数字化设计与制造

产品外形仿生设计研究现状与进展

  • 罗仕鉴 ,
  • 张宇飞 ,
  • 边泽 ,
  • 单萍
展开
  • 1. 浙江大学工业设计系 杭州 310027;
    2. 浙江大学计算机辅助设计与图形学国家重点实验室 杭州 310058
罗仕鉴,男,1974年出生,博士,教授,博士研究生导师。主要研究方向为用户体验与产品创新设计、计算机辅助工业设计、服务设计、人机工程与人机交互设计。E-mail:sjluo@zju.edu.cn;边泽,女,1992年出生,博士研究生。主要研究方向为用户体验与产品创新设计,仿生设计。E-mail:35924864@qq.com;单萍,女,1994年出生,博士研究生。主要研究方向为用户体验设计,服务设计。E-mail:403191990@qq.com

收稿日期: 2018-01-18

  修回日期: 2018-09-10

  网络出版日期: 2018-11-05

基金资助

国家自然科学基金资助项目(51675476和51175458)。

Status and Progress of Product Shape Bionic Design

  • LUO Shijian ,
  • ZHANG Yufei ,
  • BIAN Ze ,
  • CHAN Ping
Expand
  • 1. Department of Industrial Design, Zhejiang University, Hangzhou 310027;
    2. State Key Lab of CAD & CG, Zhejiang University, Hangzhou 310058

Received date: 2018-01-18

  Revised date: 2018-09-10

  Online published: 2018-11-05

摘要

创新是当前及未来发展的关键,而仿生是灵感来源的重要途径。仿生设计是工业设计中重要的研究方法,也是创新的重要手段。通过对国内外相关文献的研究,论述了产品外形仿生设计的相关概念,分析了产品外形仿生设计在形态仿生、功能仿生、结构仿生、肌理仿生、色彩仿生、意象仿生领域的发展,针对已有的产品外形仿生设计案例,提出了“自上而下”和“自下而上”两种设计过程,罗列了产品外形仿生设计中的主要方法。在产品外形仿生设计研究方法方面,提出了产品外形仿生设计的本体层、行为层和价值层三个层次模型,系统地探讨了产品外形仿生设计生物外形本征提取、产品外形设计与表达、生物外形本征与产品外形的融合三个方面的研究内容与体系结构,以及关键技术和存在的问题。针对仿生设计与信息技术的融合发展,提出产品外形仿生设计的研究热点和发展趋势。

本文引用格式

罗仕鉴 , 张宇飞 , 边泽 , 单萍 . 产品外形仿生设计研究现状与进展[J]. 机械工程学报, 2018 , 54(21) : 138 -155 . DOI: 10.3901/JME.2018.21.138

Abstract

Innovation is the key to current and future development, and bionics is an important way to gathering inspiration. Bionic design is an important research approach in industrial design and a significant method of innovation. Based on the investigation of related literature, the concepts of product shape bionic design are proposed. The development of product shape bionic design in the fields of modeling, function, structure, texture is discussed. According to the existing cases of the product shape bionic design,two design processes -‘up-down’&‘bottom-up’ are proposed, and the main approaches are listed. The process and method of product shape bionic design is summarized. In terms of product shape bionic design research methods,the three level models named ontology level, behavioral level and value level are put forward. This article systematically discuss the research content, architecture and the key technologies in three aspect of bio-shape intrinsic extraction, product shape design and expression, bio-shape intrinsic and product shape fusion are discussed,and review existed problems of product shape bionic design. Finally, according to the integrated development of bionic design and information technology, some focused research issues on product shape bionic design are formulated and the future development trend is outlined.

