祝颖丹-中国科学院大学-UCAS


本站和网页 http://people.ucas.ac.cn/~0017271 的作者无关,不对其内容负责。快照谨为网络故障时之索引,不代表被搜索网站的即时页面。

祝颖丹-中国科学院大学-UCAS
[中文]
[English]
招生信息
教育背景
工作经历
专利与奖励
出版信息
科研活动
基本信息
祝颖丹 女 博导 中国科学院宁波材料技术与工程研究所电子邮件: y.zhu@nimte.ac.cn通信地址: 浙江省宁波市镇海区中官西路1219号邮政编码:
研究领域
主要从事先进复合材料低成本制备技术、材料和微观结构原位表征以及成型过程计算机仿真模拟等研究工作
招生信息
招生专业
070305-高分子化学与物理080201-机械制造及其自动化080502-材料学
招生方向
复合材料的工艺与装备设计制造
教育背景
2006-10--2010-06 University of Bristol 博士 2002-09--2005-07 武汉理工大学 博士 1999-09--2002-07 武汉理工大学 硕士 1995-09--1999-07 武汉理工大学 学士
工作经历
工作简历
2010-11--今 宁波材料所 副研究员
专利与奖励
专利成果
[1] 徐海兵, 祝颖丹, 邢开, 颜春, 马芸芸. 一种树状磷腈接枝改性碳纤维及其制备方法和应用.&nbspCN:&nbspCN111691188A,&nbsp[[["2020-09-22"]]].[2] 祝颖丹, 赵岳, 徐海兵. 基于碱式氧化锰纳米材料修饰碳纤维的无胶粘剂超级电容器电极及其制备和应用.&nbspCN202210177200.9,&nbsp2022-02-25.[3] 徐海兵, 魏枫, 祝颖丹, 赵岳. 适用于超级电容器的碳纤维电极材料及其制备方法和应用.&nbspCN114220668A,&nbsp2021-12-27.[4] 徐海兵, 肖志乔, 祝颖丹, 颜春, 刘东. 一种可热解回收利用的多层复合碳纤维及其制备方法.&nbspCN202111521386.7,&nbsp2021-12-13.[5] 张洪生, 祝颖丹, 史鹏程, 冯雄峰, 郭启涛. 一种用于不等边样条加工防振动的夹紧装置.&nbspCN:&nbspCN113231853A,&nbsp2021-08-10.[6] 祝颖丹, 颜春, 陈刚, 徐海兵, 刘东. 一种高压储氢瓶塑料内胆及其制备方法.&nbspCN:&nbspCN113124309A,&nbsp2021-07-16.[7] 颜春, 宦玉强, 祝颖丹, 徐海兵, 刘东, 陈刚, 马芸芸. 含烷基化石墨烯的耐高温碳纤维上浆剂、制备方法与应用.&nbspCN:&nbspCN113123124A,&nbsp2021-07-16.[8] 周开河, 陈刚, 祝颖丹, 贾红丽, 舒恺, 朱艳伟, 叶夏明, 但扬清. 一种碳纤维复合材料抢修电杆及其制备方法.&nbspCN:&nbspCN113073893A,&nbsp2021-07-06.[9] 张洪生, 祝颖丹, 贾红丽. 一种增材制造执行头的出纱与固化装置.&nbspCN:&nbspCN112659547A,&nbsp2021-04-16.[10] 徐海兵, 祝颖丹, 邢开, 马芸芸, 颜春, 刘东. 二氧化硅微球改性多尺度杂化碳纤维及其制备方法和应用.&nbspCN:&nbspCN112522956A,&nbsp2021-03-19.[11] 祝颖丹, 毛江民, 陈刚. 一种三维织机的边线装置.&nbspCN:&nbspCN112501754A,&nbsp2021-03-16.[12] 祝颖丹, 毛江民. 一种三维织机的主动送经装置及方法.&nbspCN:&nbspCN112481775A,&nbsp2021-03-12.[13] 冯雄峰, 刘东, 陈明达, 祝颖丹, 范逸闻, 王涛. 一种纤维增强热塑性预浸片材叠层成型生产线装置及工艺.&nbspCN:&nbspCN112339276A,&nbsp2021-02-09.[14] 陈明达, 刘东, 祝颖丹, 王涛, 冯雄峰, 涂丽艳, 赵秀兰. 一种基于机器人片材叠层成型生产线的控制方法.&nbspCN:&nbspCN112338988A,&nbsp2021-02-09.[15] 冯雄峰, 范逸闻, 祝颖丹, 陈明达. 一种汽车响声器自动精密涂胶装置.&nbspCN:&nbspCN109351554B,&nbsp2021-01-08.[16] 张洪生, 涂丽艳, 祝颖丹, 陈明达. 一种纤维热塑性流延震动浸润预浸机.&nbspCN:&nbspCN109968691B,&nbsp2020-12-08.[17] 徐海兵, 魏枫, 祝颖丹. 纤维素纳米晶改性多尺度杂化碳纤维及其制备方法和应用.&nbspCN202011409572.7,&nbsp2020-12-03.[18] 张洪生, 祝颖丹, 涂丽艳, 陈刚. 一种纤维热压可形变模具.&nbspCN:&nbspCN109968688B,&nbsp2020-11-24.[19] 冯雄峰, 范逸闻, 祝颖丹. 一种转子筛网制备装置.&nbspCN:&nbspCN110860853B,&nbsp2020-11-10.[20] 涂丽艳, 张洪生, 祝颖丹, 冯雄峰, 陈明达. 碳纤维汽车零部件的胶接控制系统及其方法.&nbspCN:&nbspCN108248054B,&nbsp2020-11-03.[21] 吕东喜, 祝颖丹, 姚友强, 陈明达. 一种车用硬脆材料旋转超声孔加工出口破损宽度预测方法.&nbspCN:&nbspCN111428388B,&nbsp2020-10-20.[22] 宋磊磊, 祝颖丹, 郭启涛, 吕东喜. 一种三维织物叠层针刺复合材料及其制备方法.&nbspCN:&nbspCN111746061A,&nbsp2020-10-09.[23] 赵岳, 祝颖丹, 颜春, 张洪生. 基于碳纤维增强尼龙的功能复合线材及由其制成的电热驱动元件.&nbspCN:&nbspCN111196893A,&nbsp2020-05-26.[24] 张洪生, 祝颖丹, 涂丽艳, 刘东. 一种纤维预浸料模具热压连续生产线.&nbspCN:&nbspCN108357119B,&nbsp2020-04-21.[25] 吕东喜, 祝颖丹, 陈明达, 姚友强. 车用硬脆材料旋转超声加工亚表层损伤深度在线预测方法.&nbspCN:&nbspCN110480429B,&nbsp2020-02-28.[26] 陈祥, 徐海兵, 祝颖丹, 刘东, 陈明达, 林新耀, 颜春, 涂丽艳. 可循环使用碳纤维吸附剂及其制备和应用.&nbspCN:&nbspCN106824120B,&nbsp2020-01-31.[27] 陈祥, 徐海兵, 祝颖丹, 刘东, 陈明达, 林新耀, 涂丽艳, 颜春. 聚纳米管改性碳纤维吸附剂及其制备和应用.&nbspCN:&nbspCN106824145B,&nbsp2020-01-31.[28] 吕东喜, 祝颖丹, 陈明达, 姚友强. 一种汽车用硬脆材料三维变参数旋转超声磨削加工装置.&nbspCN:&nbspCN110653668A,&nbsp2020-01-07.[29] 刘东, 陈明达, 王贵民, 徐海兵, 涂丽艳, 张洪生, 林新耀, 祝颖丹. 一种纤维增强热塑性复合材料及其制备方法和实施该方法的系统.&nbspCN:&nbspCN106926525B,&nbsp2020-01-03.[30] 冯雄峰, 祝颖丹, 林新耀, 陈明达, 范逸闻, 涂丽艳. 一种预浸渍增强纤维成型循环装置.&nbspCN:&nbspCN106738448B,&nbsp2019-12-03.[31] 冯雄峰, 范逸闻, 祝颖丹. 一种干法制粒机的挤压辊装置.&nbspCN:&nbspCN108339495B,&nbsp2019-11-29.[32] 颜春, 祝颖丹, 刘东, 陈明达, 徐海兵, 王贵民, 林新耀, 涂丽艳. 一种高导热绝缘塑料及其制备方法和应用.&nbspCN:&nbspCN106832898B,&nbsp2019-10-22.[33] 徐海兵, 张笑晴, 颜春, 刘东, 祝颖丹. 一种基于环基聚膦腈膜的彩色碳纤维.&nbspCN:&nbspCN106149383B,&nbsp2019-08-16.[34] 赵刚, 祝颖丹, 余海涛, 张修平. 一种适用于真空辅助成形工艺的万用模具.