Determination of Interaction Force Between Single Core Cable Elements under Deformation

G. Ismailov, A. Tyurin, M. Pavlov, D. Belyaev
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Abstract

The purpose of this paper is to investigate friction forces in the design of a single-core flexible cable in the deformation zone and the practical applicability of the results obtained for these purposes. The power interaction of the design of a single-core flexible cable during its deformation is considered. For the first time, formulas were obtained for determining the interaction forces between the constituent parts of a single-core cable as a composite multilayer beam. A calculation technique has been developed and shear force values have been determined for some types of single-core flexible cables. The nature of the change in these forces along the length of the cable is investigated. At the beginning of the cable deformation zone, the force value can fluctuate within its constant value. In the remaining part, the shear forces along the section are constant and only at the end of the deformation zone is zero. Practically, the formulas work for the tasks. The resulting expressions for shearing forces allow one to evaluate the tribological interaction of the constituent parts of each cable element and take into account their influence when creating multicore cables. The results of the research can be used to improve the reliability of the design of flexible cables at the design stage.
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变形作用下单芯电缆单元间相互作用力的测定
本文的目的是研究变形区单芯软电缆设计中的摩擦力及其结果的实际适用性。考虑了单芯软电缆在变形过程中的功率交互作用。首次得到了单芯电缆作为复合多层梁各组成部分间相互作用力的计算公式。本文提出了一种计算方法,并确定了几种单芯柔性电缆的剪力值。研究了这些力沿缆索长度变化的性质。在索变形区开始时,受力值可在其定值范围内波动。在其余部分,沿截面的剪切力是恒定的,只有在变形区的末端为零。实际上,公式适用于任务。所得的剪力表达式允许人们评估每个索单元组成部分的摩擦学相互作用,并考虑它们在制造多芯索时的影响。研究结果可用于在设计阶段提高柔性电缆设计的可靠性。
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