参考文献

[1] 柳冠中,何人可. 工业设计史[M]. 北京:高等教育出版社,2010. LIU Guanzhong,HE Renke. A history of industrual design[M]. Beijing:Higher Education Press,2010.
[2] HARMAN J. The shark's paintbrush:biomimicry and how nature is inspiring innovation[M]. Ashland:White Cloud Press,2013.
[3] NUSSBAUM B,BERNER R. Special report:Get creative!how to build innovative companies[EB/OL]. Business Week online,2005-03-01[2016-10-18]. http://www.businessweek.com/magazine/content/0531/b3945401.Html.
[4] CHEN H,ZHANG P,ZHANG L,et al. Continuous directional water transport on the peristome surface of nepenthes alata[J]. Nature,2016,532(7597):5-89.
[5] NACHTIGALL W,WISSER A. Bionics by examples:250 scenarios from classical to modern times[M]. London:Springer,2014.
[6] POHL G,NACHTIGALL W. Biomimetics for architecture &design:Nature-analogies-technology[M]. London:Springer,2015.
[7] Biomimicy Institute. Ask nature[EB/OL].[2016-1-20]. http://www.asknature.org.
[8] 蔡江宇,金玲. 仿生设计研究[M].北京:中国建筑工业出版社,2013 CAI Jangyu,JIN Ling. Bionic design research[M]. Beijing:China Architecture&Building Press,2013.
[9] 蔡克中,张志华. 工业设计仿生学的应用研究[J]. 装饰,2004(130):73. CAI Kezhong,ZHANG Zhihua. Study on application of industrial design bionics[J]. Art & Design,2004(130):73.
[10] 张彦茹. 灯具的仿生设计研究[D]. 天津:天津科技大学,2014. ZHANG Yanru. Study on bionics design of lamps and lanterns[D]. Tianjin:Tianjin University of Science and Technology,2014.
[11] 马宏宇. 游艇外观造型的仿生设计研究[D]. 武汉:武汉理工大学,2010. MA Hongyu. Study on the bionic design of the appearance of yacht[D]. Wuhan:Wuhan University of Technology,2010.
[12] 陈为. 工业设计中仿生设计的应用[J]. 机械研究与应用,2003,16(4):9-10,12. CHEN Wei. The application of bionic design in industrial design[J]. Mechanical Research & Applicaton,2003,16(4):9-10,12.
[13] GU Yunqing,ZHAO Gang,ZHENG Jinxing,et al. Experimental and numerical investigation on drag reduction of non-smooth bionic jet surface[J]. Ocean Engineering,2014,81(5):50-57.
[14] 潜铁宇,李昕. 产品仿生设计的生物学原理[J]. 包装工程,2008,29(1):154-156. QIAN Tieyu,LI Xin. Biological principles in product bionic design[J]. Packaging Engineering,2008,29(1):154-156.
[15] 戴振东,于敏,吉爱红,等. 动物驱动足摩擦学特性研究及仿生设计[J].中国机械工程,2005,16(16):1454-1457. DAI Zhendong,YU Min,JI Aihong,et al. Study on tribological characteristics of animals'driving pads and their bionic design[J]. China Mechanical Engineering,2005,16(16):1454-1457.
[16] JIA Honglei,LI Changying,ZHANG Zhilong,et al. Design of bionic saw blade for corn stalk cutting[J]. Journal of Bionic Engineering,2013,10(4):497-505.
[17] 吕建刚,高飞,宋彬,等. 基于蛇怪蜥蜴踩水机理的仿生推进装置数值计算方法研究[J]. 军械工程学院学报,2012,24(5):26-30. LÜ Jiangang,GAO Fei,SONG Bin,et al. Research on the method of numerical calculation for propulsion unit based on the mechanism of the basilisk lizard running on the water[J]. Journal of Ordnance Engineering College,2012,24(5):26-30.
[18] 江锦波,彭旭东,白少先,等. 仿生集束螺旋槽干式气体密封特性的数值分析[J]. 机械工程学报,2015,51(15):20-26. JIANG Jinbo,PENG Xudong,BAI Shaoxian,et al. Numerical analysis of characteristics of a bionic cluster spiral groove dry gas seal[J]. Journal of Mechanical Engineering,2015,51(15):20-26.
[19] 王振龙,杭荣冠,王扬威,等. 乌贼游动机理及其在仿生水下机器人上的应用[J]. 机械工程学报,2008,44(6):1-9. WANG Zhenlong,HANG Rongguan,WANG Yangwei,et al. Swimming mechanism of squid/cuttlefish and its application to biomimetic underwater robots[J]. Journal of Mechanical Engineering,2008,44(6):1-9.
[20] FENG C M,LIU T S. A bionic approach to mathematical modeling the fold geometry of deployable reflector antennas on satellites[J]. Acta Astronautica,2014,103(10-11):36-44.
