Experimental Research of the Robotic Assembly Process Using the Effect of Rotation and Low-Frequency Vibration

M. Vartanov, S. L. Petukhov, T. T. Tran
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Abstract

The main stage of automated assembly is the process of parts mating. At this stage, there are problems related to the probability of jamming the parts. The process of parts mating depends on many factors, which are concerned with the assembly methods. The article deals with the assembly method using rotational movement effect in combination with the vibration effect. A parameter design of experiment was carried out to find the mathematical model, describing the forces acting on the assembly parts in dependence with the given factors. Description of the experimental equipment using the ABB IRB140 industrial robot equipped with a force/torque sensor is presented. An experimental mathematical model on the assembly process was built.
旋转和低频振动作用下机器人装配过程的实验研究
自动化装配的主要阶段是零件配合过程。在这个阶段,存在与零件卡壳概率有关的问题。零件配合过程取决于许多因素,这些因素与装配方法有关。本文讨论了旋转运动效应与振动效应相结合的装配方法。通过实验参数设计,建立了作用在装配件上的力与给定因素的关系的数学模型。介绍了采用装配力/扭矩传感器的ABB IRB140工业机器人的实验设备。建立了装配过程的实验数学模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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