有孔小珠
耐久性
材料科学
子午线轮胎
复合材料
结构工程
有限元法
足迹
天然橡胶
汽车工程
拓扑(电路)
踩
工程类
生物
电气工程
古生物学
作者
Yong Li,Xunhua Sun,Julan Song,Shoudong Zhang,Shanling Han
标识
DOI:10.1016/j.matdes.2021.109592
摘要
The tire bead area is a vulnerable part of the tire. By analyzing its development trend, a novel topological structure of the whole tire bead was put forward. Firstly, the feasibility of the whole tire bead is preliminarily proved easy to achieve topology improvement, which can exceed the limit of the shape of the normal steel/rubber composite bead. Secondly, through finite element analysis it showed that the whole tire bead tire is superior to the normal tire bead tire in terms of tire-rim tightening force, carcass cord stress, cord endpoint stress, and grounding footprint, etc. This structure reduces the Von Mises stress in the bead area by 40%. Finally, the research designed a complete set of production technologies from whole tire bead processing to tire validation which was well realized. The indoor comparative durability test of the two structures showed that the temperature of the whole tire bead was reduced by 5 °C and the durability time was increased by more than 50%, which indicated that the durability and temperature rise performance of the whole tire bead are better than that of normal tires. This structure has broad prospects in the application of heavy-duty tires.
科研通智能强力驱动
Strongly Powered by AbleSci AI