[21] ZHAO Ling,MA Jianfeng,CHEN Wuyi,et al. Lightweight design and verification of gantry machining center crossbeam based on structural bionics[J]. Journal of Bionic Engineering,2011,8(2):201-206.
[22] LIANG Jianhong,YANG Xingbang,WANG Tianmiao,et al. Design and experiment of a bionic gannet for plunge-diving[J]. Journal of Bionic Engineering,2013,10(3):282-291.
[23] 刘小民,李烁. 仿鸮翼前缘蜗舌对多翼离心风机气动性能和噪声的影响[J]. 西安交通大学学报,2015,49(1):14-20,33. LIU Xiaomin,LI Yue. Effects of bionic volute tongue bioinspired by leading edge of owl wing on aerodynamic performance and noise of multi-blade centrifugal Fan[J]. Journal of Xi'an jiaotong university,2015,49(1):14-20,33.
[24] 岑海堂,陈五一. 小型翼结构仿生设计与试验分析[J].机械工程学报,2009,45(3):286-290. CENG Haitang,CHEN Wuyi. Structural bionics design and experimental analysis for small wing[J]. Journal of Mechanical Engineering,2009,45(3):286-290.
[25] 王立新,黄风山,周强. 致灾农业昆虫捕集滑板表面结构仿生构建与性能验证[J]. 农业工程学报,2015,31(20):34-40. WANG Lixin,HUANG Fengshan,ZHOU Qiang. Surface structure biomimetic design and performance testing of slippery trapping plate used for controlling agricultural insect[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE),2015,31(20):34-40.
[26] 张建,王伟波,高杰,等. 深水耐压壳仿生设计与分析[J]. 船舶力学,2015,19(11):1360-1367. ZHANG Jian,WANG Weibo,GAO Jie,et al. Bionic design and analysis of deepwater pressure hull[J]. Journal of Ship Mechanics,2015,19(11):1360-1367.
[27] MIAO Dejun,SUI Xiuhua,XIAO Linjing. Bonic design and finite element analysis of elbow in ice transportation cooling system[J]. Journal of Bionic Engineering,2010,7(3):301-306.
[28] 张德远,蔡军,李翔,等. 仿生制造的生物成形方法[J].机械工程学报,2010,46(5):88-92. ZHANG Deyuan,CAI Jun,LI Xiang,et al. Bioforming methods of bionic manufacturing[J]. Journal of Mechanical Engineering,2010,46(5):88-92.
[29] 孙宁娜,张凯. 仿生设计[M]. 北京:电子工业出版社,2014. SUN Ningna,ZHANG Kai. Bionic design[M]. Beijing:Publishing House of Electronics Industry,2014.
[30] 代菊英. 产品设计中的仿生方法研究[D]. 南京:南京航空航天大学,2007. DAI Juying. Research on bionics in product design[D]. Nanjing:Nanjing University of Aeronautics and Astronautics,2007.
[31] 姜娜,杨君顺. 仿生在产品造型设计中的应用[J]. 包装工程,2008,29(1):146-147,153. JIANG Na,YANG Junshun,Application of bionics design in sculpture design for products[J]. Packaging Engineering,2008,29(1):146-147,153.
[32] 侯晓鹏,杨保华. 面向产品设计领域的色彩仿生特征提取探析[J]. 包装工程,2011,32(24):139-142. HOU Xiaopeng,YANG Baohua. Research on the feature extraction of bionic color for product-oriented design[J]. Packaging and Engineering,2011,32(24):139-142.
[33] 江牧. 工业设计仿生的价值所在[J]. 装饰,2013,240:16-19. JIANG Mu. Bionic's value in industrial design[J]. Art & Design,2013,240:16-19.
[34] 祝莹,曹建中,韦艳丽. 汽车造型设计中的形态仿生研究[J]. 合肥工业大学学报,2010,33(10):1458-1461. ZHU Ying,CAO Jianzhong,WEI Yanli. Research on bionic form design in automobile modeling design[J]. Journal of Hebei University of Technology,2010,33(10):1458-1461.
[35] 罗仕鉴,李文杰. 产品族设计DNA[M]. 北京:中国建筑工业出版社,2016. LUO Shijian,LI Wenjie. Product family design DNA[M]. Beijing:China Architecture & Building Press,2016.
[36] 饶金通,董槐林,姜青山. 基于特征的参数化高效建模技术[J]. 厦门大学学报,2006,45(2):191-195. RAO Jintong,DONG Huailin,JIANG Qingshan. An advanced parametric modeling based on feature[J]. Journal of Xiamen University,2006,45(2):191-195.
[37] 李博,余隋怀,初建杰,等. 多约束下的产品形态设计计算机辅助系统研究[J]. 中国机械工程,2013,24(3):340-345. LI Bo,YU Suihuai,CHU Jianjie,et,al. Research on product form design computer aided system based on multi-constraints[J]. China Mechanical Engineering,2013,24(3):340-345.
