Composites, though used in a variety of applications from chairs and office supplies to structures of U.S. Navy ships and aircrafts, are not all designed to hold up to extreme heat flux and high temperature. Fiber-reinforced polymeric composites (FRPC) have been proven to provide the much needed physical and mechanical properties under fire exposure. FRPC notable features are its combination of high specific tensile strength, low weight, along with good corrosion and fatigue resistance. However FRPC are susceptible to thermal degradation and decomposition, which yields flammable gas, and are thus highly combustible. This property restricts polymeric material usage. This study developed a numerical model that simulated the degradation rate a...
Research paper presented at the 10th Interflam conference in Edinburgh, 2004An experimental study co...
Simple-to-use models based on the rule-of-mixtures are presented for predicting the post-fire tensio...
This first part of a series of papers on the thermo-mechanical responses of fiber-reinforced composi...
This study developed a numerical model that simulated the degradation rate and temperature profiles ...
This study developed a numerical model that simulated the degradation rate and temperature profiles ...
As the range of applications for fiber-reinforced polymer (FRP) composite materials in civil enginee...
This study is designed to provide the composites industry as well as the fire engineering industry b...
A thermal-mechanical model is presented to calculate the tensile strength and time-to-failure of gla...
PhD ThesisThis thesis describes the development of a model to predict the failure response of loade...
A 3D thermal response model is developed to evaluate the thermal behavior of glass fiber/phenolic co...
In this study, a new model has been developed for the prediction of thermal profiles for fibre reinf...
PhD ThesisA small-scale propane burner test was developed to enable rapid characterization of compo...
This thesis describes the measurement and modelling of the fire reaction and resistance properties o...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77086/1/AIAA-2002-2887-844.pd
The use of composite materials in naval structures has increased since the 1970s, allowing weight sa...
Research paper presented at the 10th Interflam conference in Edinburgh, 2004An experimental study co...
Simple-to-use models based on the rule-of-mixtures are presented for predicting the post-fire tensio...
This first part of a series of papers on the thermo-mechanical responses of fiber-reinforced composi...
This study developed a numerical model that simulated the degradation rate and temperature profiles ...
This study developed a numerical model that simulated the degradation rate and temperature profiles ...
As the range of applications for fiber-reinforced polymer (FRP) composite materials in civil enginee...
This study is designed to provide the composites industry as well as the fire engineering industry b...
A thermal-mechanical model is presented to calculate the tensile strength and time-to-failure of gla...
PhD ThesisThis thesis describes the development of a model to predict the failure response of loade...
A 3D thermal response model is developed to evaluate the thermal behavior of glass fiber/phenolic co...
In this study, a new model has been developed for the prediction of thermal profiles for fibre reinf...
PhD ThesisA small-scale propane burner test was developed to enable rapid characterization of compo...
This thesis describes the measurement and modelling of the fire reaction and resistance properties o...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77086/1/AIAA-2002-2887-844.pd
The use of composite materials in naval structures has increased since the 1970s, allowing weight sa...
Research paper presented at the 10th Interflam conference in Edinburgh, 2004An experimental study co...
Simple-to-use models based on the rule-of-mixtures are presented for predicting the post-fire tensio...
This first part of a series of papers on the thermo-mechanical responses of fiber-reinforced composi...