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Static Analysis of a Tire Sidewall Developed From Tailored Organomodified Kaolin/Natural Rubber Vulcanizates

机译:由量身整理高岭土/天然橡胶硫化制品发育的轮胎侧壁的静态分析

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摘要

This paper is on the prediction of stress limits and strain distributions of an automobile tire sidewall developed from Natural Rubber (NR)/Tea Seed Oil (TSO) modified kaolin composites. The stress-strain data report of NR/TSO modified kaolin at filler loading of 10phr was used to establish parameters characterizing the elastic behavior of the rubber vulcanizates. The tire model investigated was developed from MATLAB PDE Toolbox. The study was developed on maximum inflation pressure of 0.220632 MPa. The 2D Finite Element (FE) model computations for static loading of the tire sidewall gave a reasonable prediction of the stress limits and strain distributions, as the shear stresses obtained were within the range of −10 MPa to 10 MPa. The strain energy distributions were found to be within the range of −1500 J·m−3 to 1500 J·m−3. The stress limits for the first principal stress with respect to their magnitudes and orientations was obtained as 10 MPa for tensile stress and −20 MPa for compressive stress respectively while the stress limits for the second principal stress was obtained as 20 MPa for tensile stress and −10 MPa for compressive stress. The plane stress analysis with MATLAB PDE Toolbox gave stress limits distribution in terms of von-Mises stresses in the range 5 MPa - 25 MPa. The results indicate that NR/TSO modified kaolin composites can be employed in automobile tire sidewall applications. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
机译:本文采用自天然橡胶(NR)/茶籽油(TSO)改性高岭土复合材料的汽车轮胎侧壁的应力限制和应变分布的预测。 NR / TSO改性高岭土的应力 - 应变数据报告用于10PhR的填充载荷,建立表征橡胶硫化橡胶弹性行为的参数。调查的轮胎模型是从MATLAB PDE工具箱开发的。该研究是在最大膨胀压力为0.220632MPa的情况下开发的。对于轮胎侧壁的静载荷的2D有限元(Fe)模型计算使得应力限制和应变分布的合理预测,因为所获得的剪切应力在-10MPa至10MPa的范围内。发现应变能量分布在-1500 j·m-3至1500 j·m-3的范围内。对于拉伸应力和-20MPa,得到10MPa的第一个主应力的压力限制,分别获得电压应力的-20MPa,同时获得第二主应力的应力限制为20MPa以进行拉伸应力和 - 10 MPa用于压缩应力。利用MATLAB PDE工具箱的平面应力分析使压力限制在5MPa-25MPa范围内的von-mises应力方面的分布。结果表明,NR / TSO改性高岭土复合材料可用于汽车轮胎侧壁应用中。这是在Creative Commons归因许可(http://creativeCommons.org/licenses/4.0/)的条款下分发的开放式访问文章,该文章允许在任何媒体中的不受限制使用,分发和再现,提供原始工作被正确引用。

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