[38] 应济,张万利. 基于特征的参数化建模技术的研究[J].机电工程,2003,20(4):4-7. YING Ji,ZHANG Wanli. Research on feature based parametric model technology[J]. Mechanical & Electrical Engineering Magazine,2003,20(4):4-7.
[39] 白贺斌,徐燕申,曹克伟. 基于特征的CAD参数化建模技术及其应用[J]. 机械设计,2005,22(2):14-16. BAI Hebin,SHU Yanshen,CAO Kewei. Based on featured CAD parameterized modeling technology and its application[J]. Journal of Machine Design,2005,22(2):14-16.
[40] 罗煜峰. 基于SolidWorks的参数化特征建模技术研究[J]. 机械设计,2004,21(2):52-54,62. LUO Yufeng. Research on parametric feature modeling based on solidworks[J]. Journal of Machine Design,2004,21(2):52-54,62.
[41] 叶鹏,胡军,李平. UG的参数化建模方法及三维零件库的创建[J]. 机械,2004,31:74-76. YE Peng,HU Jun,LI Ping. The method of parameterization model of UGand the establishment methods of 3D part warehouses[J]. Machinery,2004,31:74-76.
[42] 廖庚华,刘庆平,陈坤,等. 基于CATIA的轴流风机叶片仿生参数化建模[J]. 吉林大学学报,2012,42(2):403-406. LIAO Genghua,LIU Qingping,CHEN Kun,et al. Parameterized modeling of bionic blade of axial fan based on CATIA[J]. Journal of Jilin University Engineering and Technology Edition,2012,42(2):403-406.
[43] 景于,张小开,张福昌. 色彩的仿生设计方法与实例[J].艺术·生活,2008:36-37. JING Yu,ZHANG Xiaokai,ZHANG Fuchang. The bionic design method and example of color[J]. Art & Life,2008:36-37.
[44] NEUROHR R,DRAGOMIRESCU C. Bionics in engineering-defining new goals in engineering education at ‘polytehnica’ university of bucharest[C]//Portugal:ICEE 2007.
[45] PETERS T. Nature as measure the biomimicry guild[J]. Article in Architectural Design,2011:44-47.
[46] KIM S J,LEE J H. Parametric shape modification and application in a morphological biomimetic design[J]. Advanced Engineering Informatics,2015,29:76-86.
[47] 高蕾. 基于情感体验的产品仿生设计[D]. 天津:天津科技大学,2014. GAO LEI. Bionics design of product based on emotion experience[D]. Tianjin:Tianjin University of Science and Technology,2014.
[48] 杨昊. 大型公共建筑之生态仿生设计研究[D]. 郑州:河南大学,2016. YANG Hao. Ecological bionic design research of large public buildings[D]. Zhenzhou:Henan University,2016.
[49] 冯海涛. 电动自行车车身造型仿生设计研究[D]. 长春:吉林大学,2016. FENG Haitao. Research on bionic design of electronic bicycle body styling[D]. Changchun:Jilin University:2016.
[50] 袁雪青,陈登凯,杨延璞,等. 意象关联产品形态仿生设计方法[J]. 计算机工程与应用,2014,50(8):178-182. YUAN Xueqing,CHEN Dengkai,YANG Yanpu,et al. Bionic imagery associated with product form design[J]. Computer Engineering and Applications,2014,50(8):178-182.
[51] 郭聪聪. 基于章鱼形体特征的仿生设计-家用吸尘器设计[J]. 中国包装工业,2016(6):256-257. GUO Congcong. Bionic design based on the characteristics of octopus-vacuum cleaner design[J]. China Packaging Industry,2016(6):256-257.
[52] 邓为彪. 灯具仿生设计研究[D]. 武汉:湖北美术学院,2017. DENG Weibiao. Research on bionic design of lamp and lanterns[D]. Wuhan:Hubei Institute of Fine Arts,2017.
[53] 邵景峰. 仿生设计在汽车造型设计中应用的研究[D]. 上海:上海交通大学,2007. SHAO Jingfeng. The study of application of bionics design in car styling design[D]. Shanghai:Shanghai Jiao Tong University,2007.
[54] 许永生. 产品造型设计中仿生因素的研究[D]. 成都:西南交通大学,2013. XU Yongsheng. The research on the bionic factors in product design[D]. Chengdu:Southwest Jiaotong University,2013.
[55] 于学斌. 产品仿生设计目标功能语义关联法研究[D]. 北京:北京服装学院,2008. YU Xuebin. The research on the method of the functional semantic conjunction in the bionic production design[D]. Beijing:Beijing Institute Of Fashion Technology,2008.
[56] 康红娜. 汽车造型仿生设计及其符号性[D]. 长沙:湖南大学,2012. KANG Hongna. Bionic design and symbol of automatic[D]. Changsha:Hunan university,2012.
[57] 万里. 基于形态仿生的游艇造型设计方法研究[D]. 武汉:武汉理工大学,2012. WANG Li. The research on design method of yachts modeling based on form bionics[D]. Wuhan:Wuhan University of Technology,2012.
