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Theoretical-experimental assessment of braking systems for inclined lifts according to EN 81:22-2014

机译:根据EN 81:22-2014的斜梯制动系统的理论-实验评估

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摘要

The inclined lifts, in case of emergency braking, can experience high longitudinal decelerations that can lead to passengers’ collisions with lift walls and interior elements. In 2014 the CEN/TC10 WG1 published the part 22 of the norm series 81 with regard to the construction elements and installation of electrical lifts with inclined trajectory. This norm stablishes, amongst other requirements, the maximum and minimum deceleration levels in both longitudinal and vertical directions. Both requirements, in opposite senses and the definition of the braking system, do not cause design difficulties in case of high slopes, but in case of lifts with the slope under a certain level they can be needed, to guarantee the fulfilment of the norm, elements that allow and additional relative displacement between the braking system and the cabin. To define the performances and the optimal behaviour of these systems it has been defined a simulation model of the dynamical behaviour of the lift under the conditions of the norm tests. Additionally, in this work it is presented a calculation methodology to define the cabin allowable weight corridor, for each braking effort made by each safety gear model, and the simulations have been validated with the results of tests with different braking efforts, weights and lift slopes. The present work has been performed in cooperation with Thyssen Krupp Elevadores with the aim of improving the knowledge of the brake dynamics of inclined lifts.
机译:在紧急制动的情况下,倾斜的升降机可能会经历较高的纵向减速,从而导致乘客与升降机壁和内部元件发生碰撞。 2014年,CEN / TC10 WG1发布了规范系列81的第22部分,涉及倾斜轨道的电气升降机的结构要素和安装。除其他要求外,该规范还规定了纵向和纵向的最大和最小减速度。在高坡度的情况下,从相反的意义和制动系统的定义来看,这两个要求都不会引起设计上的困难,但是对于坡度在一定水平以下的电梯,则可能需要它们,以确保符合规范,允许在制动系统和驾驶室之间产生额外的相对位移的元件。为了定义这些系统的性能和最佳性能,已经定义了在规范测试条件下电梯动态性能的仿真模型。此外,在这项工作中,提出了一种计算方法,用于定义每个安全钳模型进行的每个制动作用的机舱允许重量走廊,并且通过不同制动作用,重量和升力斜率的测试结果对仿真进行了验证。 。目前的工作是与蒂森克虏伯电梯公司合作完成的,目的是提高对倾斜升降机制动动力学的认识。

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