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UHPC-SMA层间静力性能与疲劳寿命相联性
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Correlation of Interlayer Monotonic Performances and Fatigue Life between UHPC and SMA
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    选择热熔型改性环氧树脂202及高黏高弹沥青PG100这两类典型黏层材料,开展 UHPC-SMA 复合试件层间静力性能及疲劳性能试验与分析,以探究层间在受剪、受拉不同静 力破坏模式下的异同点及关联性,分析剪切静力指标与剪切疲劳寿命的潜在联系. 研究表明, 温度对层间黏结性能有明显影响,随着环境温度的上升,层间拉拔强度、剪切强度大幅度下 降,黏层疲劳寿命也显著降低;黏层202的附着力拉拔强度、剪切强度、剪切刚度、层间黏结能、 疲劳寿命均明显高于黏层PG100,前者温度稳定性优于后者;附着力拉拔强度与剪切强度两者 具有线性相关性,拟合优度高达0.936,表明拉拔试验用于工程现场初步评估UHPC-SMA层间 黏结性能是合理可靠的;黏层202和PG100的剪切静力指标与剪切疲劳寿命密切相关,剪切静 力指标越高,剪切疲劳寿命越长,其相关性排序为:层间黏结能IBE>层间剪切强度ISS>剪切刚 度IS,拟合优度分别为0.984、0.945、0.779;IBE综合考虑了黏层承受剪切力的大小以及黏层抵 抗剪切变形的能力,表征着UHPC-SMA抵抗剪切过程中的能量消耗,可以作为评估层间黏结 性能及预测黏层疲劳寿命的重要指标.

    Abstract:

    For UHPC-SMA composite specimens, two types of tack coat materials, i.e., hot-melt modified epoxy resin 202 and high-elastic and high-viscosity asphalt PG100, were chosen, and monotonic tests and cyclic tests were carried out. The similarities, differences, and associations were investigated of different interlayer failure modes (shear and tensile). The possible link between various parameters obtained from a monotonic shear test and the shear fatigue life were examined. The results show that the temperature has a significant effect on the interlayer bond perfor? mances. With the increase of test temperature, the pull-off strength and interlayer shearing strength (ISS) decreases greatly, and fatigue life between UHPC and SMA also decreases significantly. Pull-off strength, interlayer shearing strength, shear stiffness (IS), interlayer bonding energy (IBE), and fatigue life of 202 are significantly better than those of PG100, as well as its stability in high temperatures. The pull-off strength has a great linear correlation with ISS, with R2 equaling 0.936, indicating that the pull-off test is a reasonable and reliable method for preliminary evaluating the bond performances between UHPC and SMA. The parameters obtained from the monotonic shear test are closely related to the shear fatigue life. The higher the monotonic parameters, the longer the fatigue life is. The correlations are ranked as: IBE > ISS > IS and R2 are 0.984, 0.945, and 0.779, respectively. IBE accounts for not only the shear force in the interlayer but also the resulting shear deformation resistance of the tack coat, which repre? sents the amount of energy dissipated during interlayer resisting shearing. It can be used as a reliable index to evalu? ate the interlayer bonding performances and to further predict the shearing fatigue life between UHPC and SMA.

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李嘉 ,陈思远 ,黄聪 ,邹衡 . UHPC-SMA层间静力性能与疲劳寿命相联性[J].湖南大学学报:自然科学版,2022,49(3):14~22

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  • 在线发布日期: 2022-05-13
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