Abstract

The force performance of trawl systems directly depends on the work performed by these forces.The mechanical work of a trawl system is a physical quantity that depends on the vectors of force (hydrodynamic, tension, compression, etc.) and displacement. Thermodynamic work is the amount of energy transmitted or received by the trawl system by changing its external parameters. There is also the work of the forces of the electrostatic field when the charge moves from one point of the field to another. Equations are obtained for ideal flexible steel ropes and rope-rope products, characterizing the direct proportionality of the ratio of the productivity of forces that are directed perpendicular to each other and depend on the Poisson's ratio and the constructive elongation of ideal flexible steel ropes and cordage products. The ratio of the capacities of the forces or the ratio of the moduli of elasticity in the transverse and longitudinal directions, which arise when steel ropes and rope-rope products are stretched, are inversely proportional to the square of the coefficient k connecting the elongation λ, Poisson's ratio μ and the relative elongation ε at a constant volume of the product and its mass. There has been described an example of stretching perfectly flexible steel 
 ropes and cordage. Such constructive parameters as lay, the number of strands, wire and fiber thickness, type of weaving were not taken into account.

Highlights

  • Acknowledgment: the study was carried out under the financial support of the Russian Foundation for Basic Research and the Government of the Kaliningrad Region within the framework of the scientific project No 19-48-390004

  • The force performance of trawl systems directly depends on the work performed by these forces

  • a physical quantity that depends on the vectors of force

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Summary

Стальные канаты

При удлинении СК и КВИ изменяется их длина и диаметр, и, соответственно, изменяется гидродинамический коэффициент сопротивления канатно-сетной оболочки трала [4, 5]. 2) условную окружность, то примем, что ось OZ совпадает при вращении СК и КВИ, тогда ddAAxx. где Ax – работа силы растяжения СК и КВИ в продольном направлении, оси OX; Ay – работа силы «сжатия» СК и КВИ в поперечном направлении, оси OY; Tx – натяжение СК и КВИ в продольном направлении, оси OX; Ty – натяжение СК и КВИ в поперечном направлении, оси OY (условные силы); d(y) = d(∆d) – уменьшение ∆d – приращение диаметра. Выражение (12) характеризует связь коэффициента Пуассона μ, который зависит не от размеров тела, а от природы материала, из которого изготовлены стальные проволоки СК и волокна КВИ, безразмерного сужения α и конструктивного удлинения λ.

Hx или
Площади сечений
Согласно закону Гука для изотропных тел
Ex Tx
Список источников
Full Text
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