Synergistic effect of polyphosphazene nanotubes and graphene on enhancing ablative resistance of ethylene propylene diene monomer insulation composites
暂无分享,去创建一个
Xiaobin Huang | Haoqiang Sheng | Zhengchuang Zhao | Longquan Liu | Wenbin Hu | Jinxuan He | Y. He | J. Chen
[1] Jiang Li,et al. Effects of carbon nanotubes on char structure and heat transfer in ethylene propylene diene monomer composites at high temperature , 2021, Composites Science and Technology.
[2] Jiang Li,et al. Thermal insulation and char layer mechanical properties of a novel ethylene propylene diene monomer composite reinforced with carbon nanotubes coated via chemical vapour deposition , 2021 .
[3] Shaoyun Guo,et al. Synergetic effect of aramid fiber and carbon fiber to enhance ablative resistance of EPDM-based insulators via constructing high-strength char layer , 2021 .
[4] Lei Song,et al. Polyphosphazenes-based flame retardants: A review , 2020 .
[5] Obinna Uyanna,et al. Thermal protection systems for space vehicles: A review on technology development, current challenges and future prospects , 2020 .
[6] H. Almasi,et al. Preparation and characterization of TiO2NPs and betanin loaded zein/sodium alginate nanofibers , 2020 .
[7] G. Momen,et al. Performance improvement of EPDM and EPDM/Silicone rubber composites using modified fumed silica, titanium dioxide and graphene additives , 2020, Polymer Testing.
[8] S. Mohanty,et al. Effect of silicon carbide on the mechanical and thermal properties of ethylene propylene diene monomer‐based carbon fiber composite material for heat shield application , 2020 .
[9] Y. Qin,et al. Effects of Zirconium Silicide on the Vulcanization, Mechanical and Ablation Resistance Properties of Ceramifiable Silicone Rubber Composites , 2020, Polymers.
[10] Jianbo Ji,et al. Effect of multi-walled carbon nanotubes on thermal stability and ablation properties of EPDM insulation materials for solid rocket motors , 2019, Acta Astronautica.
[11] Wei Liu,et al. Preparation and performances of novel polyphosphazene-based thermally conductive composites , 2019, Composites Part A: Applied Science and Manufacturing.
[12] Yingdan Zhu,et al. A novel and facile fabrication of polyphosphazene nanotube/carbon fiber multi-scale hybrid reinforcement and its enhancing effect on the interfacial properties of epoxy composites , 2019, Composites Science and Technology.
[13] M. Thomson,et al. A radical approach to soot formation , 2018, Science.
[14] L. Torre,et al. Thermal and ablation properties of EPDM based heat shielding materials modified with density reducer fillers , 2018, Composites Part A: Applied Science and Manufacturing.
[15] L. Torre,et al. Boron based fillers as char enhancers of EPDM based heat shielding materials for SRMs: A comparative analysis , 2018, Composite Structures.
[16] Jiang Li,et al. Ablation and erosion characteristics of EPDM composites under SRM operating conditions , 2018, Composites Part A: Applied Science and Manufacturing.
[17] Yuan Hu,et al. Flame-retardant-wrapped polyphosphazene nanotubes: A novel strategy for enhancing the flame retardancy and smoke toxicity suppression of epoxy resins. , 2017, Journal of hazardous materials.
[18] J. Kenny,et al. Science and technology of polymeric ablative materials for thermal protection systems and propulsion devices: A review , 2016 .
[19] Weijie Li,et al. A new mechanism of surface ablation of charring materials for a vehicle during reentry , 2016 .
[20] J. Kenny,et al. Effect of Wollastonite on the ablation resistance of EPDM based elastomeric heat shielding materials for solid rocket motors , 2016 .
[21] Yiguang Wang,et al. Ablation behavior of C/SiC composites in plasma wind tunnel , 2016 .
[22] D. Hui,et al. Cyclomatrix-type polyphosphazene coating: Improving interfacial property of carbon fiber/epoxy composites and preserving fiber tensile strength , 2016 .
[23] J. Kenny,et al. EPDM based heat shielding materials for Solid Rocket Motors: A comparative study of different fibrous reinforcements , 2013 .
[24] T. K. Chaki,et al. Development of polyimide–nanosilica filled EPDM based light rocket motor insulator compound: Influence of polyimide–nanosilica loading on thermal, ablation, and mechanical properties , 2013 .
[25] Tingting Li,et al. Synthesis of nitrogen-doped porous graphitic carbons using nano-CaCO3 as template, graphitization catalyst, and activating agent , 2012 .
[26] Fei Zhang,et al. Nitrogen‐Enriched Core‐Shell Structured Fe/Fe3C‐C Nanorods as Advanced Electrocatalysts for Oxygen Reduction Reaction (Adv. Mater. 11/2012) , 2012 .
[27] Jiyu He,et al. Effect of polyphenylsilsesquioxane on the ablative and flame-retardation properties of ethylene propylene diene monomer (EPDM) composite , 2011 .
[28] A. Bhowmick,et al. Influence of Aging on Autohesive Tack of Brominated Isobutylene-co-p-methylstyrene (BIMS) Rubber in the Presence of Phenolic Resin Tackifier , 2008 .
[29] Jinhwan Kim,et al. Thermal stabilities and flame retardancies of nitrogen–phosphorus flame retardants based on bisphosphoramidates , 2008 .
[30] W. Yuan,et al. One‐Pot Synthesis of Poly(cyclotriphosphazene‐co‐4,4′‐sulfonyldiphenol) Nanotubes via an In Situ Template Approach , 2006 .
[31] Dan Feng,et al. A Family of Highly Ordered Mesoporous Polymer Resin and Carbon Structures from Organic−Organic Self-Assembly , 2006 .
[32] R. Schaa,et al. A Sporadic Third Layer in the Ionosphere of Mars , 2005, Science.