Mohammad A. Omari, Hamzah M. Mousa, Faris M. AL-Oqla, and Mohammad Aljarrah, Enhancing the surface hardness and roughness of engine blades using the shot peening process, Int. J. Miner. Metall. Mater., 26(2019), No. 8, pp. 999-1004. https://doi.org/10.1007/s12613-019-1818-5
Cite this article as:
Mohammad A. Omari, Hamzah M. Mousa, Faris M. AL-Oqla, and Mohammad Aljarrah, Enhancing the surface hardness and roughness of engine blades using the shot peening process, Int. J. Miner. Metall. Mater., 26(2019), No. 8, pp. 999-1004. https://doi.org/10.1007/s12613-019-1818-5
Research Article

Enhancing the surface hardness and roughness of engine blades using the shot peening process

+ Author Affiliations
  • The effects of shot peening on the mechanical properties of steel 1070 were studied to enhance the material's properties and surface characteristics. In this study, pressure and exposure time were the main parameters governing surface hardness and surface roughness. The optimal time duration and pressure were determined after several experimental trials. Changes in hardness and surface roughness were monitored as the pressure of the shot and the exposure time were varied. Furthermore, the microstructure was evaluated by scanning electron microscopy (SEM) and the images were enhanced by image processing techniques to evaluate the surface changes. Pareto charts were constructed to estimate the effects of pressure and time on both surface hardness and surface roughness. The novelty of this study is the concentration on engine blades which are frequently used in aircrafts to determine the optimal time-pressure combination for shot peening to achieve suitable mechanical and surface properties. The results show that shot peening pressure (up to 482.6 kPa for 7 min) has positive effect on enhancing the surface and mechanical properties for steel 1070 blades; however, an increase in either pressure or time above that level adversely affected both surface hardness and surface roughness.
  • loading
  • [1]
    F.M. AL-Oqla, A. A. Omar, and F. Osama, Evaluating sustainable energy harvesting systems for human implantable sensors, Int. J. Electron., 105(2018), No. 3, p. 504.
    [2]
    F.M. AL-Oqla, Investigating the mechanical performance deterioration of Mediterranean cellulosic cypress and pine/polyethylene composites, Cellulose, 24(2017), No. 6, p. 2523.
    [3]
    F.M. AL-Oqla and M.S. Salit, Materials Selection for Natural Fiber Composites, 1st ed., Woodhead Publishing, Cambridge, 2017.
    [4]
    X.F. Li, J. Zhang, M.M. Ma, and X.L. Song, Effect of shot peening on hydrogen embrittlement of high strength steel, Int. J. Miner. Metall. Mater., 23(2016), No. 6, p. 667.
    [5]
    Z. Jia and J.J. Ji, Influence analysis of shot peening on hot forging die, Int. J. Adv. Manuf. Technol., 90(2016). No. 5-8, p. 1779.
    [6]
    M. Umemoto, Y. Todaka, and K. Tsuchiya, Formation of nanocrystalline structure in steels by air blast shot peening, Mater. Trans., 44(2003), No. 7, p. 1488.
    [7]
    K. Zhan, C.H. Jiang, and V. Ji, Surface mechanical properties of S30432 austenitic steel after shot peening, Appl. Surf. Sci., 258(2012), No. 24, p. 9559.
    [8]
    S.H. Chang, T.P. Tang, and F.C. Tai, Enhancement of thermal cracking and mechanical properties of H13 tool steel by shot peening treatment, Surf. Eng., 27(2013), No. 8, p. 581.
    [9]
    O. Unal and R. Varol, Almen intensity effect on microstructure and mechanical properties of low carbon steel subjected to severe shot peening, App. Surf. Sci., 290(2014), p. 40.
    [10]
    V. Llaneza and F.J. Belzunce, Optimal shot peening treatments to maximize the fatigue life of quenched and tempered steels, J. Mater. Eng. Perfom., 24(2015), No. 7, p. 2806.
    [11]
    O. Unal, Optimization of shot peening parameters by response surface methodology, Surf. Coat. Technol., 305(2016), p. 99.
    [12]
    Makeitfrom, SAE-AISI 1070(C70, 1.1520, G10700) Carbon Steel,[2018-05-05], https://www.makeitfrom.com/materialproperties/SAE-AISI-1070-C70-1.1520-G10700-Carbon-Steel.
    [13]
    C. Xu, G.M. Sheng, H.D. Wang, J.Y. Jiao, and X.J. Yuan, Effect of high energy shot peening on the microstructure and mechanical properties of Mg/Ti joints, J. Alloys Compd., 695(2017), p. 1383.
    [14]
    J.E. Rodriguez-Sanchez, A. Rodriguez-Castellanos, and F. Perez-Guerrero, Shot peening effect on fatigue crack repaired weldments, Adv. Mater. Sci. Eng., 2017(2017), art. No. 3720403.
    [15]
    D. Kirk, Residual stresses in shot peened components, The Shot Peener, 18(2004), p. 26.
    [16]
    L.S. Hetram, L. Singh, and H. Om, Shot peening effects on material properties:Review, Int. J. Innovative Res. Sci. Technol., 1(2015), No. 12, p. 480.
    [17]
    P. Sanjurjoa, C. Rodrígueza, I.F. Parientea, F.J. Belzuncea, and A.F. Canteli, The influence of shot peening on the fatigue behaviour of duplex stainless steels, Procedia Eng., 2(2010), No. 1, p. 1539.
    [18]
    H.Y. Miao, D. Demers, S. Larose, C. Perron, and M. Lévesque, Experimental study of shot peening and stress peen forming, J. Mater. Process. Technol., 210(2010), No. 15, p. 2089.
    [19]
    M.A. Omari and I. Sevostianov, Estimation of changes in the mechanical properties of stainless steel subjected to fatigue loading via electrical resistance monitoring, Int. J. Eng. Sci., 65(2013), p. 40.
    [20]
    D. Hul and D.J. Bacon, Introduction to Dislocations, 4th ed., Butterworth-Heinemann, Oxford, 2011.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Share Article

    Article Metrics

    Article Views(555) PDF Downloads(13) Cited by()
    Proportional views

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return