Dr. Mohammad Azadi
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Dr. Mohammad Azadi

Associate Professor
Faculty of Mechanical Engineering, Semnan University, Iran.


Highest Degree
Ph.D. in Aeronautical and Mechanical Engineering from Sharif University of Technology, Iran

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Area of Interest:

Engineering
100%

Research Publications in Numbers

Books
0
Chapters
2
Articles
122
Abstracts
118

Selected Publications

  1. Zhao, J., B. Li, Y. Zheng, M. Azadi and X. Chen, 2022. Cyclic deformation behavior and failure mechanism of 316LN stainless steel under creep-fatigue loading at 550 °C. J. Mater. Eng. Perform., 31: 8314-8326.
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  2. Parast, M.S.A., A. Bagheri, A. Kami, M. Azadi and V. Asghari, 2022. Bending fatigue behavior of fused filament fabrication 3D-printed ABS and PLA joints with rotary friction welding. Prog. Addit. Manuf., 7: 1345-1361.
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  3. Parast, M.S.A. and M. Azadi, 2022. Effect of nano-clay particles and heat treating on pure and fretting fatigue properties of piston aluminum alloy under stress-controlled cyclic bending loading. J. Mater. Eng. Perform., 31: 5927-5942.
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  4. Oliya, A.Y.P., M. Azadi, M.S.A. Parast and M. Mokhtarishirazabad, 2022. Effect of heat-treating on microstructure and high cycle bending fatigue behavior of AZ91 and AZE911 magnesium alloys. Adv. Mater. Sci. Eng., Vol. 2022. 10.1155/2022/4030062.
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  5. Mohammadi, F., M. Azadi and M.S.A. Parast, 2022. Influence of specimen geometry and notch on fatigue lifetime and fracture behavior of aluminum-based nanocomposite under stress-controlled fully-reversed bending loads. Recent Pat. Nanotechnol., Vol. 16. 10.2174/1872210516666220817115300.
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  6. Miri, S.E., M. Azadi and S. Pakdel, 2022. Development of a duty cycle with K-means clustering technique for hydraulic steering in an instrumented TIBA vehicle. Transp. Eng., Vol. 8. 10.1016/j.treng.2022.100114.
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  7. Hosseini, S.M., M. Azadi, A. Ghasemi-Ghalebahman and S.M. Jafari, 2022. Data analysis of striation spacing, lifetime, and crack length in crankshaft ductile cast iron under cyclic bending loading through high-cycle fatigue regime. Data Brief, Vol. 45. 10.1016/j.dib.2022.108666.
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  8. Farokhpour, M., M.S.A. Parast and M. Azadi, 2022. Evaluation of hardness and microstructural features in piston aluminum-silicon alloys after different ageing heat treatments. Res. Mater., Vol. 16. 10.1016/j.rinma.2022.100323.
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  9. Esfarjani, S.M., A. Dadashi and M. Azadi, 2022. Topology optimization of additive-manufactured metamaterial structures: A review focused on multi-material types. Forces Mech., Vol. 7. 10.1016/j.finmec.2022.100100.
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  10. Dadashi, A. and M. Azadi, 2022. Experimental bending fatigue data of additive-manufactured PLA biomaterial fabricated by different 3d printing parameters. Preprints, Vol. 2022. 10.20944/preprints202201.0252.v1.
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  11. Dadashi, A. and M. Azadi, 2022. Experimental bending fatigue data of additive-manufactured PLA biomaterial fabricated by different 3D printing parameters. Prog. Addit. Manuf., Vol. 2022. 10.1007/s40964-022-00327-1.
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  12. Basiri, A., F. Zaïri, M. Azadi and A. Ghasemi-Ghalebahman, 2022. Micromechanical constitutive modeling of tensile and cyclic behaviors of nano-clay reinforced metal matrix nanocomposites. Mech. Mater., Vol. 168. 10.1016/J.MECHMAT.2022.104280.
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  13. Bagheri, A., M.S.A. Parast, A. Kami, M. Azadi and V. Asghari, 2022. Fatigue testing on rotary friction-welded joints between solid ABS and 3D-printed PLA and ABS. Eur. J. Mech.- A/Solids, Vol. 96. 10.1016/J.EUROMECHSOL.2022.104713.
