首页> 外文会议>European Conference on Constitutive Models for Rubber(ECCMR 2005); 20050627-29; Stockholm(SE) >Analysis and application of FEM in wrap of body belt of radial tire
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Analysis and application of FEM in wrap of body belt of radial tire

机译:有限元分析在子午线轮胎安全带包裹中的分析与应用

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摘要

Research has shown that the shoulder blowing and flange cleft of tire are concerned with its structural design and process. The end inflection and wrap of body belt of heavy radial steelcord tire is compared with the original design by means of 3D FEA (TYSYS1.0), which is developed by Harbin Institute of Technology. In the model, the geometric nonlinearity due to large deformation, material nonlinearity, incom-pressibility constraint on deformation of elastomers, the anisotropy of cord-rubber composites and the nonlinear boundary conditions resulting from both tire-rim contact and tire-foundation contact are taken into account. The analysis proves that shearing stress and strain energy in shoulder and flange increase greatly due to the inflection and wrap, which will result in delamination in the two parts and decrease in lifetime. In practice, this kind of tire is very inclined to destroy by the two defects.
机译:研究表明,轮胎的肩部吹气和凸缘裂与轮胎的结构设计和工艺有关。通过哈尔滨工业大学开发的3D FEA(TYSYS1.0),将重型子午线钢帘线轮胎的腰带末端弯曲和缠绕与原始设计进行了比较。在模型中,考虑了由于大变形引起的几何非线性,材料非线性,弹性体变形的不可压缩性约束,帘线-橡胶复合材料的各向异性以及轮胎-轮辋接触和轮胎-基础接触产生的非线性边界条件。考虑在内。分析证明,由于弯曲和缠绕,肩部和凸缘的剪切应力和应变能大大增加,这将导致两个部分分层并缩短使用寿命。实际上,这种轮胎很容易被两个缺陷破坏。

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