Injection moulded bamboo charcoal (BC) particles were used to reinforce Polylactic Acid (PLA) polymer to enhance its mechanical properties. It was found that by increasing small amount of BC particles into PLA would enhance its impact strength, tensile strength and modulus of elasticity. The formation of mirror, mist and hackled zones of PLA/BC samples observed under fractographic images through an optical microscopy has explained their energy absorption mechanism. To achieve better mechanical properties of PLA/BC composites with the consideration of ease of manufacturing, it was found that the optimal percentage of BC particles for PLA/BC composites is 7.5 wt percent
Cellulose rayon reinforcement is a viable biobased option to improve the mechanical properties of PL...
This investigation aims to study the mechanical properties of the bamboo particle (BP) (Gigantochloa...
Developing an eco-friendly industry based on green materials, sustainable technologies, and optimum ...
Bamboo charcoal (BC) derived from bamboo plants is one kind of well recognized multi-functional mate...
The use of bamboo charcoal (BC) was investigated as a filler in bamboo-plastic composites (BPCs) to ...
This thesis discusses the manufacturing of composites made from PLA and bamboo particles using extru...
The effects of different mixing, bamboo mesh size and heat treatment on the physical and mechanical ...
A cooperative flame-retardant system based on natural intumescent-grafted bamboo charcoal (BC) and c...
In this paper, bamboo charcoals (BCs) were considered as alternative ecofriendly and sustainable car...
The mechanical and fire safety properties of bamboo fiber reinforced polylactide biocomposites fabri...
Bacterial cellulose (BC), microcrystalline cellulose (MCC), and bamboo cellulosic fibers (BCFs) were...
Bacterial cellulose (BC), microcrystalline cellulose (MCC), and bamboo cellulosic fibers (BCFs) were...
Bioinspired structures can attain mechanical properties unseen in conventional artificial materials....
In this study, bamboo charcoal (BC) was used as a substitute filler for bamboo powder (BP) in a lign...
In this study, polylactide acid (PLA) is filled with bamboo fibers (BFs) to fabricate a biodegradabl...
Cellulose rayon reinforcement is a viable biobased option to improve the mechanical properties of PL...
This investigation aims to study the mechanical properties of the bamboo particle (BP) (Gigantochloa...
Developing an eco-friendly industry based on green materials, sustainable technologies, and optimum ...
Bamboo charcoal (BC) derived from bamboo plants is one kind of well recognized multi-functional mate...
The use of bamboo charcoal (BC) was investigated as a filler in bamboo-plastic composites (BPCs) to ...
This thesis discusses the manufacturing of composites made from PLA and bamboo particles using extru...
The effects of different mixing, bamboo mesh size and heat treatment on the physical and mechanical ...
A cooperative flame-retardant system based on natural intumescent-grafted bamboo charcoal (BC) and c...
In this paper, bamboo charcoals (BCs) were considered as alternative ecofriendly and sustainable car...
The mechanical and fire safety properties of bamboo fiber reinforced polylactide biocomposites fabri...
Bacterial cellulose (BC), microcrystalline cellulose (MCC), and bamboo cellulosic fibers (BCFs) were...
Bacterial cellulose (BC), microcrystalline cellulose (MCC), and bamboo cellulosic fibers (BCFs) were...
Bioinspired structures can attain mechanical properties unseen in conventional artificial materials....
In this study, bamboo charcoal (BC) was used as a substitute filler for bamboo powder (BP) in a lign...
In this study, polylactide acid (PLA) is filled with bamboo fibers (BFs) to fabricate a biodegradabl...
Cellulose rayon reinforcement is a viable biobased option to improve the mechanical properties of PL...
This investigation aims to study the mechanical properties of the bamboo particle (BP) (Gigantochloa...
Developing an eco-friendly industry based on green materials, sustainable technologies, and optimum ...