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  14. Azar, R.G., M.S.A. Parast and M. Azadi, 2022. Heat-treating and nano-reinforcing improvements on fretting fatigue properties and fracture behaviors of cylinder head aluminum alloys. J. Mater. Res. Technol., 20: 1927-1939.
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  15. Azadi, M., M.S.A. Parast and M. Azadi, 2022. Effects of plasma nitriding process on the corrosion behavior of GJS700 nodular cast iron. Surf. Topogr.: Metrol. Prop., Vol. 10. 10.1088/2051-672X/ac68fc.
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  16. Azadi, M., K. Ivanov, S. Rezanezhad and S.A.A. Talesh, 2022. Scanning and transmission electron microscopy analysis for surface-modified AM60 magnesium alloy by pulsed electron beam irradiation. Nucl. Instrum. Methods Phys. Res., Sect. B, 513: 9-13.
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  17. Azadi, M., H. Bahmanabadi, F. Gruen, G. Winter and B. Seisenbacher, 2022. Cyclic hardening/softening experimental data in nano-clay-composite and aluminum alloy under high-temperature strain-controlled loading. Exp. Results, Vol. 3. 10.1017/exp.2021.32.
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  18. Azadi, M., A. Shahsavand and M.S.A. Parast, 2022. Analyzing experimental data from reciprocating wear testing on piston aluminum alloys, with and without clay nano-particle reinforcement. Data Brief, Vol. 45. 10.1016/j.dib.2022.108766.
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  19. Azadi, M., 2022. A Perspective on metamaterials for the biomechanics application: Multi-material metamaterial (4M) structures. Mater. Sci. Forum, 1064: 151-156.
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  20. Azadi, M. and M.S.A. Parast, 2022. Data analysis of high-cycle fatigue testing on piston aluminum-silicon alloys under various conditions: Wear, lubrication, corrosion, nano-particles, heat-treating, and stress. Data Brief, Vol. 41. 10.1016/j.dib.2022.107984.
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  21. Azadi, M. and M. Azadi, 2022. Data analysis for investigating the tribological behaviors of aluminum-silicon alloys. Data Brief, Vol. 42. 10.1016/J.DIB.2022.108260.
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  22. Azadi, M. and A. Dadashi, 2022. Experimental fatigue dataset for additive-manufactured 3D-printed Polylactic acid biomaterials under fully-reversed rotating-bending bending loadings. Data Brief, Vol. 41. 10.1016/j.dib.2022.107846.
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  23. Aroo, H., M. Azadi and M. Azadi, 2022. Corrosion effects on high-cycle fatigue lifetime and fracture behavior for heat-treated aluminum-matrix nano-clay-composite compared to piston aluminum alloy. Silicon, 14: 3749-3763.
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  24. Zolfaghari, M., M. Azadi and M. Azadi, 2021. Characterization of high-cycle bending fatigue behaviors for piston aluminum matrix siO2 nano-composites in comparison with aluminum–silicon alloys. Int. J. Metalcast., Vol. 15. 10.1007/s40962-020-00437-y.
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  25. Saeedi, M., M. Azadi, M. Mokhtarishirazabad and P. Lopez‐Crespo, 2021. Numerical simulations of carbon/epoxy laminated composites under various loading rates, comparing extended finite element method and cohesive zone modeling. Mater. Design Process. Commun., Vol. 3. 10.1002/mdp2.198.
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  26. Rezanezhad, S., M. Azadi and M. Azadi, 2021. Influence of heat treatment on high-cycle fatigue and fracture behaviors of piston aluminum alloy under fully-reversed cyclic bending. Met. Mater. Int., 27: 860-870.
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  27. Parast, M.S.A., M.J. Khameneh, M. Azadi, M. Azadi, M.H. Mahdipanah and S. Roostaie, 2021. Effect of plasma nitriding on high-cycle fatigue properties and fracture behaviors of GJS700 nodular cast iron under cyclic bending loading. Fatigue Fract. Eng. Mater. Struct., 44: 2070-2086.
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  28. Motamedi, M., G. Shafabakhsh and M. Azadi, 2021. Evaluation of fatigue and rutting properties of asphalt binder and mastic modified by synthesized polyurethane. J. Traffic Transp. Eng. (English Edition), 8: 1036-1048.