&nbspCN:&nbspCN106738810B,&nbsp2019-07-16.[35] 鲁佳腾, 颜春, 祝颖丹, 李伶通, 马芸芸, 刘东, 徐海兵. 一种石墨烯改性上浆剂及其制备方法和应用.&nbspCN:&nbspCN109972400A,&nbsp2019-07-05.[36] 李伶通, 颜春, 祝颖丹, 马芸芸, 刘东, 徐海兵. 一种石墨烯改性碳纤维上浆剂及其制备方法.&nbspCN:&nbspCN109972396A,&nbsp2019-07-05.[37] 张洪生, 祝颖丹, 涂丽艳, 冯雄峰. 一种纤维制品自动化综合工作台及其运行方法.&nbspCN:&nbspCN109968156A,&nbsp2019-07-05.[38] 颜春, 余海涛, 张修平, 祝颖丹, 陈刚, 刘东, 徐海兵. 一种无卤阻燃聚酰胺6聚合物及其复合材料及其制备方法.&nbspCN:&nbspCN109957235A,&nbsp2019-07-02.[39] 张洪生, 陈明达, 刘东, 徐海兵, 祝颖丹, 王贵民, 涂丽艳, 林新耀. 连续纤维束脱浆上浆一体机.&nbspCN:&nbspCN106835550B,&nbsp2019-06-25.[40] 冯雄峰, 祝颖丹, 陈明达, 张洪生, 范逸闻, 涂丽艳. 一种预浸料裁切铺放生产线装置.&nbspCN:&nbspCN106808717B,&nbsp2019-06-18.[41] 徐子航, 祝颖丹, 刘东, 徐海兵, 陈明达, 林新耀, 涂丽艳, 颜春. 一种三通结构件及制造方法.&nbspCN:&nbspCN107152580B,&nbsp2019-04-30.[42] 张洪生, 涂丽艳, 祝颖丹, 陈刚. 一种异形夹心纤维制品夹心导向拉挤装置.&nbspCN:&nbspCN106739013B,&nbsp2019-04-16.[43] 刘东, 林新耀, 涂丽艳, 徐海兵, 颜春, 张洪生, 祝颖丹. 一种塑料螺旋管的自动化切割装置.&nbspCN:&nbspCN109551547A,&nbsp2019-04-02.[44] 马芸芸, 颜春, 祝颖丹, 徐海兵, 刘东, 宦玉强. 一种聚醚酮酮上浆剂及其上浆制备碳纤维复合材料的方法.&nbspCN:&nbspCN109505135A,&nbsp2019-03-22.[45] 刘东, 陈明达, 涂丽艳, 徐海兵, 祝颖丹, 陈刚, 张洪生, 王贵民. 一种碳纤维复合材料箱体及其制备方法.&nbspCN:&nbspCN106829140B,&nbsp2019-03-12.[46] 张洪生, 涂丽艳, 祝颖丹. 一种全自动铆接装置及方法.&nbsp中国:&nbspCN106270345B,&nbsp2018.03.30.[47] 祝颖丹, 秦永利, 滑聪, 孟令军, 蔡晶, 熊鑫, 范欣愉. 一种汽车开口部件及其制备方法.&nbsp中国:&nbspCN103552610B,&nbsp2018-08-17.[48] 徐海兵, 郭彦丽, 陈祥, 颜春, 刘东, 祝颖丹. 一种光学器件及其制备和应用.&nbsp中国:&nbspCN108333646A,&nbsp2018-07-27.[49] 齐士杰, 祝颖丹. 一种复合材料层间断裂韧性测试用夹具及其应用.&nbsp中国:&nbspCN108267363A,&nbsp2018-07-10.[50] 张洪生, 陈明达, 刘东, 徐海兵, 祝颖丹, 王贵民, 冯雄峰, 林新耀. 一种微细高长径比碳纤维管的制备装置.&nbsp中国:&nbspCN105563848B,&nbsp2018-07-06.[51] 陈明达, 涂丽艳, 张洪生, 祝颖丹, 冯雄峰, 徐腾辉, 刘东, 徐海兵, 王贵民. 一种对工件进行打磨-喷涂的自动生产方法.&nbsp中国:&nbspCN105312184B,&nbsp2018-05-11.[52] 李超, 颜春, 祝颖丹, 刘东, 徐海兵, 陈刚, 王昊. 一种石墨烯改性的碳纤维上浆剂的制备方法及其产品.&nbsp中国:&nbspCN105862428B,&nbsp2018-01-23.[53] 涂丽艳, 张洪生, 颜春, 祝颖丹. 一种纤维布注胶成型制品单模具自动生产线.&nbsp中国:&nbspCN104527089B,&nbsp2017.09.22.[54] 祝颖丹, 邓媛, 陈明达, 王贵民, 刘东, 徐海兵, 林新耀, 颜春. 一种开孔复合材料的纤维轨迹优化方法.&nbsp中国:&nbspCN106844813A,&nbsp2017-06-13.[55] 刘东, 陈明达, 王贵民, 徐海兵, 涂丽艳, 张洪生, 林新耀, 祝颖丹. 异面拉伸夹具.&nbsp中国:&nbspCN106840859A,&nbsp2017-06-13.[56] 冯雄峰, 刘东, 祝颖丹, 涂丽艳, 范逸闻, 林新耀. 一种碳纤维汽车结构件螺栓粘接装置.&nbsp中国:&nbspCN106584875A,&nbsp2017-04-26.[57] 陈明达, 祝颖丹, 冯雄峰, 涂丽艳, 张洪生, 徐腾辉, 徐海兵. 一种薄片分离装置.&nbsp中国:&nbspCN106564768A,&nbsp2017-04-19.[58] 冯雄峰, 祝颖丹, 刘东, 张洪生, 陈刚, 涂丽艳. 一种防撞梁自动胶接铆接输送装置.&nbsp中国:&nbspCN106564196A,&nbsp2017-04-19.[59] 刘东, 陈明达, 王贵民, 徐海兵, 涂丽艳, 张洪生, 林新耀, 祝颖丹. 异面拉伸夹具.&nbsp中国:&nbspCN205157315U,&nbsp2016-04-13.[60] 涂丽艳, 张洪生, 颜春, 祝颖丹. 一种纤维布注胶成型制品单模具自动生产线.&nbsp中国:&nbspCN204658984U,&nbsp2015.09.23.[61] 祝颖丹, 张洪生, 颜春, 涂丽艳. 一种纤维布注胶成型制品多模具周转自动生产线装置.&nbsp中国:&nbspCN204604937U,&nbsp2015.09.02.[62] 祝颖丹, 范欣愉, 秦永利, 熊鑫. 一种碳酸钙增强聚合物的碳酸钙颗粒分布表征方法.&nbsp中国:&nbspCN104807731A,&nbsp2015.07.29.[63] 张洪生, 颜春, 涂丽艳, 祝颖丹, 陈刚. 一种纤维布凹模自动铺料装置.&nbsp中国:&nbspCN104527090A,&nbsp2015.04.22.[64] 张洪生, 颜春, 涂丽艳, 祝颖丹, 陈刚. 一种纤维布凹模自动铺料装置以及纤维布注胶成型制品生产设备.&nbsp中国:&nbspCN204749304U,&nbsp2015-11-11.[65] 张洪生, 涂丽艳, 祝颖丹. 一种全自动铆接装置.&nbsp中国:&nbspCN204700235U,&nbsp2015-10-14.[66] 田龙飞, 祝颖丹, 范欣愉. 一种碳纤维复合材料工业机器人外壳制件及其制备方法.&nbsp中国:&nbspCN104972672A,&nbsp2015-10-14.[67] 徐腾辉, 祝颖丹, 颜春, 陈刚, 张洪生, 涂丽艳. 一种纤维布料连续自动变模裁切装置及纤维布注胶成型制品生产设备.&nbsp中国:&nbspCN204662136U,&nbsp2015-09-23.[68] 涂丽艳, 颜春, 祝颖丹, 张洪生, 冯雄峰. 一种纤维布凸模的自动铺料装置及纤维布注胶成型制品生产设备.&nbsp中国:&nbspCN204604938U,&nbsp2015-09-02.[69] 张洪生, 颜春, 涂丽艳, 祝颖丹. 一种注射成型制品与模具的自动分离及输送装置.&nbsp中国:&nbspCN204604805U,&nbsp2015-09-02.[70] 冯雄峰, 顏春, 祝颖丹, 张洪生. 一种自动涂装生产线装置.&nbsp中国:&nbspCN204412519U,&nbsp2015-06-24.[71] 祝颖丹, 张洪生, 颜春, 涂丽艳. 一种纤维布注胶成型制品多模具周转自动生产线装置.&nbsp中国:&nbspCN104552982A,&nbsp2015-04-29.[72] 徐腾辉, 祝颖丹, 颜春, 陈刚, 张洪生, 涂丽艳. 一种纤维布料连续自动变模裁切装置.&nbsp中国:&nbspCN104532537A,&nbsp2015-04-22.