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Highly stretchable material beyond intrinsic limits using three-dimensional nanostructures and its fabrication method

机译:使用三维纳米结构的超出固有极限的高可拉伸材料及其制造方法

摘要

Using a three-dimensional nano-structure according to the present invention material unique or more high elastic limit and the preparation thereof presents a new way to dramatically increase the elastic limit can be through a three-dimensional nanostructured bulk materials through. The invention or regularly in the axial direction of each of the nano-porous polymeric material or size of 1 ~ 2000 nm range, that has an irregular shape are connected to each other in three dimensions or in part connected to each other with a three-dimensional nano-structure of the porous represents an aspect of the nano-size pores and has a porosity of the porous three-dimensional periodic nanostructures pattern made of a material having a nano structure, the polymer bulk material through the stress dispersion effect due to the three-dimensional porous nanostructured pattern or more of the elastic limit and the elasticity can be implemented, and provides a 3D nanostructured porous elastic polymeric materials and methods for their preparation. In addition, the elastic polymer material of the three-dimensional porous nanostructured may provide elasticity or elastic conductor magnetic material including a conductive material or a magnetic material. ;
机译:使用根据本发明的三维纳米结构的材料具有独特的或更高的弹性极限,并且其制备提出了显着提高弹性极限的新方法,可以通过三维纳米结构的块状材料来进行。本发明或规则地将具有不规则形状的每种纳米多孔聚合物材料的轴向或尺寸在1〜2000nm范围内的三个维度彼此连接,或部分地以三个维度彼此连接。多孔的三维纳米结构代表纳米尺寸孔的一个方面,并具有由具有纳米结构的材料制成的多孔三维周期性纳米结构图案的孔隙率,聚合物本体材料通过应力分散效应而产生可以实现三维多孔纳米结构图案或更多的弹性极限和弹性,并提供了一种3D纳米结构多孔弹性聚合物材料及其制备方法。另外,三维多孔纳米结构的弹性聚合物材料可以提供包括导电材料或磁性材料的弹性或弹性导体磁性材料。 ;

著录项

  • 公开/公告号KR101358988B1

    专利类型

  • 公开/公告日2014-02-11

    原文格式PDF

  • 申请/专利权人

    申请/专利号KR20120032794

  • 发明设计人 전석우;박준용;

    申请日2012-03-30

  • 分类号B82B1/00;H01B1/20;C08J5/18;

  • 国家 KR

  • 入库时间 2022-08-21 15:41:35

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