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橡塑技术与装备
HINA R&P TECHNOLOGY AND EQUIPMENT
参考文献 : 的应用 [J]. 弹性体,2021,31(02):52-55.
[1] 赵颖,周科名,杜卓栋,等 . 新型蝙蝠型负泊松比微结构非充 [5] 郑涛,邵红琪,吴晓辉,等 . 硅烷偶联剂原位改性白炭黑 / 溶
气轮胎设计 [J/OL]. 重庆理工大学学报 ( 自然科学 ),[2024- 聚丁苯橡胶复合材料的流变性能和力学性能研究 [J]. 橡胶工
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Verification of five-directional stiffness test for 245/55R18 tire
2
2
1
Liu Jun , Tang Mei , Chen Xiaolong , Li Haiyan 2
(1. Bayi Rubber Co. LTD., Zaozhuang 277800, Shandong, China;
2. Shandong Fengyuan Tire Manufacturing Co. LTD., Zaozhuang 277300, Shandong, China)
Abstract: This paper focuses on the 245/55R18 tire specification, neglecting the influence of tread patterns
on tire stiffness. A three-dimensional finite element model of the tire is constructed using the REBAR element
model to simulate the cord-rubber composite material. Researchers utilize the nonlinear finite element analysis
software ABAQUS to conduct an in-depth analysis of the semi-steel radial tire, studying its deformation under
different directional loads such as longitudinal, radial, and lateral loads. Subsequently, a detailed analysis
of the tire's five stiffness characteristics (torsional stiffness, radial stiffness, lateral stiffness, longitudinal stiffness,
and wrap stiffness) is conducted. The research results indicate that the experimental data of the five stiffness
characteristics are essentially consistent with the simulation analysis results, validating the effectiveness of the
simulation method.
Key words: tire; five-directional stiffness; verification; ABAQUS
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