The thermostability and mechanical properties of ultra-low density fiberboard (ULDF) were improved with the different content of silica sol. Microstructure and properties of ULDF were tested using scanning electron microscope (SEM), thermogravimetric analyzer (TGA), and microcomputer control electronic universal testing machine. The microstructures and the relative density of ULDFs were different with changes in Si sol content. The TGA results showed that the residual weight of ULDF was increased with the increasing content of silica sol and that the thermostability of ULDFs was improved. The modulus of rupture (MOR), modulus of elasticity (MOE), and the internal bond strength (IB) of ULDF were significantly improved from 0.12, 10.86, and 0...
To improve the mechanical properties of ultra-low density plant fiber composite (ULD_PFC), a suitabl...
ABSTRACT: In this study, the effects of nanoclay (layered silicate) loading (0, 2, 4, 6, 8wt%) as re...
In this research, the properties of cement fiberboard produced using different contents of nano-sili...
The poly-aluminum silicate sulphate (PASS) for ultra-low density fiberboard (ULDF) was synthesized i...
Preparation conditions of ultra-low-density fiberboard (ULDF) were optimized using the Box–Behnken d...
To clarify how the fire performance of ultra-low density fiberboard (ULDF) can be improved by comple...
An ultra-low density fiberboard was made of plant fiber using a liquid frothing approach. The inflam...
To clarify how the fire resistance of ultra-low density fiberboards (ULDFs) was improved by the Si-A...
B-Zn-Si-Al compounds are modified Si-Al compounds made of sodium silicate, zinc sulfate, borax, and ...
Fibrous porous materials are one of the most commonly used high-temperature insulation materials bec...
An ultra-low density fiberboard was made of plant fiber using a liquid frothing approach. The inflam...
Ultra-low-density fiberboards (ULDFs) were prepared by a liquid frothing technique using plant fiber...
B-Zn-Si-Al compounds, as a modification of Si-Al compounds, is made of sodium silicate, zinc sulfate...
This study investigated physical and mechanical properties of the light medium density fiberboard (M...
In this study the effects of aluminum dioxide (Al2O3) and copper oxide (CuO) metallic nanoparticles,...
To improve the mechanical properties of ultra-low density plant fiber composite (ULD_PFC), a suitabl...
ABSTRACT: In this study, the effects of nanoclay (layered silicate) loading (0, 2, 4, 6, 8wt%) as re...
In this research, the properties of cement fiberboard produced using different contents of nano-sili...
The poly-aluminum silicate sulphate (PASS) for ultra-low density fiberboard (ULDF) was synthesized i...
Preparation conditions of ultra-low-density fiberboard (ULDF) were optimized using the Box–Behnken d...
To clarify how the fire performance of ultra-low density fiberboard (ULDF) can be improved by comple...
An ultra-low density fiberboard was made of plant fiber using a liquid frothing approach. The inflam...
To clarify how the fire resistance of ultra-low density fiberboards (ULDFs) was improved by the Si-A...
B-Zn-Si-Al compounds are modified Si-Al compounds made of sodium silicate, zinc sulfate, borax, and ...
Fibrous porous materials are one of the most commonly used high-temperature insulation materials bec...
An ultra-low density fiberboard was made of plant fiber using a liquid frothing approach. The inflam...
Ultra-low-density fiberboards (ULDFs) were prepared by a liquid frothing technique using plant fiber...
B-Zn-Si-Al compounds, as a modification of Si-Al compounds, is made of sodium silicate, zinc sulfate...
This study investigated physical and mechanical properties of the light medium density fiberboard (M...
In this study the effects of aluminum dioxide (Al2O3) and copper oxide (CuO) metallic nanoparticles,...
To improve the mechanical properties of ultra-low density plant fiber composite (ULD_PFC), a suitabl...
ABSTRACT: In this study, the effects of nanoclay (layered silicate) loading (0, 2, 4, 6, 8wt%) as re...
In this research, the properties of cement fiberboard produced using different contents of nano-sili...