[58] TATEISHI T. Trail of bionic design[J]. Materials Science Engineering,2001(17):1-2.
[59] TAVSANA F,SONMEZB E. Biomimicry in furniture design[C]//7th World Conference on Educational Sciences,Athens,Greece:Novotel Athens Convention Center,2015.
[60] STACEY M S. Psychological challenges for the analysis of style[J]. Artificial Intelligence Engineering Design,Analysis and Manufacturing,2006,20(2):167-184.
[61] BIRKELAND J. Design for sustainability:A sourcebook of integrated eco-logical design[M]. Earthscan Publications:London,2002.
[62] 陈泳. 基于仿生学的产品概念设计方法学探索[D]. 杭州:浙江大学,2004. CHEN Yong. Methodology of product conceptual design based on bionics[D]. Hangzhou:Zhejiang University,2004.
[63] 孙思策. 仿生形态参数化在景观设计中应用探究[D]. 南京:东南大学,2017. SUN Sice. Study on the application of bionic shape parameterization in landscape[D]. Nanjing:Southeast University,2017.
[64] 郭南初. 产品形态仿生设计关键技术研究[D]. 武汉:武汉理工大学,2012. GUO Nanchu. The Research on gordian techniques of product form bionics design[D]. Wuhan:Wuhan University of Technology,2012.
[65] 任露泉,梁云虹. 生物耦合生成机制[J]. 吉林大学学报,2011,41(5):1348-1357. REN Luquan,LIANG Yunhong. Generation mechanism of biological coupling[J]. Journal of Jilin University,2011,41(5):1348-1357.
[66] 刘伟,曹国忠,檀润华,等. 多生物效应技术实现方法研究[J]. 机械工程学报,2016,52(9):129-140. LIU Wei,CAO Guozhong,TAN Runhua,et al. Research on measures to technical realization of multi biological effects[J]. Journal of Mechanical Engineering,2016,52(9):129-140.
[67] 曹小良. 工业设计环境下多生物效应的研究及应用[D].天津:河北工业大学,2015. CAO Xiaoliang. Research and application of multiple biological effects in industrial design environment[D]. Tianjing:Hebei University of Technology,2015.
[68] 刘小民,赵嘉,李典. 单圆弧等厚叶片前后缘多元耦合仿生设计及降噪机理研究[J]. 西安交通大学学报,2015,49(3):1-10. LIU Xiaomin,ZHAO Jia,LI Dian. Noise reduction mechanism of single-arc bionic blade with wave shape leading edge coupled with serrated trailing edge[J]. Journal of Xi'an Jiaotong University,2015,49(3):1-10.
[69] 陆冀宁,徐伯初,丁磊. 3种不同的高速列车头车造型仿生设计[J]. 包装工程,2017,28(2):26-30. LU Jingning,XU Bochu,DING Lei. Three different kinds of bio-inspired design of high speed train head[J]. Packaging Engineering,2017,28(2):26-30.
[70] MILES L. Techniques of value analysis and engineering[M]. New York:Mc Graw Hill,2015.
[71] MAK T W,SHU L H. Abstraction of biological analogies for design[J]. Annals-Manufacturing Technology,2004.
[72] VANDEVENNE D,PIETERS T,DUFLOU J R. Enhancing novelty with knowledge-based support for biologically-inspired design[J]. Design Studies,2016,46:152-173.
[73] WILSON J O,ROSEN D,NELSON B A,et al. The effects of biological examples in idea generation[J]. Design Studies,2010,31(31):169-186.
[74] CHEONG H,HALLIHAN G,SHU L H. Understanding analogical reasoning in biomimetic design-an inductive approach[C]//Design Computing and Cognition'12,Texas,2014:21-39.
[75] CHEONG H,SHU L. Using templates and mapping strategies to support analogical transfer in biomimetic design[J]. Design Studies,2013,34(6):706-728.
[76] COHEN Y H,REICH Y,GREENBERG S. Biomimetics:Structure-function patterns approach[J]. Journal of Mechanical Design,2014,136(11):111108.
[77] NAGEL J K S,NAGEL R L,STONE R B,et al. Function-based biologically inspired concept generation[J]. Artificial Intelligence for Engineering Design Analysis & Manufacturing,2010,24(4):521-535.
