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首页> 外文期刊>Journal of Molecular and Engineering Materials >Four-Dimensional (4D) Printing: Applying Soft Adaptive Materials to Additive Manufacturing
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Four-Dimensional (4D) Printing: Applying Soft Adaptive Materials to Additive Manufacturing

机译:四维(4D)印刷:将软自适应材料应用于添加剂制造

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摘要

Four-dimensional (4D) printing is an up-and-coming technology for the creation of dynamic devices which have shape changing capabilities or on-demand capabilities over time. Through the printing of adaptive 3D structures, the concept of 4D printing can be realized. Modern manufacturing primarily utilizes direct assembly techniques, limiting the possibility of error correction or instant modification of a structure. Self-building, programmable physical materials are interesting for the automatic and remote construction of structures. Adaptive materials are programmable physical or biological materials which possess shape changing properties or can be made to have simple logic responses. There is immense potential in having disorganized fragments form an ordered construct through physical interactions. However, these are currently limited to only self-assembly at the smallest scale, typically at the nanoscale. The answer to customizable macro-structures is in additive manufacturing, or 3D printing. 3D printing is a 30 years old technology which is beginning to be widely used by consumers. However, the main gripes about this technology are that it is too inefficient, inaccessible, and slow. Cost is also a significant factor in the adoption of this technology. 3D printing has the potential to transform and disrupt the manufacturing landscape as well as our lives. 4D printing seeks to use multi-functional materials in 3D printing so that the printed structure has multiple response capabilities and able to self-assemble on the macroscale. In this paper, we will analyze the early promise of this technology as well as to highlight potential challenges that adopters could face. The primary focus will be to have a look at the application of materials to 3D printing and to show how these materials can be tailored to create responsive customized 4D structures.
机译:四维(4D)打印是一项新兴技术,用于创建动态设备,这些设备具有随时间变化的形状变化能力或按需功能。通过打印自适应3D结构,可以实现4D打印的概念。现代制造业主要利用直接组装技术,限制了结构的误差修正或即时修改的可能性。自动建造、可编程的物理材料对于结构的自动和远程建造非常有趣。自适应材料是可编程的物理或生物材料,具有改变形状的特性,或者可以使其具有简单的逻辑响应。通过物理相互作用,使无组织的碎片形成有序结构的潜力巨大。然而,目前它们仅限于最小规模的自组装,通常是纳米规模的自组装。可定制宏观结构的答案是添加式制造或3D打印。3D打印是一项有30年历史的技术,开始被消费者广泛使用。然而,关于这项技术的主要抱怨是,它效率太低,无法访问,速度太慢。成本也是采用这项技术的一个重要因素。3D打印有可能改变和扰乱制造业以及我们的生活。4D打印寻求在3D打印中使用多功能材料,以便打印结构具有多个响应能力,并能够在宏观尺度上自组装。在本文中,我们将分析这项技术的早期前景,并强调采用者可能面临的潜在挑战。主要重点将是了解材料在3D打印中的应用,并展示如何定制这些材料,以创建响应性定制的4D结构。

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