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Tread Wear and Footprint Geometrical Characters of Truck Bus Radial Tires 被引量:11
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作者 LIanG Chen WanG Guolin +1 位作者 an dengfeng MA Yinwei 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第3期506-511,共6页
Wear and mileage performance are the foremost performances for truck bus radial (TBR) tires. There are a lot of researches about the tire wear performance as well as the contact patch phenomenon by using finite elemen... Wear and mileage performance are the foremost performances for truck bus radial (TBR) tires. There are a lot of researches about the tire wear performance as well as the contact patch phenomenon by using finite element analysis (FEA) method or testing. But there is little published data on the correlations between the footprint geometry and the tread wear performance of tires. In this paper, an experiment on tire-ground performance of TBR tires is carried out by using Tekscan. The real-time changes of contact-area pressure distribution that occurred during the process of continuous load and unload are recorded. Three types of tires that act differently in behavior under normal usage are analyzed. A new method of researching in tire tread wear, which focuses on the geometrical characters of the footprint, is put forward. The experimental results of the three tires are described by using footprint geometrical characters. On the basis of studying the changing laws of footprint geometrical characters during the loading process and considering consumer survey and factory feedback information, the correlations between the geometrical character of footprints and tread destruction form are built. The analyzed results show that a greater contact area coefficient and a steady coefficient of contact result in a better wear performance for TBR tires. The footprint-shape coefficient changing laws in the process of loading are found to have a very good coincidence with the tread wear of the three types of tires. Tires with a smaller footprint-shape coefficient are likely to have an average tread wear while avoiding the shoulder wear first. The proposed research provides a new solution to predict tire-ground performance at the point of footprint and several useful references for improving tire design. 展开更多
关键词 radial tires FOOTPRINT wear geometrical character fatigue
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轿车轮胎花纹参数对滚动阻力的影响分析 被引量:18
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作者 王国林 安登峰 +1 位作者 吴旭 梁晨 《橡胶工业》 CAS 2019年第2期83-88,共6页
针对205/55R16轿车子午线轮胎,建立三维花纹有限元模型,采用回归分析的方法,研究花纹设计参数与滚动阻力的关系。选取纵沟深度、纵沟宽度、横沟深度和横沟宽度作为设计参数,采用响应面设计方法进行方案设计。结果表明,4个设计参数对滚... 针对205/55R16轿车子午线轮胎,建立三维花纹有限元模型,采用回归分析的方法,研究花纹设计参数与滚动阻力的关系。选取纵沟深度、纵沟宽度、横沟深度和横沟宽度作为设计参数,采用响应面设计方法进行方案设计。结果表明,4个设计参数对滚动阻力的影响程度从大到小依次为纵沟宽度、纵沟深度、横沟宽度、横沟深度。利用最小二乘法拟合花纹设计参数与滚动阻力的关系式,并且通过优化求解得到优化花纹设计参数。花纹设计参数优化后轮胎的滚动阻力比花纹设计参数优化前降低3. 89%。 展开更多
关键词 轿车轮胎 胎面 花纹设计参数 滚动阻力 有限元模型 响应面设计方法
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全钢载重子午线轮胎振动噪声与接地性态参数关系研究 被引量:3
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作者 乔磊 安登峰 +1 位作者 王国林 周海超 《轮胎工业》 CAS 2019年第8期455-459,共5页
以275/70R22. 5全钢载重子午线轮胎为研究对象,在不改变轮胎外轮廓的条件下,通过仿真分析获得不同带束层结构下的轮胎振动噪声与接地性态参数之间的关系。结果表明,适度增大轮胎接地面积有利于降低轮胎振动噪声,接地压力增大则会导致振... 以275/70R22. 5全钢载重子午线轮胎为研究对象,在不改变轮胎外轮廓的条件下,通过仿真分析获得不同带束层结构下的轮胎振动噪声与接地性态参数之间的关系。结果表明,适度增大轮胎接地面积有利于降低轮胎振动噪声,接地压力增大则会导致振动噪声升高,接地压力偏度值变化会引起振动噪声剧烈波动,轮胎径向刚度增大会导致振动噪声升高,轮胎硬度因数较小时振动噪声相对较小。 展开更多
关键词 全钢载重子午线轮胎 振动噪声 接地性态参数 有限元模型 仿真分析
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