[78] GOEL A,ZHANG G,WILTGEN B,et al. The design study library Z:Compiling,analyzing and using biologically inspired design case studies[C]//Design Computing and Cognition 14. Berlin,GER:Springer International Publishing,2015,625-643.
[79] MARK T W,SHU L H. Using descriptions of biological phenomena for idea generation[J]. Research in Engineering Design,2008,19(1):21-28.
[80] VINCENT J F,MANN D L. Systematic technology transfer from biology to engineering[J]. Philosophical Transactions Mathematical Physical and Engineering,2002,360(1791):159-173.
[81] BOGATYREV N,BOGATYREVA O. BioTRIZ:a win-win methodology for eco-innovation[C]//Eco-Innovation and the Development of Business Models. GER:Springer International Publishing,2014:297-314.
[82] 于帆. 意象造型设计[M]. 武汉:华中科技大学出版社,2007. YU Fan. Design of imagery moldling[M]. Wuhan:Huazhong University of Science & Technology Press,2007.
[83] 陆冀宁. 仿生设计中生物形态特征提取浅析[J]. 装饰,2009,189:136-138. LU Jining. Brief Analysis on extracting biological features in bionic design[J]. Art & Design,2009,189:136-138.
[84] 田保珍. 仿生设计方法探析[J]. 艺术与设计,2009(3):169-171. TIAN Baozhen. Analysis of the method of bionic design[J]. Art and Design,2009(3):169-171.
[85] 张样泉. 产品形态仿生设计中的生物形态简化研究[D].长沙:湖南大学,2006. ZHANG Yangquan. Study on the simplification of the Biological form in biomimetic design of product form[D]. Changsha:Hunan University,2006.
[86] 鲁道夫·阿恩海姆. 视学思维[M]. 腾守尧译. 成都:四川人民出版社,1998. Rudolf Arnheim. Aesthtics design art education[M]. Chengdu:Sichuan People's Publishing House,1998.
[87] 邬烈炎. 解构主义设计[M]. 南京:江苏美术出版社,2001. WU Lieyan. Deconstructive design[M]. Nanjing:Jiangsu Art Publishing House,2001.
[88] 景于. 形态与色彩的仿生设计研究[D]. 无锡:江南大学,2008. JING Yu. A study on bionic design of form and color[D]. Wuxi:Jangnan University,2009.
[89] JUNIOR W K,GUANABARA A S. Methodology for product design based on the study of bionics[J]. Materials and Design,2005(26):149-155.
[90] 王姝歆,周建华,颜景平. 微小型仿生飞行机器人柔性翅的仿生设计与实验研究[J]. 实验流体力学,2006,20(1):75-79. WANG Shuxin,ZHOU Jianhua,YAN Jingping. Bionic design and experiment on flexible wings of a bionic flying micro-robot[J]. Journal of Experiments in Fluid Mecballia,2006,20(1):75-79.
[91] KIM S J,LEE J H. How biomimetic approach enlarges morphological solution space in a streamlined high-speed train design[C]//Proceedings of the 16th SIGraDi Conference,Brazil,Fortaleza,2012:538-542.
[92] 熊艳,李彦,李文强,等. 基于形态特征线意象量化的产品形态设计方法[J]. 四川大学学报,2011,43(3):233-238. XIONG Yan,LI Yan,LI Wenqiang,et al. An image quantization of product form design method based on from feature lines[J]. Journal of Sichuan University,2011,43(3):233-238.
[93] JENS B. Bionics in action:The design work of Franco Lodato,Motorola[M]. Denmark:Story Works Aps,2004.
[94] 罗仕鉴,朱上上,冯骋. 面向工业设计的产品族设计DNA[J]. 机械工程学报,2008,44(7):123-128. LUO Shijian,ZHU Shangshang,FENG Pin. Product family design DNA in industrial design[J]. Journal of Mechanical Engineering,2008,44(7):123-128.
[95] 罗仕鉴,朱上上. 工业设计中基于本体的产品族设计DNA[J]. 计算机集成制造系统,2009,15(2):226-233. LUO Shijian,ZHU Shangshang. Ontology-based product family design DNA in industrial design[J]. Computer Integrated Manufacturing Systems,2009,15(2):226-233.
[96] 罗仕鉴,翁建广,陈实,等. 基于情境的产品族设计风格DNA[J]. 浙江大学学报,2009,43(6):1112-1117. LUO Shijian,WENG Jianguang,CHEN Shi,et al. Scenario-based product family design styling DNA[J]. Journal of Zhejiang University,2009,43(6):1112-1117.
[97] 傅业焘,罗仕鉴. 面向风格意象的产品族外形基因设计[J]. 计算机集成制造系统,2012,18(3):449-457. FU Yetao,LUO Shijian. Style perception-oriented product family shape gene design[J]. Computer Integrated Manufacturing Systems,20012,18(3):449-457.
