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首页> 外文期刊>KSCE journal of civil engineering >Strain Response Regularity and Viscoplastic Model of Asphalt Binder and Asphalt Mastic Based on Repeated Creep and Recovery Test
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Strain Response Regularity and Viscoplastic Model of Asphalt Binder and Asphalt Mastic Based on Repeated Creep and Recovery Test

机译:基于重复蠕变和恢复试验的沥青粘合剂和沥青胶粘菌应变响应规律与粘附模型

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摘要

As a viscoelastic material, asphalt mixture mainly derives its viscoelastic properties from the asphalt binder. This research aims to comparatively evaluate the strain response regularity of asphalt binder and asphalt mastic through repeated creep and recovery (RCR) test indices. The influences of the asphalt binders, filler volume fraction and filler type on the strain response indices: deformation recovery rate (R) and non-recoverable creep compliance (Jnr) were analyzed according to the RCR test results of the mastics. The viscoplastic (VP) model for characterizing asphalt binder and asphalt mastic behavior was described. The parameters of the model were determined in the prepeak region of the loading, under different stress levels. Simultaneously, the prediction accuracy of the developed VP model was verified, and the applicability of the model was analyzed. The filler volume fraction has the most significant effect on the strain response of the mastic. The R value decreases but the Jnr value increases with the filler volume fractions. The average non-recoverable percent Jnr value decreases with the aging degree increasing. Compared with the unaged (OR) mastics, the Jnr values after rolling thin film oven test (RTFOT) and pressure aging vessel (PAV) decreases by more than 20% and 88%. The improved strain hardening VP model can better simulate the viscoplastic strain response of the asphalt binder and mastic in the RCR test, and the prediction accuracy was greatly improved. The prediction accuracy slightly decreased with creep time increasing. Further research shows that the improved strain hardening VP model is also applicable to the calculation of viscoplastic strains in the RCR test of the asphalt binder and the mastic after RTFOT aging and PAV aging. The improved VP model increases from 5% to 92% off the reference line to within 3%.
机译:作为粘弹性材料,沥青混合物主要来自沥青粘合剂的粘弹性。该研究旨在通过重复的蠕变和恢复(RCR)测试指数相比,通过重复的蠕变和恢复(RCR)测试指数相比,评价沥青粘合剂和沥青胶粘剂的应变响应规律性。沥青粘合剂,填料体积分数和填料类型对应变响应指数的影响:根据胶印的RCR试验结果分析变形回收率(R)和不可恢复的蠕变顺应性(JNR)。描述了用于表征沥青粘合剂和沥青髓质行为的粘性塑料(VP)模型。在不同应力水平下,在负载的预先放置区域中确定模型的参数。同时,验证了发育的VP模型的预测精度,分析了模型的适用性。填充体积分数对乳香的应变响应具有最显着的影响。 R值降低,但JNR值随填充体积分数增加。平均不可恢复百分比JNR值随着老化程度的增加而降低。与预定(或)胶质剂相比,轧制薄膜烘箱试验(RTFOT)和压力老化容器(PAV)之后的JNR值减少了20%和88%。改进的应变硬化VP模型可以更好地模拟沥青粘合剂的粘液应变响应和RCR试验中的胶粘剂,并且大大提高了预测精度。随着蠕变时间的增加,预测精度略微降低。进一步的研究表明,改进的应变硬化VP模型也适用于沥青粘合剂RCR试验中粘液塑性菌株的计算,RTFOT老化和PAV老化后的胶粘剂。改进的VP模型从参考线的5%增加到3%以内的5%至92%。

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