All Stories

  1. Mixed-mode I+II fracture behaviour of thermoplastic composites and their adhesive bonded joints
  2. Creep damage laws for bonded joints under pure mode II loading
  3. The Influence of Hydroxyapatite Crystals on the Viscoelastic Behavior of Poly(vinyl alcohol) Braid Systems
  4. Experimental and Numerical Research on the Splitting Capacity of European Beech Beams Loaded Perpendicular to the Grain by Connections: Influence of Different Geometrical Parameters
  5. Analysis of adhesive scarf repairs on composite sandwich beams under three-point bending loading
  6. Pure (I and II) and mixed-mode (I+II) fracture characterisation of unidirectional AS4/Low-melt-PolyaryletherketoneTM polymer composites
  7. Non-linear dynamics of a stiffened composite laminated panel with debonds
  8. Quasi-static and fatigue analyses of aluminium structures repaired by CFRP patch bonding
  9. Direct and inverse cohesive law identification of hardwood bonded joints with 1C-PUR adhesive using DCB test
  10. Influence of adhesive fillets on fatigue behaviour of single‐strap composite repairs
  11. Edgewise Compression and Three-Point Bending Analyses of Repaired Composite Sandwich Panels
  12. Numerical analysis on the strength prediction of composite bonded repairs under different loading scenarios
  13. On the evaluation of strain energy release rate of cement-bone bonded joints under mode II loading
  14. Mixed-mode I + II fracture characterisation of a honeycomb/carbon-epoxy sandwich panel using the asymmetric single-leg bending test
  15. Mixed-mode I+II fatigue/fracture characterisation of bi-material Aluminium/CFRP bonded joints
  16. Shear traction‐separation laws of European beech under mode II loading by 3D digital image correlation
  17. Mode II fracture characterisation of a honeycomb/carbon-epoxy sandwich panel using the asymmetric end-notched flexure test
  18. A new method for the identification of cohesive laws under pure loading modes
  19. Fracture characterisation of bone-cement bonded joints under mode I loading
  20. Determination of the fracture energy under mode I loading of a honeycomb/carbon-epoxy sandwich panel using the asymmetric double cantilever beam test
  21. Comparison of numerical analyses of a composite wing component subjected to 4-point bending
  22. Osteosynthesis Metal Plate System for Bone Fixation Using Bicortical Screws: Numerical–Experimental Characterization
  23. The double cantilever beam test applied to mode I fracture characterization of polyamide 12 processed by selective laser sintering technology
  24. Experimental evaluation of cohesive laws components of mixed-mode I + II fracture characterization of cortical bone
  25. Fracture characterization of a bi‐material bonded aluminum/CFRP joints under mixed‐mode I + II loading
  26. A simple strategy to perform mixed-mode I+II fatigue/fracture characterisation of composite bonded joints
  27. Evaluation of R-curves and cohesive law in mode I of European beech
  28. Bone: An Outstanding Composite Material
  29. Dynamic mode II interlaminar fracture toughness of electrically modified carbon/epoxy composites
  30. Fracture Characterization of Hybrid Bonded Joints (CFRP/Steel) for Pure Mode I
  31. Thermal, Mechanical and Chemical Analysis of Poly(vinyl alcohol) Multifilament and Braided Yarns
  32. Influence of geometric and material parameters on the mode II interlaminar fatigue/fracture characterization of CFRP laminates
  33. Prediction of the influence of several parameters on the mode I interlaminar fatigue/fracture characterization of CFRP laminates
  34. Experimental and numerical mixed-mode I + II fracture characterization of carbon fibre reinforced polymer laminates using a novel strategy
  35. Direct Evaluation of Mixed Mode I+II Cohesive Laws of Wood by Coupling MMB Test with DIC
  36. Thermoplastic Composites and Their Promising Applications in Joining and Repair Composites Structures: A Review
  37. Experimental Investigation of Delamination in Composite Continuous Fiber-Reinforced Plastic Laminates with Elastic Couplings
