Adaptive assembly module for industrial robot: Design and simulation

IF 1.2 Q3 ENGINEERING, MECHANICAL
M. Polishchuk, S. Telenyk, M. Tkach
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引用次数: 0

Abstract

In modern production, automation of assembly processes is achieved by using industrial robots with high positioning accuracy, as well as with elements of tactile adaptation and expensive software. The article proposes an alternative approach to solving the problem of reducing the cost of assembly processes. This approach consists of using production tooling in the form of a soft adaptive assembly module that is mounted on the robot arm. The proposed assembly module allows not only for compensating for errors in the relative orientation of assembly objects, but also excludes the possibility of damage to fragile assembly components or for assembly objects with a thin protective coating of a chemical or galvanic nature. This effect is achieved due to the use of elastic corrugated chambers in the module structure, which, when compressed air is supplied to them, correct the position of one of the assembly objects. The article offers a description of the new design of the assembly module, as well as offers analytical dependencies for calculating the design parameters of the module. The results of modeling the parameters of the assembly module are presented. The main economic effect is to reduce the cost of technological equipment for industrial robots while maintaining the ability to adapt to the conditions of the assembly process.
工业机器人自适应装配模块:设计与仿真
在现代生产中,装配过程的自动化是通过使用具有高定位精度的工业机器人以及触觉适应元素和昂贵的软件来实现的。本文提出了一种替代方法来解决降低装配过程成本的问题。这种方法包括使用安装在机械臂上的软自适应装配模块形式的生产工具。所提出的装配模块不仅允许补偿装配对象相对方向上的误差,而且还排除了损坏易损坏的装配组件或具有化学或电性质的薄保护涂层的装配对象的可能性。这种效果是由于在模块结构中使用了弹性波纹腔,当向其提供压缩空气时,可以纠正其中一个组装对象的位置。本文对装配模块的新设计进行了描述,并提供了计算模块设计参数的分析依赖关系。给出了装配模块参数的建模结果。主要的经济效果是降低工业机器人的技术装备成本,同时保持对装配过程条件的适应能力。
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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来源期刊
FME Transactions
FME Transactions ENGINEERING, MECHANICAL-
CiteScore
3.60
自引率
31.20%
发文量
24
审稿时长
12 weeks
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