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Global-Local Finite Element Analysis for Predicting Separation in Cord-Rubber Composites of Radial Truck Tires

机译:局部局部有限元分析预测子午线卡车轮胎帘子胶复合材料的分离

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A global-local finite element modeling technique is employed in this paper to predict the separation in steel cord-rubber composite materials of radial truck tires. The local model uses a finite element analysis in conjunction with a glob-al-local technique in ABAQUS. A 3-dimensional finite element local model calculates the maximum cyclic shear strain of an interface between steel cord and rubber materials at the carcass ply shoulder region. It is found that the maximum cyclic shear strain is reliable as a result of the analysis of carcass ply separation in radial truck tires. Using the analysis of the local model, a study of the cyclic shear strain is performed in the shoulder region and used to deter-mine the carcass ply separation. The effect of the change of carcass ply design on the separation in steel cord-rubber composite materials of radial truck tires is discussed.
机译:本文采用全局局部有限元建模技术来预测子午线卡车轮胎的帘线-橡胶复合材料的分离。局部模型将有限元分析与ABAQUS中的全局局部技术结合使用。 3维有限元局部模型计算出胎体帘布层肩部区域的钢丝绳与橡胶材料之间的界面的最大循环剪切应变。通过对子午线卡车轮胎胎体帘布层分离的分析,发现最大循环剪切应变是可靠的。使用局部模型的分析,在肩部区域进行了循环剪切应变的研究,并用于确定mine体帘布层的分离。讨论了胎体帘布层设计的改变对子午线轮胎的帘线-橡胶复合材料分离的影响。

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