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首页> 外文期刊>Journal of materials in civil engineering >Utilization of Reclaimed Asphalt Pavements in Indian Low-Volume Roads
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Utilization of Reclaimed Asphalt Pavements in Indian Low-Volume Roads

机译:印度低流量道路中再生沥青路面的利用

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Utilization of reclaimed asphalt pavement (RAP) in the construction industry is gaining an advantage over conventional materials in terms of sustainable credits. However, the amount of production of RAP and its utilization has no comparison. The general practice is to replace a small fraction of virgin aggregates with RAP, usually restricted to a maximum of 30%, in base layers to promote RAP usage in the pavement industry. The present study focuses on the utilization of a high proportion of RAP (>50%) substitution in virgin aggregates (VA) as a base material in low volume roads (LVR). Mixes containing 100:0, 80:20, and 60:40 proportions of RAP:VA stabilized with different dosages of fly ash were evaluated for maximum dry density (MDD), optimum moisture content (OMC), unconfined compressive strength (UCS), resilient modulus (M_r) and California bearing ratio (CBR). It was observed that the 80:20 RAP:VA design mix with 40% fly ash meets the design requirements (UCS > 1.7 MPa and CBR > 80%) specified by the Ministry of Rural Development (MoRD), Government of India, and was considered to be an optimum mix. An example is discussed to design an LVR with an optimum mix according to the Indian Roads Congress (IRC) and AASHTO methods. The results revealed that the fatigue and rutting strains are well within the permissible limits for the new mix. The new mix design proved economical, as there was a 50% reduction in base layer thickness compared with the conventional design mix.
机译:就可持续信用而言,建筑行业中再生沥青路面(RAP)的使用已获得了优于常规材料的优势。但是,RAP的生产量及其利用率没有可比性。通常的做法是在基层中用RAP代替一小部分原始集料,通常最多限制为30%,以促进RAP在路面行业中的使用。本研究的重点是利用低比例道路(LVR)中原始集料(VA)中高比例的RAP(> 50%)替代作为基础材料。评估了用不同剂量的粉煤灰稳定的比例为100:0、80:20和60:40的RAP:VA混合物的最大干密度(MDD),最佳水分含量(OMC),无侧限抗压强度(UCS),弹性模量(M_r)和加利福尼亚轴承比(CBR)。据观察,粉煤灰为40:80的80:20 RAP:VA设计混合物符合印度政府农村发展部(MoRD)规定的设计要求(UCS> 1.7 MPa和CBR> 80%),并且被认为是最佳组合。讨论了一个根据印度道路大会(IRC)和AASHTO方法设计具有最佳混合比的LVR的示例。结果表明,疲劳和车辙应变完全在新混合物的允许范围内。新的混合料设计证明是经济的,因为与传统的设计混合料相比,基础层厚度减少了50%。

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