Wang Xianfeng
Professor Supervisor of Doctorate Candidates
Main positions:南航无锡院复合材料工艺及装备研究所所长
Other Post:中国复合材料学会理事、中国复合材料装备制造委员会理事
Gender:Male
Alma Mater:哈尔滨工业大学
Education Level:博士毕业
Degree:Doctoral Degree in Engineering
School/Department:College of Material Science and Technology
Discipline:Material Process Engineering. Material Science
Business Address:D10-A413
Contact Information:15077848968
E-Mail:
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Affiliation of Author(s):材料科学与技术学院
Journal:TRANSACTIONS OF THE CANADIAN SOCIETY FOR MECHANICAL ENGINEERING
Key Words:fiber placement trajectory composite materials centroid curve
Abstract:Due to its light weight and high strength, carbon fiber reinforcement resin based composite (CFRC) has been widely used in aerospace, military, and many other industries. As the manufacturing technology develops, the geometry of CFRC components has seen significant changes, such as closed surface from the traditional open surface, or quite sophisticated topologies from simple shapes. As a result, fabrication of CFRC is confronted with challenging issues related to the design of fiber placement trajectory for optimal performance. In this paper, a trajectory generating algorithm is proposed based on the centroid curve of a quasi-rotational structure, where the centroid curve is the connection of centroids of the cross-sections of the structure. After the centroid curve of the component is achieved, the cross-section profiles perpendicular to the centroid curve can be determined. An efficient number of profiles are identified to avoid any overlap among neighboring profiles along the centroid curve. In this manner, the essential data for ultimate trajectory design are eventually obtained that can precisely reflect placement angles. The present work will effectively enhance the accuracy of trajectory of fiber placement and promote the mechanical property of CFRC components.
ISSN No.:0315-8977
Translation or Not:no
Date of Publication:2018-09-01
Co-author:Wang, Huaqiao,xj,Xiaojun Zhu
Correspondence Author:Wang Xianfeng
教授,中国船舶技术专家、SAMPE中国常务理事、中国复合材料装备制造委员会常务理事。
2008年毕业于哈尔滨工业大学,机械制造及其自动化专业,同年就职于南京航空航天大学至今。长期从事缠绕、铺带、铺丝等复合材料自动化成型技术研究,先后参与研制国内第一台缠绕用摆杆式张力控制器、第一台卧式自动铺带机、第一台龙门式自动铺丝机以及多种结构形式的特种数控复合材料成型装备;主持完成飞机中后机身、尾椎、翼身融合机身、尾翼以及复杂S型进气道等复杂构件的轨迹设计工作,搭建了国内第一套自动铺带/铺丝软件系统。先后主持国家级项目八项、参与国家级、省部级项目二十余项;发表论文三十余篇,获授权国家发明专利二十余项;先后获国家科技进步一等奖一项,省科技进步二等奖1项。
一、铺丝/铺带技术
应用航空航天领域,可以解决飞机机翼、蒙皮、进气道、大梁等结构件的自动化制造。
二、大宽度湿法铺缝技术
应用超大型结构件的复材制作,1000mm幅宽的铺缝,实现大型船体、风电叶片、轨道交通车体的自动化制造。
三、铺缠/铺贴技术
应用航天高超型号的工艺与装备研制。
四、网格铺放技术
应用航天领域结构件的网格筋制造,可实现自动化生产线的系统工艺及装备方案。
发表学术论文,出版专著情况:
发表论文二十余篇
科研成果获奖及专利:
获授权国家发明专利十余项
承担的科研项目情况:
先后主持国家级项目七项、参与国家级、省部级项目十余项
指导研究生情况:
十四届