首页> 外文OA文献 >DESIGN AND VISCOELASTOPLASTIC CHARACTERIZATION OF A LIME-DUNE SAND-ASPHALT MIX (REPLACING AGGREGATE, MATERIAL LAWS, CREEP COMPLIANCE, RUTTING).
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DESIGN AND VISCOELASTOPLASTIC CHARACTERIZATION OF A LIME-DUNE SAND-ASPHALT MIX (REPLACING AGGREGATE, MATERIAL LAWS, CREEP COMPLIANCE, RUTTING).

机译:石灰沙丘砂-沥青混合料的设计和粘弹塑性特征(替代骨料,材料法则,蠕变柔顺性,车辙)。

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摘要

Viscoelastic and viscoelastoplastic characterization of pavement materials by means of simple testing and simple equipment is of great concern to pavement technologists. Another area of great concern is the replacement of premium aggregates by local materials after improving the engineering properties of the local materials. Such replacement is for the avoidance of the high costs of hauling the well-graded aggregates whose resources are also being depleted. These two research areas were combined in this study. A uniformly graded dune sand which is abundant in desert-like areas was upgraded with hydrated lime and stabilized with asphalt to improve its engineering properties. By variation of some of the mix design variables, a mix that complied with Marshall and Hveem stability criteria was produced. The effect of lime on the engineering properties of the mix was studied, and substantial improvements due to the addition of lime were observed. A mix that contained 10% Type S lime was found to have engineering properties that were comparable with those of conventional asphaltic concrete. Also, the effect of lime on the thermorheological, thermal, and elastic properties of bituminous mixes in general was studied. In addition to complying with the above-mentioned stability criteria, the lime-sand-asphalt mix was characterized by creep compliance, over wide ranges of time and temperature, so that the mix is available for thickness design by both the empirical and the theoretical methods of pavement design. New, simple equipment by which repeated as well as constant load creep tests can be easily performed was introduced and used to develop a viscoelastic-plastic constitutive law of the designed lime-sand-asphalt mix. Both the equipment and the testing are simple and gave repeatable measurements. Models for the elastic, plastic, viscoelastic and viscoplastic responses of the designed mix were derived from measurements taken by this equipment and by using computerized regression analysis techniques. Generalized models for the viscoelastic strain during the N-th loading and the N-th recovery period were developed. A FORTRAN computer program was written for computing the four strain components mentioned above separately, and for computing the total strain component for large numbers of load repetitions.
机译:通过简单的测试和简单的设备对路面材料进行粘弹性和粘弹塑性表征是路面技术人员非常关注的问题。另一个令人关注的领域是在改善本地材料的工程性能后,用本地材料替代优质骨料。这种替换是为了避免拖运那些资源也已耗尽的,等级良好的骨料的高昂费用。本研究将这两个研究领域结合在一起。用熟石灰对均匀分布在沙丘状地区的沙丘进行改良,并用沥青稳定,以改善其工程性能。通过改变某些混合料设计变量,可以生产出符合Marshall和Hveem稳定性标准的混合料。研究了石灰对混合物的工程性能的影响,并观察到由于加入石灰而产生的实质性改善。发现含有10%S型石灰的混合料具有与常规沥青混凝土相当的工程性能。此外,还研究了石灰对一般沥青混合料的热流变,热和弹性性能的影响。除符合上述稳定性标准外,石灰-砂-沥青混合料还具有在宽泛的时间和温度范围内的蠕变柔顺性,因此该混合料可通过经验和理论方法用于厚度设计路面设计。引入了一种新的简单设备,通过该设备可以轻松地执行反复载荷试验和恒定载荷蠕变试验,并将其用于开发设计的石灰砂沥青混合料的粘弹塑性本构定律。设备和测试都很简单,并且可以重复进行测量。设计混合物的弹性,塑性,粘弹性和粘塑性响应模型是从该设备进行的测量以及使用计算机回归分析技术得出的。建立了第N次加载和第N次恢复期粘弹性应变的通用模型。编写了FORTRAN计算机程序,用于分别计算上述四个应变分量,并针对大量载荷重复计算总应变分量。

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    SABBAGH ABDULGHANY OMAR.;

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  • 年度 1986
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  • 原文格式 PDF
  • 正文语种 en
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