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BCP与谢菲尔德大学先进制造研究中心就可重构地板结构进行合作
中国玻璃纤维复合材料信息网 (cnbxfc.net) 发布日期: 2018-09-01  阅读: 4875  字体:  双击鼠标滚屏
BCP(定制复合材料板)与谢菲尔德大学先进制造研究中心(AMRC)合作,制造了可重新配置的地板结构,用于安装各种机器人和机械。



 
  BCP与谢菲尔德大学先进制造研究中心就可重构地板结构进行合作
  AMRC在帮助企业克服制造问题方面享誉全球,他们可以协助组织的一个领域是自动化研究。
  使用机器人自动化生产需要一个可以运行机器人的坚实数据。可重新配置的地板隐藏了电缆,使工厂组件(如机器人,工具和工件夹持)能够根据生产变化的要求快速准确地重新定位。这对中小型企业(SME)有利,因为它们通常会进行小批量生产并定期更改生产方法,需要定期重组工厂。
  BCP为AMRC提供铝蜂窝复合材料中心,边角和角落地板,以构成一系列高承载但轻质的沟槽盖。压碎强度为235 psi时,可以手动移除面板,以便快速接入电缆并重新配置工作单元。
 

 
  目前,这种地板和机器人配置通过在适应性固定装置(装配夹具)上拾取和连接C部分来展示用于螺柱墙壁的框架的组装。该平台是建筑行业的先锋,因为在不到半天的时间内,地板和机器人可以重新布置以执行不同的应用,例如钢模具的自动磨削。它显示了许多不同的应用程序以及能够快速更改应用程序,任务和pod布局的独特功能。
  AMRC集成制造集团项目工程师George Sleath MEng说:
  “我们最近与BCP合作开发了一种用于安装各种机器人和机械的可重构地板结构。地板设计允许快速转向和设置用于帮助中小企业探索潜在自动化应用的研究单元。BCP提供的服务非常好,我强烈推荐他们。他们非常了解在项目的初步设计阶段提供帮助和专业知识,帮助我们以具有成本效益的价格设计完美的组件。最终的复合板质量非常高,并按时交付到紧迫的最后期限。“

原文如下:

  Working in conjunction with the University of Sheffield's Advanced Manufacturing Research Centre (AMRC) with Boeing, BCP (Bespoke Composite Panels) have manufactured a reconfigurable floor structure used to mount various robots and machinery.
  BCP collaborates with the University of Sheffield Advanced Manufacturing Research Centre on reconfigurable floor structure
  BCP collaborates with the University of Sheffield Advanced Manufacturing Research Centre on reconfigurable floor structure
  AMRC has a global reputation for helping companies overcome manufacturing problems and one of the areas they can assist organisations is with research into automation.
  Automating production using robots requires a solid datum from which the robots can operate. A reconfigurable floor conceals cables and enables factory components, such as robots, tooling and work holding, to be quickly and accurately relocated as changing production dictates. This benefits small and medium enterprises (SMEs) as they will typically run small batch productions and change their production methods regularly, requiring reorganising their factory regularly.
  BCP provided the AMRC with aluminium honeycomb composite centre, edge and corner floor panels to make up a series of high load bearing but lightweight trench covers. With a crush strength of 235 psi, the panels can manually be removed for quick cable access and reconfiguring of the work cell.
  BCP collaborates with the University of Sheffield Advanced Manufacturing Research Centre on reconfigurable floor structure
  Currently this floor and robot configuration demonstrates the assembly of frames for stud walling by picking and joining C sections on an adaptable fixture (assembly jig). This platform is pioneering for the construction industry as in less than half a day the floor and robots can be rearranged to perform a different application, such as autonomous grinding of steel tooling. It shows lots of different applications and the unique function of being able to quickly change applications, tasks and pod layout.
  George Sleath MEng, Project Engineer, The AMRC’s Integrated Manufacturing Group, said:
  “We recently worked with BCP on a reconfigurable floor structure used to mount various robots and machinery. The floor design allows for fast turn around and setup of a research cell used to help SMEs explore potential automation applications. The service provided by BCP was excellent and I would highly recommend them. They were very knowledgeable in providing help and expertise at the preliminary design stage of the project, helping us to design the perfect components at a cost-effective price. The final composite panels were of very high quality and were delivered on time to a tight deadline.”

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