[go: up one dir, main page]

Liu et al., 2015 - Google Patents

Interlocked CNT networks with high damping and storage modulus

Liu et al., 2015

Document ID
7747197206509132966
Author
Liu Q
Li M
Gu Y
Wang S
Zhang Y
Li Q
Gao L
Zhang Z
Publication year
Publication venue
Carbon

External Links

Snippet

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 …
Continue reading at www.sciencedirect.com (other versions)

Similar Documents

Publication Publication Date Title
Liu et al. Interlocked CNT networks with high damping and storage modulus
Bilisik et al. Graphene nanocomposites: A review on processes, properties, and applications
Byrne et al. Recent advances in research on carbon nanotube–polymer composites
Kausar et al. Aerospace application of polymer nanocomposite with carbon nanotube, graphite, graphene oxide, and nanoclay
Pandey et al. Carbon nanotube-based multifunctional polymer nanocomposites
Zeinedini et al. Agglomeration phenomenon in graphene/polymer nanocomposites: Reasons, roles, and remedies
Kausar Review of fundamentals and applications of polyester nanocomposites filled with carbonaceous nanofillers
Kodjie et al. Morphology and crystallization behavior of HDPE/CNT nanocomposite
Ni et al. Shape memory effect and mechanical properties of carbon nanotube/shape memory polymer nanocomposites
Lu et al. Electrical properties and shape-memory behavior of self-assembled carbon nanofiber nanopaper incorporated with shape-memory polymer
Wang et al. Ultrastrong, stiff and multifunctional carbon nanotube composites
Kurahatti et al. Defence applications of polymer nanocomposites
Njuguna et al. Polymer nanocomposites for aerospace applications: properties
Liu et al. Macroscopic carbon nanotube assemblies: preparation, properties, and potential applications
Jiang et al. Mechanical, electrical and thermal properties of aligned carbon nanotube/polyimide composites
Ma et al. Extraordinarily high conductivity of stretchable fibers of polyurethane and silver nanoflowers
Saeed et al. Preparation of multiwalled carbon nanotube/nylon‐6 nanocomposites by in situ polymerization
Qian et al. Superdurable fiber-reinforced composite enabled by synergistic bridging effects of MXene and carbon nanotubes
Kausar A review of fundamental principles and applications of polymer nanocomposites filled with both nanoclay and nano-sized carbon allotropes–graphene and carbon nanotubes
Hu et al. Ultrastrong and excellent dynamic mechanical properties of carbon nanotube composites
Wan et al. Fatigue‐resistant bioinspired graphene‐based nanocomposites
Yang et al. Thermal resistant, mechanical and electrical properties of a novel ultrahigh-content randomly-oriented CNTs reinforced SiC matrix composite-sheet
Boudjellal et al. Stimulation and reinforcement of shape-memory polymers and their composites: A review
Chen et al. Auxetic materials with large negative Poisson’s ratios based on highly oriented carbon nanotube structures
Khan et al. A review on properties and fabrication techniques of polymer/carbon nanotube composites and polymer intercalated buckypapers