TY - GEN
T1 - Detailed post-soft impact progressive damage analysis for a hybrid structure jet engine
AU - Siddens, Aaron J.
AU - Bayandor, Javid
PY - 2012
Y1 - 2012
N2 - Currently, certification of engine designs for resistance to bird strike is reliant on physical tests. Predictive modeling of engine structural damage has mostly been limited to evaluation of individual forward section components, such as fan blades within a fixed frame of reference, to direct impact with a bird. Such models must be extended to include interactions among engine components under operating conditions to evaluate the full extent of engine damage. This paper presents the results of a study aim to develop a methodology for evaluating bird strike damage in advanced propulsion systems incorporating hybrid composite/metal structures. The initial degradation and failure of individual fan blades struck by a bird were investigated. Subsequent damage to other fan blades and engine components due to resultant violent fan assembly vibrations and fragmentation was further evaluated. Various modeling parameters for the bird and engine components were investigated to determine guidelines for accurately capturing initial damage and progressive failure of engine components. Then, a novel hybrid structure modeling approach was investigated and incorporated into the crashworthiness methodology. Such a tool is invaluable to the process of design, development, and certification of future advanced propulsion systems.
AB - Currently, certification of engine designs for resistance to bird strike is reliant on physical tests. Predictive modeling of engine structural damage has mostly been limited to evaluation of individual forward section components, such as fan blades within a fixed frame of reference, to direct impact with a bird. Such models must be extended to include interactions among engine components under operating conditions to evaluate the full extent of engine damage. This paper presents the results of a study aim to develop a methodology for evaluating bird strike damage in advanced propulsion systems incorporating hybrid composite/metal structures. The initial degradation and failure of individual fan blades struck by a bird were investigated. Subsequent damage to other fan blades and engine components due to resultant violent fan assembly vibrations and fragmentation was further evaluated. Various modeling parameters for the bird and engine components were investigated to determine guidelines for accurately capturing initial damage and progressive failure of engine components. Then, a novel hybrid structure modeling approach was investigated and incorporated into the crashworthiness methodology. Such a tool is invaluable to the process of design, development, and certification of future advanced propulsion systems.
KW - Advanced propulsion
KW - Bird strike
KW - Fluid-solid interaction
UR - https://www.scopus.com/pages/publications/84881519867
M3 - Conference contribution
AN - SCOPUS:84881519867
SN - 9781622767540
T3 - 28th Congress of the International Council of the Aeronautical Sciences 2012, ICAS 2012
SP - 2563
EP - 2580
BT - 28th Congress of the International Council of the Aeronautical Sciences 2012, ICAS 2012
T2 - 28th Congress of the International Council of the Aeronautical Sciences 2012, ICAS 2012
Y2 - 23 September 2012 through 28 September 2012
ER -