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Experimental research of a new generation of support systems for the transport of mineral raw materials

机译:新一代矿物原料运输支撑系统的实验研究

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Within the transportation of materials in mining using the belt conveyor systems, a conveyor belt is particularly the component with the highest wear rate. The development trends in the field of conveyor belt wear, in terms of disruption damage, are mostly focused on the innovation of damping components of buffer beds with impact rubber bars. Impact bars are an essential component of innovative buffer beds suitable for several types of belt conveyors. In mining, these bars are also used in buffer beds of bucket wheel excavator used for the extraction of overlying soils. The most important attribute of this support system is the impact resistance. Therefore, the output of the present paper is the determination of the limit impact dynamic loading based on the quantification of the force effect. The buffer bed eliminates the shortcomings of classic constructions, above all a point contact, and it allows better sealing-off of the whole place of an impact if required. Construction of the buffer bed should provide sufficient stiffness, flexibility, ability to direct conveyor belts at the direction of conveying, absorb the kinetic energy of the transported material, and ensure a surface contact between the material and the conveyor belt by increasing the surface friction drag. This paper deals with the experimental measurement of three kinds of impact rubber bars with different frameworks. Impact characteristics of the bars are significantly affected by the material and the type of metallic framework. The examined impact bars were exposed to the effects of the dynamic impact loading that is of great importance and facilitates the simulation of the belt conveyor system operation. The entire loading process was documented and impact load curves in time were analysed. The depth of penetration and the values of impact load were determined
机译:在使用皮带输送机系统运输采矿材料时,皮带输送机尤其是磨损率最高的组件。就破坏破坏而言,传送带磨损领域的发展趋势主要集中在具有缓冲橡胶棒的缓冲床阻尼组件的创新上。冲击杆是创新型缓冲床的重要组成部分,适用于多种类型的皮带输送机。在采矿中,这些杆还用于斗轮挖掘机的缓冲床中,该斗床用于开采上覆的土壤。该支撑系统的最重要属性是抗冲击性。因此,本文的输出是基于力效应的量化确定极限冲击动态载荷。缓冲床消除了传统结构的缺点,尤其是点接触,并且在需要时可以更好地密封整个冲击部位。缓冲床的结构应具有足够的刚度,柔韧性,能够将输送带沿输送方向引导,吸收被输送物料的动能,并通过增加表面摩擦阻力来确保物料与输送带之间的表面接触。本文研究了三种不同骨架的冲击胶棒的实验测量。条的冲击特性受材料和金属框架类型的显着影响。检查的冲击杆受到动态冲击载荷的影响,该冲击载荷非常重要,并有助于模拟皮带输送机系统的运行。记录了整个加载过程并分析了及时的冲击载荷曲线。确定穿透深度和冲击载荷值

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