Nanoscale structure and local mechanical properties of fiber-reinforced composites containing MWCNT-grafted hybrid glass fibers
暂无分享,去创建一个
Richard R. Barto | L. Catherine Brinson | Gregory Ho | Marc J. Palmeri | L. Brinson | K. Putz | M. Palmeri | Karl W. Putz | Charles D. Wood | Rick Barto | Gregory Ho
[1] A. Kinloch,et al. Particle-matrix interfacial bonding: Effect on the fracture properties of rubber-modified epoxy polymers , 1993 .
[2] A. Bismarck,et al. Synthesis and characterisation of carbon nanotubes grown on silica fibres by injection CVD , 2010 .
[3] Mark R. VanLandingham,et al. Review of Instrumented Indentation , 2003, Journal of research of the National Institute of Standards and Technology.
[4] Alejandro J. Rodriguez,et al. Mechanical properties of carbon nanofiber/fiber-reinforced hierarchical polymer composites manufactured with multiscale-reinforcement fabrics , 2011 .
[5] Brian L. Wardle,et al. Fabrication and multifunctional properties of a hybrid laminate with aligned carbon nanotubes grown In Situ , 2008 .
[6] Brian L. Wardle,et al. High-yield growth and morphology control of aligned carbon nanotubes on ceramic fibers for multifunctional enhancement of structural composites , 2009 .
[7] Frank T. Fisher,et al. Reinforcement mechanisms in MWCNT-filled polycarbonate , 2006 .
[8] A. Mohamed,et al. Synthesis of aligned carbon nanotubes , 2011 .
[9] P. Ajayan,et al. Multifunctional composites using reinforced laminae with carbon-nanotube forests , 2006, Nature materials.
[10] François Béguin,et al. Mechanical properties of multiwall carbon nanotubes/epoxy composites: influence of network morphology , 2004 .
[11] S. Jeelani,et al. Improvement in mechanical properties of carbon fabric–epoxy composite using carbon nanofibers , 2008 .
[12] K. Hata,et al. Size-selective growth of double-walled carbon nanotube forests from engineered iron catalysts , 2006, Nature nanotechnology.
[13] P. D. Mangalgiri. Composite materials for aerospace applications , 1999 .
[14] T. Ishikawa,et al. Mechanical properties improvements in two-phase and three-phase composites using carbon nano-fiber dispersed resin , 2005 .
[15] Bodo Fiedler,et al. Influence of nano-modification on the mechanical and electrical properties of conventional fibre-reinforced composites , 2005 .
[16] I. Daniel,et al. Reinforcement of carbon/epoxy composites with multi-wall carbon nanotubes and dispersion enhancing block copolymers , 2008 .
[17] S. J. Shaw,et al. Deformation and fracture behaviour of a rubber-toughened epoxy: 1. Microstructure and fracture studies , 1983 .
[18] L. Gorbatikh,et al. The effect of carbon nanotubes on the damage development in carbon fiber/epoxy composites , 2011 .
[19] A. Kinloch,et al. The interlaminar toughness of carbon-fibre reinforced plastic composites using ‘hybrid-toughened’ matrices , 2006 .
[20] L. Brinson,et al. Multi-scale reinforcement of CFRPs using carbon nanofibers , 2011 .
[21] J. Whitney,et al. On short-beam shear tests for composite materials , 1985 .
[22] Brian L. Wardle,et al. Multifunctional properties of high volume fraction aligned carbon nanotube polymer composites with controlled morphology , 2009 .
[23] Yi Lin,et al. Mechanical and morphological characterization of polymer–carbon nanocomposites from functionalized carbon nanotubes , 2004 .
[24] K. Masania,et al. The toughness of epoxy polymers and fibre composites modified with rubber microparticles and silica nanoparticles , 2010 .
[25] Ben Wang,et al. The effect of inclusion waviness and waviness distribution on elastic properties of fiber-reinforced composites , 2011 .
[26] Yiyu Feng,et al. Increasing the interfacial strength in carbon fiber/epoxy composites by controlling the orientation and length of carbon nanotubes grown on the fibers , 2011 .
[27] Arshad Munir,et al. Mode I interlaminar fracture behavior and mechanical properties of CFRPs with nanoclay-filled epoxy matrix , 2007 .
[28] G. Pharr. Measurement of mechanical properties by ultra-low load indentation , 1998 .
[29] E. Mäder,et al. Carbon fibers and composites with epoxy resins: Topography, fractography and interphases , 2004 .
[30] A. Kinloch,et al. Erratum to: The toughness of epoxy polymers and fibre composites modified with rubber microparticles and silica nanoparticles , 2011 .
[31] Frank T. Fisher,et al. Effects of nanotube waviness on the modulus of nanotube-reinforced polymers , 2002 .
[32] Yudong Huang,et al. Formation of a carbon fiber/polyhedral oligomeric silsesquioxane/carbon nanotube hybrid reinforcement and its effect on the interfacial properties of carbon fiber/epoxy composites , 2011 .
[33] R C Haddon,et al. Multiscale carbon nanotube-carbon fiber reinforcement for advanced epoxy composites. , 2007, Langmuir : the ACS journal of surfaces and colloids.
[34] L. Qu,et al. Carbon microfibers sheathed with aligned carbon nanotubes: towards multidimensional, multicomponent, and multifunctional nanomaterials. , 2006, Small.
[35] Bhanu Pratap Singh,et al. Growth of carbon nanotubes on carbon fibre substrates to produce hybrid/phenolic composites with improved mechanical properties , 2008 .
[36] A John Hart,et al. Fabrication and Characterization of Ultrahigh‐Volume‐ Fraction Aligned Carbon Nanotube–Polymer Composites , 2008, Advanced materials.
[37] S. Jeelani,et al. Fabrication and characterization of carbon/epoxy composites mixed with multi-walled carbon nanotubes , 2008 .