[73] 涂丽艳, 颜春, 祝颖丹, 张洪生, 冯雄峰. 一种纤维布凸模的自动铺料装置.&nbsp中国:&nbspCN104527091A,&nbsp2015-04-22.[74] 张洪生, 颜春, 涂丽艳, 祝颖丹. 一种注射成型制品与模具的自动分离装置.&nbsp中国:&nbspCN104494070A,&nbsp2015-04-08.[75] 蔡晶, 祝颖丹, 秦永利, 滑聪, 孟令军, 范欣愉. 天然纤维织物面内饱和渗透率的测量方法.&nbsp中国:&nbspCN104297122A,&nbsp2015-01-21.[76] 蔡晶, 祝颖丹, 秦永利, 孟令军, 滑聪, 徐海兵, 范欣愉. 天然纤维织物面内非饱和渗透率的测量方法.&nbsp中国:&nbspCN104297121A,&nbsp2015-01-21.[77] 秦永利, 祝颖丹, 范欣愉, 蔡晶, 熊鑫. 一种复合材料接头耳片及其制备方法.&nbsp中国:&nbspCN103552681A,&nbsp2014.02.05.[78] 田龙飞, 祝颖丹, 范欣愉. 一种碳纤维复合材料工业机器人外壳制件.&nbsp中国:&nbspCN203994737U,&nbsp2014-12-10.[79] 祝颖丹, 秦永利, 滑聪, 孟令军, 蔡晶, 熊鑫, 范欣愉. 一种汽车开口部件.&nbsp中国:&nbspCN203876848U,&nbsp2014-10-15.[80] 秦永利, 祝颖丹, 范欣愉, 蔡晶, 熊鑫. 一种复合材料接头耳片及其纤维预成型体和制件.&nbsp中国:&nbspCN203698645U,&nbsp2014-07-09.[81] 祝颖丹, 李晓拓, 秦永利, 范欣愉. 一种变刚度纤维复合材料的制备方法.&nbsp中国:&nbspCN103722842A,&nbsp2014-04-16.[82] 颜春, 范欣愉, 徐腾辉, 张笑晴, 李红周, 祝颖丹, 于丽萍. 连续纤维增强PBT复合材料用树脂传递模塑成型注胶机.&nbsp中国:&nbspCN202922986U,&nbsp2013.05.08.[83] 颜春, 范欣愉, 徐腾辉, 张笑晴, 李红周, 祝颖丹, 于丽萍. 连续纤维增强PBT复合材料用树脂传递模塑成型注胶机.&nbsp中国:&nbspCN102950779A,&nbsp2013.03.06.[84] 蔡晶, 祝颖丹, 秦永利, 孟令军, 滑聪, 范欣愉. 天然纤维织物面内渗透率的测量装置.&nbsp中国:&nbspCN203350161U,&nbsp2013-12-18.[85] 秦永利, 祝颖丹, 蔡晶, 滑聪, 孟令军, 范欣愉. 一种复合材料连接结构及其制件.&nbsp中国:&nbspCN202952561U,&nbsp2013-05-29.[86] 祝颖丹. 纤维复合材料开孔制件和热塑性复合材料开孔制件的补强片.&nbsp中国:&nbspCN202952560U,&nbsp2013-05-29.[87] 颜春, 范欣愉, 徐腾辉, 张笑晴, 李红周, 祝颖丹, 于丽萍. 连续纤维增强尼龙6复合材料用树脂传递模塑成型注胶机.&nbsp中国:&nbspCN202934817U,&nbsp2013-05-15.[88] 于丽萍, 范欣愉, 颜春, 李红周, 张笑晴, 祝颖丹. 减少纤维增强热塑性复合材料制品表面缺陷的方法.&nbsp中国:&nbspCN103042702A,&nbsp2013-04-17.[89] 秦永利, 祝颖丹, 蔡晶, 滑聪, 孟令军, 范欣愉. 一种复合材料连接结构.&nbsp中国:&nbspCN103042698A,&nbsp2013-04-17.[90] 李建广, 范欣愉, 颜春, 祝颖丹, 张笑晴, 李红周. 一种LED散热器及其制备方法.&nbsp中国:&nbspCN103013102A,&nbsp2013-04-03.[91] 祝颖丹. 一种纤维复合材料开孔制件的补强片设计及补强方法.&nbsp中国:&nbspCN102935721A,&nbsp2013-02-20.[92] 祝颖丹, 秦永利, 滑聪, 孟令军, 蔡晶, 于丽萍, 范欣愉. 一种纤维增强复合材料汽车后箱盖的生产方法.&nbsp中国:&nbspCN102922622A,&nbsp2013-02-13.[93] 祝颖丹, 秦永利, 孟令军, 滑聪, 蔡晶, 于丽萍, 范欣愉. 一种纤维增强复合材料汽车顶盖的生产方法.&nbsp中国:&nbspCN102922621A,&nbsp2013-02-13.[94] 颜春, 范欣愉, 徐腾辉, 张笑晴, 李红周, 祝颖丹, 于丽萍. 连续纤维增强尼龙6复合材料用树脂传递模塑成型注胶机.&nbsp中国:&nbspCN102922751A,&nbsp2013-02-13.[95] 祝颖丹, 秦永利, 孟令军, 蔡晶, 滑聪, 范欣愉. 一种热塑性纤维复合材料开孔制件的补强片设计及补强方法.&nbsp中国:&nbspCN102922834A,&nbsp2013-02-13.[96] 徐腾辉, 张希平, 祝颖丹, 范欣愉. 一种树脂传递模塑成型装置及成型方法.&nbsp中国:&nbspCN102490376A,&nbsp2012.06.13.[97] 范欣愉, 祝颖丹, 李红周, 颜春, 张笑晴. 树脂基复合材料固化过程的实时监控方法及装置.&nbsp中国:&nbspCN102445470A,&nbsp2012.05.09.[98] 秦永利, 祝颖丹, 李晓拓, 张希平, 王志坚, 徐腾辉, 范欣愉. 具有高抗屈曲能力的纤维织物.&nbsp中国:&nbspCN202480462U,&nbsp2012-10-10.[99] 李晓拓, 祝颖丹, 秦永利, 张笑晴, 徐腾辉, 颜春, 范欣愉. 具有开孔结构的纤维织物.&nbsp中国:&nbspCN202430445U,&nbsp2012-09-12.[100] 冯雄峰, 王志坚, 张希平, 祝颖丹, 范欣愉. 一种热塑性复合材料的成型输送装置.&nbsp中国:&nbspCN202427857U,&nbsp2012-09-12.[101] 徐腾辉, 张希平, 祝颖丹, 范欣愉. 一种树脂传递模塑成型装置.&nbsp中国:&nbspCN202412709U,&nbsp2012-09-05.[102] 范欣愉, 祝颖丹, 李红周, 颜春, 张笑晴. 树脂基复合材料固化过程实时监控装置.&nbsp中国:&nbspCN202362267U,&nbsp2012-08-01.[103] 秦永利, 祝颖丹, 李晓拓, 张希平, 王志坚, 徐腾辉, 范欣愉. 具有高抗屈曲能力的纤维织物及具有高抗屈曲能力的纤维复合材料制件的制备方法.&nbsp中国:&nbspCN102555316A,&nbsp2012-07-11.[104] 祝颖丹, 颜春, 李晓拓, 张笑睛, 秦永利, 范欣愉, 王志坚. 一种纤维复合材料制件的局部加固补强方法.&nbsp中国:&nbspCN102529107A,&nbsp2012-07-04.[105] 冯雄峰, 王志坚, 张希平, 祝颖丹, 范欣愉. 一种热塑性复合材料的成型输送装置.&nbsp中国:&nbspCN102527865A,&nbsp2012-07-04.[106] 李晓拓, 祝颖丹, 秦永利, 张笑晴, 徐腾辉, 颜春, 范欣愉. 具有开孔结构的纤维织物及具有开孔结构的纤维复合材料制件的制备方法.&nbsp中国:&nbspCN102535018A,&nbsp2012-07-04.[107] 祝颖丹. 一种纤维复合材料制件的局部可变厚度加固补强方法.&nbsp中国:&nbspCN102529106A,&nbsp2012-07-04.[108] 祝颖丹, 杨恒, 颜春, 张笑晴, 李建广, 张希平, 范欣愉. 一种尼龙/石墨导热塑料及其制备方法和用途.&nbsp中国:&nbspCN102492134A,&nbsp2012-06-13.[109] 张笑晴, 颜春, 李晓拓, 阮春寅, 祝颖丹, 于丽萍, 范欣愉. 一种界面增强的碳纤维/聚己内酰胺复合材料及其制备方法.&nbsp中国:&nbspCN102493184A,&nbsp2012-06-13.[110] 涂丽艳, 张希平, 徐腾辉, 范欣愉, 祝颖丹. 树脂传递模塑成型注胶机控制系统及控制方法.&nbsp中国:&nbspCN102490379A,&nbsp2012-06-13.
