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An innovative educational concept of teleworking in the high precision metrology laboratory to develop a model of implementation in the advanced manufacturing industry

机译:高精度计量实验室中远程工作的创新教育理念,为先进制造业开发实施模型

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The production of very precise components goes hand in hand with the development of the necessary metrology, and a wide range of measuring instruments has been devised to cater for the evaluation of surfaces and structures down to the nanometric scale. The advancement in the industry requires this special infrastructure, equipment and expertise that are of high cost if integrated into the organization. Amid the challenges of competitive, sustainable and smart technologies in the advanced manufacturing industry, organizations have focused on the flexibility, efficiency and quality of processes by means of teleworking that does not limit the resources to a location, time difference or facility. As teleworking becomes more thoroughly ingrained in an industry, the requirement of necessary metrology, and a wide range of measuring instruments that can be found in a high precision metrology laboratory will accommodate the rising demand of the services. Due to the current global economic development, more and more pressure is exerted on the industries, At the same time comprehensive knowledge in the areas of market requirements, product/process development and design, advanced metrology, and end of life management are important presuppositions to achieve rapid, agile, waste free and cost-effective production of innovative, customized complex products using next-generation materials as well as to protect the environment by making zero emissions and improve environmental sustainability and reduce the use of energy within the smart manufacturing systems. This paper proposes a strategic approach to develop a remotely controlled high precision metrology system with high accuracy as well as with the smallest measurement uncertainties for the microand nanotechnologies and intelligent integrated management system applicable in smart manufacturing industry. This is of extreme importance in present time of worldwide international competition in industry and production engineering an- at the same time increasingly higher costs of energy and raw material.
机译:精密零件的生产与必要计量学的发展齐头并进,并且已经设计出各种各样的测量仪器来满足对直至纳米尺度的表面和结构的评估。行业的发展需要这种特殊的基础架构,设备和专业知识,如果将它们集成到组织中,则成本很高。面对先进制造业中竞争,可持续和智能技术的挑战,组织通过远程办公将重点放在流程的灵活性,效率和质量上,而远程办公并不将资源限制在位置,时差或设施上。随着远程办公在行业中变得更加根深蒂固,对必要计量的要求以及在高精度计量实验室中可以找到的各种测量仪器将满足不断增长的服务需求。由于当前的全球经济发展,对行业施加了越来越大的压力,与此同时,在市场需求,产品/工艺开发和设计,先进的计量学以及寿命终止管理等方面的全面知识是以下方面的重要前提:使用下一代材料实现快速,灵活,无浪费且经济高效的创新,定制化复杂产品生产,并通过实现零排放,改善环境可持续性和减少智能制造系统中的能源使用来保护环境。本文提出了一种战略性方法,以开发适用于智能制造行业的微米级,纳米级技术和智能集成管理系统,以其高精度和最小的测量不确定性来开发一种高精度的远程控制度量衡系统。在当今世界范围内的工业和生产工程国际竞争中,这同时具有极其重要的意义,与此同时,能源和原材料的成本也越来越高。

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