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首页> 外文期刊>Advances in civil engineering >Mode I Fracture Behaviors between Cement Concrete and Asphalt Concrete Layer
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Mode I Fracture Behaviors between Cement Concrete and Asphalt Concrete Layer

机译:水泥混凝土和沥青混凝土层之间的裂缝行为

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Asphalt overlay or concrete overlay on existing pavements is a common strategy for pavement maintenance. Interlayer bonding performance between asphalt and concrete layers is a critical concern in achieving optimal long-term structural performance due to the possible cracking along the interface. In this study, bonding behaviors of asphalt concrete interface were characterized by employing mode I fracture tests conducted at ?10 and 25°C, respectively. Two typical interface conditions were manually prepared. A tack coat material was applied on the interface with four distinct rates: 0.1, 0.2, 0.3, and 0.4?L/m 2 . Parameters including fracture strength, stress intensity factor ( K IC ), facture energy ( G F ), and energy release rate (J integral) were selected to evaluate the fracture performance. Results showed that optimum tack coat rates were 0.1 and 0.3?L/m 2 for specimens with unmilled and milled surfaces. At the optimum tack coat rates, K IC and G F increased with the increase of interface roughness at ?10°C, while, at 25°C, J integral of specimens with unmilled interface was larger than that of specimens with milled interface at the optimum tack coat rates. Analysis of variance (ANOVA) was conducted to evaluate the significance of the factors on the fracture loads and found that surface roughness is significant at ?10°C and becomes nonsignificant at 25°C. Temperature and tack coat rate were significant factors considering a given interface.
机译:现有路面上的沥青覆盖或混凝土覆盖是路面维护的常见策略。沥青和混凝土层之间的层间键合性能是由于沿界面可能的开裂而实现最佳的长期结构性能的关键问题。在该研究中,通过在α0和25℃下采用模式I断裂试验来表征沥青混凝土界面的粘接行为。手动准备两个典型的界面条件。在具有四个不同速率的界面上施加粘性涂层材料:0.1,0.2,0.3和0.4?L / m 2。选择包括断裂强度,应力强度因子(K IC),有条件能量(G F)和能量释放率(J积分)的参数以评估裂缝性能。结果表明,最佳粘结涂料率分别为0.1和0.3?L / m 2的用于与未碾磨和磨碎表面标本。在最佳粘结涂料率,K IC和GF与?10的界面的粗糙度的增加而增加℃,同时,在25℃下,与未碾磨接口标本J积分比的在最佳与经研磨界面标本较大泰克大衣。物进行方差分析(ANOVA)来评估的因素对断裂负荷的意义,发现表面粗糙度是在显著?10℃,并在25℃下不显着变。考虑到给定界面的温度和粘性率是重要因素。

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