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首页> 外文期刊>International Journal of Fatigue >The prediction methodology for tire's high speed durability regulation test using a finite element method
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The prediction methodology for tire's high speed durability regulation test using a finite element method

机译:轮胎高速耐久性调节试验的有限元预测方法

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摘要

In the tire industry, indoor accelerated life tests as regulations have been performed to ensure tire durability performances instead of outdoor field test. The finite element method has been widely used to minimize real test time and cost, but prediction method for accelerated life test had hardly been made in the past. This study presents a rational methodology to predict the tire's failure life at the steel belt edge region due to high speed regulation test. Based on the finite element analysis and fatigue characteristic of rubber material, a method to determine exact failure time is proposed. The steady-state rolling analysis by FEM to get strain energy density range(Delta SED) at the steel belt edge region and fatigue test of rubber compound to obtain Delta SED- number of cycle (N-f) curve were used. The reliability of proposed prediction method was verified by real indoor test.
机译:在轮胎工业中,已经进行了室内加速寿命试验以确保轮胎的耐久性能,而不是室外现场试验。有限元法已被广泛用于使实际测试时间和成本最小化,但是过去几乎没有制定用于加速寿命测试的预测方法。这项研究提出了一种合理的方法来预测由于高速调节试验而在钢带边缘区域的轮胎失效寿命。基于橡胶材料的有限元分析和疲劳特性,提出了确定确切失效时间的方法。使用了有限元方法进行的稳态轧制分析,获得了钢带边缘区域的应变能密度范围(Delta SED),并进行了橡胶胶料的疲劳试验,获得了Delta SED-循环次数(N-f)曲线。通过实际室内测试验证了所提出预测方法的可靠性。

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