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Information Journal Paper

Title

THE MIXED MODE FRACTURE MECHANICS IN A HOLE PLATE BONDED WITH TWO DISSIMILAR PLANE

Pages

  371-380

Abstract

 In the present research, the mixed-mode fracture mechanics analysis in a plate with central hole under tensile loading is considered. It is assumed that a plate containing two symmetrical HOLE-EDGE CRACKS is bonded with two dissimilar planes. The STRESS INTENSITY FACTORs at the crack tips are calculated. The problem is modeled in CASCA SOFTWARE and this model is analyzed with FRANC SOFTWARE. The effects of various factors such as hole diameter, crack length, angle of crack and material properties of plates have been investigated on STRESS INTENSITY FACTORs. The STRESS INTENSITY FACTORs increases with increasing crack length. Also, the STRESS INTENSITY FACTORs increases with the increase of hole diameter. For a certain amount of for small crack lengths the effect of cracks length on variation of STRESS INTENSITY FACTORs is more than the hole diameter but for large crack lengths the effect of hole diameter on variation of STRESS INTENSITY FACTORs is more than the cracks length.

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    APA: Copy

    TORSHIZIAN, MOHAMMAD RAHIM, & ANDARZJOO, HOSEIN. (2016). THE MIXED MODE FRACTURE MECHANICS IN A HOLE PLATE BONDED WITH TWO DISSIMILAR PLANE. JOURNAL OF SIMULATION AND ANALYSIS OF NOVEL TECHNOLOGIES IN MECHANICAL ENGINEERING (JOURNAL OF SOLID MECHANICS IN ENGINEERING), 9(1 ), 371-380. SID. https://sid.ir/paper/171326/en

    Vancouver: Copy

    TORSHIZIAN MOHAMMAD RAHIM, ANDARZJOO HOSEIN. THE MIXED MODE FRACTURE MECHANICS IN A HOLE PLATE BONDED WITH TWO DISSIMILAR PLANE. JOURNAL OF SIMULATION AND ANALYSIS OF NOVEL TECHNOLOGIES IN MECHANICAL ENGINEERING (JOURNAL OF SOLID MECHANICS IN ENGINEERING)[Internet]. 2016;9(1 ):371-380. Available from: https://sid.ir/paper/171326/en

    IEEE: Copy

    MOHAMMAD RAHIM TORSHIZIAN, and HOSEIN ANDARZJOO, “THE MIXED MODE FRACTURE MECHANICS IN A HOLE PLATE BONDED WITH TWO DISSIMILAR PLANE,” JOURNAL OF SIMULATION AND ANALYSIS OF NOVEL TECHNOLOGIES IN MECHANICAL ENGINEERING (JOURNAL OF SOLID MECHANICS IN ENGINEERING), vol. 9, no. 1 , pp. 371–380, 2016, [Online]. Available: https://sid.ir/paper/171326/en

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