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增材制造高性能工程聚合物的研究进展

Research Progress High-performance Engineering Polymers Based on Additive Manufacturing

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【作者】 李鹏微姬忠莹赵红梅张昀郭玉雄王晓龙

【Author】 Li Pengwei;Ji Zhongying;Zhao Hongmei;Zhang Yun;Guo Yuxiong;Wang Xiaolong;State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics;School of Chemistry and Chemical Engineering, Shihezi University;Yantai Zhongke Research Institute of Advanced Materials and Green Chemical Engineering;Lanzhou Stomatological Hospital;

【通讯作者】 郭玉雄;

【机构】 中国科学院兰州化学物理研究所固体润滑国家重点实验室石河子大学化工学院烟台中科先进材料与绿色化工产业技术研究院兰州市口腔医院

【摘要】 高性能工程聚合物及其3D打印技术具有耐高温、机械性能优异、精度高、微型化、可实现复杂构件的快速制造等优势,在航空航天、化工、汽车制造、微电子等领域受到广泛关注和迅速发展。如何开发直接工程化应用的3D打印高性能聚合物材料,是制约该技术在众多领域中广泛应用的关键问题。为此,本文从聚合物3D打印技术、高性能聚合物3D打印材料及相关应用三个方面,对高性能工程聚合物3D打印材料的研究与应用进行综合评述,以期为3D打印高性能工程聚合物材料的研发与应用提供新的方向与思路。

【Abstract】 High performance engineering polymer and its 3D printing technology have many advantages, such as high temperature resistance, excellent mechanical properties, high precision, miniaturization, rapid manufacturing of complex components and so on. it has attracted wide attention and rapid development in aerospace, chemical industry, automobile manufacturing, microelectronics and other fields. How to develop 3D printing high performance polymer materials for direct engineering applications is a key problem that restricts the wide application of this technology in many fields. Therefore, this paper makes a comprehensive review on the research and application of high-performance engineering polymer 3D printing materials from three aspects: polymer 3D printing technology, high-performance polymer 3D printing materials and related applications. in order to provide new directions and ideas for the research and application of 3D printing high-performance engineering polymer materials.

【基金】 中央引导地方科技发展资金项目“高性能聚酰亚胺3D打印材料关键技术、应用及其产业化”(项目编号:23ZYQA315);甘肃省自然科学基金“无托槽隐形矫治器增材制造及其表面功能化”(项目编号:22JR5RA1062);兰州市科技计划项目“基于多模影像的光固化3D打印PEEK关键材料研制与应用”(项目编号:2023-2-30);兰州市城关区科技计划项目“自润滑氰酸醋树脂增材制造及其应用探索”(项目编号:2022JSCX0040)
  • 【文献出处】 当代化工研究 ,Modern Chemical Research , 编辑部邮箱 ,2024年07期
  • 【分类号】TQ317
  • 【下载频次】47
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