聚乳酸
3D打印
材料科学
模块化设计
粘附
纳米技术
高分子科学
高分子化学
复合材料
聚合物
计算机科学
程序设计语言
作者
Wenjun Peng,Haiping Xia,Jingjun Wu,Zizheng Fang,Xianming Zhang
标识
DOI:10.1002/adfm.202503682
摘要
Abstract 3D printing, such as fused deposition modeling (FDM), is an advanced 3D shaping technology, employing a layer‐by‐layer process to construct 3D objects. However, the weak interlayer bonding restricts the performance and functionality of FDM‐fabricated parts. Herein, boronate bond exchange is utilized to enhance interlayer mechanical strength and enable modular 4D printing of polylactic acid (PLA). Blending the dynamic system endows PLA with improved interlayer adhesion and welding capabilities. The blended filaments demonstrate excellent printability, with a 150% enhancement in Z‐axis interlayer strength, while nearly unchanged along the X‐axis. Moreover, this enhanced interlayer bonding facilitates the modular assembly of intricate structures, eliminating the need for traditional 3D‐printed supports. Combined with shape memory effects, diverse modular 4D printing possibilities are demonstrated. This strategy highlights the potential of dynamic covalent bonds in 3D printing, enhancing not only material performance but also intelligent designs.
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