji, Zijie
    Li, Qiang
    Zhang, Jianzhuo
    MATERIALS, 2025, 18 (02)
  • [43] Comparison of retardation behaviour of 2024-T3 and 7075-T6 Al alloys
    Celik, CE
    Vardar, O
    Kalenderoglu, V
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2004, 27 (08) : 713 - 722
  • [44] Effects of constituent particle clusters on fatigue behavior of 2024-T3 aluminum alloy
    DeBartolo, EA
    Hillberry, BM
    INTERNATIONAL JOURNAL OF FATIGUE, 1998, 20 (10) : 727 - 735
  • [45] Effect of trivalent chromium process on fatigue lifetime of 2024-T3 aluminium alloy
    Akanou, Myriam
    Saillard, Romain
    Fori, Benoit
    Blanc, Christine
    Odemer, Gregory
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2019, 743 : 322 - 326
  • [46] Effect of contact geometry on fretting fatigue life of aluminium alloy 2024-T3
    Farrahi, GH
    Majzoobi, GH
    Chinekesh, H
    INDIAN JOURNAL OF ENGINEERING AND MATERIALS SCIENCES, 2005, 12 (04) : 331 - 336
  • [47] Deformation and dissipated energies for high cycle fatigue of 2024-T3 aluminium alloy
    Giancane, S.
    Chrysochoos, A.
    Dattoma, V.
    Wattrisse, B.
    THEORETICAL AND APPLIED FRACTURE MECHANICS, 2009, 52 (02) : 117 - 121
  • [48] Filiform investigations on aluminum alloy 2024-T3
    Kloet, JV
    Schmidt, W
    Hassel, AW
    Stratmann, M
    CORROSION AND CORROSION PROTECTION, 2001, 2001 (22): : 885 - 890
  • [49] Characterization of 2024-T3: An aerospace aluminum alloy
    Huda, Zainul
    Taib, Nur Iskandar
    Zaharinie, Tuan
    MATERIALS CHEMISTRY AND PHYSICS, 2009, 113 (2-3) : 515 - 517
  • [50] The impact of the multiwall carbon nanotubes on the fatigue properties of adhesive joints of 2024-T3 aluminium alloy subjected to peel
    Kubit, Andrzej
    Bucior, Magdalena
    Zielecki, Wladyslaw
    21ST EUROPEAN CONFERENCE ON FRACTURE, (ECF21), 2016, 2 : 334 - 341