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Optimization of vibration dynamics of the grate in saw gin technology and a new design with replaceable working parts

Field of Science:EngineeringEngineering (miscellaneous)Industrial and Manufacturing Engineering
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 electronics01.04.10 — Semiconductor physics04.00.10 — Geotechnology (open-pit, underground and construction)04.00.04 — Hydrogeology and engineering geology04.00.09 — 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. 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Mechanization of agricultural and land-reclamation works05.09.06 — Hydraulic and land-reclamation construction05.09.07 — Hydraulics and engineering hydrology05.09.08 — Construction technology and organization of construction processes21.02.13 — Informatics and computer technologies in military affairs21.02.14 — Armament and military equipment, military complexes and systems (including Armed Forces branches, arms of service and special units)21.02.17 — Operation and restoration of armament and military equipment, technical support (including Armed Forces branches, Armed Forces logistics, arms of service and special units)
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ARTICLE ANNOTATION

quote
Vibration processes in the grate of a saw gin are comprehensively investigated and a design with a replaceable working part of the grate is proposed. The new design solution effectively dampens vibrations, protects against resonant phenomena and significantly reduces wear on working parts. Based on theoretical calculations, mathematical modeling and experimental data, the advantages of the proposed design are proved. The presented approach helps to increase the reliability of the gin, increase the service life of the equipment and reduce operating costs in the cotton gin industry.

AUTHORS

E.Narmatov

TOSHKENT TO'QIMACHILIK VA YENGIL SANOAT INSTITUTI

Tags

# grate# design# frequency# vibration# saw# cotton ginning# replaceable element# shaft# gasket# gin

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References

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