Now showing items 1-5 of 5

    • J-integral analysis of surface cracks in round bars under bending moments 

      A.E., Ismail; Ahmad Kamal, Ariffin; Shahrum, Abdullah; Mariyam Jameelah, Ghazali; Ruslizam, Daud, Dr. (Trans Tech Publications, 2011-04)
    • J-integral analysis of surface cracks in round bars under combined loadings 

      A. Emran, Ismail; Ahmad Kamal, Ariffin; Shahrum, Abdullah; Mariyam Jameelah, Ghazali; Ruslizam, Daud, Dr. (Trans Tech Publications, 2011-02)
      This paper presents a non-linear numerical investigation of surface cracks in round bars under combined bending and torsion loadings by using ANSYS finite element analysis (FEA). Due to the non-symmetrical analysis, a full ...
    • J-integral analysis of surface cracks in round bars under tension loadings 

      A. Emran, Ismail; Ahmad Kamal, Ariffin; Shahrum, Abdullah; Mariyam Jameelah, Ghazali; Ruslizam, Daud, Dr.; M. Abdul, Razzaq; A., Zulkifli (Trans Tech Publications, 2011-04)
      This paper presents a non-linear numerical investigation of surface cracks in round bars under tension stresses by using ANSYS finite element analysis (FEA). Due to the symmetrical analysis, only quarter finite element ...
    • J-integral evaluation in two dimensional interacting cracks 

      Ruslizam, Daud; Ahmad Kamal, Ariffin; Shahrum, Abdullah; A. Emran, Ismail (Trans Tech Publications, 2011)
      This paper investigates crack interaction of multiple edge cracks in elastic solid finite body under pure Mode I loading. The cracks are located in parallel to another in 2D plate model. The stress intensity factors (SIFs) ...
    • J-integral evaluation in two dimensional interacting cracks 

      Ruslizam, Daud; Ahmad Kamal, Ariffin; Shahrum, Abdullah; A. Emran, Ismail (International Association of Computer Science and Information Technology (IACSIT), 2011-03-25)
      This paper investigates crack interaction of multiple edge cracks in elastic solid finite body under pure Mode I loading. The cracks are located in parallel to another in 2D plate model. The stress intensity factors (SIFs) ...