Adhesive-Material Combustibility-Reduction Methods. Part 1

Polymer Science, Series D - Tập 16 - Trang 268-272 - 2023
A. P. Petrova1, A. Yu. Isaev1, A. S. Emelyanova1, L. I. Bocharov1
1All-Russian Scientific Institute of Aviation Materials, National Research Center “Kurchatov Institute”, Moscow, Russia

Tóm tắt

Combustibility requirements for aircraft materials are shown. Data are presented about the main methods of making adhesives less combustible by adding fire retardants, such as halogenous and phosphoric compounds, as well as mineral fillers that release carbon dioxide and water vapor upon heating. Properties and purposes of low-combustibility adhesives, as well as adhesive-combustibility testing methods, are presented.

Tài liệu tham khảo

A. P. Petrova and G. V. Malysheva, Adhesive, Adhesive Binder and Adhesive Prepregs: Tutorial, Ed. by E. N. Kablov (VIAM, Moscow, 2017) [in Russian].

S. L. Barbot’ko, A. P. Petrova, O. S. Vol’nyi, and M. I. Bochenkov, “Methods used to evaluate the fire safety of polymeric binders (Review),” Vse Mater. Entsiklopedicheskii Spravochnik, No. 12, 21–29 (2019). https://doi.org/10.31044/194-6260-2019-0-12-21-99

S. L. Barbot’ko, O. S. Vol’nyi, O. A. Kirienko, and E. N. Shurkova, Assessment of the Fire Safety of Polymeric Materials for Aviation Purposes: Analysis of the State, Test Methods, Development Prospects, Methodological Features, Ed. by E. N. Kablov (VIAM, Moscow, 2018) [in Russian].

S. L. Barbot’ko, “Development of methods for assessing the fire safety of aviation materials,” Aviats. Mater. Tekhnol., No. 5, 516–526 (2017). https://doi.org/10.18577/2071-9140-2017-0-5-516-526

D. A. Aronovich, V. P. Varlamov, V. A. Voitovich, et al., Bonding in Mechanical Engineering, Ed. by G. V. Malysheva (Nauka I Tekhnologii, Moscow, 2005), Vol. 1 [in Russian].

I. S. Naumov, A. P. Petrova, O. A. Eliseev, and S. L. Barbot’ko, “Experimental research in the field of creating organosilicon rubbers with reduced flammability,” Trudy VIAM, No. 10, 9 (2015). https://doi.org/10.18577/2307-6046-2015-0-10-9-10

S. V. Strel’nikov, V. I. Petukhov, V. I. Postnov, and N. I. Shvets, “New solutions in the technology of manufacturing prepregs for interior panels,” Izv. Samara Nauch. Tsentra Ross. Akad. Nauk 13, 498–507 (2011).

N. A. Khalturinskii, T. V. Popova, and A. A. Berlin, “Combustion of polymers and the mechanism of action of flame retardants,” Usp. Khim. 53, 326–346 (1984).

V. M. Karlik and A. A. Novikov, “Preparation and application of fluorine-containing compounds for the creation of heat-resistant materials,” Klei. Germetiki. Tekhnol., No. 1, 33–37 (2011).

M. A. Venediktova, Candidate’s Dissertation in Engineering (VIAM, Moscow, 2021).

L. A. Dement’eva, N. F. Lukina, A. P. Petrova, and A. Yu. Isaev, “Properties and purpose of self-extinguishing bites VK-11S and VK-46B,” Novosti Materialoved. Nauka i Tekhnika, Nos. 5–6, 47–54 (2018).

O. B. Zastrogina, N. I. Shvets, E. A. Serkova, and E. A. Veshkin, “Fireproof materials based on phenol-formaldehyde binders,” Klei. Germetiki. Tekhnol., No. 7, 24–26 (2017).