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  29. Mohammad Azadi, Hanieh Aroo 2021. Bending cyclic behavior and scatter-band analysis of aluminum alloys under beneficial and detrimental conditions through high-cycle fatigue regime. Fract. Struct. Integrity, 15: 272-281.
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  30. Khisheh, S., K. Khalili, M. Azadi and V.Z. Hendouabadi, 2021. Influences of roughness and heat treatment on high-cycle bending fatigue properties of A380 aluminum alloy under stress-controlled cyclic loading. Mater. Chem. Phys., Vol. 264. 10.1016/J.MATCHEMPHYS.2021.124475.
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  31. Hosseini, S.M., A. Ghasemi-Ghalebahman, M. Azadi and S.M. Jafari, 2021. Crack initiation detection in crankshaft ductile cast iron based on information entropy of acoustic emission signals under tensile loading. Eng. Fail. Anal., Vol. 127. 10.1016/J.ENGFAILANAL.2021.105547.
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  32. Golshan, A.M.A., H. Aroo and M. Azadi, 2021. Sensitivity analysis for effects of heat treatment, stress, and temperature on AlSi12CuNiMg aluminum alloy behavior under force-controlled creep loading. Appl. Phys. A, Vol. 127. 10.1007/s00339-020-04134-9.
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  33. Esfarjani, S.M., M. Azadi, M. Alizadeh and H. Sayar, 2021. Prediction of fiber breakage and matrix cracking in polymeric composites under low-cycle fatigue regimes by fuzzy and wavelet clustering of acoustic emission signals. Compos.: Mech. Comput. Appl.: Int. J., 12: 17-51.
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  34. Esfarjani, S.M., M. Azadi, M. Alizadeh and H. Sayar, 2021. Prediction of fiber breakage and matrix cracking in polymeric composites under low-cycle fatigue regimes by fuzzy and wavelet clustering of acoustic emission signals. Comp. Mech. Comput. Appl. Int. J., 12: 17-51.
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  35. Azadi, M., M. Zomorodipour and A. Fereidoon, 2021. Sensitivity analysis of mechanical properties and ductile/brittle behaviors in aluminum-silicon alloy to loading rate and nano-particles, considering interaction effects. Eng. Rep., Vol. 3. 10.1002/eng2.12341.
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  36. Azadi, M., M. Samiee and S.M. Esfarjani, 2021. Estimation of low-cycle fatigue lifetime in aluminum-silicon-magnesium alloy of cylinder heads based on striation marks as failure features of fracture surfaces and Paris crack growth law. J. Fail. Anal. Preven., 21: 1466-1475.
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  37. Azadi, M., M. Samiee and S.M. Esfarjani, 2021. Correction to: estimation of low-cycle fatigue lifetime in aluminum-silicon-magnesium alloy of cylinder heads based on striation marks as failure features of fracture surfaces and paris crack growth law. J. Fail. Anal. Preven., Vol. 21. 10.1007/s11668-021-01247-y.
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  38. Azadi, M., M. Alizadeh, S.M. Jafari and A. Farrokhabadi, 2021. Cumulative acoustic emission energy for damage detection in composites reinforced by carbon fibers within low-cycle fatigue regime at various displacement amplitudes and rates. Polym. Polym. Compos., 29: S36-S48.
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  39. Azadi, M., H. Aroo, M. Azadi and M.S.A. Parast, 2021. Comparing of high-cycle fatigue lifetimes in un-corroded and corroded piston aluminum alloys in diesel engine applications. Arch. Foundry Eng., 21: 89-94.
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  40. Azadi, M., A. Dadashi, S. Dezianian, M. Kianifar, S. Torkaman and M. Chiyani, 2021. High-cycle bending fatigue properties of additive-manufactured ABS and PLA polymers fabricated by fused deposition modeling 3D-printing. Forces Mech., Vol. 3. 10.1016/j.finmec.2021.100016.
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  41. Azadi, M., A. Behmanesh and H. Aroo, 2021. Creep behaviors at 275°C for aluminum-matrix nano-composite under different stress levels. Eng. Fail. Anal., 21: 81-89.
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  42. Azadi, M., A. Basiri, A. Dadashi, G. Winter, B. Seisenbacher and F. Grün, 2021. Effect of nano-clay addition and heat-treatment on tensile and stress-controlled low-cycle fatigue behaviors of aluminum-silicon alloy: Effect of nano-clay addition and heat-treatment. Fract. Struct. Integrity, 15: 373-397.