出版信息
发表论文
[1] Yao, Youqiang, Shi, Pengcheng, Chen, Mingda, Chen, Gang, Gao, Cong, Boisse, Philippe, Zhu, Yingdan. Experimental and numerical study on Mode I and Mode II interfacial fracture toughness of co-cured steel-CFRP hybrid composites. INTERNATIONAL JOURNAL OF ADHESION AND ADHESIVES[J]. 2022, 112: http://dx.doi.org/10.1016/j.ijadhadh.2021.103030.[2] 魏枫, 裴勇勇, 徐海兵, 颜春, 刘东, 欧阳少波, 祝颖丹. 芳香族聚酰胺纤维抗紫外老化的研究进展. 复合材料科学与工程[J]. 2022, [3] Zhao, Yue, Yan, Chun, Xu, Haibing, Cai, Guangbin, Jia, Hongli, Chen, Gang, Imran, Ali, Zhu, Yingdan. In-situ structural health self-monitoring and diagnosing of glass fiber reinforced plastics with embedded nickel coated carbon fiber. COMPOSITES PART B-ENGINEERING[J]. 2022, 228: http://dx.doi.org/10.1016/j.compositesb.2021.109440.[4] Lv, Dongxi, Liu, Dong, Chen, Mingda, Chen, Gang, Yan, Chun, Ali, Imran, Zhu, Yingdan. A mechanistic model for prediction of exit-chipping width in rotary ultrasonic drilling of sapphire. INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY[J]. 2022, 120(5-6):&nbsp3519-3527, [5] Jayasekara, Deepesh, Lai, Nai Yeen Gavin, Wong, KokHoong, Pawar, Kulwant, Zhu, Yingdan. Level of automation (LOA) in aerospace composite manufacturing: Present status and future directions towards industry 4.0. JOURNAL OF MANUFACTURING SYSTEMS[J]. 2022, 62: 44-61, http://dx.doi.org/10.1016/j.jmsy.2021.10.015.[6] 王涛, 高聪, 徐海兵, 陈明达, 祝颖丹, 郭启涛, 缪馥星. 纤维增强复合材料界面力学性能表征技术研究进展. 化工新型材料[J]. 2022, [7] 刘东, 许云鹏, 颜春, 祝颖丹, 陈刚, 徐海兵, 姚友强. 耐高温热塑性上浆剂改性CF/PEKK复合材料界面性能研究,. 2021年高分子年会null. 2021, [8] 赵岳, 徐海兵, 刘东, 陈刚, 陈明达, 郭启涛, 祝颖丹. 环氧树脂基固态电解质离子导电性能研究. 2021年高分子年会null. 2021, [9] 颜春, 严鹏威, 祝颖丹, 徐海兵, 刘东, 陈刚. 聚磷腈阻燃改性PA6树脂的研究. 2021年高分子年会null. 2021, [10] Lv, Dongxi, Chen, Mingda, Yao, Youqiang, Yan, Chun, Chen, Gang, Zhu, Yingdan. High-frequency vibration effects on the hole integrity in rotary ultrasonic drilling of carbon fiber-reinforced plastic composites. ULTRASONICS[J]. 2021, 115: http://dx.doi.org/10.1016/j.ultras.2021.106448.[11] 徐海兵, 颜春, 刘东, 陈刚, 祝颖丹. 微纳多尺度环基聚磷腈膜层对CF/PPS复合材料界面性能的影响. 2021年高分子年会null. 2021, [12] 肖志乔, 徐海兵, 刘东, 颜春, 贺英, 郭启涛, 祝颖丹. 聚(环三磷腈-co-聚乙烯亚胺)膜层对碳纤维/环氧复合材料界面性能的影响研究. 2021年高分子年会null. 2021, [13] Zhang, Hanyu, Zhang, Lei, Liu, Zhao, Qi, Shijie, Zhu, Yingdan, Zhu, Ping. Numerical analysis of hybrid (bonded/bolted) FRP composite joints: A review. COMPOSITE STRUCTURESnull. 2021, 262: http://dx.doi.org/10.1016/j.compstruct.2021.113606.[14] 肖荣杰, 颜春, 祝颖丹, 徐海兵, 刘东, 陈刚. 星型环三磷腈接枝尼龙6的制备及其非等温结晶动力学研究. 2021年高分子年会null. 2021, [15] 吕东喜, 陈刚, 赵德刚, 高聪, 徐海兵, 郭启涛, 祝颖丹. 硬脆材料孔加工出口破损形成机理. 光学精密工程[J]. 2021, 29(1):&nbsp110-116, http://lib.cqvip.com/Qikan/Article/Detail?id=7104172590.[16] 祝颖丹, 韦君, 颜春, 徐海兵, 刘东, 郭启涛, 刘小青, 代金月. 碳纤维增强生物基基可降解环氧树脂复合材料的制备与性能研究. 2021年高分子年会null. 2021, [17] Imran, Ali, Qi, Shijie, Shi, Pengcheng, Imran, Muhammad, Liu, Dong, Zhu, Yingdan, Yang, Guilin. Effect of core corrugation angle on static compression of self-reinforced PP sandwich panels and bending energy absorption of sandwich beams. JOURNAL OF COMPOSITE MATERIALS[J]. 2021, 55(7):&nbsp897-913, https://www.webofscience.com/wos/woscc/full-record/WOS:000619172900002.[18] 韦君, 颜春, 祝颖丹, 徐海兵, 刘东, 郭启涛, 刘小青, 代金月. 生物基可降解环氧树脂体系固化反应动力学研究. 热固性树脂[J]. 2021, [19] Yan, Chun, Yan, Pengwei, Xu, Haibing, Liu, Dong, Chen, Gang, Cai, Guangbin, Zhu, Yingdan. Preparation of continuous glass fiber/polyamide 6 composites containing hexaphenoxycyclotriphosphazene: Mechanical properties, thermal stability, and flame retardancy. POLYMER COMPOSITES. 2021, [20] Zhu, Yingdan, Ma, Yunyun, Yan, Chun, Xu, Haibing, Liu, Dong, Chen, Gang, Shi, Pengcheng, Hu, Junfeng, Gao, Cong. Improved interfacial shear strength of CF/PA6 and CF/epoxy composites by grafting graphene oxide onto carbon fiber surface with hyperbranched polyglycerol. SURFACE AND INTERFACE ANALYSIS[J]. 2021, 53(10):&nbsp831-843, http://dx.doi.org/10.1002/sia.6984.[21] Zhu, Yingdan, Qi, Shijie, Jia, Hongli, Shi, Pengcheng, Yao, Youqiang, Hu, Junfeng, Boisse, Philippe, Xu, Haibing. Assessing tensile behavior of open-hole variable angle tow composites using a general gradient property simulation methodology. JOURNAL OF REINFORCED PLASTICS AND COMPOSITES[J]. 2020, 39(19-20):&nbsp742-757, https://www.webofscience.com/wos/woscc/full-record/WOS:000543974600001.[22] Lv, Dongxi, Liu, Dong, Chen, Gang, Yan, Chun, Wu, Xiaofei, Zhu, Yingdan. Quantitative evaluation method and formation mechanisms of entrance chipping in rotary ultrasonic drilling of glass BK7. MACHINING SCIENCE AND TECHNOLOGY[J]. 2020, 24(1):&nbsp151-167, https://www.webofscience.com/wos/woscc/full-record/WOS:000484630700001.[23] Lai, Nai Yeen Gavin, Jayasekara, Deepesh, Wong, Kok Hoong, Yu, Lih Jiun, Kang, Hooi Siang, Pawar, Kulwant, Zhu, Yingdan, IEEE. Advanced Automation and Robotics for High Volume Labour-Intensive Manufacturing. 2ND INTERNATIONAL CONGRESS ON HUMAN-COMPUTER INTERACTION, OPTIMIZATION AND ROBOTIC APPLICATIONS (HORA 2020)null. 2020, 449-457, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000644404300077.[24] Zhang, Hanyu, Zhu, Ping, Liu, Zhao, Qi, Shijie, Zhu, Yingdan. Research on prediction method of mechanical properties of open-hole laminated plain woven CFRP composites considering drilling-induced delamination damage. MECHANICS OF ADVANCED MATERIALS AND STRUCTURES. 