• CN:11-2187/TH
  • ISSN:0577-6686

›› 2010, Vol. 46 ›› Issue (5): 88-92.

• 论文 • 上一篇    下一篇

仿生制造的生物成形方法

张德远;蔡军;李翔;姜兴刚;韩鑫;陈博   

  1. 北京航空航天大学机械工程及自动化学院
  • 发布日期:2010-03-05

Bioforming Methods of Bionic Manufacturing

ZHANG Deyuan;CAI Jun;LI Xiang;JIANG Xinggang;HAN Xin;CHEN Bo   

  1. College of Mechanical Engineering and Automation, Beihang University
  • Published:2010-03-05

摘要: 生物制造与仿生制造是机械领域与生物领域交叉产生的新领域。生物方式制造是利用生物手段的制造方法,已提出生物去除加工、生物约束成形、生物生长成形、生物连接成形、生物复制成形、生物自组织成形等加工成形方法。仿生制造是模拟生物形体与功能的结构制造,包括仿生材料结构、仿生表面结构、仿生运动结构等结构制造。仿生制造的结构往往比较复杂,利用增材快速原型和传统机械制造方法效率通常较低,利用生物方式制造方法往往更加简便和快捷。阐明生物成形方法在仿生微纳复杂形体、结构、功能界面制造上的优势,表明生物成形技术在节能、环保、微纳等领域具有广阔的应用前景。

关键词: 仿生制造, 生物成形, 生物制造, 微纳产品

Abstract: Biological & bionic manufacturing is a new intersectional innovative field of mechanical field and biological field. Biological manufacturing is to use biological species and materials as tools for manufacturing, different machining and forming methods are proposed, such as bio-removal machining, bio-bounded forming, bio-growing forming, bio-joining forming, bio-replicated forming, and bio-assembly forming. Bionic manufacturing is to imitate the shapes and functions of living creatures to produce different structures, such as the bionic material structures, bionic surface structures, bionic motion structures. The structures are usually complicated, to produce them with biological mode is a more convenient and faster way compared with the rapid prototyping method and traditional mechanical manufacturing method. The advantages of bio-forming technology in the field of bionic complex shape, structure and functional interfaces are demonstrated, which shows that bioforming technologies would have great potential applications in energy-saving, environmental protection, micro/nano fields.

Key words: Bioforming, Biological manufacturing, Bionic manufacturing, Micro/nano products

中图分类号: