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   effect of ply orientation on residual stresses and their influence on mode i fracture toughness of glass-epoxy composites with 0°//0° crack interface  
   
نویسنده abdulkhadar umarfarooq maktedar ,shivakumar gouda patil somalingana ,shirahatti anil ,kumar gonal basavaraja veeresh ,banapurmath nagaraj ramalingyya
منبع iranian journal of materials science and engineering - 2021 - دوره : 18 - شماره : 4 - صفحه:24 -33
چکیده    The energy release rate for delamination in a laminated composite is supposed to be the material propertybeing considered as independent of non-material property variables. however, mode i fracture toughness (gi) isfound to vary with lamina arrangement, geometrical dimensions, and process-induced stresses. in this investigation,the influence of lamina stacking arrangement on process-induced stresses and their effects on gi of laminatedcomposites are studied. unidirectional (ud) ([0]16) and cross-ply ([902/06]s, [904/04]s, and [906/02]s) glass/ epoxy(ge) composites with the delamination plane at 0◦//0◦ were prepared by manual layup method and post-cured at120°c for 4 hours. gi of composite laminates were experimentally determined using a double cantilever beam(dcb) specimen as per astm d 5528. the slitting method was applied to determine the process-induced stressesin ge laminates. the stacking sequence of laminas was found to have a noticeable effect on the state of residualstresses and gi of ge laminates. residual stresses do not have much influence on the gi for delamination initiation,whereas gi for the crack propagation was found to increase with a gradual increase in compressive residual stressesin ge laminates.
کلیدواژه residual stresses ,mode i interlaminar fracture toughness ,slitting method
آدرس visvesvaraya technological university, sdm college of engineering & technology, department of mechanical engineering, india, visvesvaraya technological university, sdm college of engineering & technology, department of mechanical engineering, india, visvesvaraya technological university, jain college of engineering, department of mechanical engineering, india, national institute of technology, department of mechanical engineering, india, kle technological university, b.v.b. college of engineering and technology, department of mechanical engineering, india
پست الکترونیکی nrbanapurmath@gmail.com
 
     
   
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