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Application of the Dissipated Energy Concept in Fatigue Endurance Limit Testing

机译:耗能概念在疲劳极限测试中的应用

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摘要

A fatigue endurance limit has been postulated to exist in hot-mix asphalt pavement performance. It cannot be observed and studied with the use of traditional phenomenological approaches as seen by the totally different fatigue behavior at low strain-damage levels close to the fatigue endurance limit. The ratio of dissipated energy change succeeds in defining and investigating the existence of a fatigue endurance limit with a unique relationship between plateau value (PV) and fatigue life (Nf), regardless of strain-damage levels, mixture types, loading modes, and other testing conditions. To determine a fatigue endurance limit requires an extraordinarily long time to conduct testing. This paper applied the PV to the study of a fatigue endurance limit to validate a shortened laboratory testing procedure. Statistical analysis shows that the shortened test can predict the PV with sufficient accuracy. By applying the validated relationship between PV and Nf, the extremely long fatigue life under low strain-damage condition can be predicted without performing millions of loading cycles.
机译:假定在热拌沥青路面性能中存在疲劳极限。无法通过传统的现象学方法进行观察和研究,这是由于在接近疲劳极限的低应变损伤水平下完全不同的疲劳行为所见。耗散能量变化的比率成功地定义和研究了疲劳耐力极限的存在,该极限具有稳定值(PV)和疲劳寿命(Nf)之间的唯一关系,而与应变破坏水平,混合物类型,加载方式等无关测试条件。要确定疲劳强度极限,需要非常长的时间来进行测试。本文将PV应用于疲劳寿命极限的研究,以验证缩短的实验室测试程序。统计分析表明,缩短的测试可以足够准确地预测PV。通过应用PV和Nf之间的有效关系,无需进行数百万次加载循环即可预测出在低应变损伤条件下的极长疲劳寿命。

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