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Frictional Performance and Temperature Rise of a Mining Nonasbestos Brake Material during Emergency Braking

机译:紧急制动期间采矿非方便制动材料的摩擦性能和温度升高

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摘要

By simulating emergency braking conditions of mine hoisters, tribological experiments of a mining nonasbestos brake material sliding on E355CC steel friction disc investigated a pad-on-disc friction tester. It is shown that, under combined influence of braking velocity and pressure, the lubricating film and micro-convex-apices on wear surface would have complex physicochemical reactions which make the instant friction coefficient rise gradually while the instant surface temperature rises first and then falls. With the antifriction effect from lubricating film and the desquamating of composite materials, the mean friction coefficient decreases first, then rises, and decreases again with the increasing of initial braking velocity. And with the existence of micro-convex-apices and variation from increment ratio of load and actual contacting area, it rises first and then falls with the increasing of braking pressure. However, the mean surface temperature rises obviously with the increasing of both initial braking velocity and braking pressure for growth of transformed kinetic energy. It is considered that the friction coefficient cannot be considered as a constant when designing brake devices for mine hoisters. And special attention should be paid to the serious influence of surface temperature on tribological performance of brake material during emergency braking.
机译:通过模拟矿井升降机的紧急制动条件,在E355CC钢摩擦椎间盘上滑动的矿井非方便制动材料的摩擦实验研究了垫上摩擦测试仪。结果表明,在制动速度和压力的综合影响下,磨损表面上的润滑膜和微凸起将具有复杂的物理化学反应,其使瞬间摩擦系数上升逐渐上升,而瞬间表面温度首先上升,然后落下。利用来自润滑膜的抗膛效果和复合材料的脱屑,平均摩擦系数首先降低,然后升高,并随着初始制动速度的增加而再次降低。并且随着载荷和实际接触区域的增量比的存在微凸角的变化,首先升高,然后随着制动压力的增加而下降。然而,平均表面温度显然随着初始制动速度和制动压力而增加转化的动能的增长。当设计用于矿井升降机时,摩擦系数不能被认为是恒定的。应特别注意表面温度对紧急制动过程中制动材料的摩擦学性能的严重影响。

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