Cellulose fibers, because of their chemical and physical characteristics, are compatible with other materials to be used for the production of building components. This paper presents the influence of using cellulose nano fibers (CNFs) made from plant-derived cellulose as a reinforcement in ultra-high performance (UHP) mortar. In this study, the dispersion method of CNFs using manual and mechanical mixing was also observed. The effects of different dosage of CNFs, namely, 0.005%, 0.01% and 0.015% by wt. of binders (premixed low-heat cement and silica fume) with a constant waterto binder ratio of 0.15, were evaluated based on the compressive and flexural strengths at the seventh day after steam curing. Results show that the highest compressi...
The effects of including cellulose nanofibers (CNFs) in Ultra High Performance Concretes (UHPCs) hav...
The use of nanocellulose in traditional lime-based mortars is a promising solution for green buildin...
The main objective of this paper is study the influence of carbon nano-tubes fibers and nano silica ...
Cellulose fibers, because of their chemical and physical characteristics, are compatible with other ...
Ultra high performance concrete (UHPC) is a material known for its high compressive strength (greate...
Cellulose nanofibrils (CNFs) are hydrophilic biodegradable nanoparticles (typically, less than 0.2 m...
In this work, nanofibrillated cellulose (NFC) has been evaluated as a potential reinforcement for ce...
Ultra high-strength concrete (\u3e200 MPa) is marked by brittle behavior. In this work, we are rein...
Cement is the world’s most widely used building material; to reduce the environmental impact of its ...
A study on the utilization of cellulose nanocrystals (CNCs) as a natural-base additive in cement mor...
In this work, the preparation and characterization of new cement mortars reinforced with nanofibrill...
Cement is one of the mostly used construction materials due to its high durability and low cost, but...
Due to its high biocompatibility, bio-degradability, and low cost, cellulose finds application in di...
Due to its high biocompatibility, bio-degradability, and low cost, cellulose finds application in d...
In this work, four different nanocellulose (NCs) aqueous suspensions (two Cellulose Nano-Fibrils-CNF...
The effects of including cellulose nanofibers (CNFs) in Ultra High Performance Concretes (UHPCs) hav...
The use of nanocellulose in traditional lime-based mortars is a promising solution for green buildin...
The main objective of this paper is study the influence of carbon nano-tubes fibers and nano silica ...
Cellulose fibers, because of their chemical and physical characteristics, are compatible with other ...
Ultra high performance concrete (UHPC) is a material known for its high compressive strength (greate...
Cellulose nanofibrils (CNFs) are hydrophilic biodegradable nanoparticles (typically, less than 0.2 m...
In this work, nanofibrillated cellulose (NFC) has been evaluated as a potential reinforcement for ce...
Ultra high-strength concrete (\u3e200 MPa) is marked by brittle behavior. In this work, we are rein...
Cement is the world’s most widely used building material; to reduce the environmental impact of its ...
A study on the utilization of cellulose nanocrystals (CNCs) as a natural-base additive in cement mor...
In this work, the preparation and characterization of new cement mortars reinforced with nanofibrill...
Cement is one of the mostly used construction materials due to its high durability and low cost, but...
Due to its high biocompatibility, bio-degradability, and low cost, cellulose finds application in di...
Due to its high biocompatibility, bio-degradability, and low cost, cellulose finds application in d...
In this work, four different nanocellulose (NCs) aqueous suspensions (two Cellulose Nano-Fibrils-CNF...
The effects of including cellulose nanofibers (CNFs) in Ultra High Performance Concretes (UHPCs) hav...
The use of nanocellulose in traditional lime-based mortars is a promising solution for green buildin...
The main objective of this paper is study the influence of carbon nano-tubes fibers and nano silica ...