首页> 美国卫生研究院文献>Springer Open Choice >A bio-inspired approach for the design of a multifunctional robotic end-effector customized for automated maintenance of a reconfigurable vibrating screen
【2h】

A bio-inspired approach for the design of a multifunctional robotic end-effector customized for automated maintenance of a reconfigurable vibrating screen

机译:生物启发的方法用于设计多功能机器人末端执行器该末端执行器经过定制可自动维护可重新配置的振动筛

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

The development of a robotic-driven maintenance solution capable of automatically maintaining reconfigurable vibrating screen (RVS) machine when utilized in dangerous and hazardous underground mining environment has called for the design of a multifunctional robotic end-effector capable of carrying out all the maintenance tasks on the RVS machine. In view of this, the paper presents a bio-inspired approach which unfolds the design of a novel multifunctional robotic end-effector embedded with mechanical and control mechanisms capable of automatically maintaining the RVS machine. To achieve this, therblig and morphological methodologies (which classifies the motions as well as the actions required by the robotic end-effector in carrying out RVS machine maintenance tasks), obtained from a detailed analogy of how human being (i.e. a machine maintenance manager) will carry out different maintenance tasks on the RVS machine, were used to obtain the maintenance objective functions or goals of the multifunctional robotic end-effector as well as the maintenance activity constraints of the RVS machine that must be adhered to by the multifunctional robotic end-effector during the machine maintenance. The results of the therblig and morphological analyses of five (5) different maintenance tasks capture and classify one hundred and thirty-four (134) repetitive motions and fifty-four (54) functions required in automating the maintenance tasks of the RVS machine. Based on these findings, a worm–gear mechanism embedded with fingers extruded with a hexagonal shaped heads capable of carrying out the “gripping and ungrasping” and “loosening and bolting” functions of the robotic end-effector and an electric cylinder actuator module capable of carrying out “unpinning and hammering” functions of the robotic end-effector were integrated together to produce the customized multifunctional robotic end-effector capable of automatically maintaining the RVS machine. The axial forces (F1t and F2t), normal forces (Fn) and total load (Fd) acting on the teeth of the worm–gear module of the multifunctional robotic end-effector during the gripping of worn-out or new RVS machine subsystems, which are 978.547, 1245.06 and 1016.406 N, respectively, were satisfactory. The nominal bending and torsional stresses acting on the shoulder of the socket module of the multifunctional robotic end-effector during the loosing and tightening of bolts, which are 1450.72 and 179.523 MPa, respectively, were satisfactory. The hammering and unpinning forces utilized by the electric cylinder actuator module of the multifunctional robotic end-effector during the unpinning and hammering of screen panel pins out of and into the screen panels were satisfactory.
机译:当在危险和危险的地下采矿环境中使用时,能够自动维护可重构振动筛(RVS)机器的机器人驱动维护解决方案的开发,要求设计一种能够执行所有维护任务的多功能机器人末端执行器。 RVS机器。有鉴于此,本文提出了一种生物启发的方法,该方法展现了一种新型的多功能机器人末端执行器的设计,该末端执行器嵌入了能够自动维护RVS机器的机械和控制机制。为了实现这一目标,我们从人类的详细类比(即机器维护经理)那里获得了rbrblig和形态学方法论(将机器人末端执行器在执行RVS机器维护任务时的动作和动作分类)。将在RVS机器上执行不同的维护任务,用于获得多功能机器人末端执行器的维护目标功能或目标,以及多功能机器人末端必须遵守的RVS机器的维护活动约束,机器维护期间的效应器。五(5)个不同维护任务的热重分析和形态分析的结果捕获并分类了RVS机器维护任务自动化所需的一百三十四(134)个重复运动和五十四(54)个功能。基于这些发现,蜗杆齿轮机构嵌有六边形头部伸出的手指,能够执行机器人末端执行器的“抓握和松开”和“松动和螺栓固定”功能,以及能够实现将执行机器人末端执行器的“解钉和锤击”功能集成在一起,以生产能够自动维护RVS机器的定制多功能机器人末端执行器。在抓紧破旧的或新的RVS机器子系统时,作用在多功能机器人末端执行器的蜗轮齿轮模块的齿上的轴向力(F1t和F2t),法向力(Fn)和总负载(Fd), N分别为978.547、1245.06和1016.406。在松动和拧紧螺栓期间,作用在多功能机器人末端执行器插座模块的肩上的名义弯曲应力和扭转应力分别为1450.72和179.523 MPa是令人满意的。多功能机器人末端执行器的电动缸执行器模块在将屏幕面板销钉从屏幕面板拔出和刺入过程中所利用的锤击和松开力是令人满意的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号