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Development of Composition Brake Shoe for Reducing Heat Load to Wheel Tread with Keeping Brake Performance

机译:保持制动性能,降低车轮胎面热负荷的组合式制动蹄的开发

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摘要

In rail vehicles using composition brake shoes, the friction coefficient between the wheel and the brake shoe tends to decrease under wet conditions. In order to maintain the braking force, it is common practice to insert a metallic block to remove the water. However, the metallic block causes a localized temperature rise on the wheel tread surface under dry conditions, which is one of the factors in wheel tread damage and concave wheel tread wear. A composition brake shoe was developed to suppress the temperature rise of the wheel tread and, at the same time, maintain the brake force under wet conditions. This paper summarizes the evaluation of the composition brake shoe performance in dynamo tests, running tests and long-term durability running tests, including verification that the developed brake shoe has controlled concave wear.
机译:在使用复合制动蹄的轨道车辆中,车轮和制动蹄之间的摩擦系数在潮湿条件下趋于减小。为了维持制动力,通常的做法是插入金属块以除去水。但是,在干燥条件下,金属块会导致车轮胎面表面局部温度升高,这是车轮胎面损坏和凹面车轮胎面磨损的因素之一。开发了一种复合制动蹄片,以抑制车轮胎面的温度升高,并同时在潮湿条件下保持制动力。本文总结了在发电机测试,行驶测试和长期耐久性行驶测试中对组成的制动蹄性能的评估,包括验证所开发的制动蹄具有可控制的凹面磨损。

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