Analysis of the Fracture of a Turbine Blade

سال انتشار: 1395
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 382

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شناسه ملی سند علمی:

JR_JSMA-8-2_006

تاریخ نمایه سازی: 12 اسفند 1398

چکیده مقاله:

The cause of crack initiation turbine blade had initially cracked by a fatigue mechanism over a period of time and then fractured by the overload at the last moment. Experimental procedure consists of macroscopic inspection, material verification, microscopic examination, and metallographic analysis and finally FE. And for these procedures, some specimens were prepared from a fractured blade. Using ICP and energy dispersive X-ray fluorescence, the chemical composition of the blade was carefully analyzed. The segregated area of Ti and Mo, caused generally by inappropriate manufacturing process, is found by the microstructure and EDX analysis of the blade. The fracture blade which installed on the third stage rotor of the turbojet was fractured at about 6 cm distance from the hub of proposed blade. The non-linear finite element method (FEM) was utilized in order to define the stress state of the disc or blade segment under operating conditions. High stress zones were found at the region of the lower fir-tree slot, where the failure occurred. A computation were also achieved with excessive rotational speed. The aim of this study is devoted to the mechanisms of damage of the turbine disc, and furthermore the critical high stress areas.

نویسندگان

A.R Shourangiz Haghighi

Department of Mechanical Engineering, Jahrom University

S Rahmanian

Department of Mechanical Engineering, Jahrom University

A Shamsabadi

College of Engineering, Shiraz Branch, Islamic Azad University

A zare

Department of Mechanical Engineering, Shiraz University

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  • Lucjan W., 2006, Failure analysis of turbine disc of an ...
  • Chan S.K., Tuba I.S., 1971, A finite element method for ...
  • Masataka M., 1992, Root and groove contact analysis for steam ...
  • Meguid S.A., Kanth P.S., Czekanski A., 2000, Finite element analysis ...
  • Papanikos P., Meguid S.A., Stjepanovic Z., 1998, Three-dimensional nonlinear finite ...
  • Zboinski G.,1995, Physical and geometrical non-linearities in contact problems of ...
  • McEvily A., 2004, Failures in inspection procedures: case studies, Engineering ...
  • Hou J., Wicks B.J., Antoniou R.A., 2002, An investigations of ...
  • Bhaumik S.K., 2002, Failure of turbine rotor blisk of an ...
  • Park M., Hwang Y., Choi Y., Kim T., 2002, Analysis ...
  • Treager I., 1995, Aircraft Gas Turbine Engine Technology, McGraw Hill. ...
  • Kyo-Soo S., Seon-Gab K., Daehan J., Young-Ha H., 2007, Analysis ...
  • Backman D. G., Mourer D. P., Bain K. R., Walston ...
  • Murakumo T., Kobayashi T., Koizumi Y., Harada H., 2004, Creep ...
  • Karunarante M. S. A., Reed R. C., 2003, Interdiffusion of ...
  • Reed R. C., Karunarantne M. S. A., 2000, Interdiffusion in ...
  • WalstonW. S., Cetel A., MacKay R., O’Hara K., Duhl D., ...
  • Tanaka R., 2008, Research and development of ultra-high temperature materials ...
  • Pollock T. M., Argon A. S., 1992, Creep resistance of ...
  • McLean M., Dyson B. F., 2010, Modeling the effects of ...
  • Pollock T. M., Field R. D., 2012, Dislocations and high ...
  • ASM Handbook, ASM International 2: 951. ...
  • Meetham G.W.,1996, Contribution of materials to the development of the ...
  • Pollock T. M., Field R. D., 2002, Dislocations and high ...
  • Rae C.M.F., Cox D.C., Rist M.A., Reed R.C., Matan N.C., ...
  • Muller L., Glatzel U., Feller-Kniepmeier M., 1992, Modelling thermal misfit ...
  • Schneider M. C., Gu J. P., Beckermann C., Boettinger W. ...
  • Auburtin P., Cockcroft S. L., Mitchell A., 1996, Freckle formation ...
  • Miner R.V., Gayada J., Maier R.D., 1982, Fatigue and creep ...
  • McLean M., Dyson B. F., 2000, Modeling the effects of ...
  • Carter Tim J., 2005, Common failures in gas turbine blade, ...
  • ASM Handbook, ASM International 28:50. ...
  • Mercer C., Shademn S., Soboyejo W.O.,2003, An investigation of the ...
  • Luo J., Bowen P., 2004, Small and long fatigue crack ...
  • Jiang L., Brooks C.R., Liaw P.K., Klarstrom D.L., Rawn C.J., ...
  • Neal D.F., Blenkinsop P.A., 1976, Internal fatigue origins in a–b ...
  • Boyd-Lee A.D., 1999, Fatigue crack growth resistant microstructures in polycrystalline ...
  • MSC-Patran User’s Manual, 2009, MSC Corporation, Los Angeles. ...
  • Park M., Hwang Y., Choi Y., Kim T., 2002, Analysis ...
  • Pollock T.M., Tin S., 2006, Nickel-based supe-ralloys for advanced turbine ...
  • Khurana S., Navte J., Singh H., 2012, Effect of cavitation ...
  • Momcilvic D., Odanovic Z., Mitrovic R., Atanasovska I., Vuherer T., ...
  • Momcilovic D., Motrovic R., Antanasovska I., Vuherer T., 2012, Methodology ...
  • Neopane H.P., 2010, Sediment Erosion in Hydro Turbines, Faculty of ...
  • Belash I., 2010, Causes of the failure of the no. ...
  • Ferreño D., Álvarez J.A., Ruiz E., Méndez D., Rodríguez L., ...
  • Egusquiza E., Valero C., Estévez A., Guardo A., Coussirat M., ...
  • Luo Y., Wang Z., Zeng J., Lin J., 2010, Fatigue ...
  • نمایش کامل مراجع