Flame retardant and weathering resistant self-layering epoxy-silicone coatings for plastics

被引:45
作者
Beaugendre, A. [1 ]
Lemesle, C. [1 ]
Bellayer, S. [1 ]
Degoutin, S. [1 ]
Duquesne, S. [1 ]
Casetta, M. [1 ]
Pierlot, C. [2 ]
Jaime, F. [3 ]
Kim, T. [3 ]
Jimenez, M. [1 ]
机构
[1] Univ Lille, CNRS, INRA, ENSCL,UMR 8207,UMET, F-59000 Lille, France
[2] Univ Artois, Univ Lille, CNRS, Cent Lille,ENSCL,UCCS,UMR 8181, F-59000 Lille, France
[3] SUNY Stony Brook, Mat Sci & Chem Engn Dept, Stony Brook, NY 11794 USA
关键词
Self-stratifying coating; Phase separation; Flame retardancy; Epoxy resin; Silicon resin; Iron oxide; Calcium carbonate; Aging resistance; PHOTOCATALYTIC DEGRADATION; STRATIFYING COATINGS; IRON COMPOUNDS; POLYCARBONATE; NANOPARTICLES; INTUMESCENCE; REDUCTION; ADDITIVES; MECHANISM; OXIDES;
D O I
10.1016/j.porgcoat.2019.105269
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Lowering fire hazard raised by combustible materials such as plastics may be achieved by the use of suitable flame retardant treatments, like fire protective coatings. However, exposure to long-term environmental conditions can cause loss of their functional properties, thus reducing their effectiveness over time. This is why two or three different layers with specific properties (e.g. adhesive, fire retardant and hydrophobic) are generally needed to provide durable fire retardancy. Effective and economical self-layering coatings can be developed to reduce the number of layers without compromising the advantages of the actual system. In this work, the efficiency of applying a silicone based coating to fire retard polycarbonate and the modification of the behaviors of the system, using a mixture of epoxy/silicone resins, a curing agent and either iron oxide or calcium carbonate as fire retardant filler is investigated. Self-stratification and fillers dispersion were evidenced by microscopic analyses coupled with chemical detection, the flame retardant properties using Limiting Oxygen Index (LOI), UL-94, Mass Loss Calorimetry (MLC), Thermogravimetric analyses (TGA) and a tubular furnace, and aging resistance by accelerated thermal, humidity and UV exposure. It appears that the selected fillers have no negative effect on the layering process when introduced from 2.5 to 10 vol.%: perfect stratification is obtained, with the silicone layer being the top layer. The best improvements in terms of fire retardant properties, adhesion and fillers dispersion were obtained by incorporating 2.5 vol.%: V0 rating at UL-94 and 33 and 35 vol.% at LOI with Fe2O3 and CaCO3 respectively were measured when a 200 inn wet thick coating was applied. The coating containing iron oxide was unaffected by weathering conditions. Finally, the application of those coatings on polycarbonate allows the formation of a protective barrier which limits substrate/flame mass transfers. It therefore results in (i) a delay of the time to ignition, (ii) the inhibition of the flame spread and of dripping when submitted to a flame, and (iii) a reduction of the combustibility of polycarbonate. A modification of the structure of the silica network formed by the particles which enhances the barrier effect of the silicone-based layer would be the most probable assumption to explain these excellent results.
引用
收藏
页数:13
相关论文
共 69 条
[1]   Photocatalytic degradation of paracetamol over magnetic flower-like TiO2/Fe2O3 core-shell nanostructures [J].
Abdel-Wahab, Aboel-Magd ;
Al-Shirbini, Al-Sayed ;
Mohamed, Omima ;
Nasr, Osama .
JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY, 2017, 347 :186-198
[2]   Green synthesis of mesoporous hematite (α-Fe2O3) nanoparticles and their photocatalytic activity [J].
Ahmmad, Bashir ;
Leonard, Kwati ;
Islam, Md Shariful ;
Kurawaki, Junichi ;
Muruganandham, Manickavachagam ;
Ohkubo, Takahiro ;
Kuroda, Yasushige .
ADVANCED POWDER TECHNOLOGY, 2013, 24 (01) :160-167
[3]   WAVELENGTH SENSITIVITY OF UNSTABILIZED AND UV STABILIZED POLYCARBONATE TO SOLAR SIMULATED RADIATION [J].
ANDRADY, AL ;
SEARLE, ND ;
CREWDSON, LFE .
POLYMER DEGRADATION AND STABILITY, 1992, 35 (03) :235-247
[4]  
Andreasson U., 2016, Flame retardant polymer composition, Patent No. [EP0393959B1, 0393959]
[5]  
[Anonymous], 2013, ISO48923
[6]  
Baghdachi J., 2010, Self-stratifying automotive topcoat compositions and processes, Patent No. [US 2010/0087596 Al, 20100087596]
[7]   One pot flame retardant and weathering resistant coatings for plastics: a novel approach [J].
Beaugendre, A. ;
Saidi, S. ;
Degoutin, S. ;
Bellayer, S. ;
Pierlot, C. ;
Duquesne, S. ;
Casetta, M. ;
Jimenez, M. .
RSC ADVANCES, 2017, 7 (65) :40682-40694
[8]   Self-stratifying epoxy/silicone coatings [J].
Beaugendre, A. ;
Degoutin, S. ;
Bellayer, S. ;
Pierlot, C. ;
Duquesne, S. ;
Casetta, M. ;
Jimenez, M. .
PROGRESS IN ORGANIC COATINGS, 2017, 103 :101-110
[9]  
Beaugendre A., 2017, THESIS
[10]   Self-Stratification of Ternary Systems Including a Flame Retardant Liquid Additive [J].
Beaugendre, Agnes ;
Degoutin, Stephanie ;
Bellayer, Severine ;
Pierlot, Christel ;
Duquesne, Sophie ;
Casetta, Mathilde ;
Jimenez, Maude .
COATINGS, 2018, 8 (12)