ENGINEERING THE INTERFACIAL TRANSITION ZONE OF POLYPROPYLENE FIBER REINFORCED CONCRETE: THE ROLE OF MATRIX MODIFICATION IN ENSURING COMPOSITE DURABILITY: ENGINEERING THE INTERFACIAL TRANSITION ZONE OF POLYPROPYLENE FIBER REINFORCED CONCRETE: THE ROLE OF MATRIX MODIFICATION IN ENSURING COMPOSITE DURABILITY

Бабажанов , А.Ф., Адилходжаев , А.И.

Темир йўл транспорти: долзарб масалалар ва инновациялар · 2026-yil

Annotatsiya

Abstract: The article presents an analysis of the efficiency of dispersed reinforcement within the context of chemical resistance and operational durability. Limitations in the application of metallic and mineral fibers used in fiber-reinforced concrete production are identified. The prospects of using polypropylene fibers in modified matrices are substantiated. The physicochemical mechanism of Interfacial Transition Zone (ITZ) densification is examined. Dependencies of the critical fiber length on bond strength and chemical equations of pozzolanic reactions are presented, confirming the efficiency of the “silica fume – carbonate filler” binary system.

Maqola ma’lumotlari
MualliflarБабажанов , А.Ф., Адилходжаев , А.И.
JurnalТемир йўл транспорти: долзарб масалалар ва инновациялар
Nashr sanasi2026-08-07
Jild7
Son1
Betlar170-173
TilRus

Kalit so‘zlar

высокопрочный бетон, фибробетон, полипропилен, микрокремнезем, гидратация, критическая длина волокна, ITZ., high-strength concrete, fiber reinforced concrete, polypropylene, silica fume, hydration, critical fiber length, Interfacial Transition Zone (ITZ).

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