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003 EG-GiCUC
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008 151201s2015 ua do f m 000 0 eng d
040 _aEG-GiCUC
_beng
_cEG-GiCUC
041 0 _aeng
049 _aDeposite
097 _aM.Sc
099 _aCai01.13.03.M.Sc.2015.Mo.S
100 0 _aMostafa Elhussein Ibrahim Abdelfatah
245 1 0 _aStiffness analysis of modified niagara prosthetic feet using finite element method /
_cMostafa Elhussein Ibrahim Abdelfatah ; Supervised Ahmed Mohamed Ragab Elbialy , Ahmed Hisham Kandil , Mostafa Saied Elmohandes
246 1 5 _aتحليل جساءة نماذج اقدام اصطناعية معدلة من نوع نياجارا باستخدام طريقة العناصر المحدودة
260 _aCairo :
_bMostafa Elhussein Ibrahim Abdelfatah ,
_c2015
300 _a80 P. :
_bcharts , photographs ;
_c30cm
502 _aThesis (M.Sc.) - Cairo University - Faculty of Engineering - Department of Systems and Biomedical Engineering
520 _aThe purpose of this study was to accomplish stiffness characterization methodology for the prosthetic foot, which can be standardized. In this study numerical tests, using FEA, were conducted on four shape models of a prosthetic foot with and without prongs and three different materials. The models were developed from the niagara foot design (model 1 version 3). The boundary conditions were extracted from the ISO - 10328 and ISO - 22675. Two methods were adopted for describing the stiffness of the foot. Results indicated that the thickness 2B3 affected the toe and heel stiffness. The type of material had a considerable effect on the toe and heel stiffness. The existence of the prongs of the niagara foot had a major contribution in force - displacement relationships. A methodology based on the FEA technique and curve fitting was developed. The methodology appointed by this study can be used to clarify new developments of the niagara foot
530 _aIssued also as CD
653 4 _aFinite element
653 4 _aNiagara foot
653 4 _aStiffness
700 0 _aAhmed Hisham Kandil ,
_eSupervisor
700 0 _aAhmed Mohamed Ragab Elbialy ,
_eSupervisor
700 0 _aMostafa Saied Elmohandes ,
_eSupervisor
856 _uhttp://172.23.153.220/th.pdf
905 _aNazla
_eRevisor
905 _aSamia
_eCataloger
942 _2ddc
_cTH
999 _c53659
_d53659