[98] 罗仕鉴,朱上上. 工业设计中基于本体的产品族设计DNA[J]. 计算机集成制造系统,2009,15(2):226-233. LUO Shijian,ZHU Shangshang. Ontology-based product family design DNA in industrial design[J]. Computer Integrated Manufacturing Systems,2009,15(2):226-233.
[99] 罗仕鉴,翁建广,陈实,等. 基于情境的产品族设计风格DNA[J]. 浙江大学学报,2009,43(6):1112-1117. LUO Shijian,WENG Jianguang,CHEN Shi,et al. Scenario-based product family design styling DNA[J]. Journal of Zhejiang University,2009,43(6):1112-1117.
[100] 罗仕鉴,朱上上,应放天,等. 基于视觉-行为-情感的产品族设计基因[J]. 计算机集成制造系统,2009,15(12):2289-2295. LUO Shijian,ZHU Shangshang,YING Fangtian. Vision-behavior-emotion based product family design gene[J]. Computer Integrated Manufacturing Systems,2009,15(12):2289-2295.
[101] 朱上上,罗仕鉴,应放天,等. 支持产品视觉识别的产品族设计DNA[J]. 浙江大学学报,2010,44(4):715-721. ZHU Shangshang,LUO Shijian,YING Fangtian,et al. Product family design DNA for product visual identity[J]. Journal of Zhejiang University,2010,44(4):715-721.
[102] KARJALAINEN T M,SNELDERS,DIRK. Designing visual recognition for the brand[J]. Journal of Product Innovation Management,2010,27(1):6-22.
[103] KARJALAINEN T M. Semantic transformation in design:communicating strategic brand identity through product design references[M]. Finland:The University of Art and Design Helsinki,2006.
[104] KARJALAINEN T M. It looks like a Toyota:Educational approaches to designing for visual brand recognition[J]. International Journal of Design,2007,1:14.
[105] KARJALAINEN T M. When is a car like a drink? Metaphor as a means to distilling brand and product identity[J]. Design Management Journal,2001,12(1):66-71.
[106] BEMSEN J. Bionics in action:The design work of Franco Lodato,Motorola[M]. Denmark:Story Works,2004.
[107] Mccormack J P,Cagan J. Speaking the Buick language:capturing,understanding,and exploring brand identity with shape grammars[J]. Design Studies,2004,25(1):1-29.
[108] 杨延璞,陈登凯,余隋怀,等. 基于形状文法的泛族群产品形态设计[J]. 计算机集成制造系统,2013,19(9):2107-2115. YANG Yanpu,CHEN Dengkai,YU Suihuai. Pan-ethnic-group product form design based on shape grammar[J]. Computer Integrated Manufacturing Systems,2013,19(9):2107-2115.
[109] 卢兆麟,汤文成,薛澄岐. 一种基于形状文法的产品设计DNA推理方法[J]. 东南大学学报,2010,40(4):704-711. LU Zhaolin,TANG Wencheng,XUE Chengqi. Method of design DNA reasoning based on shape grammar[J]. Journal of Southeast University,2010,40(4):704-711.
[110] 徐江,王海贤,孙守迁. 基于风格进化模型的产品生成设计方法[J]. 东南大学学报,2012,42(4):654-658. XU Jiang,WANG Haixian,SUN Shouqian. Method of product generative design based on style evolution model[J]. Journal of Southeast University(Natural Science Edition),2012,42(4):654-658.
[111] TANOUE C,ISHIZAKA K,NAGAMACHI M. Kansei engineering:A study on perception of vehicle interior image[J]. International Journal of Industrial Ergonomics,1997(19):115-128.
[112] CHANG H C,LAI H H,CHANG Y M. A measurement scale for evaluating the attractiveness of a passenger car form aimed at young consumers[J]. International Journal of Industrial Ergonomics,2007,37,21-30.
[113] 石夫乾,孙守迁,徐江. 产品感性评价系统的模糊D-S推理建模方法与应用[J]. 计算机辅助设计与图形学学报,2008,20(3):361-365. SHI Fuqian,SUN Shouqian,XU Jiang. Fuzzy dempster-shafer evidence theory and its application to product kansei evaluation system[J]. Journal of Computer-aided Design & Computer Graphics,2008,20(3):361-365.
[114] 王黎静,曹琪琰,莫兴智,等. 民机驾驶舱内饰设计感性评价研究[J]. 机械工程学报,2014,50(22):122-126. WANG Lijing,CAO Qiyan,MO Xingzhi,et al. Study of users' kansei on commercial aircraft cockpit interior design[J]. Journal of Mechanical Engineering,2014,50(22):122-126.