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  43. Ahadi, F., M. Azadi, M. Biglari and S.N. Madani, 2021. Study of coating effects on the performance of Stirling engine by non-ideal adiabatic thermodynamics modeling. Energy Rep., 7: 3688-3702.
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  44. Motamedi, M., G. Shafabakhsh and M. Azadi, 2020. Evaluating fatigue-damage of asphalt binder and mastic modified with nano-silica and synthesized polyurethane using VECD method. J. Mater. Civ. Eng., 10.1061/(ASCE)MT.1943-5533.0003280.
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  45. Sayar, H., M. Azadi and M. Alizadeh, 2019. Detection of crack initiation and propagation in aluminum alloy under tensile loading, comparing signals acquired by acoustic emission and vibration sensors. J. Nondestruct. Eval., 10.1007/s10921-019-0639-9.
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  46. Rezanezhad, S., M. Azadi, M. Azadi, 2019. Influence of heat treatment on high-cycle fatigue and fracture behaviors of piston aluminum alloy under fully-reversed cyclic bending. Met. Mater. Int., 10.1007/s12540-019-00498-7.
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  47. Azadi, m., M. Saeedi, M. Mokhtarishirazabad and P. Lopez-Crespo, 2019. Effects of loading rate on crack growth behavior in carbon fiber reinforced polymer composites using digital image correlation technique. Compos. Part B: Eng., 10.1016/J.COMPOSITESB.2019.107161.
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  48. Azadi, M. and H. Aroo, 2019. Creep properties and failure mechanisms of aluminum alloy and aluminum matrix silicon oxide nano-composite under working conditions in engine pistons. Mater. Res. Express, 10.1088/2053-1591/ab455f.
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  49. Sayar, H., M. Azadi, A. Ghasemi-Ghalebahman and S.M. Jafari, 2018. Clustering effect on damage mechanisms in open-hole laminated carbon/epoxy composite under constant tensile loading rate, using acoustic emission. Compos. Struct., 204: 1-11.
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  50. Safarloo, S., F. Loghman, M. Azadi and M. Azadi, 2018. Optimal design experiment of ageing time and temperature in inconel-713C superalloy based on hardness objective. Trans. Indian Inst. Met., 71: 1563-1572.
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  51. Mohammad Azadi, M., and M. Farzannasab, 2018. Evaluation of high-cycle fatigue behavior in compact bones at different loading frequencies. Meccanica, 53: 3517-3526.
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  52. Khameneh, M.J. and M. Azadi, 2018. Reliability prediction, scatter-band analysis and fatigue limit assessment of high-cycle fatigue properties in EN-GJS700-2 ductile cast iron. MATEC Web Conf., 10.1051/MATECCONF/201816510012.
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  53. Bahmanabadi, H., S. Rezanezhad, M. Azadi and M. Azadi, 2018. Characterization of creep damage and lifetime in Inconel-713C nickel-based superalloy by stress-based, strain/strain rate-based and continuum damage mechanics models. Mater. Res. Express., 10.1088/2053-1591/aaab04.
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  54. Azadi, M., S. Safarloo, F. Loghman and R. Rasouli, 2018. Microstructural and thermal properties of piston aluminum alloy reinforced by nano-particles. AIP Conference Proceedings, January 10, 2018, Author(s) pp: 020027-020027.
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  55. Azadi, M., M. Zolfaghari, S. Rezanezhad and M. Azadi, 2018. Effects of SiO2 nano-particles on tribological and mechanical properties of aluminum matrix composites by different dispersion methods. Appl. Phys. A, 10.1007/S00339-018-1797-9.
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  56. Azadi, M., H, Sayar, A. Ghasemi-Ghalebahman and S.M. Jafari, 2018. Tensile loading rate effect on mechanical properties and failure mechanisms in open-hole carbon fiber reinforced polymer composites by acoustic emission approach. Compos. Part B: Eng., 158: 448-458.
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  57. Khameneh, M.J. and M. Azadi, 2017. Evaluation of high-cycle bending fatigue and fracture behaviors in EN-GJS700-2 ductile cast iron of crankshafts. Eng. Fail. Anal., 85: 189-200.