2020, https://www.webofscience.com/wos/woscc/full-record/WOS:000526317100001.[25] Huang, Jin, Boisse, Philippe, Hamila, Nahiene, Zhu, Yingdan. Simulation of Wrinkling during Bending of Composite Reinforcement Laminates. MATERIALS[J]. 2020, 13(10):&nbsphttp://dx.doi.org/10.3390/ma13102374.[26] Chen, Xiang, Xu, Haibing, Liu, Dong, Yan, Chun, Yao, Youqiang, Zhu, Yingdan. Effect of hybrid polysphosphazene coating treatment on carbon fibers on the interfacial properties ofCF/PA6composites. JOURNAL OF APPLIED POLYMER SCIENCE[J]. 2020, 137(37):&nbsphttps://www.webofscience.com/wos/woscc/full-record/WOS:000541266800001.[27] Lv, Dongxi, Chen, Mingda, Yao, Youqiang, Zhao, Yue, Chen, Gang, Peng, Yunfeng, Zhu, Yingdan. Prediction of subsurface damage depth in rotary ultrasonic machining of glass BK7 with probability statistics. INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY[J]. 2020, 107(3-4):&nbsp1337-1344, https://www.webofscience.com/wos/woscc/full-record/WOS:000516955800001.[28] 吕东喜, 陈明达, 姚友强, 赵岳, 祝颖丹. 基于概率统计的BK7玻璃磨削亚表层损伤深度在线预测技术. 光学精密工程[J]. 2020, 102-109, http://lib.cqvip.com/Qikan/Article/Detail?id=00002HUDL56G7JP0MPDO8JP16PR.[29] 许云鹏, 颜春, 刘东, 徐海兵, 姚友强, 祝颖丹. 连续纤维增强热塑性预浸料制备工艺的研究进展. 复合材料科学与工程. 2020, 123-128, http://lib.cqvip.com/Qikan/Article/Detail?id=7102537706.[30] Lv, Dongxi, Liu, Dong, Chen, Gang, Song, Leilei, Yan, Chun, Wu, Xiaofei, Zhu, Yingdan. Formation Mechanisms of Exit-Chippings in Rotary Ultrasonic Drilling and Conventional Drilling of Glass BK7. JOURNAL OF MANUFACTURING SCIENCE AND ENGINEERING-TRANSACTIONS OF THE ASME[J]. 2020, 142(1):&nbsphttps://www.webofscience.com/wos/woscc/full-record/WOS:000525415600005.[31] Xu, Haibing, Yan, Chun, Chen, Xiang, Liu, Dong, Shi, Pengcheng, Yao, Youqiang, Zhu, Yingdan, Hu, Junfeng. Cyclomatrix-type polyphosphazene optical film coating: Preparation, characterization and properties. PROGRESS IN ORGANIC COATINGS[J]. 2020, 149: http://dx.doi.org/10.1016/j.porgcoat.2020.105933.[32] Song, Leilei, Zhao, Yufen, Chen, Li, Zhu, Yingdan, Li, Jialu. Three-dimensional finite element models and tensile properties of carbon fiber needled felt reinforced composites. JOURNAL OF INDUSTRIAL TEXTILES[J]. 2020, 50(3):&nbsp293-311, https://www.webofscience.com/wos/woscc/full-record/WOS:000559228900003.[33] Yao, Youqiang, Shi, Pengcheng, Qi, Shijie, Yan, Chun, Chen, Gang, Liu, Dong, Zhu, Yingdan, Herrmann, Axel. Manufacturing and mechanical properties of steel-CFRP hybrid composites. JOURNAL OF COMPOSITE MATERIALS[J]. 2020, 54(24):&nbsp3673-3682, https://www.webofscience.com/wos/woscc/full-record/WOS:000527744300001.[34] Qi, Shijie, Shi, Pengcheng, Yan, Chun, Imran, Ali, Liu, Dong, Zhu, Yingdan, Herrmann, Axel S. Damage model based on gradient property method for simulating the tensile behavior of composite laminates with Variable Angle Tow reinforcement. STRUCTURES[J]. 2020, 23: 152-163, http://dx.doi.org/10.1016/j.istruc.2019.10.025.[35] Lv, Dongxi, Yan, Chun, Chen, Gang, Liu, Dong, Wu, Xiaofei, Zhu, Yingdan. Mechanistic prediction for cutting force in rotary ultrasonic machining of BK7 glass based on probability statistics. ULTRASONICS[J]. 2020, 101: http://dx.doi.org/10.1016/j.ultras.2019.106006.[36] 马芸芸, 颜春, 祝颖丹, 严兵, 赵清新, 赵德刚. 阻燃连续GF/PA6复合材料的制备及性能研究. 第四届中国国际复合材料科技大会(CCCM-4)null. 2019, [37] Chen, Xiang, Xu, Haibing, Liu, Dong, Yan, Chun, Zhu, Yingdan. A novel and facile fabrication of polyphosphazene nanotube/carbon fiber multi-scale hybrid reinforcement and its enhancing effect on the interfacial properties of epoxy composites. COMPOSITES SCIENCE AND TECHNOLOGY[J]. 2019, 169: 34-44, http://dx.doi.org/10.1016/j.compscitech.2018.10.034.[38] 赵岳, 颜春, 陈刚, 陈明达, 吴晓飞, 祝颖丹. 自感应导电聚合物基复合材料研究进展. 玻璃钢/复合材料. 2019, 100-105, http://lib.cqvip.com/Qikan/Article/Detail?id=7001734405.[39] 赵岳, 颜春, 陈刚, 徐海兵, 祝颖丹. 镀镍碳纤维用于GFRP复合材料结构健康实时监测的研究. 2019年高分子年会null. 2019, [40] 杨玉, 徐海兵, 颜春, 刘东, 陈明达, 祝颖丹, 王冬梅. 电泳沉积纳米粒子增强树脂基碳纤维复合材料界面性能的研究进展. 塑料科技. 2019, 47(8):&nbsp112-117, http://lib.cqvip.com/Qikan/Article/Detail?id=7002719799.[41] 邢开, 徐海兵, 颜春, 陈刚, 陈明达, 祝颖丹. 碳纤维增强高性能热塑性复合材料界面改性的研究进展. 玻璃钢/复合材料. 2019, 110-115, http://lib.cqvip.com/Qikan/Article/Detail?id=7002001791.[42] 杨玉, 颜春, 刘东, 祝颖丹, 赵清新, 严兵, 赵德刚. N-氨乙基哌嗪共聚酰胺增强CF/PA6复合材料界面性能的研究. 第四届中国国际复合材料科技大会(CCCM-4)null. 2019, [43] Qi, X, Wang, W, Zhang, J, Yan, C, Zhu, Y, Zhang, F. Aqueously soluble semi-aromatic copolyamides with dual-functional groups as sizing agent. JOURNAL OF APPLIED POLYMER SCIENCE[J]. 2019, 136(9):&nbsp[44] 宦玉强, 颜春, 徐海兵, 陈刚, 刘东, 祝颖丹. 聚醚酰亚胺增强碳纤维/聚醚酮酮复合材料界面性能的研究. 2019年高分子年会null. 2019, [45] 马芸芸, 祝颖丹, 颜春, 徐海兵, 刘东, 吴晓飞. 氧化石墨接枝碳纤维增强树脂基复合材料界面的耐温性研究. 2019年高分子年会null. 2019, [46] 徐海兵, 颜春, 刘东, 陈刚, 祝颖丹. 聚(环三磷腈-co-4,4’-二氨基二苯醚)膜层对碳纤维/环氧复合材料界面性能的影响. 2019年高分子年会null. 2019, [47] Li, Lingtong, Yan, Chun, Xu, Haibing, Liu, Dong, Shi, Pengcheng, Zhu, Yingdan, Chen, Gang, Wu, Xiaofei, Liu, Wenqing. Improving the interfacial properties of carbon fiber-epoxy resin composites with a graphene-modified sizing agent. JOURNAL OF APPLIED POLYMER SCIENCE[J]. 2019, 136(9):&nbsphttp://www.corc.org.cn/handle/1471x/2164408.[48] 邢开, 徐海兵, 祝颖丹, 刘东, 颜春, 陈刚. 新颖环状苯硫醚上浆剂对碳纤维/聚苯硫醚复合材料界面性能的影响研究. 2019年高分子年会null. 