[115] 林琳,张志华,张睿欣. 基于遗传算法优化神经网络的产品造型设计评价[J]. 计算机工程与设计,2015,36(3):789-792,813. LIN Lin,ZHANG Zhihua,ZHANG Ruixin. Evaluation of product form design based on BP neutral network trained by genetic algorithm[J]. Computer Engineering and Design,2015,36(3):789-792,813.
[116] 傅业焘,罗仕鉴,周煜啸. 基于感性意象的动漫角色形象评价[J]. 浙江大学学报,2011,45(9):1545-1552,1570. FU Yetao,LUO Shijian,ZHOU Yuxiao. Evaluation of cartoon figure form based on perceptual image[J]. Journal of Zhejiang University,2011,45(9):1545-1552,1570.
[117] 李永锋,朱丽萍. 基于模糊层次分析法的产品可用性评价方法[J]. 机械工程学报,2012,48(14):183-191. LI Yongfeng,ZHU Liping. Product usability evaluation method based on fuzzy analytic hierarchy process[J]. Journal of Mechanical Engineering,2012,48(14):183-191.
[118] 杜鹤民. 感性工学和模糊层次分析法产品设计造型评[J]. 西安工业大学学报,2014,34(3):244-248. DU Hemin. Evaluation of product design based on kansei engineering and FAHP[J]. Journal of Xi'an Technology University,2014,34(3):244-248.
[119] 沈琼. 中、日、韩三国智能手机的感性评价研究[J]. 机械设计,2013,30(11):125-128. SHEN Qiong. Study on perceptual evaluation of smart mobilephones of China,Japan and South Korean[J]. Journal of Machine Design,2013,30(11):125-128.
[120] 孟瑞,王小平,王伟伟,等. 基于感性工学的油罐车设计评价方法研究[J]. 现代制造工程,2011,9:28-32,69. MENG Rui,WANG Xiaoping,WANG Weiwei,et al. Evaluation method of tanker design based on kansei engineering[J]. Modern Manufacturing Engineering,2011,9:28-32,69.
[121] 王田苗,孟偲,关胜国,等. 柔性杆连接的仿壁虎机器人结构设计[J]. 机械工程学报,2009,45(10):1-7. WANG Tianmiao,MENG Cai,GUAN Shengguo. Structure design of gecko robot with compliant shank[J]. Journal of Mechanical Engineering,2009,45(10):1-7.
[122] 宋孟军,丁承君,张明路. 奔跑仿生机构的运动学模型构建与分析[J]. 中国机械工程,2015,26(20):2788-2792. SONG Mengjun,DING Chengjun,ZHANG Minglu. Kinematic construction and analyses for a running bionic mechanism[J]. China Mechanical Engineering,2015,26(20):2788-2792.
[123] KLAN S,KLAAS M,SCHRODER W. The influence of leading edge serrations on the flow field of an artificial owl wing[C]//28th AIAA Applied Aerodynamics Conference 28 June-1 July,2010,Chicago,Illinois.
[124] 刘芳芳,杨灿军,苏琦,等. 仿生鱼鳍运动仿真分析及试验研究[J]. 机械工程学报,2010,46(19):24-29. LIU Fangfang,YANG Canjun,SU Qi,et al. Simulation analysis and experimental research on the movements of biomimetic fin[J]. Journal of Mechanical Engineering,2010,46(19):24-29.
[125] 王骥月,丛茜,梁宁,等. 基于海鸥翼型的小型风力机叶片仿生设计与试验[J]. 农业工程学报,2015,31(10):72-77. WANG Jiyue,CONG Qian,LIANG Ning,et al. Bionic design and test of small-sized wind turbine blade based on seagull airfoil[J]. Transactions of the Chinese Society of Agricultural Engineering,2015,31(10):72-77.
[126] 王姝歆,周建华,颜景平. 微小型仿生飞行机器人柔性翅的仿生设计与实验研究[J]. 实验流体力学,2016,20(1):75-79. WANG Shuxin,ZHOU Jianhua,YAN Jingping. Bionic design and experiment on flexible wings of a bionic flying micro-robot[J]. Journal of Experiments in Fluid Mecballia,2016,20(1):75-79.
[127] DEJUN M,XIUHUA S,LINJING X. Bionic design and finite element analysis of elbow in ice transportation cooling system[J]. Journal of Bionic Engineering,2010,7(3):301-306.
[128] DICKINSON M H. Bionics:Biological insight into mechanical design[J]. Proceedings of the National Academy of Sciences,1999,25:14208-14209.
[129] 孙荪. 文学与仿生[J]. 黄河科技大学学报,2001,3(1):5-12. SUN Sun. Literature and bionics[J]. Journal of Huanghe S&T University,2001,3(1):5-12.
[130] EMAMI J,TASHAKORI M,TASHAKORINIA Z. Bionic design in industrial design education at university of tehran[C]//International Conference on Engineering and Product Design Education,September 04-05,2008,Barcelona,Spain:Universitat Politecnica de Cataluya,2008.
文章导航

/