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首页> 外文期刊>Advances in Science and Technology Research Journal >REGRESSION MODEL CHANGE OF NORMAL CONTACT FORCES IN HEXAGONAL IDLER HOUSING FOR PIPE CONVEYOR LOADED WITH TRANSPORTED MATERIAL
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REGRESSION MODEL CHANGE OF NORMAL CONTACT FORCES IN HEXAGONAL IDLER HOUSING FOR PIPE CONVEYOR LOADED WITH TRANSPORTED MATERIAL

机译:输送材料输送管道的六角形惰轮箱内正常接触力的回归模型变化

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摘要

Pipe conveyors make up important elements of ecological transport systems. They ensure the material is transported in the conveyor belt coiled to the shape of a pipe. Various stresses impact their most important component - the conveyor belt - straining it in both, the longitudinal and the transverse direction. This phenomenon arises in connection with the shape of the conveyor route of the pipe conveyor, the width and thickness of the conveyor belt, the volume of the material conveyed, and the like. In recent years, more and more authors have been researching contact dependencies of the normal forces acting on the idler rolls located in idler housings. Their task is to design such structure of a conveyor belt that will put the least strain on the idler rolls, thus significantly reducing the power required to ensure the movement of the pipe conveyor. In this way, greater efficiency of eco-friendly transport will be achieved. Following experimental research, the paper describes a regression model of dependencies of normal contact forces on tension forces required, as per individual idler rolls in idler housing.
机译:管道输送机是生态运输系统的重要组成部分。它们确保物料在盘绕成管道形状的输送带中运输。各种应力会影响其最重要的组成部分-传送带-在纵向和横向上都使应力张紧。该现象与管式输送机的输送路径的形状,输送带的宽度和厚度,所输送的材料的体积等有关而产生。近年来,越来越多的作者研究了作用在惰轮箱中惰轮上的法向力的接触依赖性。他们的任务是设计一种传送带的结构,该结构将使惰辊上的应变最小,从而显着降低确保管道输送机运动所需的功率。这样,将实现更高的环保运输效率。经过实验研究,本文描述了根据惰轮壳体中各个惰轮滚动的正常接触力对所需张力的依赖性的回归模型。

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