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Finite Element Modeling for Steel Cord Analysis in Radial Tires

机译:子午线轮胎钢丝帘线分析的有限元建模

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摘要

This article focuses on steel cord deformation and force investigation within heavy-duty radial tires. Typical bending deformation and tension force distributions of steel reinforcement within a truck bus radial (TBR) tire have been obtained, and they provide useful input for the local scale modeling of the steel cord. The three-dimensional carpet plots of the cord force distribution within a TBR tire are presented. The carcass-bending curvature is derived from the deformation of the carcass center line. A high-efficiency modeling approach for layered multistrand cord structures has been developed that uses cord design variables such as lay angle, lay length, and radius of the strand center line as input. Several types of steel cord have been modeled using the developed method as an example. The pure tension for two cords and the combined tension bending under various loading conditions relevant to tire deformation have been simulated by a finite element analysis (FEA). Good agreement has been found between experimental and FEA-determined tension force-displacement curves, and the characteristic structural and plastic deformation phases have been revealed by the FE simulation. Furthermore, some interesting local stress and deformation patterns under combined tension and bending are found that have not been previously reported. In addition, an experimental cord force measurement approach is included in this article.
机译:本文重点研究重型子午线轮胎中的钢丝帘线变形和受力情况。已经获得了卡车总线子午线(TBR)轮胎内钢筋的典型弯曲变形和张力分布,它们为钢丝绳的局部比例建模提供了有用的输入。给出了TBR轮胎中帘线力分布的三维地毯图。胎体弯曲曲率源自胎体中心线的变形。已经开发出一种用于多层多股帘线结构的高效建模方法,该方法使用帘线设计变量(例如,铺线角度,铺线长度和线芯中心线的半径)作为输入。以开发的方法为例,对几种类型的钢丝绳进行了建模。通过有限元分析(FEA)模拟了在与轮胎变形相关的各种载荷条件下两根帘线的纯张力和组合张力的弯曲。在实验和有限元分析确定的拉力-位移曲线之间找到了很好的一致性,并且有限元模拟揭示了特征性的结构和塑性变形阶段。此外,发现一些有趣的局部应力和变形模式在组合的拉伸和弯曲作用下没有被以前报道过。此外,本文还提供了一种实验性的绳索力测量方法。

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