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  58. Azadi, M., and M. Azadi, 2017. Evaluation of high-temperature creep behavior in Inconel-713C nickel-based superalloy considering effects of stress levels. Mater. Sci. Eng.: A 689: 298-305.
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  59. Azadi, M., A. Marbout, S. Safarloo, M. Azadi, M. Shariat and M.H. Rizi, 2017. Effects of solutioning and ageing treatments on properties of Inconel-713C nickel-based superalloy under creep loading. Mater. Sci. Eng.: A, 711: 195-204.
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  60. Azadi, M., 2016. Failure analysis and prevention in powertrain systems. In: Handbook of Materials Failure Analysis with Case Studies from the Aerospace and Automotive Industries, Makhlouf, A.S.H. and M. Aliofkhazraei (Eds.), Elsevier, Amsterdam, ISBN: 978-0-12-800950-5, Pages: 471-492.
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  61. Azadi, M., 2016. Cyclic thermo-mechanical stress, strain and continuum damage behaviors in light alloys during fatigue lifetime considering heat treatment effect. Int. J. Fatigue, 99: 303-314.
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  62. Rad, M.R., G.H. Farrahi, M. Azadi and M. Ghodrati, 2015. Stress analysis of thermal barrier coating system subjected to out-of-phase thermo-mechanical loadings considering roughness and porosity effect. Surf. Coat. Technol., 262: 77-86.
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  63. Felfeli, M., M. Azadi and G.H. Farrahi, 2015. Constitutive modeling of elastic-visco-plastic behaviors in aluminum alloys subjected to cyclic loadings at various strain rates. J. Strain Anal. Eng. Des., 50: 103-124.
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  64. Azadi, M., G.H. Farrahi, G. Winter, P. Huter and W. Eichlseder, 2015. Damage prediction for un-coated and coated aluminum alloys under thermal and mechanical fatigue loadings based on a modified plastic strain energy approach. Mater. Design, 66: 587-595.
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  65. Azadi, M., G. Winter, G.H. Farrahi and W. Eichlseder, 2015. Comparison between isothermal and non-isothermal fatigue behavior in a cast aluminum-silicon-magnesium alloy. Strength Mater., 47: 840-848.
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  66. Rad, M.R., G.H. Farrahi, M. Azadi and M. Ghodrati, 2014. Effects of preheating temperature and cooling rate on two-step residual stress in thermal barrier coatings considering real roughness and porosity effect. Ceram. Int., 40: 15925-15940.
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  67. Moridi, A., M. Azadi and G.H. Farrahi, 2014. Thermo-mechanical stress analysis of thermal barrier coating system considering thickness and roughness effects. Surf. Coat. Technol., 243: 91-99.
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  68. Farrahi, G.H., M. Ghodrati, M. Azadi and M.R. Rad, 2014. Stress–strain time-dependent behavior of A356.0 aluminum alloy subjected to cyclic thermal and mechanical loadings. Mech. Time-Depend. Mater., 18: 475-491.
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  69. Farrahi, G.H., A. Shamloo, M. Felfeli and M. Azadi, 2014. Numerical simulations of cyclic behaviors in light alloys under isothermal and thermo-mechanical fatigue loadings. Mater. Design (1980-2015), 56: 245-253.
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  70. Azadi, M., M. Ghodrati and G.H. Farrahi, 2014. Experimental and numerical evaluations of stress relaxation in A356 aluminium alloy subjected to out-of-phase thermomechanical cyclic loadings. Mater. High Temp., 31: 204-210.
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  71. Azadi, M., G.H. Farrahi, G. Winter and W. Eichlseder, 2014. Thermo-mechanical behaviours of light alloys in comparison to high temperature isothermal behaviours. Mater. High Temp., 31: 12-17.
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  72. Azadi, M., 2014. Effect of temperature and gas flux on the mechanical behavior of TiC coating by pulsed DC plasma enhanced chemical vapor deposition. Int. J. Eng., 27: 1243-1250.
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  73. Azadi, M. and A.S. Rouhaghdam, 2014. Nanomechanical properties of TiN/TiC multilayer coatings. Strength Mater., 46: 121-131.
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  74. Mokhtarishirazabad, M., S.M.A. Boutorabi, M. Azadi and M. Nikravan, 2013. Effect of rare earth elements on high cycle fatigue behavior of AZ91 alloy. Mater. Sci. Eng.: A, 587: 179-184.
