This paper presents an experimental investigation into the large reductions to the tensile fracture stress and the associated strength loss mechanism of E-glass fibres during thermal recycling. Fractographic analysis reveals the fracture process is controlled by surface flaws, irrespective of heat treatment temperature and duration. The fracture toughness is an important material property in order to understand possible changes in the strength-flaw relationship during heat treatment. Focussed ion beam (FIB) milling is used to artificially create a single nano-sized deep notch (between 30 and 1000 nm) in glass fibres. The strength loss, fracture toughness, fracture mirror constant and fracture mechanism observed for nano-notched and thermall...
This paper reported transformability of regenerating strengths of heat treated glass fibres (HTGFs) ...
The strength loss of thermally treated glass fibre (GF) at elevated temperature is well reported in ...
The present article demonstrates the recycling and reuse of waste glass fibre fabrics. The recycled ...
This paper investigates the effects of temperature, heating time and atmosphere on the tensile modul...
Data produced using both unsized and aminopropyltriethoxysilane (APS) coated fibre will be shown and...
Data produced using both unsized and aminopropyltriethoxysilane (APS) coated fibre will be shown and...
In the present study, commercial chopped glass fibres were heat treated at 300°C, 450°C, 500°C and 6...
Single fibre tensile testing of thermally conditioned water sized and γ – aminopropyltriethoxysilane...
Due to economic and technical reasons, no recycling process for glass fibre composites has been comm...
The strength loss of glass fibres (GF) following exposure to elevated temperatures is a long-establi...
The recovery and reuse of glass fibres from manufacturing waste and end-of-life composites in an env...
The recovery and reuse of glass fibres from manufacturing waste and end-of-life composites in an env...
Results are presented on E-glass fibre properties after thermal conditioning up to 600°C. Thermal co...
Commercially manufactured E-glass fibres were heat-conditioned to mimic the effects of thermal recyc...
The processing and reuse of end-of-life composite products in an environmentally friendly manner is ...
This paper reported transformability of regenerating strengths of heat treated glass fibres (HTGFs) ...
The strength loss of thermally treated glass fibre (GF) at elevated temperature is well reported in ...
The present article demonstrates the recycling and reuse of waste glass fibre fabrics. The recycled ...
This paper investigates the effects of temperature, heating time and atmosphere on the tensile modul...
Data produced using both unsized and aminopropyltriethoxysilane (APS) coated fibre will be shown and...
Data produced using both unsized and aminopropyltriethoxysilane (APS) coated fibre will be shown and...
In the present study, commercial chopped glass fibres were heat treated at 300°C, 450°C, 500°C and 6...
Single fibre tensile testing of thermally conditioned water sized and γ – aminopropyltriethoxysilane...
Due to economic and technical reasons, no recycling process for glass fibre composites has been comm...
The strength loss of glass fibres (GF) following exposure to elevated temperatures is a long-establi...
The recovery and reuse of glass fibres from manufacturing waste and end-of-life composites in an env...
The recovery and reuse of glass fibres from manufacturing waste and end-of-life composites in an env...
Results are presented on E-glass fibre properties after thermal conditioning up to 600°C. Thermal co...
Commercially manufactured E-glass fibres were heat-conditioned to mimic the effects of thermal recyc...
The processing and reuse of end-of-life composite products in an environmentally friendly manner is ...
This paper reported transformability of regenerating strengths of heat treated glass fibres (HTGFs) ...
The strength loss of thermally treated glass fibre (GF) at elevated temperature is well reported in ...
The present article demonstrates the recycling and reuse of waste glass fibre fabrics. The recycled ...