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A PHENOMENOLOGICAL MODEL FOR THE EFFECT OF R RATIO ON FATIGUE OF STRAIN CRYSTALLIZING RUBBERS

机译:R比对应变结晶橡胶疲劳影响的一个物候模型

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摘要

The fatigue crack growth rate in strain crystallizing rubbers depends not only on the maximum energy release rate experienced during a loading cycle, but also on the minimum, or equivalently, the R ratio. The R ratio is the quotient of the minimum and maximum energy release rates occurring during a loading cycle. This article proposes a simple phenomenological model for the effect of R ratio on fatigue crack growth rate in strain crystallizing rubbers. The model may also be applied for Wohler-style (S-N style) fatigue life curves. The model is compared against experimental results reported by Lindiey, by Cadwell, Merrill, Sloman, and Yost, and by the authors. The ability of the model to represent the experimental data is found to be reasonable. The model provides a simple approach to estimating fatigue performance when limited data are available, and may find application in the analysis of load histories from actual service. Such variable amplitude load histories typically contain cycles covering a wide range of R ratios.
机译:应变结晶橡胶的疲劳裂纹扩展速率不仅取决于在加载循环中经历的最大能量释放速率,还取决于最小或等效的R比。 R比率是在加载循环期间发生的最小和最大能量释放速率的商。本文提出了一个简单的现象学模型,研究了R比对应变结晶橡胶中疲劳裂纹扩展速率的影响。该模型还可以用于Wohler型(S-N型)疲劳寿命曲线。该模型与Lindiey,Cadwell,Merrill,Sloman和Yost以及作者所报告的实验结果进行了比较。发现该模型代表实验数据的能力是合理的。当有限的数据可用时,该模型提供了一种评估疲劳性能的简单方法,并且可以在实际服务的载荷历史分析中找到应用。这种可变幅度的负载历史通常包含涵盖大范围R比的周期。

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