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PREPARATION AND PERFORMANCE EVALUATION OF CELLULOSE–BASALT FIBER HYBRID COMPOSITES FOR THERMAL AND ACOUSTIC INSULATION

Field of Science:Chemical Engineering (miscellaneous)Metals and Alloys
National field of science (HAC):02.00.06 — High-molecular compounds02.00.07 — Chemistry and technology of composite, paint-and-varnish and rubber materials02.00.08 — Chemistry and technology of oil and gas02.00.13 — Technology of inorganic substances and materials based on them02.00.14 — Technology of organic substances and materials based on them02.00.15 — Technology of silicate and refractory non-metallic materials02.00.16 — Processes and apparatuses of chemical technology and food production02.00.18 — Technology of processing and storage of fishery products04.00.14 — Mineral processing06.01.11 — Storage and processing of agricultural products02.00.05 — Chemistry and technology of cellulose and pulp-and-paper production02.00.17 — Technologies and biotechnologies for processing, storage and refining of agricultural and food products03.00.12 — Biotechnology
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ARTICLE ANNOTATION

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This study presents the development of cellulose–basalt fiber hybrid composite materials for thermal and acoustic insulation applications using cellulose derived from agricultural biomass. The composites were fabricated through mechanical mixing and compression molding, and their physical, mechanical, and structural properties were investigated. The results demonstrated strong interfacial bonding between the cellulose matrix and basalt fiber reinforcement, leading to the formation of a stable porous structure. The developed composites exhibited low density, satisfactory mechanical strength, good thermal insulation, and effective sound absorption performance. These environmentally friendly materials, produced from renewable resources, show considerable potential as sustainable insulation materials for modern construction and engineering applications, contributing to improved energy efficiency and reduced environmental impact.

AUTHORS

Science ID: FQD-0525-0170

Science ID: MQD-0526-0371

Tags

# properties# cellulose# microstructure# composite# fiber# hybrid# mechanical# basalt# thermal# insulation# acoustic

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