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用于确定钢丝绳承载能力的简化数值模型

Simplified Numerical Model for Determining Load-Bearing Capacity of Steel-Wire Ropes.

作者信息

Hroncek Juraj, Marsalek Pavel, Rybansky David, Sotola Martin, Drahorad Lukas, Lesnak Michal, Fusek Martin

机构信息

Department of Applied Mechanics, Faculty of Mechanical Engineering, VŠB-Technical University of Ostrava, 17. listopadu 2172/15, 708 00 Ostrava, Czech Republic.

Department of Work and Process Safety, Faculty of Safety Engineering, VŠB-Technical University of Ostrava, 17. listopadu 2172/15, 708 00 Ostrava, Czech Republic.

出版信息

Materials (Basel). 2023 May 16;16(10):3756. doi: 10.3390/ma16103756.

Abstract

Steel-wire rope is a mechanical component that has versatile uses and on which human lives depend. One of the basic parameters that serve to describe the rope is its load-bearing capacity. The static load-bearing capacity is a mechanical property characterized by the limit static force that the rope is able to endure before it breaks. This value depends mainly on the cross-section and the material of the rope. The load-bearing capacity of the entire rope is obtained in tensile experimental tests. This method is expensive and sometimes unavailable due to the load limit of testing machines. At present, another common method uses numerical modeling to simulate an experimental test and evaluates the load-bearing capacity. The finite element method is used to describe the numerical model. The general procedure for solving engineering tasks of load-bearing capacity is by using the volume (3D) elements of a finite element mesh. The computational complexity of such a non-linear task is high. Due to the usability of the method and its implementation in practice, it is necessary to simplify the model and reduce the calculation time. Therefore, this article deals with the creation of a static numerical model which can evaluate the load-bearing capacity of steel ropes in a short time without compromising accuracy. The proposed model describes wires using beam elements instead of volume elements. The output of modeling is the response of each rope to its displacement and the evaluation of plastic strains in the ropes at selected load levels. In this article, a simplified numerical model is designed and applied to two constructions of steel ropes, namely the single strand rope 1 × 37 and multi-strand rope 6 × 7-WSC.

摘要

钢丝绳是一种用途广泛且关乎人类生命安全的机械部件。用于描述钢丝绳的基本参数之一是其承载能力。静承载能力是一种机械性能,其特征在于钢丝绳在断裂前能够承受的极限静力。该值主要取决于钢丝绳的横截面和材料。整个钢丝绳的承载能力是通过拉伸试验获得的。由于试验机的载荷限制,这种方法成本高昂且有时无法使用。目前,另一种常用方法是使用数值建模来模拟试验测试并评估承载能力。有限元法用于描述数值模型。求解承载能力工程任务的一般程序是使用有限元网格的体(三维)单元。这种非线性任务的计算复杂度很高。鉴于该方法的实用性及其在实际中的应用,有必要简化模型并减少计算时间。因此,本文致力于创建一个静态数值模型,该模型能够在不影响精度的情况下在短时间内评估钢丝绳的承载能力。所提出的模型使用梁单元而非体单元来描述钢丝。建模的输出是每根钢丝绳对其位移的响应以及在选定载荷水平下钢丝绳中塑性应变的评估。在本文中,设计了一个简化数值模型并将其应用于两种钢丝绳结构,即单股钢丝绳1×37和多股钢丝绳6×7-WSC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed09/10222766/c6d51328deab/materials-16-03756-g001.jpg

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