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  75. Mokhtarishirazabad, M., M. Azadi, G.H. Farrahi, G. Winter and W. Eichlseder, 2013. Improvement of high temperature fatigue lifetime in AZ91 magnesium alloy by heat treatment. Mater. Sci. Eng.: A, 588: 357-365.
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  76. Farrahi, G.H., M. Azadi, G. Winter and W. Eichlseder, 2013. A new energy-based isothermal and thermo-mechanical fatigue lifetime prediction model for aluminium-silicon-magnesium alloy. Fatigue Fract. Eng. Mater. Struct., 36: 1323-1335.
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  77. Azadi, M., G.H. Farrahi, G. Winter and W. Eichlseder, 2013. Experimental fatigue lifetime of coated and uncoated aluminum alloy under isothermal and thermo-mechanical loadings. Ceram. Int., 39: 9099-9107.
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  78. Azadi, M., G.H. Farrahi and A. Moridi, 2013. Optimization of air plasma sprayed thermal barrier coating parameters in diesel engine applications. J. Mater. Eng. Perform., 22: 3530-3538.
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  79. Azadi, M., A.S. Rouhaghdam, S. Ahangarani, H.H. Mofidi and M. Valiei, 2013. Mechanical behavior and properties of TiN/TiC coating using PACVD. Adv. Mater. Res., 829: 476-481.
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  80. Azadi, M., 2013. Effects of strain rate and mean strain on cyclic behavior of aluminum alloys under isothermal and thermo-mechanical fatigue loadings. Int. J. Fatigue, 47: 148-153.
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  81. Azadi, M. and M.M. Shirazabad, 2013. Heat treatment effect on thermo-mechanical fatigue and low cycle fatigue behaviors of A356.0 aluminum alloy. Mater. Design, 45: 279-285.
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  82. Mehrabani, M.M., A.A. Jafari and M. Azadi, 2012. Multidisciplinary optimization of a stiffened shell by genetic algorithm. J. Mech. Sci. Technol., 26: 517-530.
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  83. Azadi, M., A. Moridi and G.H. Farrahi, 2012. Optimal experiment design for plasma thermal spray parameters at bending loads. Int. J. Surf. Sci. Eng., 6: 3-14.
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  84. Azadi, M., A. Mafi, M. Roozban and F. Moghaddam, 2012. Failure analysis of a cracked gasoline engine cylinder head. J. Fail. Anal. Preven., 12: 286-294.
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  85. Moridi, A., M. Azadi and G.H. Farrahi, 2011. RETRACTED: Coating thickness and roughness effect on stress distribution of A356.0 under thermo-mechanical loadings. Proc. Eng., 10: 1372-1377.
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  86. Damircheli, M. and M. Azadi, 2011. Temperature and thickness effects on thermal and mechanical stresses of rotating FG-disks. J. Mech. Sci. Technol., 25: 827-836.
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  87. Azadi, M., 2011. Free and forced vibration analysis of FG beam considering temperature dependency of material properties. J. Mech. Sci. Technol., 25: 69-80.
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  88. Azadi, M., M. Shariyat, 2010. Nonlinear transient transfinite element thermal analysis of thick-walled FGM cylinders with temperature-dependent material properties. Meccanica, 45: 305-318.
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  89. Azadi, M. and M. Azadi, 2010. Thermoelastic Stresses in FG-Cylinders. In: Heat Transfer - Mathematical Modelling, Numerical Methods and Information Technology, Belmiloudi, A. (Ed.), InTech, London, ISBN: 978-953-307-550-1, Pages: 656.
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  90. Azadi, S., M. Azadi and F. Zahedi, 2009. NVH analysis and improvement of a vehicle body structure using DOE method. J. Mech. Sci. Technol., 23: 2980-2989.
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  91. Azadi, M., S. Azadi, F. Zahedi and M. Moradi, 2009. Multidisciplinary optimization of a car component under NVH and weight constraints using RSM. Int. Mech. Eng. Congr. Exposition, 15: 315-319.
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  92. Azadi, M., S. Azadi, F. Zahedi and M. Moradi, 2009. Multidisciplinary optimization of a car component under NVH and weight constraints using RSM. Int. Mech. Eng. Congr. Exposition, 15: 315-319.
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