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How to teach additive manufacturing and 3D printing: Discussion about education of modern technology

机译:如何教授增材制造和3D打印:有关现代技术教育的讨论

摘要

Additive manufacturing (shortened as AM), or more commonly 3D printing, consists of wide variety of different modern manufacturing technologies. AM is based on direct printing of a digital 3D model to a final product which is fabricated adding material layer by layer. This is from where term additive manufacturing has its origin. It is not only material what is added, but it is also value, properties etc. which are added. AM enables production of different and even better products compared to conventional manufacturing technologies.An estimation of potential of additive manufacturing can be gathered by considering the potential of laser cutting, which is one of the most widely used modern manufacturing technologies. This technique has been used over 40 years, and whole market around this technology is at the moment c. four billion euros and yearly growth is around 10 %. One factor affecting this success of laser cutting is that laser cutting enables radical improvements to products made of flat sheet. AM and 3D printing will do the same for three dimensional parts. Laser devices, which are at the moment used in 3D printing, are globally at the moment only around 1% of all laser devices used in any fabrication technology, so even with a cautious estimate the potential growth of at least 100 % is coming in next few years.Role of education is very important, when this kind of modern technology is industrially implemented. When both generation entering to work life and also generation who has been a while in work life understands new technology, its potential and limitations, this is the point when also product design can be rethought Potential of product design is driving force for wide use of additive manufacturing and 3D printing.Utilization of additive manufacturing and 3D printing is also opportunity for Finland and Finnish industry. This technology can save Finnish manufacturing industry. This technique has stron potential, as Finland has traditionally strong industrial know-how and good ICT knowledge.
机译:增材制造(简称为AM),或更常见的是3D打印,由多种不同的现代制造技术组成。 AM基于直接将数字3D模型打印到最终产品上的最终产品,最终产品是逐层添加材料而制成的。这是术语增材制造的起源。所添加的不仅是材料,而且还包括价值,属性等。与传统制造技术相比,增材制造可以生产不同甚至更好的产品。可以通过考虑激光切割的潜力来估算增材制造的潜力,这是最广泛使用的现代制造技术之一。该技术已经使用了40多年,目前围绕该技术的整个市场都在c。 40亿欧元,年增长率约为10%。影响激光切割成功的一个因素是,激光切割可以从根本上改善由平板制成的产品。 AM和3D打印将对三维零件执行相同的操作。目前用于3D打印的激光设备目前在全球仅占任何制造技术中使用的所有激光设备的1%,因此,即使谨慎地估计,未来至少会有100%的潜在增长当这种现代技术在工业上得到应用时,教育的作用非常重要。当进入工作生活的一代以及已经工作了一段时间的一代都了解新技术,其潜力和局限性时,这就是可以重新考虑产品设计的时候了。产品设计的潜力是广泛使用添加剂的动力制造和3D打印。增材制造和3D打印的利用也是芬兰和芬兰工业的机会。这项技术可以拯救芬兰的制造业。该技术具有强大的潜力,因为芬兰传统上具有很强的工业知识和良好的ICT知识。

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  • 作者

    Piili Heidi; Salminen Antti;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 fi
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