2019, [49] Yan, Chun, Liu, Ling, Zhu, Yingdan, Xu, Haibing, Liu, Dong. Properties of polymerized cyclic butylene terephthalate and its composites via ring-opening polymerization. JOURNAL OF THERMOPLASTIC COMPOSITE MATERIALS[J]. 2018, 31(2):&nbsp181-201, http://ir.nimte.ac.cn/handle/174433/16842.[50] 祝颖丹. Variable Angle Tow reinforcements design for locally reinforcing an open-hole composite plate. Composite Structures. 2018, [51] 祝颖丹, 涂丽艳. 车用碳纤维复合材料零部件示范工程. 科技成果管理与研究. 2018, 76-77, http://lib.cqvip.com/Qikan/Article/Detail?id=676875860.[52] 齐士杰, Imran Ali, 曹聪, 刘东, 祝颖丹. A gradient property simulation methodology for analyzing the quasi-static tensile behavior of Variable Angle Tow reinforced open-hole composites. Asia-Pacific Conference on Fracture and Strength 2018 (APCFS 2018)null. 2018, [53] 齐士杰, 史鹏程, 王燚林, 刘东, 祝颖丹. A novel numerical-verified approach on reinforcing open-hole composites with tailored Variable Angle Tow patches. 1st International Conference on Theoretical, Analytical and Computational Methods for Composite Materials and Composite Structuresnull. 2018, [54] Imran, Ali, Qi, Shijie, Yan, Chun, Liu, Dong, Zhu, Yingdan, Yang, Guilin. Dynamic compression response of self-reinforced polypropylene composite structures fabricated through ex-situ consolidation process. COMPOSITE STRUCTURES[J]. 2018, 204: 288-300, http://dx.doi.org/10.1016/j.compstruct.2018.07.085.[55] Ma, Yunyun, Yan, Chun, Xu, Haibing, Liu, Dong, Shi, Pengcheng, Zhu, Yingdan, Liu, Junlong. Enhanced interfacial properties of carbon fiber reinforced polyamide 6 composites by grafting graphene oxide onto fiber surface. APPLIED SURFACE SCIENCE[J]. 2018, 452: 286-298, http://dx.doi.org/10.1016/j.apsusc.2018.04.274.[56] Zhu, Yingdan, Qin, Yongli, Qi, Shijie, Xu, Haibing, Liu, Dong, Yan, Chun. Variable Angle Tow reinforcement design for locally reinforcing an open-hole composite plate. COMPOSITE STRUCTURES[J]. 2018, 202: 162-169, http://dx.doi.org/10.1016/j.compstruct.2018.01.021.[57] 徐海兵, 马芸芸, 颜春, 祝颖丹, 刘东, 陈刚, 刘俊龙. 阴离子聚酰胺6增韧改性研究进展. 塑料科技[J]. 2017, 91-97, http://ir.nimte.ac.cn/handle/174433/13444.[58] Wang, Wenbin, Qi, Xiang, Zhang, Fei, Zhu, Yingdan, Wan, Xinhua. Synthesis and Characterization of Novel Semiaromatic Copolyamides Bearing Both Polar Hydroxyl and Unsaturated Allyl Substituents. JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY[J]. 2017, 55(4):&nbsp690-698, http://ir.nimte.ac.cn/handle/174433/13981.[59] Zhu, Yingdan, Cai, Jing, Qin, Yongli, Liu, Dong, Yan, Chun, Zhang, Hongsheng. Effects of Liquid Absorption and Swelling on the Permeability of Natural Fiber Fabrics in Liquid Composite Moulding. POLYMER COMPOSITES[J]. 2017, 38(5):&nbsp996-1004, http://dx.doi.org/10.1002/pc.23663.[60] Chen, Xiang, Xu, Haibing, Liu, Dong, Yan, Chun, Zhu, Yingdan. A facile one-pot fabrication of polyphosphazene microsphere/carbon fiber hybrid reinforcement and its effect on the interfacial adhesion of epoxy composites. APPLIED SURFACE SCIENCE[J]. 2017, 410: 530-539, http://dx.doi.org/10.1016/j.apsusc.2017.03.104.[61] 吴晓飞, 祝颖丹, 颜春, 刘东, 陈祥, 徐海兵. 新颖的环基交联聚膦腈光学薄膜的制备与表征. 2017, 1-, http://ir.nimte.ac.cn/handle/174433/16644.[62] 祝颖丹, 陈祥, 徐海兵, 刘东, 颜春, 吴晓飞. 聚磷腈纳米管/碳纤维多尺度杂化增强体的制备及性能研究. 2017, 1-, http://ir.nimte.ac.cn/handle/174433/16667.[63] Zhu, Yingdan, Liu, Jiancai, Liu, Dong, Xu, Haibing, Yan, Chun, Huang, Bin, Hui, David. Fiber path optimization based on a family of curves in composite laminate with a center hole. COMPOSITES PART B-ENGINEERING[J]. 2017, 111: 91-102, http://dx.doi.org/10.1016/j.compositesb.2016.11.051.[64] Xu, Haibing, Zhang, Xiaoqing, Liu, Dong, Yan, Chun, Chen, Xiang, Hui, David, Zhu, Yingdan. Cyclomatrix-type polyphosphazene coating: Improving interfacial property of carbon fiber/epoxy composites and preserving fiber tensile strength. COMPOSITES PART B-ENGINEERING[J]. 2016, 93: 244-251, http://ir.nimte.ac.cn/handle/174433/12981.[65] 陈刚, 徐海兵, 刘东, 林新耀, 涂丽艳, 祝颖丹, 颜春. 快速RTM成型工艺用环氧树脂化学流变及固化行为研究. 高科技纤维与应用. 2016, 45-50, http://lib.cqvip.com/Qikan/Article/Detail?id=668564297.[66] 陈刚, 涂丽艳, 陈明达, 刘东, 颜春, 林新耀, 祝颖丹, 徐海兵. 碳纤维复合材料汽车前地板的研制. 玻璃钢/复合材料[J]. 2016, 51-54, http://lib.cqvip.com/Qikan/Article/Detail?id=668677512.[67] Wang, Wenbin, Qi, Xiang, Guan, Yan, Zhang, Fei, Zhang, Jie, Yan, Chun, Zhu, Yingdan, Wan, Xinhua. Synthesis and Properties of Poly(p-phenylene terephthalamide) Bearing Both Polar and Unsaturated Substituents Introduced via Claisen Rearrangement Reaction. JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY[J]. 2016, 54(13):&nbsp2050-2059, https://www.webofscience.com/wos/woscc/full-record/WOS:000380038000019.[68] 齐文, 赵俊利, 刘国志, 颜春, 王贵民, 祝颖丹. 复合材料在地面机动武器装备上的应用. 工程塑料应用[J]. 2016, 44(5):&nbsp126-129, [69] 邓媛, 刘东, 祝颖丹, 黄斌. 纤维变角度牵引铺缝技术的研究进展. 玻璃钢/复合材料[J]. 2015, 97-100, http://lib.cqvip.com/Qikan/Article/Detail?id=665116396.[70] 李柯, 陈明达, 冯雄峰, 涂丽艳, 祝颖丹, 李国平, 张笑晴, 范欣愉. 基于PLC的热塑性复合材料热压成型用机械手设计. 机械制造. 2015, 53(4):&nbsp4-8, http://lib.cqvip.com/Qikan/Article/Detail?id=664397358.[71] 齐文, 刘东, 赵俊利, 徐子航, 祝颖丹, 涂丽艳, 陈刚. RTM工艺充模过程模拟研究进展. 玻璃钢/复合材料[J]. 2015, 105-109, http://lib.cqvip.com/Qikan/Article/Detail?id=667185457.[72] Xu Zihang, Liu Dong, Qian Qun, Zhu Yingdan. RESEARCH PROGRESS IN THERMOFORMABILITY OF CONTINUOUS FIBER REINFORCED THERMOPLASTIC COMPOSITES. Fiber Reinforced Plastics/Composites[J]. 2015, 83-86,63, http://ir.nimte.ac.cn/handle/174433/12679.