A number of analytical techniques were applied to investigate changes to the surface of unsized boron-free E-glass fibres after thermal conditioning at temperatures up to 700 °C. Novel systematic studies were carried out to investigate the fundamental strength loss from thermal conditioning. Surface chemical changes studied using X-ray photoelectron spectroscopy (XPS) showed a consistent increase in the surface concentration of calcium with increasing conditioning temperature, although this did not correlate well with a loss of fibre strength. Scanning electron microscopy fractography confirmed the difficulty of analysing failure-inducing flaws on individual fibre fracture surfaces. Analysis by atomic force microscopy (AFM) did not reveal a...
This article belongs to the Special Issue Surface Modification of Glass FibersThe disposal of fibre ...
Recycling of fibre reinforced polymers is in the focus of several investigations. Chemical and therm...
The processing and reuse of end-of-life composite products in an environmentally friendly manner is ...
A number of analytical techniques were applied to investigate changes to the surface of unsized boro...
Single fibre tensile testing of thermally conditioned water sized and γ – aminopropyltriethoxysilane...
The tensile strength of single water-sized E-glass fibres that were thermally conditioned, either in...
Results are presented on E-glass fibre properties after thermal conditioning up to 600°C. Thermal co...
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...
The study reported the mechanical properties of glass fibres conditioned at typical temperatures for...
The strength loss of glass fibres (GF) following exposure to elevated temperatures is a long-establi...
The loss of strength of glass fibres following exposure to elevated temperatures for even short time...
The strength loss of thermally treated glass fibre (GF) at elevated temperature is well reported in ...
The results of a study on the properties of glass fibres after thermal conditioning at typical engin...
Commercially manufactured E-glass fibres were heat-conditioned to mimic the effects of thermal recyc...
This article belongs to the Special Issue Surface Modification of Glass FibersThe disposal of fibre ...
Recycling of fibre reinforced polymers is in the focus of several investigations. Chemical and therm...
The processing and reuse of end-of-life composite products in an environmentally friendly manner is ...
A number of analytical techniques were applied to investigate changes to the surface of unsized boro...
Single fibre tensile testing of thermally conditioned water sized and γ – aminopropyltriethoxysilane...
The tensile strength of single water-sized E-glass fibres that were thermally conditioned, either in...
Results are presented on E-glass fibre properties after thermal conditioning up to 600°C. Thermal co...
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...
The study reported the mechanical properties of glass fibres conditioned at typical temperatures for...
The strength loss of glass fibres (GF) following exposure to elevated temperatures is a long-establi...
The loss of strength of glass fibres following exposure to elevated temperatures for even short time...
The strength loss of thermally treated glass fibre (GF) at elevated temperature is well reported in ...
The results of a study on the properties of glass fibres after thermal conditioning at typical engin...
Commercially manufactured E-glass fibres were heat-conditioned to mimic the effects of thermal recyc...
This article belongs to the Special Issue Surface Modification of Glass FibersThe disposal of fibre ...
Recycling of fibre reinforced polymers is in the focus of several investigations. Chemical and therm...
The processing and reuse of end-of-life composite products in an environmentally friendly manner is ...