一个创新的轨道输送系统的建模

R.P. Abayasekara, Y. Zhang, C. Wheeler, A. Kulasekera
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引用次数: 2

摘要

带式输送机被认为是现代世界中最常见的物料搬运系统,因为它们能够处理大量的散装物料。现代带式输送机广泛应用于从食品制造到发电等行业。虽然带式输送机已经存在了几个世纪,但其基本结构一直没有改变。本文考虑了一种新型的带式输送机系统,提出了一种能够分析带式输送机动态特性的数学模型。新型的轨道输送机系统抛弃了传统的托辊,实现了基于小车的传播技术。仿真模型是采用有限数量的弹簧、质量和阻尼器组成的单元来考虑存在于轨道输送机带和其他结构中的各种力。每一个流变模型组成的元素,在本文后面描述的是制定,以表征固有的品质,如粘弹性行为的皮带和阻力所经历的手推车在轨道输送系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling of an innovative rail conveyor system
Belt conveyors are regarded as the most common material handling systems in the modern world due to their ability to handle a vast range of bulk materials. Modern belt conveyors are used in a wide range of industries ranging from food manufacturing to power generation. Although belt conveyors have been around for centuries, their principle structure have been unchanged. In this paper a novel type of conveyor system is taken into account and a mathematical model that allows the analysis of the dynamic states of the proposed belt conveyor is presented. The novel conveyor system identified as the rail conveyor implements a cart based propagation technique abandoning the traditional idlers. The simulation model is conceived by adopting a finite number of elements consisting of springs, masses, and dampers for various forces existing in the belt and other structures of the rail conveyor. Each rheological model comprised of elements described later in this paper are formulated to characterize innate qualities such as viscoelastic behavior of the belt and resistance forces experienced by the carts in the rail conveyor system.
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