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Additive Manufacturing as Integral Part of the Digital Solution Process - An Industrial Short Note

机译:添加剂制造为数字解决方案过程的组成部分 - 工业短纸条

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Within the last years additive manufacturing established itself in the industrial environment as cutting-edge technological possibility to reduce timeto-market and manufacturing costs and to take in account even the chance of reducing resources consumption. The paper figures that the digital development and production process chain also continues by stepping from virtual to physical world by using additive manufacturing means. This means, after all kind of sophisticated simulation based part and product optimisation, there is a time where you need parts to have a hand on, to test and verify them and even produce them in a new way to face actual economical and ecological challenges. The additive manufacturing technology bears also a paradigm shift: from manufacturing-driven design to design-driven manufacturing. Based on a longtime practical in-house experience state-of-the-art applications with already proven practical relevance (among them is the bionic handling assistant awarded with the German Prize for Achievements in Technology and Innovation) highlight this new freedom of design. Subsequent the current state of additive manufacturing as possibility for serial production will be discussed. There shows up both: real usable potentials and existing restrictions, too. The results of different research studies on PAbased specimen and parts manufactured by laser sintering (SLS) regarding mechanical properties, reproducibility, long-term behaviour and cost deployment will be presented. They pinpoint the huge progress of the last years but also further research needs to overcome mentioned obstacles for a continued and broader industrial application.
机译:在过去几年的添加剂制造中,在工业环境中建立了自己作为尖端技术的可能性,以减少时间市场和制造成本,并考虑到降低资源消耗的机会。纸质数字认为,数字开发和生产过程链也通过使用添加剂制造装置踩到物理世界来继续。这意味着,在所有类型的基于复杂的模拟的部分和产品优化之后,有一段时间需要零件才能握住,测试和验证它们,甚至以一种新的方式产生实际经济和生态挑战。添加剂制造技术也具有范式偏移:从制造驱动设计到设计驱动的制造。基于长期实际的内部内部经验,具有已经过验证的实际相关性的最先进的应用程序(其中包括在技术和创新方面取得的德国成就奖)颁发的仿生处理助理)突出了这一新的设计自由。随后将讨论当前添加剂制造状态作为连续生产的可能性。既有:真正可用的潜力和现有限制也会出现。将介绍关于通过激光烧结(SLS)制造的不同研究研究的结果,关于机械性能,再现性,长期行为和成本部署的激光烧结(SLS)。他们确定了过去几年的巨大进展,而且还需要克服持续和更广泛的工业应用的提到提到的障碍。

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