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Fungal degradation of fiber-reinforced composite materials
J D Gu1, C Lu, R Mitchell
1Division of Applied Sciences, Harvard University, Cambridge, MA 02138-1903, USA.
Abstract:
As described in a previous report, a fungal consortium isolated from degraded polymeric materials was capable of growth on presterilized coupons of five composites, resulting in deep penetration into the interior of all materials within five weeks. Data describing the utilization of composite constituents as nutrients for the microflora are described in this article. Increased microbial growth was observed when composite extract was incubated with the fungal inoculum at ambient temperatures. Scanning electron microscopic observation of carbon fibers incubated with a naturally developed population of microorganisms showed the formation of bacterial biofilms on the fiber surfaces, suggesting possible utilization of the fiber chemical sizing as carbon and energy sources. Electrochemical impedance spectroscopy was used to monitor the phenomena occurring at the fiber-matrix interfaces. Significant differences were observed between inoculated and sterile panels of the composite materials. A progressive decline in impedance was detected in the inoculated panels. Several reaction steps may be involved in the degradation process. Initial ingress of water into the resin matrix appeared to be followed by degradation of fiber surfaces, and separation of fibers from the resin matrix. This investigation suggested that composite materials are susceptible to microbial attack by providing nutrients for growth.
Insights
Fungal and bacterial consortia can degrade composite materials by utilizing their constituents as nutrients. This microbial attack leads to deep penetration and material breakdown, impacting structural integrity.
Area of Science:
- Materials Science
- Microbiology
- Biotechnology
Background:
- Composite materials are increasingly used in various industries.
- Understanding their susceptibility to environmental factors like microbial attack is crucial.
- Previous studies indicated fungal growth on polymeric materials.
Purpose of the Study:
- To investigate the utilization of composite constituents by microflora.
- To analyze the microbial degradation process in composite materials.
- To assess the impact of microbial attack on composite material integrity.
Main Methods:
- Incubation of composite extracts with fungal inoculum.
- Scanning electron microscopy (SEM) of carbon fibers.
- Electrochemical impedance spectroscopy (EIS) of composite panels.
Main Results:
- Microbial growth increased with composite extract incubation.
- Bacterial biofilms formed on carbon fiber surfaces, indicating nutrient utilization.
- Electrochemical impedance spectroscopy showed significant differences between inoculated and sterile panels, with a progressive decline in impedance for inoculated panels.
- Degradation involved water ingress, fiber surface degradation, and fiber-matrix separation.
Conclusions:
- Composite materials are susceptible to microbial degradation.
- Microorganisms can utilize composite constituents as carbon and energy sources.
- Microbial attack compromises the structural integrity of composite materials.