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Comparison of Asphalt Mixtures Designed Using the Marshall and Improved GTM Methods

机译:使用Marshall和改进的GTM方法设计的沥青混合料的比较

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The Marshall method is today considered the standard method of asphalt mixture design for practical engineering applications. By using this method, engineering designers reap the benefits of its easy implementation and inexpensive equipment requirements. However, the Marshall method also has shortcomings and limitations, such as the difficulty in simulating the actual working conditions of a road under heavy load. Therefore, it is desirable to develop alternative methods for designing asphalt mixtures that can simulate the actual conditions under which the road will be used and so enable technically superior road construction. The emergence of the gyratory testing machine (GTM) method represents a new direction in asphalt mixture design that could plan more effectively for heavy loads in a hot and humid environment. In this paper, the two design methods are compared on the basis of the oil-stone ratio, high-temperature stability, water stability, and rutting resistance of the mixes they recommend. We put forward an improved GTM method suitable for the high temperatures and heavy traffic in Guangdong Province. This work provides a foundation for the large-scale popularization and application of the GTM method.
机译:今天,马歇尔法被认为是实际工程应用中沥青混合料设计的标准方法。通过使用这种方法,工程设计人员可以从其易于实施和廉价的设备需求中受益。但是,马歇尔法也有缺点和局限性,例如难以模拟重载道路的实际工作条件。因此,期望开发用于设计沥青混合料的替代方法,其可以模拟将要使用道路的实际条件,并因此能够实现技术上优越的道路建设。旋转试验机(GTM)方法的出现代表了沥青混合料设计的新方向,该设计可以更有效地计划在炎热潮湿的环境中进行重载。在本文中,根据推荐的混合物的油石比,高温稳定性,水稳定性和耐车辙性对两种设计方法进行了比较。我们提出了一种改进的GTM方法,适用于广东省的高温和大交通量。这项工作为GTM方法的大规模推广和应用提供了基础。

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