  38. Numerical comparison of several composite bonded repairs under fatigue loading
  39. High-cycle fatigue analysis of adhesively bonded composite scarf repairs
  40. A novel strategy to obtain the fracture envelope under mixed-mode I+II loading of composite bonded joints
  41. A review on the environmental degradation effects on fatigue behaviour of adhesively bonded joints
  42. Mixed-mode I+II fracture characterisation of composite bonded joints
  43. Influence of adverse temperature and moisture conditions on the fracture behaviour of single-strap repairs of carbon-epoxy laminates
  44. Effect of temperature on the fracture toughness of wood under mode I quasi-static loading
  45. Experimental and numerical analyses of wood boards joining using wood-pin connectors
  46. Development of an explicit three-dimensional progressive mixed-mode I+II damage model
  47. Pure mode I and II interlaminar fracture characterization of carbon-fibre reinforced polyamide composite
  48. Mixed mode I + II interlaminar fracture characterization of carbon-fibre reinforced polyamide composite using the Single-Leg Bending test
  49. Fatigue-fracture characterization of wood under mode I loading
  50. Study of the interlaminar fracture under mode I loading on FFF printed parts
  51. Enhancement of stiffness and load bearing capacity of damaged mortar beams with CFRP patches
  52. Influence of Hole Distance on Low Velocity Impact Damage
  53. Mode II fracture characterization of wood using the Four-Point End-Notched Flexure (4ENF) test
  54. Mode II fracture toughness of carbon–epoxy bonded joints with femtosecond laser treated surfaces
  55. Fracture behavior of wood-steel dowel joints under quasi-static loading
  56. Determination of mode II cohesive law of bovine cortical bone using direct and inverse methods
  57. Dimensional optimization of carbon-epoxy bars for reinforcement of wood beams
  58. Influence of femtosecond laser treated surfaces on the mode I fracture toughness of carbon-epoxy bonded joints
  59. Mode I fracture characterization of wood using the TDCB test
  60. Surface patterning of CRFP composites using femtosecond laser interferometry
  61. Direct and inverse methods applied to the determination of mode I cohesive law of bovine cortical bone using the DCB test
  62. Low velocity impact behaviour of a hybrid carbon-epoxy/cork laminate
  63. Influence of inclined holes on the impact strength of CFRP composites
  64. Surface treatment of CFRP composites using femtosecond laser radiation
  65. Fatigue analysis of composite bonded repairs
  66. Mixed-mode I+II fracture characterization of a hybrid carbon-epoxy/cork laminate using the Single-Leg Bending test
  67. A new energy based mixed-mode cohesive zone model
  68. Fracture characterization of human cortical bone under mode II loading using the end-notched flexure test
  69. Multi-impact response of composite laminates with open holes
  70. Bone fracture characterization under mixed-mode I + II loading using the MMB test
  71. Effect of temperature on pure modes I and II fracture behavior of composite bonded joints
  72. Effect of moisture on pure mode I and II fracture behaviour of composite bonded joints
  73. Numerical and experimental analyses of composite bonded double-strap repairs under high-cycle fatigue
  74. Fatigue/fracture characterization of composite bonded joints under mode I, mode II and mixed-mode I + II
  75. Mixed-mode I+II fracture characterization of human cortical bone using the Single Leg Bending test
  76. Characterisation of composite bonded single-strap repairs under fatigue loading
  77. Fracture Characterization of Human Cortical Bone Under Mode I Loading
  78. A New Procedure for Mode I Fracture Characterization of Cement-Based Materials
  79. Mode II fracture characterization of a hybrid cork/carbon-epoxy laminate
  80. Wood fracture characterization under mode I loading using the three-point-bending test. Experimental investigation of Picea abies L.
