degradable polymers

可降解聚合物
  • 文章类型: Journal Article
    3D打印材料的全球市场在过去十年中呈指数级增长。今天,光聚合物占全球材料销量的近一半。缺乏可持续的树脂,适用于可以与商业材料竞争的增值税光聚合,然而,限制了这项技术的广泛采用。“绿色”替代品的开发对于减少增材制造对环境的影响非常重要。本文回顾了用于3D打印的可持续光聚合物领域的最新发展。重点介绍了生物基树脂组分的合成和应用,如光固化单体和低聚物,以及来自自然资源的增强剂。此外,讨论了还原型光聚合中可生物降解和可回收的热固性产品的设计。一起,这些战略将促进新一代3D材料的准确和无浪费生产,以在不久的将来实现可持续的塑料经济。
    The global market for 3D printing materials has grown exponentially in the last decade. Today, photopolymers claim almost half of the material sales worldwide. The lack of sustainable resins, applicable in vat photopolymerization that can compete with commercial materials, however, limits the widespread adoption of this technology. The development of \"green\" alternatives is of great importance in order to reduce the environmental impact of additive manufacturing. This paper reviews the recent evolutions in the field of sustainable photopolymers for 3D printing. It highlights the synthesis and application of biobased resin components, such as photocurable monomers and oligomers, as well as reinforcing agents derived from natural resources. In addition, the design of biologically degradable and recyclable thermoset products in vat photopolymerization is discussed. Together, those strategies will promote the accurate and waste-free production of a new generation of 3D materials for a sustainable plastics economy in the near future.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Sci-hub)

公众号