Recyclable and High-Performance Thermosetting Polymers for Digital Light Processing 3D Printing

Yingfan Zhang, Haohuan Wang, Senyuan Yang, Zhengyong Huang
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Abstract

The current DLP 3D printing resins have poor mechanical properties and are not recyclable. In this study, the hybrid of epoxy resin, polysulfide rubber, soybean-oil-based acrylates, and 3D printing resin is prepared to achieve high mechanical performance and recovery of 3D printing via dual curing. 1,5,7-triazabicyclo [4.4.0] dec-5-ene is added to the matrix material to enable transesterification in the network. The break and formation of disulfide bonds at high temperatures synergistically promote the transesterification reaction. The resultant resin has a tensile strength of 83 MPa and flexural strength of 129 MPa, which are much greater than the current DLP 3D printing resin. The resultant resin can degrade insolvent with a recovery rate of 98% after 8 days. The recyclable 3D printing material with high-performance shows a promising application in the green manufacturing engineering field.
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用于数字光处理3D打印的可回收和高性能热固性聚合物
目前的DLP 3D打印树脂机械性能差,不可回收利用。本研究制备了环氧树脂、聚硫橡胶、大豆油基丙烯酸酯和3D打印树脂的混合材料,通过双重固化实现了高机械性能和3D打印的高回收率。在基体材料中加入1,5,7-三氮杂环[4.4.0]十二-5-烯,使网络中发生酯交换反应。高温下二硫键的断裂和形成协同促进了酯交换反应。所得树脂的抗拉强度为83 MPa,抗折强度为129 MPa,大大高于目前的DLP 3D打印树脂。该树脂可降解溶剂,8天后回收率达98%。高性能的可回收3D打印材料在绿色制造工程领域具有广阔的应用前景。
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