  81. Mode I fracture characterization of human bone using the DCB test
  82. Cohesive zone model for high-cycle fatigue of composite bonded joints under mixed-mode I+II loading
  83. Bilinear approximations to the mixed-mode I–II delamination cohesive law using an inverse method
  84. Determining mode I cohesive law of Pinus pinaster by coupling double cantilever beam test with digital image correlation
  85. Determining mode II cohesive law of Pinus pinaster by combining the end-notched flexure test with digital image correlation
  86. Development of a cohesive zone model for fatigue/fracture characterization of composite bonded joints under mode II loading
  87. Application of Cohesive Zone Modeling to Composite Bonded Repairs
  88. Moisture content effect on the fracture characterisation of Pinus pinaster under mode I
  89. Damage onset on tow-placed variable stiffness composite laminates
  90. Evaluation of mode I fracture toughness of cortical bone tissue in the RL crack propagation system
  91. Fracture Mechanics Tests in Adhesively Bonded Joints: A Literature Review
  92. Mode I fracture characterization of a hybrid cork and carbon–epoxy laminate
  93. Determination of cohesive laws in wood bonded joints under mode II loading using the ENF test
  94. Bone fracture characterization under mixed-mode I+II loading using the single leg bending test
  95. Buckling analysis of laminated composite plates submitted to compression after impact
  96. Cohesive zone model for high-cycle fatigue of adhesively bonded joints under mode I loading
  97. Direct Evaluation of Cohesive Law in Mode I of Pinus pinaster by Digital Image Correlation
  98. Quasi-static behavior of moment-carrying steel–wood doweled joints
  99. The Effect of Hybridization on the GFRP Behavior under Quasi-Static Penetration
  100. Cohesive laws of composite bonded joints under mode I loading
  101. Fracture characterization of bonded joints using the dual actuator load apparatus
  102. Determination of cohesive laws of composite bonded joints under mode II loading
  103. Influence of multi-impacts on GFRP composites laminates
  104. Large deflection and stresses in variable stiffness composite laminates with curvilinear fibres
  105. Numerical validation of a crack equivalent method for mixed-mode I+II fracture characterization of bonded joints
  106. Determination of cohesive laws in wood bonded joints under mode I loading using the DCB test
  107. Composite laminates with linearly varying fiber angles under static and dynamic loads
  108. Influence of open holes on composites delamination induced by low velocity impact loads
  109. Mixed-mode I+II continuum damage model applied to fracture characterization of bonded joints
  110. Bone fracture characterization using the end notched flexure test
  111. Characterization of composite bonded joints under pure mode II fatigue loading
  112. Mixed-mode I+II fatigue/fracture characterization of composite bonded joints using the Single-Leg Bending test
  113. A straightforward method to obtain the cohesive laws of bonded joints under mode I loading
  114. Evaluation of bone cohesive laws using an inverse method applied to the DCB test
  115. Quasi‐Static Fracture Tests
  116. Matrix-Controlled Failure Modes of Polymeric Composites
  117. Bilinear approximations to the mode II delamination cohesive law using an inverse method
  118. Influence of the specimen thickness on low velocity impact behavior of composites
  119. Repairing wood beams under bending using carbon–epoxy composites
  120. Damage detection on laminated composite materials using several NDT techniques
  121. Fracture characterization of bone under mode II loading using the end loaded split test
  122. Mode III interlaminar fracture of carbon/epoxy laminates using the Six-Point Edge Crack Torsion (6ECT)
  123. Fracture: Interlaminar
  124. Composite bonded joints under mode I fatigue loading
  125. The Influence of the Boundary Conditions on Low‐Velocity Impact Composite Damage
  126. Numerical analysis of the dual actuator load test applied to fracture characterization of bonded joints
  127. Mixed-mode (I+II) fracture characterization of wood bonded joints
  128. Delamination Effect on Bending Behaviour in Carbon–Epoxy Composites
  129. Numerical analysis of the ENF and ELS tests applied to mode II fracture characterization of cortical bone tissue
  130. Design and analysis of a new six-point edge crack torsion (6ECT) specimen for mode III interlaminar fracture characterisation
  131. A numerical study on the SEN-TPB test applied to mode I wood fracture characterization
  132. Measurement of Mode I and Mode II Fracture Properties of Wood-Bonded Joints
  133. Fracture characterization of sandwich structures interfaces under mode I loading
  134. Mode II Fracture Toughness of a Brittle and a Ductile Adhesive as a Function of the Adhesive Thickness
  135. The double cantilever beam test applied to mode I fracture characterization of cortical bone tissue
  136. Numerical evaluation of three-dimensional scarf repairs in carbon-epoxy structures
  137. Adhesively Bonded Repair Proposal for Wood Members Damaged by Horizontal Shear Using Carbon-Epoxy Patches
  138. Repair of Wood Trusses Loaded in Tension with Adhesively Bonded Carbon-Epoxy Patches
  139. Experimental and numerical evaluation of composite repairs on wood beams damaged by cross-graining
  140. Buckling strength of adhesively-bonded single and double-strap repairs on carbon-epoxy structures
  141. Crack equivalent based method applied to wood fracture characterization using the single edge notched-three point bending test
