The aim of this study was to investigate the effect of guanidinium nonaborate (GB) and imidazolium borate (IB) on thermal stability and flammability properties of cotton fabrics. The flame retardant and thermal stability properties of treated cotton fabrics were investigated using limiting oxygen index (LOI) and thermogravimetric analysis. The residues remained after LOI test were characterized by conducting attenuated total reflectance-Fourier-transform infrared spectroscopy and scanning electron microscopy with a wavelength-dispersive X-ray spectrometer. The results showed that both boron compounds increased the LOI value of cotton fabric as the amount increased by several combined flame retardant effects. IB-treated cotton fabrics had hi...
Purpose - The purpose of this paper is to develop the flame retardancy properties of cotton fabrics ...
Flame retardancy is often required in various textile applications. Halogenated flame retardants (FR...
In this study, 100% cotton fabrics' flame retardant properties were improved using commercial nanocl...
This study investigates synergistic fire retardancy effect of boron on cotton fabrics. Three types o...
One way to better protect combustible materials against initiating fires is the use of flame retarda...
This study investigates synergistic fire retardancy effect of boron on cotton fabrics. Three types o...
In recent years, we have witnessed numerous indoor fires caused by the flammable properties of cotto...
36-43The flame retardant functionality has been imparted in cellulosic fabric using mixed formulatio...
548-554Oxidative thermal degradation and flame retardant behaviour of cotton fabric coated with intu...
A finishing process with polyhedral oligomeric silsesquioxane (POSS) and bohemite nanoparticles has ...
AbstractThe objective of the present study is to develop a renewable and environmentally benign tech...
ABSTRACT: The thermal degradation in air of hemp fabric treated with various compounds containing ni...
Polyester fabrics have been treated with hybrid organic-inorganic sols containing aluminium hydroxid...
This study focuses on the application of environmental-friendly flame retardant (FR) finishing which...
ABSTRACT: Nonhalogen compounds have been studied for improvements in the flame-proofing property and...
Purpose - The purpose of this paper is to develop the flame retardancy properties of cotton fabrics ...
Flame retardancy is often required in various textile applications. Halogenated flame retardants (FR...
In this study, 100% cotton fabrics' flame retardant properties were improved using commercial nanocl...
This study investigates synergistic fire retardancy effect of boron on cotton fabrics. Three types o...
One way to better protect combustible materials against initiating fires is the use of flame retarda...
This study investigates synergistic fire retardancy effect of boron on cotton fabrics. Three types o...
In recent years, we have witnessed numerous indoor fires caused by the flammable properties of cotto...
36-43The flame retardant functionality has been imparted in cellulosic fabric using mixed formulatio...
548-554Oxidative thermal degradation and flame retardant behaviour of cotton fabric coated with intu...
A finishing process with polyhedral oligomeric silsesquioxane (POSS) and bohemite nanoparticles has ...
AbstractThe objective of the present study is to develop a renewable and environmentally benign tech...
ABSTRACT: The thermal degradation in air of hemp fabric treated with various compounds containing ni...
Polyester fabrics have been treated with hybrid organic-inorganic sols containing aluminium hydroxid...
This study focuses on the application of environmental-friendly flame retardant (FR) finishing which...
ABSTRACT: Nonhalogen compounds have been studied for improvements in the flame-proofing property and...
Purpose - The purpose of this paper is to develop the flame retardancy properties of cotton fabrics ...
Flame retardancy is often required in various textile applications. Halogenated flame retardants (FR...
In this study, 100% cotton fabrics' flame retardant properties were improved using commercial nanocl...