Conventional wisdom dictates that adding more 0 degrees plies in the load-bearing direction of a laminate will increase its stiffness and strength. While this is true for undamaged laminates, the compression strength of laminates with impact damage may not be as straightforward. In this study, compression after impact strengths of relatively thin laminates with 25%, 33% or 50% of plies aligned in the 0 degrees load-bearing direction were measured for three different damage severity levels. Results show that the increase in compression strength of the laminates with a higher percentage of plies in the 0 degrees direction is lessened as impact damage severity increases indicating that a laminate that is stronger in compression when undamaged may not be stronger in compression when impact damage is accounted for.
机构:
FIDAMC: Foundation for the Research, Development and Application of Composite Materials, Avda. Rita Levi Moltancini 29, Getafe, Madrid,28906, SpainFIDAMC: Foundation for the Research, Development and Application of Composite Materials, Avda. Rita Levi Moltancini 29, Getafe, Madrid,28906, Spain
Remacha, M.
Sánchez-Sáez, S.
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Department of Continuum Mechanics and Structural Analysis, Carlos III University of Madrid, Avda. de la Universidad 30, Leganes, Madrid,28911, SpainFIDAMC: Foundation for the Research, Development and Application of Composite Materials, Avda. Rita Levi Moltancini 29, Getafe, Madrid,28906, Spain
Sánchez-Sáez, S.
López-Romano, B.
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FIDAMC: Foundation for the Research, Development and Application of Composite Materials, Avda. Rita Levi Moltancini 29, Getafe, Madrid,28906, SpainFIDAMC: Foundation for the Research, Development and Application of Composite Materials, Avda. Rita Levi Moltancini 29, Getafe, Madrid,28906, Spain
López-Romano, B.
Barbero, E.
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Department of Continuum Mechanics and Structural Analysis, Carlos III University of Madrid, Avda. de la Universidad 30, Leganes, Madrid,28911, SpainFIDAMC: Foundation for the Research, Development and Application of Composite Materials, Avda. Rita Levi Moltancini 29, Getafe, Madrid,28906, Spain
机构:
FIDAMC Fdn Res Dev & Applicat Composite Mat, Avda Rita Levi Moltancini 29, Madrid 28906, SpainFIDAMC Fdn Res Dev & Applicat Composite Mat, Avda Rita Levi Moltancini 29, Madrid 28906, Spain
Remacha, Marina
Sanchez-Saez, Sonia
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Carlos III Univ Madrid, Dept Continuum Mech & Struct Anal, Madrid 28911, SpainFIDAMC Fdn Res Dev & Applicat Composite Mat, Avda Rita Levi Moltancini 29, Madrid 28906, Spain
Sanchez-Saez, Sonia
Barbero, Enrique
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Carlos III Univ Madrid, Dept Continuum Mech & Struct Anal, Madrid 28911, SpainFIDAMC Fdn Res Dev & Applicat Composite Mat, Avda Rita Levi Moltancini 29, Madrid 28906, Spain
Barbero, Enrique
Lopez, Bernardo
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FIDAMC Fdn Res Dev & Applicat Composite Mat, Avda Rita Levi Moltancini 29, Madrid 28906, SpainFIDAMC Fdn Res Dev & Applicat Composite Mat, Avda Rita Levi Moltancini 29, Madrid 28906, Spain
Lopez, Bernardo
20TH INTERNATIONAL CONFERENCE ON COMPOSITE MATERIALS,
2015,