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Current and future impact of 3D printing on the separation sciences

机译:3D打印对分离科学的当前和未来影响

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The potential of 3D printing to transform the field of separation science is becoming clear, based upon an increasing capacity to create highly customised devices, materials and structures, with complex geometries. The constantly improving print resolution and increasing variety of available print materials, including functional and composite materials, mean devices can be printed today, which would be extremely challenging to achieve using traditional manufacturing techniques. This review covers the majority of 3D printed devices to-date designed for use within the separation sciences, categorised under application within pre-separation, separation, and post-separation stages of analysis. It describes the impact 3D printing is having on the field, both current and future, recent achievements and challenges, and improvements required to reach its maximum potential as a transformative technology. (c) 2018 Elsevier B.V. All rights reserved.
机译:3D打印转换分离科学领域的潜力变得清晰,基于越来越多的能力,以创建高度定制的设备,材料和结构,具有复杂的几何形状。 不断提高的印刷材料和越来越多的可用印刷材料,包括功能性和复合材料,可打印平均装置,即使用传统制造技术实现的是极为挑战性。 本次审查涵盖了迄今为止的大多数3D印刷设备,用于在分离科学中使用,在分离预分离,分离和分离后分析后的应用中进行分类。 它描述了影响3D打印在现场,当前和未来,最近的成果和挑战,以及达到其变换技术最大潜力所需的改进。 (c)2018 Elsevier B.v.保留所有权利。

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