Effects of silane‐modified nano‐ CaCO 3 particles on the mechanical properties of carbon fiber/epoxy ( CF / EP ) composites
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[1] A. Waas,et al. Determining damage initiation of carbon fiber reinforced polymer composites using machine learning , 2022, Polymer Composites.
[2] Shugao Zhao,et al. Effect of Silane Coupling Agents on the Rheology, Dynamic and Mechanical Properties of Ethylene Propylene Diene Rubber/Calcium Carbonate Composites , 2022, Polymers.
[3] V. Eskizeybek,et al. Effect of long‐term stress aging on aluminum‐BFRP hybrid adhesive joint's mechanical performance: Static and dynamic loading scenarios , 2022, Polymer Composites.
[4] V. Eskizeybek,et al. Fracture and Dynamic Mechanical Analysis of Seawater Aged Aluminum-BFRP Hybrid Adhesive Joints , 2022, Engineering Fracture Mechanics.
[5] Y. Kaya,et al. Qualitative study on the effects of hydroxyl functionalized multiwall carbon nanotube and silica doped‐epoxy composites , 2021, Polymer Composites.
[6] Bertan Beylergil. Interlaminar fracture and crack‐healing capability of carbon fiber/epoxy composites toughened with 3D ‐printed poly‐ε‐caprolactone grid structures , 2021, Journal of Applied Polymer Science.
[7] Jie Wang,et al. Influence of graphene oxide content on the morphology and properties of carbon fiber/epoxy composites , 2021, Polymer Composites.
[8] S. Anas,et al. Acrylonitrile‐based polymer/graphene nanocomposites: A review , 2021, Polymer Composites.
[9] Zhishen Wu,et al. Effect of carbon nanotubes and silica nanoparticles on the durability of basalt fiber reinforced polymer composites in seawater and sea sand concrete environment , 2021 .
[10] Lalit Ranakoti,et al. Effect of silica nanoparticles on physical, mechanical, and wear properties of natural fiber reinforced polymer composites , 2021 .
[11] C. Bittencourt,et al. Behavior of epoxy resin filled with nano‐SiO 2 treated with a Eugenol epoxy silane , 2021 .
[12] C. Lai,et al. Review of the past and recent developments in functionalization of graphene derivatives for reinforcement of polypropylene nanocomposites , 2021 .
[13] Richard Telford,et al. Application of semi‐ in situ liquid exfoliation of graphite to the scalable production of graphene‐epoxy nanocomposites , 2020 .
[14] M. Tanoğlu,et al. Experimental and statistical analysis of carbon fiber/epoxy composites interleaved with nylon 6,6 nonwoven fabric interlayers , 2020 .
[15] M. Yildiz,et al. Experimental failure analysis and mechanical performance evaluation of fiber-metal sandwich laminates interleaved with polyamide-6,6 interlayers through the combined usage of acoustic emission, thermography and microscopy techniques , 2020, Journal of Sandwich Structures & Materials.
[16] Xiaoyuan Pei,et al. Performance of composites via multiple interface engineering techniques: plasma etching, UV-induced grafting and nanotube deposition , 2020 .
[17] J. Dear,et al. On the extent of fracture toughness transfer from 1D/2D nanomodified epoxy matrices to glass fibre composites , 2020, Journal of Materials Science.
[18] E. Tohidlou,et al. Influence of modified carbonate calcium nanoparticles on the mechanical properties of carbon fiber/epoxy composites , 2020, The Journal of The Textile Institute.
[19] K. Shelesh‐Nezhad,et al. Simulation of dynamic mechanical and viscoelastic behavior in polymer/clay nanocomposites , 2020, Polymer Composites.
[20] Xingxiang Zhang,et al. Radiation resistance of carbon fiber-reinforced epoxy composites optimized synergistically by carbon nanotubes in interface area/matrix , 2019, Composites Part B: Engineering.