[73] Liu, Dong, Zhu, Yingdan, Ding, Jiangping, Lin, Xinyao, Fan, Xinyu. Experimental investigation of carbon fiber reinforced poly(phenylene sulfide) composites prepared using a double-belt press. COMPOSITES PART B-ENGINEERING[J]. 2015, 77: 363-370, http://ir.nimte.ac.cn/handle/174433/12404.[74] Deng Yuan, Liu Dong, Zhu Yingdan, Huang Bin. PROGRESS IN FIBRE VARIABLE ANGLE TOW PLACEMENT TECHNOLOGY. Fiber Reinforced Plastics/Composites[J]. 2015, 97-100, http://ir.nimte.ac.cn/handle/174433/12728.[75] 徐子航, 刘东, 钱群, 祝颖丹, 徐海兵, 陈刚, 和颜春. 连续纤维增强热塑性复合材料热变形性能研究进展. 玻璃钢/复合材料[J]. 2015, 83-86,63, http://lib.cqvip.com/Qikan/Article/Detail?id=666431020.[76] Zhu, Y D, Allen, G C, Jones, P G, Adams, J M, Gittins, D I, Heard, P J, Skuse, D R. Dispersion characterisation of CaCO3 particles in PP/CaCO3 composites. COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING[J]. 2014, 60: 38-43, https://www.webofscience.com/wos/woscc/full-record/WOS:000334000100006.[77] 蔡晶, 祝颖丹, 秦永利, 范欣愉. LCM工艺中天然纤维渗透率的研究进展. 玻璃钢/复合材料[J]. 2014, 85-90, http://lib.cqvip.com/Qikan/Article/Detail?id=49399284.[78] Dong Liu, Jiangping Ding, Xinyu Fan, Xinyao Lin, Yingdan Zhu. Non-isothermal forming of glass fiber/polypropylene commingled yarn fabric composites. Materials and Design. 2014, 57: 608-615, http://dx.doi.org/10.1016/j.matdes.2014.01.027.[79] Liu, Dong, Ding, Jiangping, Fan, Xinyu, Lin, Xinyao, Zhu, Yingdan. Non-isothermal forming of glass fiber/polypropylene commingled yarn fabric composites. MATERIALS & DESIGN[J]. 2014, 57: 608-615, http://dx.doi.org/10.1016/j.matdes.2014.01.027.[80] Zhu, Y D, Allen, G C, Adams, J M, Gittins, D I, Hooper, J J, Skuse, D R. Barrier properties of latex/kaolin coatings. POLYMER CHEMISTRY[J]. 2013, 4(16):&nbsp4386-4395, http://www.irgrid.ac.cn/handle/1471x/755605.[81] 祝颖丹. Preparation and Properties of Glass Fiber Reinforced Nylon 6 Composites by Variable Angle Tow Placement. 全国高分子学术论文会议null. 2013, 990—990-, http://www.irgrid.ac.cn/handle/1471x/755867.[82] 祝颖丹. APPLICATION OF THE VARIABLE ANGLE TOW PROCESS FOR REINFORCEMENT. 玻璃钢/复合材料[J]. 2013, 68—72-, http://www.irgrid.ac.cn/handle/1471x/755415.[83] 于丽萍, 颜春, 李红周, 张笑晴, 祝颖丹, 范欣愉, 刘俊龙. 玻纤增强阴离子聚酰胺6复合材料的非等温结晶动力学研究. 材料导报[J]. 2013, 63-68, http://lib.cqvip.com/Qikan/Article/Detail?id=45621987.[84] 李建广, 颜春, 李红周, 张笑晴, 祝颖丹, 范欣愉. 尼龙6/石墨复合材料非等温结晶动力学研究. 塑料工业[J]. 2013, 67-71,86, http://lib.cqvip.com/Qikan/Article/Detail?id=44499824.[85] Qin Yongli, Zhu Yingdan, Yu Yueping, Yan Chun, Zhang Xiaoqing, Fan Xinyu. Compression Buckling Response of Tow-placed, Variable Stiffness Composite Panels with Sine Curved and Tangent Curved Fibers. POLYMERS & POLYMER COMPOSITES[J]. 2013, 21(9):&nbsp593-598, https://www.webofscience.com/wos/woscc/full-record/WOS:000330093300007.[86] 祝颖丹. Permeability of jute fiber fabrics in RTM. 全国高分子学术会议论文null. 2013, 992—992-, http://www.irgrid.ac.cn/handle/1471x/755866.[87] Yan, Chun, Li, Hongzhou, Zhang, Xiaoqing, Zhu, Yingdan, Fan, Xinyu, Yu, Liping. Preparation and properties of continuous glass fiber reinforced anionic polyamide-6 thermoplastic composites. MATERIALS & DESIGN[J]. 2013, 46(46):&nbsp688-695, http://dx.doi.org/10.1016/j.matdes.2012.11.034.[88] Yan, Chun, Li, Hongzhou, Zhang, Xiaoqing, Zhu, Yingdan, Fan, Xinyu, Yu, Liping. Preparation and properties of continuous glass fiber reinforced anionic polyamide-6 thermoplastic composites. MATERIALS & DESIGN[J]. 2013, 46: 688-695, https://www.webofscience.com/wos/woscc/full-record/WOS:000314870000084.[89] 祝颖丹. Research on Base Materials Used in Variable Angle Tow Placement. 第17届全国复合材料学术会议论文集null. 2012, 519—522-, http://www.irgrid.ac.cn/handle/1471x/755804.[90] 祝颖丹, Yingdan Zhu,, Geoff Allen,John Adams, David Gittins, Peter Heard, David Skuse. Effects of Particle Dispersion on the Impact Strength of PP/CaCO3 Composites. 第二届先进高分子基复合材料国际会议论文集null. 2012, 1—11-, http://www.irgrid.ac.cn/handle/1471x/755769.[91] 祝颖丹. Optimization of fiber paths in composite laminates with a hole based on a nonlinear weighted least squares method. 第17届全国复合材料学术会议论文集null. 2012, 11—20-, http://www.irgrid.ac.cn/handle/1471x/755794.[92] Li, Xiaotuo, Fan, Xinyu, Zhu, Yingdan, Li, Juan, Adams, John M, Shen, Shirley, Li, Hongzhou. Computational modeling and evaluation of the thermal behavior of randomly distributed single-walled carbon nanotube/polymer composites. COMPUTATIONAL MATERIALS SCIENCE[J]. 2012, 63: 207-213, http://dx.doi.org/10.1016/j.commatsci.2012.06.034.[93] 李晓拓, 祝颖丹, 颜春, 范欣愉. 风力机叶片气动弹性剪裁研究进展. 玻璃钢/复合材料[J]. 2012, 67-73, http://lib.cqvip.com/Qikan/Article/Detail?id=1001838040.[94] 于丽萍, 颜春, 张笑晴, 李红周, 祝颖丹, 刘俊龙, 廖栋. 环氧端基甲基苯基硅油增韧聚苯并嗯嗪树脂的研究. 材料导报. 2012, 26(22):&nbsp71-75, http://lib.cqvip.com/Qikan/Article/Detail?id=43907290.[95] 秦永利, 祝颖丹, 范欣愉, 颜春, 李晓拓, 张笑晴. 纤维曲线铺放制备变刚度复合材料层合板的研究进展. 玻璃钢/复合材料[J]. 2012, 61-66, http://lib.cqvip.com/Qikan/Article/Detail?id=1001837973.[96] 张鸿雁, 俞岳平, 祝颖丹. 聚合物/碳酸钙复合材料研究进展. 玻璃钢/复合材料. 2012, 277-280, http://lib.cqvip.com/Qikan/Article/Detail?id=1003430716.[97] 祝颖丹, Compression Buckling Response of Tow-placed, Variable Stiffness Composite Panels with Sine Curved and Tangent curved Fibers. Compression Buckling Response of Tow-placed, Variable Stiffness Composite Panels with Sine Curved and Tangent curved Fibers. 第二届先进高分子基复合材料国际会议(The 2nd International Conference on Advanced Polymer Matrix Composites)论文集null. 