Friction modifier application to railroad tracks
Friction modifier application to railroad tracks
批准号:
508934-2017
负责人:
Green, Sheldon
金额:
$3.28万
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2019
资助国家:
加拿大
项目状态:
已结题
起止时间:
2019-01-01 至 2020-12-31
中文摘要
铁路在铁轨上使用各种摩擦改进剂。一些摩擦改进剂将轮轨之间的摩擦降低到一个低的中间值,从而提高燃油经济性,减少车轮磨损和车轮尖叫。这些摩擦改进剂通常作为液体使用。其他摩擦改进剂可以增强列车车轮和轨道之间的摩擦,以改善在湿滑条件下的断裂和牵引力。在这些应用中,摩擦改进剂通常是颗粒状固体,如沙子。这里提出的研究将着眼于液体和固体摩擦改进剂在铁路轨道上的应用。将液体摩擦改进剂应用于轨道的一种方法是将液体从固定供应器中渗出到轨道上,然后让火车车轮从摩擦改进剂的水坑中拾取液体。这项研究将研究车轮如何从水坑中吸收液体,以及这些液体随后如何被轨道带到下游(即所谓的“携带”)。研究人员还将研究液体性质如何影响液体的“携带性”,目的是推荐替代液体配方来改善“携带性”。粒状固体通常从火车上安装的砂车运送到轨道上,砂车将沙子吹到火车车轮上游的轨道上。任何砂磨机分配的砂,如果不能到达轮轨压痕处,就会被浪费掉。研究人员将在实验室环境中通过创建一个模拟全尺寸磨砂机的磨砂机、砂轮和钢轨系统来研究钢轨打磨。将测量从磨砂机发出的砂粒的轨迹,以及落在轮轨之间的砂粒的比例。还将研究一种新型(非砂)颗粒材料,以了解其不同的弹跳特性如何影响进入轮轨夹击的材料比例。根据这些测量结果,磨砂机的操作和砂粒的特性将得到优化,从而最大限度地减少浪费的产品数量。
英文摘要
Railroads apply various friction modifiers to railroad tracks. Some friction modifiers reduce the friction between the wheel and rail to a low-intermediate value, which improves fuel economy and reduces wheel wear and wheel squeal. These friction modifiers are normally applied as liquids. Other friction modifiers enhance the friction between the train wheel and the rail, to improve breaking and traction in slippery conditions. In these applications the friction modifier is usually a granular solid such as sand. The research proposed here will look at the application of liquid and solid friction modifiers to railroad tracks. One way to apply liquid friction modifier to tracks is to ooze the liquid onto the tracks from a stationary supply, and then have the train wheels pick up liquid from the puddle of friction modifier. The research will study how wheels pick up liquid from a puddle, and how that liquid is subsequently carried far downstream on the tracks (so called "carry down"). The researchers will also study how the liquid properties affect liquid "carry down", with the goal of recommending alternative liquid formulations to improve "carry down". Granular solids are normally conveyed to the tracks from train-mounted sanders that blow sand onto the tracks upstream of train wheels. Any sand dispensed by the sander that does not make it to the wheel-rail nip is wasted. The researchers will study rail sanding in a laboratory setting by creating a sander, wheel, and rail system that simulate a full-scale sander. The trajectory of sand particles issuing from the sander, and the fraction of the sand that lands into the nip between the wheel and rail, will be measured. A novel (non-sand) granular material will also be studied, to understand how its different bounce characteristics will affect the fraction of material entering the wheel-rail nip. Based on these measurements the operation of the sander and the characteristics of the sand particles will be optimized, minimizing the amount of product that is wasted.
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