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Development of optimized vacuum interrupters through virtual experimentation

机译:通过虚拟实验开发优化的真空灭弧室

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One of the pressures exerted by markets on companies is the continuous demand to reduce both product development times and costs. Companies are increasingly researching ways to reduce the design cycles by evaluating and changing the product development processes. The goal of leading companies is to achieve a real competitive advantage that enables them to provide customers with innovative and high quality products in less time. This paper shows how the application of simulation technologies over Vacuum Interrupters can increase the rate of generation, understanding and implementation of new knowledge, by means of a reduction of both the time-to-experiment and the learning cost. Following this approach, simulation can drive product development through knowledge. Virtual experiments are carried out to assess and optimize the Vacuum Interrupter (VI) brazing cycle in a high vacuum furnace, along with the mechanical, magnetic and dielectric behavior of the device, with the objective of matching both industrial and technical requirements, while keeping simulation focused on “quick-and-cheap” knowledge generation.
机译:市场对公司施加的压力之一是持续减少产品开发时间和成本的需求。公司越来越多地研究通过评估和更改产品开发流程来缩短设计周期的方法。领先公司的目标是获得真正的竞争优势,使他们能够在更短的时间内为客户提供创新和高质量的产品。本文展示了在真空灭弧室上应用仿真技术如何通过减少实验时间和学习成本来提高新知识的产生,理解和实施的速度。遵循这种方法,模拟可以通过知识来推动产品开发。进行虚拟实验以评估和优化高真空炉中的真空灭弧室(VI)的钎焊周期,以及该器件的机械,磁和介电性能,以匹配工业和技术要求,同时保持仿真专注于“快速而便宜”的知识生成。

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