2012, 23—33-, http://www.irgrid.ac.cn/handle/1471x/755770.[98] 秦永利, 祝颖丹, 蔡晶, 孟令军, 滑聪, 范欣愉. 基于VAT技术的复合材料层合板螺栓连接补强研究. 玻璃钢/复合材料. 2012, 68-72, http://lib.cqvip.com/Qikan/Article/Detail?id=1003430664.[99] Zhang, Xiaoqing, Fan, Xinyu, Yan, Chun, Li, Hongzhou, Zhu, Yingdan, Li, Xiaotuo, Yu, Liping. Interfacial Microstructure and Properties of Carbon Fiber Composites Modified with Graphene Oxide. ACS APPLIED MATERIALS & INTERFACES[J]. 2012, 4(3):&nbsp1543-1552, http://www.irgrid.ac.cn/handle/1471x/755350.[100] 祝颖丹. Application of the Variable Angle Tow Process for Reinforcement on Composite Laminates with a Hole. 第17届全国复合材料学术会议论文集[J]. 2012, 1—11-, http://www.irgrid.ac.cn/handle/1471x/755359.[101] 于丽萍, 颜春, 张笑晴, 李红周, 祝颖丹, 刘俊龙, 廖栋. Study on polybenzoxazine resin toughened by epoxy-terminated methyl phenyl silicon oil. 材料导报[J]. 2012, 22(11):&nbsp71—75-, http://www.irgrid.ac.cn/handle/1471x/755374.[102] Luo, Ting, Zhang, Caixia, Zhang, Zhiyong, Zhu, Yingdan, Li, Jun. Rational designs of crystal solid-solution materials for lithium-ion batteries. PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS[J]. 2011, 248(9):&nbsp2027-2031, https://www.webofscience.com/wos/woscc/full-record/WOS:000295367500005.[103] 祝颖丹. RESEARCH AND DEVELOPMENT ON VARIABLE-STIFFNESS COMPOSITE LAMINATES MANUFACTURED BY VARIABLE ANGLE TOW PLACEMENT. Polymer-Plastics Technology and Engineering[J]. 2011, 66(1):&nbsp61—66-, http://www.irgrid.ac.cn/handle/1471x/755160.[104] Zhu, Y, Allen, G C, Adams, J M, Gittins, D, Heard, P J, Skuse, D R. Statistical analysis of particle dispersion in a PE/TiO2 nanocomposite film. COMPOSITE STRUCTURES[J]. 2010, 92(9):&nbsp2203-2207, http://dx.doi.org/10.1016/j.compstruct.2009.08.045.[105] Zhu, Y, Allen, G C, Adams, J M, Gittins, D, Heard, P J, Skuse, D R. Characterization of size, aspect ratio and degree of dispersion of particles in filled polymeric composites using FIB. CLAY MINERALS[J]. 2009, 44(2):&nbsp195-205, https://www.webofscience.com/wos/woscc/full-record/WOS:000270805600004.[106] Zhu, Y D, Allen, G C, Adams, J M, Gittins, D, Herrero, M, Benito, P, Heard, P J. Dispersion characterization in layered double hydroxide/Nylon 66 nanocomposites using FIB imaging. JOURNAL OF APPLIED POLYMER SCIENCE[J]. 2008, 108(6):&nbsp4108-4113, https://www.webofscience.com/wos/woscc/full-record/WOS:000255339200083.[107] ZHU Yingdan, WANG Jihui, TAN Hua, GAO Guoqiang. Capillary Micro-flow Through a Fiber Bundle(Part 2). 武汉理工大学学报:材料科学英文版. 2005, 20(3):&nbsp64-66, http://lib.cqvip.com/Qikan/Article/Detail?id=20191677.[108] 祝颖丹, 王继辉, 田正刚, 高国强. LCM充模过程中的边缘效应. 复合材料学报[J]. 2005, 22(4):&nbsp6-10, http://lib.cqvip.com/Qikan/Article/Detail?id=18047083.[109] 田正刚, 王继辉, 张垣, 高国强, 祝颖丹. LCM工艺中边缘效应对充模流动的影响. 武汉理工大学学报[J]. 2005, 27(4):&nbsp16-18,22, http://lib.cqvip.com/Qikan/Article/Detail?id=15476172.[110] 田正刚, 祝颖丹, 张垣, 王继辉, 高国强. 剪切效应对纤维增强材料渗透率的影响. 武汉理工大学学报[J]. 2005, 27(2):&nbsp4-6,12, http://lib.cqvip.com/Qikan/Article/Detail?id=12175603.[111] 祝颖丹, 田正刚, 王继辉, 孟志华. LCM监控技术研究进展. 玻璃钢/复合材料[J]. 2004, 26-30, http://lib.cqvip.com/Qikan/Article/Detail?id=10650707.[112] 高国强, 昝海漪, 杨最, 祝颖丹, 谭华. 液体模塑用不饱和聚酯树脂的工艺性能研究. 玻璃钢/复合材料[J]. 2003, 23-26, http://lib.cqvip.com/Qikan/Article/Detail?id=8391976.[113] 谭华, 祝颖丹, 王继辉, 高国强. 单根纤维束轴向渗透的研究. 武汉理工大学学报[J]. 2003, 25(9):&nbsp1-4, http://lib.cqvip.com/Qikan/Article/Detail?id=8322036.[114] 李学梅, 王继辉, 翁睿, 祝颖丹. EVA乳胶液对纤维增强氯氧镁水泥界面性能的影响. 复合材料学报[J]. 2003, 20(4):&nbsp67-71, http://lib.cqvip.com/Qikan/Article/Detail?id=8995527.[115] 王继辉, 高国强, 祝颖丹, 李新华. 高渗透介质型真空注射成型工艺的研究. 复合材料学报[J]. 2003, 20(4):&nbsp136-140, http://lib.cqvip.com/Qikan/Article/Detail?id=8995540.[116] 李新华, 祝颖丹, 王继辉, 高国强. 沟槽型真空注射成型工艺的研究. 复合材料学报[J]. 2003, 20(4):&nbsp111-116, http://lib.cqvip.com/Qikan/Article/Detail?id=8995535.[117] 李新华, 祝颖丹, 王继辉, 高国强. VIMP成型工艺用不饱和聚酯树脂的研究. 武汉理工大学学报[J]. 2002, 24(8):&nbsp1-4, http://lib.cqvip.com/Qikan/Article/Detail?id=6724595.[118] 祝颖丹, 李学梅, 翁睿. 玻璃纤维增强氯氧镁复合材料界面粘接性能的研究. 玻璃钢/复合材料. 2001, 19-, http://lib.cqvip.com/Qikan/Article/Detail?id=5644984.[119] 翁睿, 祝颖丹. 氯氧镁复合材料耐老化性研究. 国外建材科技. 2001, 22(3):&nbsp49-51, http://lib.cqvip.com/Qikan/Article/Detail?id=5651658.[120] 翁睿, 邓京兰, 祝颖丹. 玻璃纤维增强氯氧镁复合材料力学性能研究. 武汉理工大学学报[J]. 2001, 23(6):&nbsp34-, http://lib.cqvip.com/Qikan/Article/Detail?id=5285948.[121] 翁睿, 王继辉, 祝颖丹, 邓京兰. 二十一世纪国外开模成型技术发展动态. 玻璃钢/复合材料. 2001, 43-, http://lib.cqvip.com/Qikan/Article/Detail?id=5644992.[122] 祝颖丹, 邓京兰, 王继辉. SCRIMP成型工艺的研究. 玻璃钢/复合材料. 2001, 40-, http://lib.cqvip.com/Qikan/Article/Detail?id=5883525.[123] 翁睿, 祝颖丹. 树脂基复合材料在欧美机车汽车制造业的应用. 汽车科技. 2001, 14-16, http://lib.cqvip.com/Qikan/Article/Detail?id=5391333.
发表著作
(1) /,Advances in the characterization of industrial minerals, Chapter 4: Particle Size and Shape Characterisation – Current Technology and Practice,The European Mineralogical Union and the Mineralogical Society of Great Britain and Ireland ,2011-07,第2作者
科研活动
参与会议
(1) Statistical Analysis of Particle Dispersion in a PE/TiO2 Nanocomposite Film,2009-06, Y. Zhu, G. C. Allen, J. M. Adams, D. Gittins and D.R. Skuse (2) Dispersion Characterization in Layered Double Hydroxide/Nylon 66 Nanocomposites using FIB Imaging,2008-07,Y. Zhu, G. C. Allen, J. M. Adams, D. Gittins, M. Herrero, P. Benito, P. J. Heard
2013 中国科学院大学,网络信息中心.