Determining rational parameters for the impeller of a hydraulic excavator with a crowding mechanism

IF 0.2 Q4 FORESTRY Lesnoy Zhurnal-Forestry Journal Pub Date : 2023-02-20 DOI:10.21440/0536-1028-2023-1-25-35
P. Bezkorovainyi, V. Shestakov
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Abstract

Introduction. The rationale for the research is conditioned by the need to improve the efficiency of hydraulic excavators which affect the prime cost of mining significantly. Research objective is to improve the design of hydraulic excavator impeller and develop the methods of determining impeller’s rational parameters ensuring its weight reduction. Methods of research. A model of hydraulic excavator with an impeller including a boom, a dipper arm, bucket, and hydraulic slewing cylinders for a boom, a dipper arm, and a bucket. For a front shovel hydraulic excavator, a new design has been developed that excludes hydraulic cylinders for a beam which are used in a base model of hydraulic excavator; a pressure rod is used for boom travel. In the developed scheme of the impeller, a superstructure is installed on the slewing ring, a crowding mechanism for the pressure rod extension is installed in the upper part of the superstructure. The pressure rod is connected to the fore boom and runs inside the saddle bearing. Such scheme allows excluding boom slewing cylinders, reduce the bending moment that has effect on the boom, which is going to reduce the boom cross section and therefore its mass. A mathematical calculation model for excavation coordinates and forces has been developed, as well as an algorithm and software on the Visual Basic language for applications, allowing to determine possible forces in the impeller elements within the limits of the working area. The force values are used when optimizing according to the mass criterion to select the cross section of a boom and dipper arm and for cylinders’ location. The mass criterion application and a restriction in a form of the required technological parameters implementation when operating in the preset mining and technological conditions will allow selecting rational parameters for the impeller’s elements. Results. Changes in the arrangement of elements (elimination of boom slewing hydraulic cylinders and the arrangement of the crowding mechanism on the rotation axis) makes it possible to improve the bucket tonnage, and therefore, the excavator’s capacity. The developed methods of determining the excavator design parameters also ensures the working zone construction and bucket teeth forces calculation within its limits in order to prove the possibility of implementing the operating functions of the new model designed.
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具有拥挤机构的液压挖掘机叶轮合理参数的确定
介绍。研究的理由是需要提高液压挖掘机的效率,这对采矿的主要成本有很大的影响。研究的目的是改进液压挖掘机叶轮的设计,研究确定叶轮合理参数的方法,保证叶轮的减重。研究方法。一种具有叶轮的液压挖掘机模型,包括臂架、斗臂、铲斗以及用于臂架、斗臂和铲斗的液压回转缸。针对前铲式液压挖掘机,提出了一种新的设计方案,排除了液压挖掘机基本型号中横梁液压缸的使用;一根压力杆用于动臂的移动。在叶轮的开发方案中,在回转环上安装了上部结构,上部结构的上部安装了压力杆延伸的拥挤机构。压力杆与前臂相连,并在鞍座轴承内运行。这种方案允许排除臂架回转气缸,减少对臂架产生影响的弯矩,这将减少臂架的横截面,从而减少其质量。建立了开挖坐标和开挖力的数学计算模型,并在Visual Basic语言上开发了算法和应用软件,以确定在工作区域范围内叶轮单元可能存在的力。在根据质量准则进行优化时,利用这些力值来选择臂架和斗臂的截面以及气缸的位置。在预定的开采和工艺条件下运行时,质量标准的应用和所需技术参数的实施形式的限制将允许为叶轮元件选择合理的参数。结果。改变元件的布置(取消臂架回转液压缸和在旋转轴上布置拥挤机构),可以提高斗吨位,从而提高挖掘机的容量。所开发的挖掘机设计参数确定方法也保证了工作区域的构造和斗齿力的计算在其极限范围内,从而证明了新设计型号的操作功能实现的可能性。
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