Investigation of bending fatigue-life of aluminum sheets based on rolling direction

被引:22
作者
Sakin, Raif [1 ]
机构
[1] Balikesir Univ, Edremit Vocat Sch Higher Educ, Dept Machine & Met Technol, TR-10300 Edremit, Balikesir, Turkey
关键词
AA1100; AA1050; Aluminum sheet; Bending fatigue life; Rolling direction; HIGH-CYCLE FATIGUE; WEIBULL DISTRIBUTION; FRACTURE-BEHAVIOR; MAGNESIUM ALLOY; CRACK-GROWTH; COMPOSITES; CAST; DEFORMATION; PREDICTION; APPARATUS;
D O I
10.1016/j.aej.2016.11.005
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
High-cycle fatigue (HCF) and low-cycle fatigue (LCF) fatigue lives of rolled AA1100 and AA1050 aluminum sheets along different directions were evaluated at room temperature. Four types of samples denoted as longitudinal (L) and transverse (T) to the rolling direction were compared because the samples along the two typical directions show an obvious anisotropy. A cantilever plane-bending and multi-type fatigue testing machine was specially designed for this purpose. Deflection-controlled fatigue tests were conducted under fully reversed loading. The longest fatigue lives in the LCF region were obtained for AA1050 (L) while AA1100 (L) samples had the longest fatigue lives in the HCF region. (C) 2016 Faculty of Engineering, Alexandria University. Production and hosting by Elsevier B.V.
引用
收藏
页码:35 / 47
页数:13
相关论文
共 50 条
  • [1] Fatigue-life prediction of SiC aluminum composite using a Weibull model
    Shan, D
    Nayeb-Hashemi, H
    NDT & E INTERNATIONAL, 1999, 32 (05) : 265 - 274
  • [2] INVESTIGATION OF PLANE-BENDING FATIGUE BEHAVIOR OF 1100-H14 ALUMINUM ALLOY
    Sakin, Raif
    Er, Muharrem
    JOURNAL OF THE FACULTY OF ENGINEERING AND ARCHITECTURE OF GAZI UNIVERSITY, 2010, 25 (02): : 213 - 223
  • [3] Investigation of deep rolling effects on the fatigue life of Al-SiC nanocomposite
    Sattari, Sajjad
    Atrian, Amir
    MATERIALS RESEARCH EXPRESS, 2018, 5 (01):
  • [4] Fatigue-Life Prediction Method Based on Small-Crack Theory in an Engine Material
    Newman, James C., Jr.
    Annigeri, Balkrishna S.
    JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER-TRANSACTIONS OF THE ASME, 2012, 134 (03):
  • [5] Investigation of Surface Roughness, Hardness, and Stiffness Degradation of Aluminum Sheets Subjected to Flexural Fatigue
    Sakin, Raif
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2022, 31 (08) : 6373 - 6385
  • [6] Investigation of Surface Roughness, Hardness, and Stiffness Degradation of Aluminum Sheets Subjected to Flexural Fatigue
    Raif Sakin
    Journal of Materials Engineering and Performance, 2022, 31 : 6373 - 6385
  • [7] Experimental Investigation of Bending Fatigue Life of Driving Pinion Tooth of Hypoid Bevels
    Lu, Xi
    Wang, Shuwen
    JOURNAL OF TESTING AND EVALUATION, 2016, 44 (06) : 2137 - 2146
  • [8] An investigation on fatigue behavior of AA2024 aluminum alloy sheets in fuselage lap joints
    Nejad, Reza Masoudi
    Berto, Filippo
    Tohidi, Mohammadreza
    Darbandi, Ahmad Jalayerian
    Sina, Nima
    ENGINEERING FAILURE ANALYSIS, 2021, 126
  • [9] Fatigue-life prediction of SiC particulate reinforced aluminum alloy 6061 matrix composite using AE stress delay concept
    D. Shan
    H. Nayeb-Hashemi
    Journal of Materials Science, 1999, 34 : 3263 - 3273
  • [10] Fatigue Life of Aluminum Alloys Based on Shear and Hydrostatic Strain
    Lagoda, Tadeusz
    Glowacka, Karolina
    Kurek, Andrzej
    MATERIALS, 2020, 13 (21) : 1 - 21