The interlocked carbon nanotube (CNT) networks formed by floating catalyst chemical vapor deposition method is found to show greatly enhanced damping ratio (0.37-0.42) and much higher storage modulus (>11.0 GPa) compared to most of engineering damping materials and any other kinds of CNT networks and composites ever reported. Interestingly, its damping performance is frequency-dependent with damping ratio and dynamic moduli increasing obviously when frequency varies from 1 to 200 Hz. The structural analysis reveals that excellent energy dissipation ability of the CNT networks is mainly ascribed to abundant inter-bundle stick-slip motions throughout the interlocked CNT networks. Additionally, the presence of catalyst particles at network jun...
Damping is an important design element that cannot be taken lightly. This is especially true when sy...
The majority of currently published dispersion protocols of carbon nanotubes rely on techniques that...
Optimization of the storage modulus and the hysteretic damping capacity of multilayer carbon nanotub...
A carbon nanotube (CNT) fiber is formed by assembling millions of individual tubes. The assembly fea...
We assembled novel periodic structures by alternating aligned carbon nanotube (CNT) discs and polyca...
In nanocomposites containing single-wall or multi-wall carbon nanotubes (SWCNT and MWCNT) high dampi...
The interfacial sliding motion of carbon nanotubes (CNTs) within a polymeric hosting matrix gives ri...
New types of piezoelectric damping materials, including carbon nanotubes (CNTs)/lead magnesium nioba...
It has been found that the composites of carbon nanotubes (CNTs) and epoxy resin could greatly enhan...
The unique mechanical, thermal, and electrical properties of carbon nanotubes (CNTs) make them an id...
The effects of carbon nanotube (CNT) length on the viscoelasticity and permeability of buckypaper, c...
Materials combining high stiffness and mechanical energy dissipation are needed in automotive, aviat...
The effects of carbon nanotube (CNT) length on the viscoelasticity and permeability of buckypaper, c...
Quasi-reversible energy flows between orderly intertube axial motion and vibrational modes are studi...
[[abstract]]The use of network and dispersed carbon nanotubes (CNT) as reinforcements for fabricatin...
Damping is an important design element that cannot be taken lightly. This is especially true when sy...
The majority of currently published dispersion protocols of carbon nanotubes rely on techniques that...
Optimization of the storage modulus and the hysteretic damping capacity of multilayer carbon nanotub...
A carbon nanotube (CNT) fiber is formed by assembling millions of individual tubes. The assembly fea...
We assembled novel periodic structures by alternating aligned carbon nanotube (CNT) discs and polyca...
In nanocomposites containing single-wall or multi-wall carbon nanotubes (SWCNT and MWCNT) high dampi...
The interfacial sliding motion of carbon nanotubes (CNTs) within a polymeric hosting matrix gives ri...
New types of piezoelectric damping materials, including carbon nanotubes (CNTs)/lead magnesium nioba...
It has been found that the composites of carbon nanotubes (CNTs) and epoxy resin could greatly enhan...
The unique mechanical, thermal, and electrical properties of carbon nanotubes (CNTs) make them an id...
The effects of carbon nanotube (CNT) length on the viscoelasticity and permeability of buckypaper, c...
Materials combining high stiffness and mechanical energy dissipation are needed in automotive, aviat...
The effects of carbon nanotube (CNT) length on the viscoelasticity and permeability of buckypaper, c...
Quasi-reversible energy flows between orderly intertube axial motion and vibrational modes are studi...
[[abstract]]The use of network and dispersed carbon nanotubes (CNT) as reinforcements for fabricatin...
Damping is an important design element that cannot be taken lightly. This is especially true when sy...
The majority of currently published dispersion protocols of carbon nanotubes rely on techniques that...
Optimization of the storage modulus and the hysteretic damping capacity of multilayer carbon nanotub...