Structure-mechanical properties relationships of nanocellulose reinforced polymer composites are studied in computational experiments. A code for the generation of 3D unit cell finite element models of nanocellulose reinforced polymers with “snake”-shaped nanocellulose fibrils is developed. The code allows the generation of pre-defined nanocomposites structures, with varied angles between nanocellulose snakes segments and hydrogen bonds between nanocellulose fibrils. In a series of computational studies, it is demonstrated that the nanocellulose reinforcement leads to higher stiffness of the matrix polymer, but makes it more brittle
Nanotechnology provides useful insights into the behavioural properties of materials from the nanosc...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Cat...
Nanoreinforced polymers are considered among most promising materials for energy, aerospace, marine ...
AbstractNanocomposites, reinforced by different types of cellulose fibrils, have gained increased in...
AbstractNanocellulose is often being regarded as the next generation renewable reinforcement for the...
The mechanical reinforcement of nanocomposites containing nanorods-like fillers such as cellulose n...
Graduation date: 2017Access restricted to the OSU Community, at author's request, from June 29, 2016...
Crystalline Nano-cellulose (CNC) is a general molecular structure obtained from acid hydrolysis of n...
Composites are engineered materials that consist of two or more insoluble phases combined together; ...
The fabrication of cellulose nanocomposites with ultimate mechanical properties has received tremend...
Polymer nanocomposites render a range of outstanding materials from natural products such as silk, s...
We study composites of cellulose nanocrystals (CNCs) in an ionomer matrix of poly(ethylene-stat-sodi...
The advancement of nanotechnology has opened a new opportunity to develop nanocomposites using nanoc...
In the past decade, many researchers have studied mechanical properties of polymer reinforced nanoco...
The development of nanocomposites is one of the rapidly evolving areas of composite materials resear...
Nanotechnology provides useful insights into the behavioural properties of materials from the nanosc...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Cat...
Nanoreinforced polymers are considered among most promising materials for energy, aerospace, marine ...
AbstractNanocomposites, reinforced by different types of cellulose fibrils, have gained increased in...
AbstractNanocellulose is often being regarded as the next generation renewable reinforcement for the...
The mechanical reinforcement of nanocomposites containing nanorods-like fillers such as cellulose n...
Graduation date: 2017Access restricted to the OSU Community, at author's request, from June 29, 2016...
Crystalline Nano-cellulose (CNC) is a general molecular structure obtained from acid hydrolysis of n...
Composites are engineered materials that consist of two or more insoluble phases combined together; ...
The fabrication of cellulose nanocomposites with ultimate mechanical properties has received tremend...
Polymer nanocomposites render a range of outstanding materials from natural products such as silk, s...
We study composites of cellulose nanocrystals (CNCs) in an ionomer matrix of poly(ethylene-stat-sodi...
The advancement of nanotechnology has opened a new opportunity to develop nanocomposites using nanoc...
In the past decade, many researchers have studied mechanical properties of polymer reinforced nanoco...
The development of nanocomposites is one of the rapidly evolving areas of composite materials resear...
Nanotechnology provides useful insights into the behavioural properties of materials from the nanosc...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Cat...
Nanoreinforced polymers are considered among most promising materials for energy, aerospace, marine ...