Development of FRP composite structural biomaterials: Ultimate strength of the fiber/matrix interfacial bond in in vivo simulated environments
- 1 May 1992
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research
- Vol. 26 (5) , 593-606
- https://doi.org/10.1002/jbm.820260504
Abstract
Fiber reinforced polymer (FRP) composites are being developed as alternatives to metals for structural orthopedic implant applications. FRP composite fracture behavior and environmental interactions are distinctly different from those which occur in metals. These differences must be accounted for in the design and evaluation of implant performance. Fiber/ matrix interfacial bond strength in a FRP composite is known to strongly influence fracture behavior. The interfacial bond strength of four candidate fiber/matrix combinations (carbon fiber/polycarbonate, carbon fiber/polysulfone, polyaramid fiber/polycarbonate, polyaramid fiber/ polysulfone) were investigated at 37°C in dry and in vivo simulated (saline, exudate) environments. Ultimate bond strength was measured by a single fiber‐microdroplet pull‐out test. Dry bond strengths were significantly decreased following exposure to either saline or exudate with bond strength loss being approximately equal in both the saline and exudate. Bond strength loss is attributed to the diffusion of water and/or salt ions into the sample and their interaction with interfacial bonding. Because bond degradation is dependent upon diffusion, diffusional equilibrium must be obtained in composite test samples before the full effect of the test environment upon composite mechanical behavior can be determined.Keywords
This publication has 16 references indexed in Scilit:
- A Canine Composite Femoral StemPublished by Wolters Kluwer Health ,1988
- Composite Technology for Total Hip ArthroplastyClinical Orthopaedics and Related Research, 1988
- The Challenge and Opportunity for Composites in Structural Orthopaedic ApplicationsJournal of Composites Technology and Research, 1987
- Tissue biocompatibility of kevlar aramid fibers and polymethylmethacrylate, composites in rabbitsJournal of Biomedical Materials Research, 1987
- A microbond method for determination of the shear strength of a fiber/resin interfaceComposites Science and Technology, 1987
- Biocompatibility of Different Hemodialysis and Plasmapheresis MembranesBlood Purification, 1987
- The solubility and diffusion of water in poly(aryl‐ether‐ether‐ketone) (PEEK)Journal of Polymer Science Part B: Polymer Physics, 1987
- The glass fibre—polymer interface: I—theoretical consideration for single fibre pull-out testsComposites Science and Technology, 1985
- Carbon fiber‐reinforced bone cement in orthopedic surgeryJournal of Biomedical Materials Research, 1976
- Compendium of normal blood values of laboratory animals, with indication of variations I. Random-sexed populations of small animalsToxicology and Applied Pharmacology, 1966