铰链磨损对垃圾车机械手铰接臂动载荷的影响

O.V. Bereziuk, V.I. Savulyak, V.O. Kharzhevskyi, V.Ye. Yavorskyi
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引用次数: 0

摘要

本文致力于建立垃圾车机械手臂架最大载荷段的最大冲击动应力与机械手铰链磨损及其载荷水平之间的关系。采用Box-Wilson方法进行一阶交互效应实验设计,确定了臂架最大载荷部位的最大冲击动态应力与铰链磨损及其载荷水平的充分依赖关系。研究发现,根据学生准则,在所研究的影响因素中,铰链磨损对机械手臂架最大载荷段的最大冲击动应力影响最显著,而其载荷水平影响最小。给出了目标函数的响应面——臂架最大载荷部分的最大冲击动态应力及其在冲击参数平面上的二维部分,从而可以直观地说明该目标函数对各个冲击参数的指定依赖关系。结果表明,铰链磨损1000 μm,导致垃圾车机械手臂架最大载荷截面的最大冲击动应力增加2.6 μm。4次,取决于其负载的水平。说明了进一步研究减摩材料对垃圾车装载城市生活垃圾机构摩擦副磨损影响的便利性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of hinges wear on the dynamic load of the articulated boom of a garbage truck’s manipulator
The article is dedicated to establishing the relationship between the maximum impact dynamic stresses in the most loaded section of the garbage truck manipulator boom and the wear of the manipulator's hinge and its load level. By utilizing a first-order experimental design with first-order interaction effects using the Box-Wilson method, an adequate dependence of maximum impact dynamic stresses in the most loaded section of the manipulator boom on the wear of the manipulator’s hinge and its load level was determined. It has been found that, according to the Student’s criterion, among the investigated influencing factors, hinge wear has the most significant impact on the maximum impact dynamic stresses in the most loaded section of the manipulator boom, while its load level has the least impact. The response surface of the objective function is shown – the maximum impact dynamic stresses in the most loaded section of the manipulator boom and their two-dimensional sections in the planes of the impact parameters, which allows to visually illustrate the specified dependence of this objective function on individual impact parameters. It was established that the wear of the hinge by 1000 μm leads to an increase in the maximum impact dynamic stresses in the most loaded cross-section of the boom of the garbage truck manipulator by 2.6...4 times, depending on the level of its load. The expediency of conducting further studies of the effect of antifriction materials on the wear of the friction pairs of the mechanism for loading municipal solid waste into the garbage truck is shown
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