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Thermal Stability Evaluation of PA6/LLDPE/SEBS‐g‐DEM Blends
Luis Cataño, Carmen Albano, Arquímedes Karam, Rosestela Perera and Pedro Silva Macromolecular Symposia 257(1) 147 (2007) https://doi.org/10.1002/masy.200751114
The Kissinger law and the IKP method for evaluating the non-isothermal kinetic parameters
Thermal degradation behaviour and kinetic analysis of unsaturated polyester-based composites and IPNs by conventional and modulated thermogravimetric analysis
Thermal and dynamic mechanical characterization of polyurethane–urea–imide coatings
Aswini K. Mishra, D. K. Chattopadhyay, B. Sreedhar and K. V. S. N. Raju Journal of Applied Polymer Science 102(4) 3158 (2006) https://doi.org/10.1002/app.24343
Thermal stability of chemically crosslinked moisture‐cured polyurethane coatings
D. K. Chattopadhyay, B. Sreedhar and K. V. S. N. Raju Journal of Applied Polymer Science 95(6) 1509 (2005) https://doi.org/10.1002/app.21404
Synergistic effect of natural zeolites on flame retardant additives
Some methodological problems concerning the kinetic analysis of non-isothermal data for thermal and thermo-oxidative degradation of polymers and polymeric materials
Degradation profiles of polyester‐urethane (HP‐MDI) and polyester‐melamine (HP‐HMMM) coatings: A thermal study
Ramanuj Narayan, D. K. Chattopadhyay, B. Sreedhar, K. V. S. N. Raju, N. N. Mallikarjuna and T. M. Aminabhavi Journal of Applied Polymer Science 97(2) 518 (2005) https://doi.org/10.1002/app.21770
Expandable Graphite Systems for Phosphorus‐Containing Unsaturated Polyester, 2
Effect of Bonding Resins on the Flammability Properties and Thermal Behaviour of Cotton and Cotton/PESFR Woven Fabrics
J. Lefebvre, M. Le Bras, B. Lefort, C. Drevelle, S. Duquesne, M. Vouters and C. Magniez Journal of Industrial Textiles 33(1) 55 (2003) https://doi.org/10.1177/1528083703035390
Thermal degradation of polysulfones. VI: evaluation of thermal pyrolysis of acrylonitrile-butadiene-styrene terpolymer
Study of the kinetics of pyrolysis of a rigid polyurethane foam: use of the invariant kinetics parameters method
J. Lefebvre, S. Duquesne, V. Mamleev, M. Le Bras and R. Delobel Polymers for Advanced Technologies 14(11-12) 796 (2003) https://doi.org/10.1002/pat.397
Using polyamide 6 as charring agent in intumescent polypropylene formulations II. Thermal degradation
Kinetic Analysis of Dissociation of Smithsonite from a Set of Non-isothermal Data Obtained at Different Heating Rates
P. Budrugeac, J. M. Criado, F. J. Gotor, C. Popescu and E. Segal Journal of Thermal Analysis and Calorimetry 63(3) 777 (2001) https://doi.org/10.1023/A:1010148306206
Thermal degradation of glass reinforced epoxy resin and polychloroprene rubber: the correlation of kinetic parameters of isothermal accelerated aging with those obtained from non-isothermal data
The Use of Clay in an EVA-Based Intumescent Formulation. Comparison with the Intumescent Formulation Using Polyamide-6 Clay Nanocomposite As Carbonisation Agent
The evaluation of the non-isothermal kinetic parameters of the thermal and thermo-oxidative degradation of polymers and polymeric materials: its use and abuse
Thermoplastic Polyurethanes as Carbonization Agents in Intumescent Blends. Part 1: Fire Retardancy of Polypropylene/Thermoplastic Polyurethane/Ammonium Polyphosphate Blends
Michel Bugajny, Michel Le Bras, Serge Bourbigot, Franck Poutch and Jean-Marc Lefebvre Journal of Fire Sciences 17(6) 494 (1999) https://doi.org/10.1177/073490419901700607
Mineral Fillers in Intumescent Fire Retardant Formulations ? Criteria for the Choice of a Natural Clay Filler for the Ammonium Polyphosphate/Pentaerythritol/Polypropylene System