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      KCI등재 SCIE SCOPUS

      Failure analysis of laminates by implementation of continuum damage mechanics in layer-wise finite element theory

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      https://www.riss.kr/link?id=A104818632

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      다국어 초록 (Multilingual Abstract)

      In this paper a 3-D continuum damage mechanics formulation for composite laminates and its implementation into a finite element model that is based on the layer-wise laminate plate theory are described. In the damage formulation, each composite ply is...

      In this paper a 3-D continuum damage mechanics formulation for composite laminates and its implementation into a finite element model that is based on the layer-wise laminate plate theory are described. In the damage formulation, each composite ply is treated as a homogeneous orthotropic material exhibiting orthotropic damage in the form of distributed microscopic cracks that are normal to the three principal material directions. The progressive damage of different angle ply composite laminates under quasi-static loading that exhibit the free edge effects are investigated. The effects of various

      numerical modeling parameters on the progressive damage response are investigated. It will be shown that the dominant damage mechanism in the lay-ups of [+30/-30]s and [+45/-45]s is matrix cracking. However, the lay-up of [+15/-15] may be delaminated in the vicinity of the edges and at +θ/-θ layers interfaces.

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      참고문헌 (Reference)

      1 Kachanov, L.M., "On the creep fracture time" 8 : 26-31, 1958

      2 Belytschko, T., "Nonlinear Finite Elements for Continua and Structures" John Wiley and Sons 2000

      3 Ladeveze, P., "Mesomodeling of damae for laminate composites: Application to delamination. in: Inelastic Deformation of Composite Materials"

      4 Herakovich, C.T., "Mechanics of Fibrous Composites" John Wiley 1998

      5 Lemaitre, J., "Local approach of fracture" 25 (25): 523-537, 1986

      6 Voyiadjis, G.Z., "Kinematics description of damage for finite strain plasticity" 37 : 803-830, 1999

      7 Allix, O., "Interlaminar interface modeling for the prediction of laminate delamination" 22 : 235-242, 1992

      8 Lonetti, P., "Interlaminar damage model for polymer matrix composites" 37 (37): 1485-1504, 2003

      9 Voyiadjis, G.Z., "Framework using functional forms of hardening internal state variables in modeling elasto-plastic-damage behavior" Int. J. Plasticity 2007

      10 Voyiadjis, G.Z., "Damage of fiber-reinforced composite materials with micromechanical characterization" 30 (30): 2757-2778, 1993

      1 Kachanov, L.M., "On the creep fracture time" 8 : 26-31, 1958

      2 Belytschko, T., "Nonlinear Finite Elements for Continua and Structures" John Wiley and Sons 2000

      3 Ladeveze, P., "Mesomodeling of damae for laminate composites: Application to delamination. in: Inelastic Deformation of Composite Materials"

      4 Herakovich, C.T., "Mechanics of Fibrous Composites" John Wiley 1998

      5 Lemaitre, J., "Local approach of fracture" 25 (25): 523-537, 1986

      6 Voyiadjis, G.Z., "Kinematics description of damage for finite strain plasticity" 37 : 803-830, 1999

      7 Allix, O., "Interlaminar interface modeling for the prediction of laminate delamination" 22 : 235-242, 1992

      8 Lonetti, P., "Interlaminar damage model for polymer matrix composites" 37 (37): 1485-1504, 2003

      9 Voyiadjis, G.Z., "Framework using functional forms of hardening internal state variables in modeling elasto-plastic-damage behavior" Int. J. Plasticity 2007

      10 Voyiadjis, G.Z., "Damage of fiber-reinforced composite materials with micromechanical characterization" 30 (30): 2757-2778, 1993

      11 Voyiadjis, G.Z., "Damage of fiber reinforced composite materials with micromechanical characterization" 30 : 2757-2778, 1993

      12 Ladeveze, P., "Damage modeling of the elementary ply for laminated composites" 43 (43): 257-267, 1992

      13 Cordebois, J.L., "Damage induced elastic anisotropy" Villard de Lans 1979

      14 Chaboche, J.L., "Continuum damage mechanics.Part II:Damage growth,crack initiation and crack growth" 55 : 65-72, 1988

      15 Chaboche, J.L., "Continuum damage mechanics.Part I:General concepts" 55 : 59-64, 1988

      16 Krajcinovic, D., "Continuum damage mechanics" 37 (37): l-6, 1984

      17 Krajcinovic, D., "Constitutive equations for damaging materials" 50 : 355-360, 1983

      18 Barbero, E., "An inelastic damage model for fiber reinforced laminates" 36 (36): 941-962, 2002

      19 Barbero, E.J., "An accurate determination of stresses in thick laminates using a generalized plate theory" 29 : 1-14, 1990

      20 Voyiadjis, G.Z., "Advances in damage mechanics: metals and metal matrix composites" Elsevier 1999

      21 Ladeveze, P., "A mesomodel for localisation and damage computation in laminates" 183 : 105-122, 2000

      22 Allix, O., "A damage prediction method for composite structures" 27 : 271-283, 1989

      23 Voyiadjis, G.Z., "A coupled anisotropic damage model for the inelastic response of composite materials" 183 : 159-199, 2000

      24 Talreja, R., "A continuum mechanics characterization of damage in composite materials" A399 : 195-216, 1985

      25 Lemaitre, J., "A continuous damage mechanics model for ductile fracture" 107 : 83-89, 1985

      26 Barbero, E., "A constitutive model for elastic damage in fiber-reinforced PMC laminae" 10 : 73-93, 2001

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      2022 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
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      2020-12-01 평가 등재후보로 하락 (해외등재 학술지 평가) KCI등재후보
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-04-09 학회명변경 한글명 : (사)국제구조공학회 -> 국제구조공학회 KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-06-16 학회명변경 영문명 : Ternational Association Of Structural Engineering And Mechanics -> International Association of Structural Engineering And Mechanics KCI등재
      2005-05-26 학술지명변경 한글명 : 국제구조계산역학지 -> Structural Engineering and Mechanics, An Int'l Journal KCI등재
      2005-01-01 평가 등재학술지 유지 (등재유지) KCI등재
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.12 0.62 0.94
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.79 0.68 0.453 0.33
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