Mahmood Ayyaz, Perveen Fouzia, Chen Shenggui, Akram Tayyaba, Irfan Ahmad
School of Mechanical Engineering, Dongguan University of Technology, Dongguan 523808, China.
School of Life Science and Technology, University of Electronic Science and Technology, Chengdu 610054, China.
Molecules. 2024 Jan 9;29(2):319. doi: 10.3390/molecules29020319.
Additive manufacturing (AM), commonly referred to as 3D printing, has revolutionized the manufacturing landscape by enabling the intricate layer-by-layer construction of three-dimensional objects. In contrast to traditional methods relying on molds and tools, AM provides the flexibility to fabricate diverse components directly from digital models without the need for physical alterations to machinery. Four-dimensional printing is a revolutionary extension of 3D printing that introduces the dimension of time, enabling dynamic transformations in printed structures over predetermined periods. This comprehensive review focuses on polymeric materials in 3D printing, exploring their versatile processing capabilities, environmental adaptability, and applications across thermoplastics, thermosetting materials, elastomers, polymer composites, shape memory polymers (SMPs), including liquid crystal elastomer (LCE), and self-healing polymers for 4D printing. This review also examines recent advancements in microvascular and encapsulation self-healing mechanisms, explores the potential of supramolecular polymers, and highlights the latest progress in hybrid printing using polymer-metal and polymer-ceramic composites. Finally, this paper offers insights into potential challenges faced in the additive manufacturing of polymer composites and suggests avenues for future research in this dynamic and rapidly evolving field.
增材制造(AM),通常被称为3D打印,通过实现三维物体复杂的逐层构建,彻底改变了制造格局。与依赖模具和工具的传统方法不同,增材制造提供了直接从数字模型制造各种部件的灵活性,而无需对机器进行物理改造。四维打印是3D打印的革命性扩展,它引入了时间维度,使打印结构在预定时间段内实现动态转变。这篇全面的综述聚焦于3D打印中的聚合物材料,探讨它们在热塑性塑料、热固性材料、弹性体、聚合物复合材料、形状记忆聚合物(SMPs)(包括液晶弹性体(LCE))以及用于四维打印的自愈聚合物等方面的通用加工能力、环境适应性和应用。本综述还研究了微血管和封装自愈机制的最新进展,探索了超分子聚合物的潜力,并突出了使用聚合物 - 金属和聚合物 - 陶瓷复合材料进行混合打印的最新进展。最后,本文深入探讨了聚合物复合材料增材制造中面临的潜在挑战,并为这个充满活力且快速发展的领域提出了未来研究的方向。