Polypropylene (PP) is currently widely used in areas requiring lightweight materials because of its low density. Due to the intrinsic flammability, the application of PP is restricted in many conditions. Aluminum trihydroxide (ATH) is reported as a practical flame retardant for PP, but the addition of ATH often diminishes the lightweight advantage of PP. Therefore, in this work, glass bubbles (GB) and octacedylamine-modified zirconium phosphate (mZrP) are introduced into the PP/ATH composite in order to lower the material density and simultaneously maintain/enhance the flame retardancy. A series of PP composites have been prepared to explore the formulation which can endow the composite with balanced flame retardancy, good mechanical proper...
This report provides a detailed documentation of the author’s final year project spanning over the ...
Polypropylene (PP) has excellent mechanical and chemical properties. Thus, it is used in a wide rang...
The aim of this study is to enhance the flame retardant property of the glass fiber reinforced polye...
\u3b1-Zr phosphate (hereafter referred to as ZrP) based composites were prepared by melt blending in...
This study proposes an innovative solution to flame-retard a sandwich composite made of unsaturated ...
It is known that polymeric materials are easily to get on fire due to their chemical structures. Th...
It is known that polymeric materials are easily to get on fire due to their chemical structures. Thu...
The flame retardant and mechanical properties of polypropylene (PP) composites filled with microenca...
The influence of the specific surface area of aluminum trihydrate (ATH) on the synergism to differen...
Flame-retardant ethylene vinyl acetate (EVA) composite based on aluminum trihydroxide (ATH), layered...
Metal hydroxides have long been considered as abundant and low cost fillers towards the development ...
Polypropylene (PP) flame retardant composites filled with aluminum hydroxide (Al(OH)3), magnesium hy...
AbstractThe synergistic flame retardant effects between aluminum hydroxide (ATH) and halogen-free fl...
We found in our previous study that layered double hydroxides (LDHs) which undergo aqueous miscible ...
Two halogen-free inorganic flame retardants, ammonium polyphosphate (APP) and aluminum hydroxide (AT...
This report provides a detailed documentation of the author’s final year project spanning over the ...
Polypropylene (PP) has excellent mechanical and chemical properties. Thus, it is used in a wide rang...
The aim of this study is to enhance the flame retardant property of the glass fiber reinforced polye...
\u3b1-Zr phosphate (hereafter referred to as ZrP) based composites were prepared by melt blending in...
This study proposes an innovative solution to flame-retard a sandwich composite made of unsaturated ...
It is known that polymeric materials are easily to get on fire due to their chemical structures. Th...
It is known that polymeric materials are easily to get on fire due to their chemical structures. Thu...
The flame retardant and mechanical properties of polypropylene (PP) composites filled with microenca...
The influence of the specific surface area of aluminum trihydrate (ATH) on the synergism to differen...
Flame-retardant ethylene vinyl acetate (EVA) composite based on aluminum trihydroxide (ATH), layered...
Metal hydroxides have long been considered as abundant and low cost fillers towards the development ...
Polypropylene (PP) flame retardant composites filled with aluminum hydroxide (Al(OH)3), magnesium hy...
AbstractThe synergistic flame retardant effects between aluminum hydroxide (ATH) and halogen-free fl...
We found in our previous study that layered double hydroxides (LDHs) which undergo aqueous miscible ...
Two halogen-free inorganic flame retardants, ammonium polyphosphate (APP) and aluminum hydroxide (AT...
This report provides a detailed documentation of the author’s final year project spanning over the ...
Polypropylene (PP) has excellent mechanical and chemical properties. Thus, it is used in a wide rang...
The aim of this study is to enhance the flame retardant property of the glass fiber reinforced polye...