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Technology Evaluation of Autonomous Robotic Systems for Industrial Floor Grinding Applications

Technology Evaluation of Autonomous Robotic Systems for Industrial Floor Grinding Applications
工业地板打磨应用自主机器人系统的技术评估
批准号:
517682-2017
负责人:
Hoemsen, Raymond
金额:
$5.46万
依托单位国家:
加拿大
项目类别:
Applied Research and Development Grants - Level 2
财政年份:
2018
资助国家:
加拿大
项目状态:
已结题
起止时间:
2018-01-01 至 2019-12-31

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中文摘要
翻译
Antex Western是一家100%的加拿大独资公司,是商业建筑产品,装修和施工的领导者,包括软地板(地毯,衬垫和其他软表面),硬表面(石材,瓷砖,水磨石,reazzo,抛光混凝土和混凝土修复)和其他建筑专业。安泰斯为多个行业的客户和业主提供服务,如教育机构、体育场馆、博物馆、机场、医院和其他办公综合体。该公司目前正在建造一个专门的抛光混凝土地板结构,嵌入装饰骨料,如特定的石头和玻璃。安装抛光地板的过程包括浇注配方混凝土-骨料混合物,逐步研磨和抛光操作,以达到所需的细节和精加工。****抛光混凝土地板的安装需要使用便携式手持式研磨机研磨和抛光铸造地板的周边(所有地板边缘/角落),这是一项费力、昂贵且过度依赖操作人员的活动。磨边/磨角是最关键的活动之一,它决定了地板的水平度,并为整个地板结构的磨削提供了起点。尽管大型和半自动化设备可用于研磨大部分混凝土地面系统,但研磨地板边缘/角落仍然是人工和劳动密集型的活动。目前,安泰克斯还没有找到现成的或现有的定制地板研磨解决方案来应对这些挑战。因此,Antex正在与红河学院(RRC)的航空航天与制造技术访问中心(TACAM)合作,设计、集成和实施机器人地板边缘/角磨解决方案。****本项目将开发用于工业地板研磨应用的自主机器人系统原型。协作机器人、传感器、视觉系统、表面轮廓系统和末端执行器将与当前的工业地面磨削/抛光工艺集成,特别是用于边缘/角磨应用。原型系统的自主性将通过将协作机器人与现有的自动工厂车辆、机器导航系统和目标检测功能集成来实现。该综合系统将配备特定的传感器,并对地板的质量进行实时检测。该设备将由内置的可充电电池供电,并将在设计上纳入安全功能,以防止安全隐患。自动化将提高刀具的精度和精度、产品质量、安全性和生产率。该项目预计将通过减少人类对噪音和粉尘的暴露,提高可重复性和提高产品质量,提高生产率,推动机器人技术的极限,为安泰克斯西部公司和加拿大带来巨大的经济和工业效益。开发的自主机器人地板研磨解决方案将是建筑行业独有的,具有扩展和适应其他类似应用的能力。****RRC将利用学院在机器人和自动化方面的现有资产和能力,以及机器人编程(包括机器人操作系统- ROS)和组件制造方面的专业知识来交付该项目。此外,RRC和Antex将与第三方机械系统设计师和设备制造商合作,设计和开发适当的工具和仪器。**
英文摘要
Antex Western, a 100 percent Canadian owned company, is a leader in commercial building products, renovations and construction, including soft flooring (carpet, underlays and other soft surfaces), hard surfaces (stone, tile, terrazzo, reazzo, polished concrete and concrete remediation) and other construction specialties. Antex serves clients and owners across several industries such as educational institutions, sports complexes, museums, airports, hospitals and other office complexes. The company is currently building a specialized polished concrete floor structure, with embedded decorative aggregates such as specific stones and glasses. The process of installing the polished floor includes casting of the formulated concrete-aggregate mixture and step-by-step grinding and polishing operations to achieve desired details and finishing. ****Installation of the polished concrete floor requires using portable hand-held grinders in grinding and polishing the perimeter of the cast floor (all floor edges/corners), which is a laborious, expensive and excessively operator-dependent activity. The edge/corner grinding is one of the most critical activities in that it determines the levelness of the floor and provides the starting point for the grinding of the entire floor structure. Although, large and semi-automated equipment are available for grinding the bulk of the concrete floor system, grinding of the floor edges/corners remain a manual and labor-intensive activity. At present, Antex has not found an off-the-shelf or an existing custom floor grinding solution for addressing these challenges. Therefore, Antex is partnering with the Technology Access Centre for Aerospace and Manufacturing (TACAM) at Red River College (RRC), to design, integrate and implement a robotic floor edge/corner grinding solution.****A prototype autonomous robotic system for industrial floor grinding applications will be developed in this project. Collaborative robots, sensors, vision systems, surface profiling systems and end-effectors will be integrated with the current industrial floor grinding/polishing processes, specifically for the edge/corner grinding application. Autonomy of the prototype system will be achieved by integrating the collaborative robot with an existing autonomous factory vehicle, with machine navigation systems and object detection capabilities. The integrated system will be equipped with specific sensors and real-time inspection of the quality of the floor. The device will be powered by an in-built rechargeable battery and will incorporate safety features on the design to prevent safety hazards. Improvement on the tool precision and accuracy, product quality, safety and productivity will be achieved with automation. This project is anticipated to have a huge economic and industrial benefit to Antex Western and Canada by reducing human exposure to noise and dust, enhancing repeatability and improving product quality, increasing productivity, and pushing the limits of robotic technologies. The developed autonomous robotic floor grinding solution will be unique to the construction industry, with the capability to scale and adapt to other similar applications.****RRC will capitalize on the College's existing assets and capabilities in robotics and automation, and expertise in robotic programing (including Robot Operating System - ROS) and components fabrication to deliver this project. In addition, RRC and Antex will work with third party mechanical systems designers and equipment manufacturers to design and develop appropriate tools and instruments. **
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会议论文
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国内基金
海外基金
基于重要农地保护LESA(Land Evaluation and Site Assessment)体系思想的高标准基本农田建设研究
  • 批准号:
    41340011
  • 项目类别:
    专项基金项目
  • 资助金额:
    20.0万元
  • 批准年份:
    2013
  • 负责人:
    钱凤魁
  • 依托单位: