(急)3D打印气凝胶的研究现状
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苏州大学

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TB34

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国家自然科学基金面上项目(51873134);江苏省高等学校自然科学重大研究(17KJA540002);南通市科技计划项目(JC2021043)


Research status of 3D printed aerogels
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Soochow University

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    摘要:

    气凝胶材料具有高比表面积、高孔隙率、低密度以及低热导率等诸多优良性能,被认为是21世纪的十大新材料之一。然而传统气凝胶由于其力学性能有限,难以经过后加工技术形成所需的复杂形状结构,满足实际应用的需求。因此,无需复杂后处理即定制化制备复杂形状结构材料的3D打印技术有望成为突破气凝胶材料应用瓶颈的先进制造技术。本文从3D打印气凝胶的技术种类和材料类型两个方面,综述了3D打印气凝胶材料的研究进展;归纳了3D打印气凝胶材料在阻燃隔热、介电和组织工程中的独特应用并展望了3D打印气凝胶的发展趋势。最后指出扩宽3D气凝胶材料的材料体系、开发更适应气凝胶打印的3D打印技术、提升打印精度与速度和深入研究3D打印气凝胶的可控孔隙结构对其性能的影响是未来的几个重要的研究方向。3D打印气凝胶材料的开发有望促进气凝胶材料的快速发展。

    Abstract:

    Aerogel materials have numerous interesting features, including a high specific surface area, high porosity, low density, and low thermal conductivity, and are regarded as one of the top ten novel materials of the twenty-first century. However, due to the mechanical characteristic’s limitations of typical aerogels, it is difficult to fabricate aerogels with complicated shape structure by post-processing, limiting their practical applicability. Therefore, 3D printing technology which can customize the shape of material without complex post-treatment is predicted to become an innovative manufacturing technology that overcomes these constraints in the applications of aerogel materials. This review discusses the development of 3D printing aerogels from printing methods and material classification; summarizes the unique applications of 3D printed aerogel materials in flame retardant thermal insulation, dielectric, and tissue engineering. The future development of 3D printed aerogel materials is prospected, and it is proposed to broaden the material system of 3D aerogel materials, develop 3D printing technology more suitable for aerogel printing, enhance the printing accuracy and speed, and investigate the influence of the controllable pore structure of 3D printing aerogels on its performance. The development of 3D printing aerogel materials is expected to promote the rapid development of aerogel materials. Key words: 3D printing; aerogel; extrusion; photo-curing; development

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张克勤,李婷婷,蒋望凯,胡建臣.(急)3D打印气凝胶的研究现状[J].精细化工,2022,39(10):

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  • 收稿日期:2022-03-29
  • 最后修改日期:2022-06-13
  • 录用日期:2022-06-13
  • 在线发布日期: 2022-09-17
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