  142. Interlaminar Fracture Characterization of a Carbon-Epoxy Composite in Pure Mode II
  143. Strength Prediction and Experimental Validation of Adhesive Joints Including Polyethylene, Carbon-Epoxy and Aluminium Adherends
  144. Strength Prediction of Adhesively-Bonded Scarf Repairs in Composite Structures under Bending
  145. Estimate of resistance-curve in wood through the double cantilever beam test
  146. Interlaminar and intralaminar fracture characterization of composites under mode I loading
  147. Mixed-mode I/II wood fracture characterization using the mixed-mode bending test
  148. The effect of hybridization on the GFRP behavior under high velocity impact
  149. Tensile behaviour of three-dimensional carbon-epoxy adhesively bonded single- and double-strap repairs
  150. Fracture behaviour of damaged wood beams repaired with an adhesively-bonded composite patch
  151. Stress and Failure Analysis of Repaired Sandwich Composite Beams using a Cohesive Damage Model
  152. Application of the end loaded split and single-leg bending tests to the mixed-mode fracture characterization of wood
  153. Single-Lap Joints of Similar and Dissimilar Adherends Bonded with an Acrylic Adhesive
  154. Mode III interlaminar fracture of carbon/epoxy laminates using the edge crack torsion (ECT) test
  155. Modelling the tensile fracture behaviour of CFRP scarf repairs
  156. Numerical analysis of the Edge Crack Torsion test for mode III interlaminar fracture of composite laminates
  157. Numerical prediction on the tensile residual strength of repaired CFRP under different geometric changes
  158. Pure mode II fracture characterization of composite bonded joints
  159. Buckling Behaviour of Carbon–Epoxy Adhesively-Bonded Scarf Repairs
  160. Mixed-Mode Cohesive Damage Model Applied to the Simulation of the Mechanical Behaviour of Laminated Composite Adhesive Joints
  161. An experimental and numerical assessment of DCB tests on glass/polyester curved beams cut out from pipes
  162. Cohesive and continuum mixed-mode damage models applied to the simulation of the mechanical behaviour of bonded joints
  163. Interaction of matrix cracking and delamination
  164. Interlaminar mode II fracture characterization
  165. Data reduction scheme for measuring G IIc of wood in end-notched flexure (ENF) tests
  166. A new data reduction scheme for mode I wood fracture characterization using the double cantilever beam test
  167. Crack equivalent concept applied to the fracture characterization of bonded joints under pure mode I loading
  168. Failure analysis of quasi-isotropic CFRP laminates under high strain rate compression loading
  169. Equivalent crack based analyses of ENF and ELS tests
  170. Numerical prediction of delamination onset in carbon/epoxy composites drilling
  171. Using a cohesive damage model to predict the tensile behaviour of CFRP single-strap repairs
  172. Comparison of fracture properties of two wood species through cohesive crack simulations
  173. Interlaminar mode II fracture characterization
  174. Interaction of matrix cracking and delamination
  175. Computational Modelling of the Residual Strength of Repaired Composite Laminates Using a Cohesive Damage Model
  176. Mode II wood fracture characterization using the ELS test
  177. Numerical analysis of the MMB test for mixed-mode I/II wood fracture
  178. Stress and failure analyses of scarf repaired CFRP laminates using a cohesive damage model
  179. Evaluation of initiation criteria used in interlaminar fracture tests
  180. Effect of Adhesive Type and Thickness on the Lap Shear Strength
  181. Numerical analysis of the ENF test for mode II wood fracture
  182. Numerical simulation of the drilling process on carbon/epoxy composite laminates
  183. Simulation of mechanical behaviour of composite bonded joints containing strip defects
  184. Cohesive and continuum damage models applied to fracture characterization of bonded joints
  185. Equivalent crack based mode II fracture characterization of wood
  186. Numerical simulation of the ENF test for the mode-II fracture characterization of bonded joints
  187. Assessment of initiation criteria used in interlaminar fracture tests of composites
  188. Modelling single and double-lap repairs on composite materials
  189. Evaluation of stress concentration effects in single-lap bonded joints of laminate composite materials
  190. Mode I interlaminar fracture of woven glass/epoxy multidirectional laminates
  191. Application of acoustic emission to study creep behaviour of composite bonded lap shear joints
  192. Influence of intralaminar cracking on the apparent interlaminar mode I fracture toughness of cross‐ply laminates
  193. Modelling the interaction between matrix cracking and delamination in carbon–epoxy laminates under low velocity impact
  194. Numerical simulation of the crushing process of composite materials
  195. Numerical Simulation of Mixed-Mode Progressive Delamination in Composite Materials
  196. Analysis of crack propagation in double cantilever beam tests of multidirectional laminates
  197. Application of interface finite elements to three‐dimensional progressive failure analysis of adhesive joints
  198. Mode-I interlaminar fracture of carbon/epoxy cross-ply composites
  199. Prediction of low velocity impact damage in carbon–epoxy laminates
  200. A three-dimensional finite element model for stress analysis of adhesive joints
  201. Mixed-mode decohesion elements for analyses of progressive delamination
  202. Progressive Damage Modelling