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Additive Manufacturing Technologies: An Overview about 3D Printing Methods and Future Prospects

机译:添加剂制造技术:概述3D打印方法和未来前景

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摘要

The use of conventional manufacturing methods is mainly limited by the size of the production run and the geometrical complexity of the component, and as a result we are occasionally forced to use processes and tools that increase the final cost of the element being produced. Additive manufacturing techniques provide major competitive advantages due to the fact that they adapt to the geometrical complexity and customised design of the part to be manufactured. The following may also be achieved according to field of application: lighter weight products, multimaterial products, ergonomic products, efficient short production runs, fewer assembly errors and, therefore, lower associated costs, lower tool investment costs, a combination of different manufacturing processes, an optimised use of materials, and a more sustainable manufacturing process. Additive manufacturing is seen as being one of the major revolutionary industrial processes of the next few years. Additive manufacturing has several alternatives ranging from simple RepRap machines to complex fused metal deposition systems. This paper will expand upon the structural design of the machines, their history, classification, the alternatives existing today, materials used and their characteristics, the technology limitations, and also the prospects that are opening up for different technologies both in the professional field of innovation and the academic field of research. It is important to say that the choice of technology is directly dependent on the particular application being planned: first the application and then the technology.
机译:传统制造方法的使用主要受生产运行的尺寸和组件的几何复杂性的限制,因此我们偶尔会强制使用增加所生产元素的最终成本的工艺和工具。添加剂制造技术提供了主要的竞争优势,因为它们适应了要制造的部件的几何复杂性和定制设计。以下应用领域也可根据应用领域实现:较轻的重量产品,多国产品,人体工程学产品,高效的短生产运行,更少的装配误差,因此,降低相关成本,更低的工具投资成本,不同制造过程的组合,优化的材料使用以及更可持续的制造过程。添加剂制造被视为未来几年的主要革命性工业过程之一。添加剂制造具有几种从简单的重新装载机器到复杂的金属沉积系统的替代方案。本文将在机器的结构设计,历史,分类,今天现有的替代品,使用的材料及其特征,技术限制以及在专业创新领域开放的前景和学术研究领域。重要的是要说技术的选择直接依赖于计划的特定应用程序:首先是应用程序然后是技术。

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