首页> 外文期刊>Scientific Journal of Silesian University of Technology: Series Transport >METHOD OF CALCULATING THE DESIGN PARAMETERS OF A MODULATOR ANTI-LOCK BRAKING SYSTEM WITH A HIGH FLOW OF WORKING FLUID
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METHOD OF CALCULATING THE DESIGN PARAMETERS OF A MODULATOR ANTI-LOCK BRAKING SYSTEM WITH A HIGH FLOW OF WORKING FLUID

机译:用高流量计算调制器防闸制动系统的设计参数的方法

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The design dimensions of the executive hydraulic cylinders of the brake system of heavy-duty mining dump trucks cause high fluid flow during the braking process. Therefore, dimensions of the anti-blocking system modulator spool pair require unique electromagnets or hydraulic amplifiers to control. These solutions do not allow the required modulator performance. Thus, a modulator scheme with a division of the flow of fluid from the source to the brake cylinders was developed. This scheme allows during emergency braking passing, an additional amount of fluid to cylinders through the valve, installed parallel to the main valve upon pressure increase phase and controlled by the pressure difference. The task is to develop a method for calculating the main structural dimensions of a modulator. The calculation of the valve of the second cascade, installed in parallel to the main stage, is carried out for the emergency braking mode with the maximum flow rate to ensure the required performance of the braking system. The balance of fluid flows equations is compiled at the key points. The flow rate of the fluid through each of the valves is determined by the Torricelli formula, and the pressure difference across the valves is assuned equal. The obtained relations allows building a family of Q-p curves, which can be used to select the diameter and stroke of the additional valve depending on the flow rate in the brake system.
机译:重型采矿自卸卡车制动系统的执行液压缸的设计尺寸导致制动过程中的高流体流动。因此,防堵塞系统调制器阀芯对的尺寸需要独特的电磁器或液压放大器来控制。这些解决方案不允许所需的调制器性能。因此,开发了具有从源到制动缸的流体流的调制器方案。该方案允许在紧急制动过程中,通过阀门的圆柱体的额外量的流体,在压力增加相位并由压力差控制并控制到主阀。任务是开发一种用于计算调制器的主要结构尺寸的方法。在紧邻主级安装的第二级联的阀门的计算用于紧急制动模式,具有最大流速,以确保制动系统的所需性能。在关键点编制流体流方程的平衡。流体通过每个阀门的流速由托里氏菌公式确定,并且阀上的压力差是相同的。所获得的关系允许构建一系列Q-P曲线,这可以用于根据制动系统中的流速选择附加阀的直径和行程。

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