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Laboratory fatigue models for recycled mixes with bitumen emulsion and cement

机译:沥青乳液和水泥的再生混合物的实验室疲劳模型

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摘要

The role of cement in cold recycled mixes with bitumen emulsion (CRME) have been extensively investigated. In most cases it is affirmed that cement will stiffen the mix and will decrease its moisture sen-sivity and temperature susceptibility and will increase its resistance against permanent deformation. Nevertheless the effect of cement on the fatigue properties of these mixes is not clearly understood. Because of crystalline nature of the pozzolanic bonds, cemented materials tend to be brittle which can reduce the flexibility and fatigue life of recycled mixes. In this research in order to develope fatigue models for these mixes, extensive indirect tensile fatigue and resilient modulus tests were performed at different temperatures (varying from -10 to 25 ℃) and curing times (varying from 7 to 120 days). Test results showed that the effects of cement on fatigue life of mixes is related to the initial strain level assumed in testing. At 300 microstrain level and above, the addition of cement caused a reduction in fatigue life, whereas below 300 microstrain the reverse was true. Finally based on laboratory testing results distinct models were established for different boundary strain levels.
机译:水泥在与沥青乳液(CRME)的冷再生混合物中的作用已得到广泛研究。在大多数情况下,可以肯定的是,水泥将使混合物变硬,并降低其湿敏性和温度敏感性,并增加其抗永久变形的能力。然而,水泥对这些混合物的疲劳性能的影响尚不清楚。由于火山灰键的晶体性质,胶结材料往往是脆性的,这会降低回收混合物的柔韧性和疲劳寿命。在这项研究中,为了开发这些混合物的疲劳模型,在不同的温度(-10至25℃变化)和固化时间(7至120天变化)下进行了广泛的间接拉伸疲劳和弹性模量测试。试验结果表明,水泥对混合料疲劳寿命的影响与试验中假定的初始应变水平有关。在300微应变以上的情况下,添加水泥会导致疲劳寿命的降低,而在300微应变以下的情况则相反。最后,根据实验室测试结果,针对不同的边界应变水平建立了不同的模型。

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