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ALUMINUM STAINLESS STEEL CONDUCTOR TECHNOLOGY: CURRENT ADOPTION BY NORTH AMERICAN TRANSIT AUTHORITIES

机译:铝制不锈钢导体技术:北美跨行机当局的目前采用

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Since the early years of railway electrification, 3rd rail conductors have evolved from steel to aluminum/steel composite to aluminum/stainless steel composition. Aluminum stainless steel (ALSS) conductors are currently in use in approximately 75% of the nearly 20,000 km of 3rd rail systems worldwide and continue to gain acceptance by North American transit authorities. Electrical efficiency improvement with ALSS ranges from 1.6 to 2.5 times that of steel aluminum and steel rails. At 33% of the weight of steel rail and 60% of aluminum-steel composite rail, ALSS offers considerable costs-savings in freight, handling, and installation. Though electrical efficiency and light weight are among the more widely known benefits of ALSS 3rd rail, durability has significantly improved since the introduction of ALSS technology in the late 20th Century. The implementation of signaling technologies such as CBTC has enabled increased train throughput; however the lack of necessary available power (voltage) to support these headways can be a limiting factor to capacity improvements. Upgrading legacy 3rd rail to ALSS is a cost-effective means of increasing available power with minimal disruption. Drop-in replacement profiles of ALSS 3rd rail have been developed for several common legacy profiles to include 150lb steel and 85C, facilitating replacement of existing 3rd rail. This paper examines the technical and economic aspects of aluminum/stainless steel 3rd rail and its adoption by several North American transit authorities. The author explains the characteristics, benefits and limitations of aluminum stainless steel 3rd rail with comparisons to legacy steel and steel-aluminum power rails.
机译:自铁路电气化的早期以来,第三轨道已经从钢铁到铝/钢复合材料到铝/不锈钢组合物。铝不锈钢(ALSS)导体目前在全球近20,000公里的近22,000公里处的75%,并继续获得北美运输机构的接受。钢铝和钢轨的ALSS电效率改善范围为1.6至2.5倍。在33%的钢轨和60%的铝钢复合导轨的33%,Alss提供了相当大的成本 - 节省货运,处理和安装。虽然电效率和重量轻,但在Alss第三轨的更广泛的益处之一中,自从20世纪末的Alss技术引入以来,耐用性显着提高。 CBTC等信令技术的实现使得能够增加列车吞吐量;然而,缺乏必要的可用功率(电压)来支持这些头部可以是能力改进的限制因素。升级传统的第3架轨道到ALSS是一种成本效益,可以使用最小的中断增加可用功率。已经开发了ALSS 3RD轨道的替换轮廓,以包括包括150LB钢铁和85C的几种共同的旧曲线,促进了替代现有的第三轨。本文介绍了铝/不锈钢3RD轨道的技术和经济方面及其几个北美途交通当局的采用。作者介绍了铝不锈钢3RD轨道的特点,优势和局限性与传统钢和钢铝电源轨道的比较。

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