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Regularity of Deformation during Tensile Elongation to Break of Fabrics with Different Fiber Composition

Field of Science:EngineeringEngineering (miscellaneous)Materials Science (miscellaneous)
National field of science (HAC):01.02.02 — Dynamics and strength of machines, instruments and equipment01.02.03 — Mechanics of soils and rocks01.02.04 — Mechanics of deformable solids01.02.05 — Fluid and gas mechanics01.04.01 — Instruments and methods of experimental physics01.04.04 — Physical electronics01.04.06 — Polymer physics01.04.10 — Semiconductor physics02.00.06 — High-molecular compounds02.00.07 — Chemistry and technology of composite, paint-and-varnish and rubber materials02.00.12 — Nanochemistry, nanophysics and nanotechnology02.00.13 — 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 materials04.00.10 — Geotechnology (open-pit, underground and construction)04.00.04 — Hydrogeology and engineering geology04.00.08 — Mineralogy. Crystallography04.00.09 — Mine surveying04.00.11 — Well drilling and development technology04.00.12 — Construction and operation of oil and gas pipelines, bases and storage facilities04.00.13 — Development and operation of oil and gas fields04.00.14 — Mineral processing04.00.15 — Technology and engineering of geological exploration04.00.16 — Mining machinery04.00.17 — Physical processes in mining05.01.01 — Engineering geometry and computer graphics. Audio and video technologies05.01.02 — Systems analysis, control and information processing05.01.04 — Mathematical and software support of computers, complexes and computer networks05.01.05 — Information protection methods and systems. Information security05.05.04 — Industrial heat power engineering05.02.03 — Technological machines. 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ARTICLE ANNOTATION

quote
At present, in the light industry, special attention is paid to reducing the material costs of production, creating new, higher-quality types of products, and developing automated technological processes. At the same time, the choice of fabrics for clothing and their effective use is of great importance. This requires not only knowledge of the structure and properties of textile fabrics of various assortments, but also methods for assessing their properties for compliance with their standard requirements. The main task facing the clothing industry is the constant updating of the assortment and a significant improvement in the quality of garments. This article studies the regularity of deformation during tensile elongation to break of fabrics with different fiber composition. The experimental graphs were analyzed and nonlinear deformation characteristics of fabrics were identified. A mathematical model of the fabric deformation process (based on the Eyring model) is proposed, and its solution is obtained numerically using a computer program. High agreement between theoretical and experimental results is shown.

AUTHORS

U.Xaydarov

TOSHKENT TO'QIMACHILIK VA YENGIL SANOAT INSTITUTI

Tags

# elastic deformation# plastic deformation# fabric elongation diagram# elongation process# deformation modulus# nonlinear deformation# mathematical model of deformation

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