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Adaptive Platforms and Flexible Deposition System for Big Area Additive Manufacturing (BAAM)

机译:大面积增材制造(BAAM)的自适应平台和灵活的沉积系统

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摘要

The interest around the additive manufacturing is increasing, with more and more solutions at both the industrial and desktop levels. As this is still a relatively recent issue for several industrial areas, there is a clear opportunity to explore in order to optimize the systems in the face of the needs of these same industries, and with increasing times, there are increasing factors to take into ac- count in initial phases of new product development. Presently, there is also a growing ecological awareness, with the concern of implementing a logic of waste reduction and implementation of the circular economy in new products with a view to the valuation of new alternative materials. With the development of solutions aimed at the optimization and feasibility of large additive manufacturing systems, the introduction of new alternative materials will be a reality, presenting in this article a solution and methodology for future tests for new materials. Thus, herein is studied a way of responding to both problems, new ecological materials and BAAM system optimization, presented through a hybrid and flexible solution based on the Pin Bed Forming principle applied to Big Area Additive Manufacturing systems.
机译:随着工业和台式机领域越来越多的解决方案,围绕增材制造的兴趣正在增长。由于这对于多个工业领域而言仍是一个相对较新的问题,因此面对这些相同行业的需求,存在明显的机会来探索以优化系统,并且随着时间的推移,越来越多的因素需要考虑到交流。 -计入新产品开发的初始阶段。当前,人们对生态的认识也越来越高,关注的是在新产品中实施减少浪费的逻辑和实施循环经济,以期评估新的替代材料。随着针对大型增材制造系统的优化和可行性解决方案的开发,引入新的替代材料将成为现实,在本文中为未来的新材料测试提供了一种解决方案和方法。因此,本文研究了一种基于新的生态材料和BAAM系统优化的方法,该方法通过基于适用于大面积增材制造系统的针床成型原理的混合灵活解决方案提出。

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