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Analysis and design of compacted IWRC meshed model under axial strain

机译:轴向应变下压实IWRC啮合模型的分析与设计

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Wire ropes are one of the most complex shapes due to the helical coiling of wires. It is difficult to generate a meshed model of even the classical circular wire rope. In this paper a more complex form which is known as compacted wire rope is modeled in 3D. The originality of this work is that, it is the first time a multi-layered compacted wire rope is generated and brought to the literature. The written code permits to create any length of compacted independent wire rope core geometry and to change wire radiuses and pitch lengths easily. Meanwhile flexibility of the code makes it easier to generate different kind of compacted independent wire rope core which is ready for numerical analysis. Compacted wire ropes have increased wear resistance and tensile strength. Due to its flattened surface their usage on a sheave or a pulley provides less wearing and breaking of wires while more tensile strength and increased lifetime. With the compaction process diameter of the wire rope decreases which results a decrease on the reaction moment also. This modeling issue can be used to create new type of complex wire rope models in the future.
机译:由于电线的螺旋卷绕,钢丝绳是最复杂的形状之一。难以产生甚至是古典圆形钢丝绳的网状模型。在本文中,一种更复杂的形式被称为压实的钢丝绳被建模在3D中。这项工作的原创性是,这是第一次产生多层压实的钢丝绳并带到文献中。书面代码允许创建任何长度的紧凑的独立钢丝绳芯几何形状,并轻松地改变电线半径和音调长度。同时,该代码的灵活性使得更容易产生不同种类的压实独立钢丝绳芯,该钢丝绳芯准备用于数值分析。压实的钢丝绳具有增加的耐磨性和拉伸强度。由于其平坦的表面,它们在滑轮或滑轮上的用途提供了较少的磨损和破碎的线,而具有更抗拉强度和增加的寿命。随着钢丝绳的压实过程直径减少,导致反应时刻的降低。此建模问题可用于在未来创建新型复杂钢丝绳模型。

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