[21] Soojin Park,et al. Effect of Morphology of Calcium Carbonate on Toughness Behavior and Thermal Stability of Epoxy-Based Composites , 2019, Processes.
[22] M. Tanoğlu,et al. Effect of polyamide-6,6 (PA 66) nonwoven veils on the mechanical performance of carbon fiber/epoxy composites , 2018, Composite Structures.
[23] C. Kapusta,et al. Graphene nanoplatelet-silica hybrid epoxy composites as electrical insulation with enhanced thermal conductivity , 2018 .
[24] H. Bedi,et al. Effect of carbon nanotube grafting on the wettability and average mechanical properties of carbon fiber/polymer multiscale composites , 2018 .
[25] V. Eskizeybek,et al. Static and dynamic mechanical responses of CaCO3 nanoparticle modified epoxy/carbon fiber nanocomposites , 2018 .
[26] T. Hsieh,et al. Carbon nanotube size effect on the mechanical properties and toughness of nanocomposites , 2018 .
[27] A. Ivankovic,et al. Enhancing mode-I and mode-II fracture toughness of epoxy and carbon fibre reinforced epoxy composites using multi-walled carbon nanotubes , 2018 .
[28] S. K. Srivastava,et al. Mechanical, thermo-mechanical, thermal, and swelling properties of EPDM-organically modified mesoporous silica nanocomposites , 2017 .
[29] F. Gao,et al. Resin modification on interlaminar shear property of carbon fiber/epoxy/nano-CaCO3 hybrid composites , 2017 .
[30] S. Muralidharan,et al. Enhanced Polymer Induced Precipitation of Polymorphous in Calcium Carbonate: Calcite Aragonite Vaterite Phases , 2017, Journal of Inorganic and Organometallic Polymers and Materials.
[31] Xiao-jie Li,et al. Interfacial and fatigue-resistant synergetic enhancement of carbon fiber/epoxy hierarchical composites via an electrophoresis deposited carbon nanotube-toughened transition layer , 2017 .
[32] Xiao-jie Li,et al. Mechanical, thermal and interfacial performances of carbon fiber reinforced composites flavored by carbon nanotube in matrix/interface , 2017 .
[33] J. Iroh,et al. Clay induced thermoplastic crystals in thermoset matrix: Thermal, Dynamic mechanical, and morphological analysis of clay/nylon-6-epoxy nanocomposites , 2016 .
[34] M. Quaresimin,et al. Toughening mechanisms in polymer nanocomposites: From experiments to modelling , 2016 .
[35] Zhiwei Xu,et al. Optimization of interfacial microstructure and mechanical properties of carbon fiber/epoxy composites via carbon nanotube sizing , 2015 .
[36] Hongwei He,et al. Compressive properties of nano-calcium carbonate/epoxy and its fibre composites , 2013 .
[37] Hongwei He,et al. Silane coupling agent modification on interlaminar shear strength of carbon fiber/epoxy/nano-CaCo3 composites , 2012 .
[38] C. S. Venkatesha,et al. Mode‐I intralaminar fracture toughness of silica particles‐filled glass woven fabric‐reinforced vinyl ester composites , 2012 .
[39] Hongwei He,et al. Study on thermal and mechanical properties of nano-calcium carbonate/epoxy composites , 2011 .
[40] K. Schulte,et al. Mode I and mode II fracture toughness of E-glass non-crimp fabric/carbon nanotube (CNT) modified polymer based composites , 2008 .
[41] Y. Yeh,et al. Synthesis and characterization of polyimide/multi‐walled carbon nanotube nanocomposites , 2008 .
[42] Jianfeng Chen,et al. Study on mechanical property of epoxy composite filled with nano-sized calcium carbonate particles , 2005 .
[43] V. Kovačević,et al. Silane pre-treatment of calcium carbonate nanofillers for polyurethane composites , 2004 .
[44] James L White,et al. Effects of stearic acid coated talc, CaCO3, and mixed talc/CaCO3 particles on the rheological properties of polypropylene compounds , 2004 .