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Polymer degradation and stability, ISSN 0141-3910, 2009, Volume 94, Issue 8, pp. 1245 - 1253
Journal Article
Journal of Applied Polymer Science, ISSN 0021-8995, 12/2017, Volume 134, Issue 47, p. n/a
ABSTRACT Synergistic charring effect was observed between aluminum diethlyphosphinate (AlPi) and 4,4‐bishydroxydeoxybenzoin‐polyphosphonate (BHDB‐PPN) in the... 
flame retardance | degradation | thermogravimetric analysis (TGA) | thermal properties | mechanical properties | POLYMER SCIENCE | FLAMMABILITY | PLASTICS | MECHANISMS | COMBINATION | THERMAL-DEGRADATION | NANOCOMPOSITES | THERMOPLASTIC POLYESTERS | Thermal properties | Polymer industry | Butylene | Polymers | Carbonization | Terephthalate | Aluminum | Fragments | Mechanical properties | Charring | Thermal degradation
Journal Article
Journal of Applied Polymer Science, ISSN 0021-8995, 06/2015, Volume 132, Issue 23, pp. np - n/a
...) and aluminum phosphinate (AlPi) and using water as plasticizer and blowing agent. The flame‐retardant property and mechanism of the prepared foam matrix were studied by vertical burning test, limiting oxygen index (LOI... 
flame retardance | plasticizer | foams | SYSTEM | AMMONIUM POLYPHOSPHATE | STATES | POLYMER SCIENCE | FLAMMABILITY | CELL NUCLEATION | STARCH | XPS | WATER | Fireproofing agents | Aluminum hydroxide | Foams | Aluminum base alloys | Electronics | Alumina hydrate | Combustion | X-ray photoelectron spectroscopy | Alcohols | Polyvinyl alcohols
Journal Article
Industrial & Engineering Chemistry Research, ISSN 0888-5885, 02/2013, Volume 52, Issue 8, pp. 2875 - 2886
Aluminum hypophosphite (AP) and aluminum isobutylphosphinate (APBu) were used to flame retard polyamide 6 (PA6). Addition of either AP or APBu resulted in an... 
ENGINEERING, CHEMICAL | NANOCOMPOSITES | MELAMINE POLYPHOSPHATE | FLAMMABILITY | INFRARED-ABSORPTION FREQUENCIES | DECOMPOSITION | MECHANISMS | ORGANOPHOSPHORUS COMPOUNDS | FIRE PERFORMANCE | COMBINATION | REINFORCED POLY(1,4-BUTYLENE TEREPHTHALATE) | Pyrolysis | Polyamide resins | Free radicals | Aluminum | Flame retardants | Crosslinking | Calorimetry | Decomposition
Journal Article
Polymer degradation and stability, ISSN 0141-3910, 2014, Volume 100, pp. 70 - 78
Journal Article
Macromolecular materials and engineering, ISSN 1439-2054, 2008, Volume 293, Issue 3, pp. 206 - 217
The flame retardancy mechanisms of aluminium diethylphosphinate (AlPi) and its combination with melamine cyanurate (MC) in glass‐fibre‐reinforced poly(butylene... 
flame retardance | thermogravimetric analysis | pyrolysis | polyester | metal phosphinate | Pyrolysis | Metal phosphinate | Polyester | Thermogravimetric analysis | Flame retardance | RED PHOSPHORUS | FIRE-RETARDANT | COMBUSTION | POLYPHOSPHATE | POLYMER SCIENCE | OXIDE | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | TRIPHENYL PHOSPHATE | NITROGEN | THERMAL-DECOMPOSITION | POLY(BUTYLENE TEREPHTHALATE)
Journal Article
Journal of hazardous materials, ISSN 0304-3894, 2017, Volume 332, pp. 87 - 96
Journal Article
Fire and materials, ISSN 0308-0501, 2014, Volume 38, Issue 1, pp. 92 - 99
...‐6 composites containing organic phosphinates. The flame retardancy of polyamide‐6 composites was investigated using limiting oxygen index (LOI... 
organic phosphinates | boron compounds | polyamide‐6 | flame retardancy | polyamide-6 | CLAY NANOCOMPOSITES | COMBUSTION | CYANURATE | MATERIALS SCIENCE, MULTIDISCIPLINARY | MECHANISMS | SILICATE NANOCOMPOSITES | THERMAL-DEGRADATION | MELAMINE POLYPHOSPHATE | POLYMER | FIRE RETARDANCY | Fireproofing agents | Analysis | Polyamides
Journal Article