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Additive (nano)manufacturing perspectives: the use of nanofillers and tailored materials

机译:添加剂(纳米)制造的观点:纳米填料和量身定制的材料的使用

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Additive manufacturing (AM) is identified to cost-effectively lower manufacturing inputs and outputs in small batch production, widely employed in customized and high-value manufacturing chains, such as aerospace and medical component manufacturing. Additive manufacturing has the potential to significantly lower life cycle energy demands of products and their CO_2 emissions. Moreover, AM holds promise of overturning many aspects of the economics of manufacturing, as it pays no heed to unit labour costs or traditional economies of scale. Advances in AM technology are yielding faster production times and enabling objects to be printed in multiple combinations of materials, colours and surface finishes. A significant portion of these advances lie on the development of advanced materials for AM processes, which is undeniably one of the main driving forces of the transition from Rapid Prototyping to the Direct Digital Manufacturing era. Industries are nowadays at the inflection point for AM technologies, which have moved from a much-hyped but largely unproven manufacturing processes, to a mature technological solution, with numerous competitive advantages and the ability to produce real, innovative, complex and robust products.
机译:增材制造(AM)被认为可以经济有效地降低小批量生产中的制造投入和产出,广泛用于定制化和高价值的制造链中,例如航空航天和医疗组件制造。增材制造有潜力显着降低产品生命周期的能源需求及其CO_2排放量。此外,AM还有望推翻制造业经济学的许多方面,因为它不注意单位人工成本或传统规模经济。增材制造技术的进步带来了更快的生产速度,并使物体能够以多种材料,颜色和表面光洁度的组合进行打印。这些进步的很大一部分在于用于增材制造工艺的先进材料的开发,无可否认,这是从快速原型发展到直接数字制造时代的主要推动力之一。如今,工业正处于AM技术的转折点,AM技术已经从大肆宣传但基本上未经验证的制造工艺转变为具有众多竞争优势和生产真实,创新,复杂而强大的产品能力的成熟技术解决方案。

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