首页> 外文会议>ASME joint rail conference >BEHAVIOR OF GEOGRID-REINFORCED RAILROAD BALLAST PARTICLES UNDER DIFFERENT LOADING CONFIGURATIONS DURING INITIAL COMPACTION PHASE
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BEHAVIOR OF GEOGRID-REINFORCED RAILROAD BALLAST PARTICLES UNDER DIFFERENT LOADING CONFIGURATIONS DURING INITIAL COMPACTION PHASE

机译:初始压实阶段不同荷载配置下土工格栅加筋铁路道ALL颗粒的行为

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A railroad ballast or subballast layer is composed of unbound granular particles. The ballast/subballast initial compaction phase occurs immediately the construction or maintenance of a track structure is finished. The particles are densified into a more compact state after certain load repetitions. Geogrids are commonly used in railroad construction for reinforcement and stabilization. Currently heavy haul trains are increasing the loads experienced by the substructural layers, which changes behavior of reinforced granular particles. This paper presents a series of ballast box tests to investigate the behavior of geogrid-reinforced unbound granular particles with rectangular (BX) and triangular (TX) shaped geogrids during the compaction phase. Three types of tests were conducted: one without geogrid as a control, one with a sheet of rectangular shaped geogrid, and the other one with a sheet of triangular shaped geogrid. The geogrid was placed at the interface between subballast and subgrade layers. A half section of a railroad track structure consisting of two crossties, a rail, ballast, subballast and subgrade was constructed in a ballast box. Four wireless devices - "SmartRocks", embedded underneath the rail seat and underneath the shoulder at the interface of ballast-subballast, and subballast-subgrade layers, respectively, to monitor particle movement under cyclic loading. The behavior of the unbound aggregates in the three sections under two different loadmg configurations were compared. The results indicated that the inclusion of the geogrid significantly decreased accumulated vertical displacement on the ballast surface, ballast particle translation and rotation under a given repeated loading configuration. The results also demonstrated the effectiveness of the SmartRock device and its potential for monitoring behavior of ballast particles in the field.
机译:铁路道ast或次道ast层由未结合的颗粒组成。道ast /子道ast的初始压实阶段在轨道结构的建造或维护完成后立即进行。在一定的载荷重复之后,颗粒被致密化为更致密的状态。土工格栅通常用于铁路建设中以进行加固和稳定。当前,重型运输列车正在增加子结构层所承受的载荷,这会改变增强颗粒的行为。本文介绍了一系列镇流器箱测试,以研究压实阶段矩形(BX)和三角形(TX)形状的土工格栅加筋的土工格栅增强的未结合颗粒状颗粒的行为。进行了三种类型的测试:一种不使用土工格栅作为对照,一种用一块矩形土工格栅,另一种用一张三角形土工格栅。土工格栅放置在路基ball层和路基层之间的界面处。在道ast箱中构造了由两个交叉路口(铁路,道ast,路基ball和路基)组成的铁轨结构的一半。四个无线设备-“ SmartRocks”,分别嵌入在镇流器-子镇流器层和子镇流器-路基层的界面的轨道座椅下方和肩膀下方,以监视循环载荷下的粒子运动。比较了两个不同载荷配置下三个部分中未结合骨料的行为。结果表明,在给定的重复载荷配置下,土工格栅的加入显着降低了压载物表面上累积的垂直位移,压载物颗粒的平移和旋转。结果还证明了SmartRock设备的有效性及其在现场监测压载颗粒行为的潜力。

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