Due to economic and technical reasons, no recycling process for glass fibre composites has been commercialized on a large scale. Thermal recycling processes are promising in terms of potential for commercialization but the reinforcement potential of thermally recycled fibres is too low for the application in composites. In the present study, glass fibres were exposed to elevated temperatures prior to composite processing to imitate a thermal recycling process. The exposure of the fibres to elevated temperatures prior to composite processing caused a significant reduction of the mechanical properties of the composites. The heat treated fibres were regenerated with a post treatment. The regeneration of the glass fibres recovered the mechanica...
The recovery and reuse of end-of-life GRP in an environmentally friendly, cost-effective manner is o...
The processing and reuse of end-of-life composite products in an environmentally friendly manner is ...
Global production of composite materials in 2015 will significantly exceed 10 million tons. Glass fi...
Due to economic and technical reasons, no recycling process for glass fibre composites has been comm...
The paper reports an extensive study on the regenerating performance of thermally treated glass fibr...
The processing and reuse of end-of-life composite products in an environmentally friendly manner is ...
Global production of composite materials in 2015 will significantly exceed 10 million tons. Glass fi...
The recycling of glass fibre composites has become an important issue because of social-ecological, ...
This paper reported transformability of regenerating strengths of heat treated glass fibres (HTGFs) ...
Results are presented from the ReCoVeR project on the regeneration of the strength of thermally cond...
The paper reports an extensive study on the regenerating performance of thermally treated glass fibr...
The recovery and reuse of glass fibres from manufacturing waste and end-of-life composites in an env...
In the present study, commercial chopped glass fibres were heat treated at 300°C, 450°C, 500°C and 6...
The recovery and reuse of glass fibres from manufacturing waste and end-of-life composites in an env...
Commercially manufactured E-glass fibres were heat-conditioned to mimic the effects of thermal recyc...
The recovery and reuse of end-of-life GRP in an environmentally friendly, cost-effective manner is o...
The processing and reuse of end-of-life composite products in an environmentally friendly manner is ...
Global production of composite materials in 2015 will significantly exceed 10 million tons. Glass fi...
Due to economic and technical reasons, no recycling process for glass fibre composites has been comm...
The paper reports an extensive study on the regenerating performance of thermally treated glass fibr...
The processing and reuse of end-of-life composite products in an environmentally friendly manner is ...
Global production of composite materials in 2015 will significantly exceed 10 million tons. Glass fi...
The recycling of glass fibre composites has become an important issue because of social-ecological, ...
This paper reported transformability of regenerating strengths of heat treated glass fibres (HTGFs) ...
Results are presented from the ReCoVeR project on the regeneration of the strength of thermally cond...
The paper reports an extensive study on the regenerating performance of thermally treated glass fibr...
The recovery and reuse of glass fibres from manufacturing waste and end-of-life composites in an env...
In the present study, commercial chopped glass fibres were heat treated at 300°C, 450°C, 500°C and 6...
The recovery and reuse of glass fibres from manufacturing waste and end-of-life composites in an env...
Commercially manufactured E-glass fibres were heat-conditioned to mimic the effects of thermal recyc...
The recovery and reuse of end-of-life GRP in an environmentally friendly, cost-effective manner is o...
The processing and reuse of end-of-life composite products in an environmentally friendly manner is ...
Global production of composite materials in 2015 will significantly exceed 10 million tons. Glass fi...