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SIMULATION OF THE THERMAL EFFECTS ON ENGINEERED POLYMER COMPOSITE TIES

机译:工程化聚合物复合材料热效应的模拟

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Engineered polymer composite (EPC) ties offer a potential alternative to solid sawn timber ties. These materials are especially attractive for use in regions where wood is susceptible to degradation by moisture and decay organisms. However, recent research at the Transportation Technology Center's (TTC) Facility for Accelerated Service Testing (FAST) in Pueblo, CO, found that track supported by EPC ties experienced more gage widening variation due to temperature changes than track supported by wood ties. Specifically, the track gage was about 0.2-in. wider in the afternoon than that in the morning on the EPC tie tracks. It is believed that the direct sunlight in the afternoon makes the top surface of the tie expand more than the other parts of the tie, thereby causing the EPC ties to bend and widen track gage. Another observation related to the EPC thermal bending effect is changes to the ballast support condition. When temperatures are cooler, EPC ties tend to experience a center-bound ballast support condition, therefore generating more bending stress on the ties. This paper presents results from computer simulations of the thermal behavior of EPC ties. Future study will focus on field testing to further understand the thermal effects in support of recommendations on the use of EPC ties.
机译:工程聚合物复合材料(EPC)系带提供了替代实木锯材系带的潜在选择。这些材料特别适合在木材易受潮气和腐烂生物降解的地区使用。但是,位于科罗拉多州普韦布洛的运输技术中心(TTC)加速服务测试设施(FAST)的最新研究发现,由于温度变化,EPC系带支撑的履带比木系带支撑的履带承受的轨距扩大变化更大。具体而言,履带规约为0.2英寸。在EPC常规赛道上,下午的宽度比早上的宽度大。可以相信,下午的阳光直射使领带的顶面比领带的其他部分膨胀更大,从而导致EPC领带弯曲并加宽了轨距。与EPC热弯曲效应有关的另一个观察结果是镇流器支撑条件的变化。当温度较低时,EPC扎带往往会经历中心约束压载物的支撑状态,因此会在扎带上产生更大的弯曲应力。本文介绍了EPC扎带热行为的计算机仿真结果。未来的研究将集中在现场测试上,以进一步了解热效应,以支持有关使用EPC扎带的建议。

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