3D和4D打印作为工业4.0的集成制造方法

Antreas Kantaros, T. Ganetsos, D. Piromalis
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引用次数: 9

摘要

3D打印,也被称为增材制造,是一种允许使用数字模型和许多材料(如塑料,金属和陶瓷)创建复杂和高度详细的物体的技术。4D打印是3D打印的扩展,结合了时间,这意味着3D打印中使用的材料可以随着时间的推移改变形状或属性。在工业4.0的背景下,这项技术变得越来越重要,其特点是将尖端技术(包括人工智能、物联网和先进机器人技术)集成到制造过程中。在工业4.0中,3D和4D打印正被用于创建定制产品,提高供应链效率,降低成本和交货时间。此外,3D和4D打印也被用于航空航天、再生医学、牙科和汽车等领域,以制造复杂的几何形状和部件,这些部件使用传统生产技术是具有挑战性或不可能制造的。此外,4D打印在新兴的、新颖的领域开辟了新的机会,在这些领域,创造适应和随时间变化的材料的能力是非常有益的。
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3D and 4D Printing as Integrated Manufacturing Methods of Industry 4.0
: 3D printing, also known under the term additive manufacturing, is a technology that allows the creation of complex and highly detailed objects using a digital model and a number of materials, such as plastics, metals, and ceramics. 4D printing is an expansion of 3D printing that incorporates time, meaning that the material used in 3D printing can change shape or properties over time. This technology is becoming increasingly important in the context of Industry 4.0, characterized by the Integration of cutting-edge technologies, including artificial intelligence, the internet of things, and advanced robotics into manufacturing processes. In Industry 4.0, 3D and 4D printing is being used to create customized products, improve supply chain efficiency and reduce costs and lead times. Additionally, 3D and 4D printing is also being utilized in sectors like aerospace, regenerative medicine and dental, and automotive to create complex geometries and parts that would be challenging or impossible to create using conventional production techniques. Furthermore, 4D printing opens up new opportunities in emerging, novel, sectors where the ability to create materials that adapt and change over time can be highly beneficial.
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