Thermal stability and ablation resistance, and ablation mechanism of carbon–phenolic composites with different zirconium silicide particle loadings

[1]  P. Cavaliere,et al.  Influence of SiO2 nanoparticles on the microstructure and mechanical properties of Al matrix nanocomposites fabricated by spark plasma sintering , 2018 .

[2]  Fei Li,et al.  Effectively enhanced mechanical properties of injection molded short carbon fiber reinforced polyethersulfone composites by phenol-formaldehyde resin sizing , 2018 .

[3]  Xinghong Zhang,et al.  Synthesis and characterization of novel phenolic resin/silicone hybrid aerogel composites with enhanced thermal, mechanical and ablative properties , 2017 .

[4]  J. Kenny,et al.  Microstructure and ablation behavior of an affordable and reliable nanostructured Phenolic Impregnated Carbon Ablator (PICA) , 2017 .

[5]  Xinghong Zhang,et al.  Preparation, mechanical, thermal and ablative properties of lightweight needled carbon fibre felt/phenolic resin aerogel composite with a bird's nest structure , 2017 .

[6]  K. Sridharan,et al.  Evolution of multilayered scale structures during high temperature oxidation of ZrSi2 , 2016 .

[7]  G. Vignoles,et al.  Thermographic and tomographic methods for tridimensional characterization of thermal transfer in silica/phenolic composites , 2016 .

[8]  Annick Hubin,et al.  Experimental investigation of ablation and pyrolysis processes of carbon-phenolic ablators in atmospheric entry plasmas , 2016 .

[9]  M. Salavati‐Niasari,et al.  Enhanced thermal resistance of GO/C/phenolic nanocomposite by introducing ZrB2 nanoparticles , 2015 .

[10]  F. Yazdani,et al.  Thermal and mechanical properties of phenolic-based composites reinforced by carbon fibres and multiwall carbon nanotubes , 2015 .

[11]  M. Sasikumar,et al.  Thermal, thermo oxidative and ablative behavior of cenosphere filled ceramic/phenolic composites , 2015 .

[12]  K. Balasubramanian,et al.  Cost-effective, low density, carbon soot doped resorcinol formaldehyde composite for ablative applications , 2015 .

[13]  W. Lee,et al.  Effects of carbon nanotubes and carbon fiber reinforcements on thermal conductivity and ablation properties of carbon/phenolic composites , 2014 .

[14]  W. Wang,et al.  Effect of Carbon Nanotube Orientation on Mechanical Properties and Thermal Expansion Coefficient of Carbon Nanotube-Reinforced Aluminum Matrix Composites , 2014, Acta Metallurgica Sinica (English Letters).

[15]  M. Akbari,et al.  Effect of nanosilica on the microstructure, thermal properties and bending strength of nanosilica modified carbon fiber/phenolic nanocomposite , 2014 .

[16]  K. Balasubramanian,et al.  Novel hybrid ablative composites of resorcinol formaldehyde as thermal protection systems for re-entry vehicles , 2014 .

[17]  W. Lee,et al.  Ablative and mechanical evaluation of CNT/phenolic composites by thermal and microstructural analyses , 2014 .

[18]  C. Hong,et al.  The effects of zirconium diboride particles on the ablation performance of carbon–phenolic composites under an oxyacetylene flame , 2013 .

[19]  N. Theodoropoulou,et al.  Carbon/Phenolic Nanocomposites as Advanced Thermal Protection Material in Aerospace Applications , 2013 .

[20]  D. Hui,et al.  Improved ablation resistance of carbon–phenolic composites by introducing zirconium diboride particles , 2013 .

[21]  Jiecai Han,et al.  Novel phenolic impregnated 3-D Fine-woven pierced carbon fabric composites: Microstructure and ablation behavior , 2012 .

[22]  Xinghong Zhang,et al.  Ablation Property of ZrB2-SiC Composite Sharp Leading Edges with Varying Radiuses of Curvature under Oxy-Acetylene Torch , 2012 .

[23]  P. Jönsson,et al.  The Effect of Zirconium Disilicide (ZrSi2) Additions on the Carbon Oxidation Behavior of Alumina/Graphite Refractory Materials , 2010 .

[24]  J. Tirillò,et al.  Carbon-phenolic ablative materials for re-entry space vehicles: Manufacturing and properties , 2010 .

[25]  Anilesh Kumar,et al.  Nano silica modified carbon–phenolic composites for enhanced ablation resistance , 2010 .

[26]  N. Jiang,et al.  Study on the pyrolysis of phenol-formaldehyde (PF) resin and modified PF resin , 2009 .

[27]  林鹭 Preparation and structure of porous carbons by pyrolysis of phenol formaldehyde resin , 2008 .

[28]  Xinli Jing,et al.  Pyrolysis and structure of hyperbranched polyborate modified phenolic resins , 2007 .

[29]  Charles U. Pittman,et al.  Ablation, mechanical and thermal conductivity properties of vapor grown carbon fiber/phenolic matrix composites , 2002 .

[30]  Tae Jin Kang,et al.  Thermal and ablative properties of low temperature carbon fiber–phenol formaldehyde resin composites , 2002 .

[31]  P. Pérez Oxidation Behavior of Al-Alloyed ZrSi2 , 2001 .

[32]  Donghwan Cho,et al.  Microstructural interpretation of the effect of various matrices on the ablation properties of carbon-fiber-reinforced composites , 2001 .

[33]  C. Ma,et al.  Thermal degradation of phenolic resin/silica hybrid ceramers , 2000 .

[34]  Francesco Frendo,et al.  Thermal expansion coefficient of a NiCoCrAlY-ZrO2(Y2O3) coating by a digital image processing based dilatometer , 2000 .

[35]  I. Glassman,et al.  Pyrolysis and Oxidation of Phenol , 1998 .

[36]  G. Camino,et al.  Structure-charring relationship in phenol-formaldehyde type resins , 1997 .

[37]  S. S. Sandhu,et al.  A Kinetic Model of the Pyrolysis of Phenolic Resin in a Carbon/Phenolic Composite , 1997 .

[38]  Shanyi Du,et al.  Oxidation and ablation of 3D carbon-carbon composite at up to 3000 °C , 1995 .

[39]  K. A. Trick,et al.  Mechanisms of the pyrolysis of phenolic resin in a carbon/phenolic composite , 1995 .

[40]  G. Frommeyer,et al.  Microstructures and Properties of the Refractory Compounds TiSi2 and ZrSi2 , 1992 .

[41]  D. Shah,et al.  Appraisal of other silicides as structural materials , 1992 .

[42]  A. Heuer,et al.  On the orthorhombic phase in ZrO2-based alloys , 1989 .

[43]  D. Schmidt,et al.  Advanced Carbon Fabric/Phenolics for Thermal Protection Applications. , 1982 .

[44]  K. Sutton An Experimental Study of a Carbon-Phenolic Ablation Material. , 1970 .