[1]LI Wenjun,YANG Chunyan,TANG Long,et al.Research on the transformation method for the correlation relation in extenics[J].CAAI Transactions on Intelligent Systems,2019,14(4):619-626.[doi:10.11992/tis.201811027]
Copy

Research on the transformation method for the correlation relation in extenics

References:
[1] 杨春燕, 蔡文.可拓学[M]. 北京:科学出版社, 2014:43-46, 130-133.
[2] 杨春燕.可拓创新方法[M]. 北京:科学出版社, 2017:10-103, 176-182.
[3] 蔡文.物元模型及其应用[M]. 北京:科学技术文献出版社, 1994:21-60.
[4] 汤龙, 杨春燕. 复杂基元相关网下的传导变换[J]. 智能系统学报, 2016, 11(1):104-110 TANG Long, YANG Chunyan. Conductive transformation under complicated basic-element correlative network[J]. CAAI transactions on intelligent systems, 2016, 11(1):104-110
[5] 杨春燕, 蔡文. 可拓学与矛盾问题智能化处理[J]. 科技导报, 2014, 32(36):15-20 YANG Chunyan, CAI Wen. Extenics and intelligent processing of contradictory problems[J]. Science & technology review, 2014, 32(36):15-20
[6] YANG Chunyan, CAI Wen. Extenics:theory, method and application[M]. Beijing:Science Press, 2013:20-149.
[7] 蔡文. 新学科《物元分析》[J]. 广东工学院学报, 1992, 9(4):105-108 CAI Wen. New Discipline《Matter-element Analysis》[J]. Guangdong University of Technology, 1992, 9(4):105-108
[8] 蔡文, 杨春燕, 何斌.可拓逻辑初步[M]. 北京:科学出版社, 2004:55-56.
[9] 牛占文, 徐燕申, 林岳, 等. 发明创造的科学方法论:TRIZ[J]. 中国机械工程, 1999, 1(10):84-89 NIU Zhanwen, XU Yanshen, LIN Yue, et al. Inventive scientific methodology-TRIZ[J]. China mechanical engineering, 1999, 1(10):84-89
[10] 张付英, 张林静, 王平. 基于TRIZ进化理论的产品创新设计[J]. 农业机械学报, 2008, 2(39):116-120 ZHNAG Fuying, ZHANG Linjing, WANG Ping. Study on product innovative design based on TRIZ evolution theory[J]. Transactions of the Chinese society for agricultural, 2008, 2(39):116-120
[11] 张简一, 郭艳玲, 杨树财, 等. 基于TRIZ理论的产品创新设计[J]. 机械设计, 2009, 2(26):35-38 HANG Jianyi, GUO Yanling, YANG Shucai, et al. Innovation design of products based on TRIZ theory[J]. Journal of machine design, 2009, 2(26):35-38
[12] 林岳, 徐燕申, 牛占文. 基于物场分析法的机械产品创新[J]. 天津大学学报, 2001, 1(34):99-102 LIN Yue, XU Yanshen, NIU Zhanwen. Mechanical product innovation based on substance-field analysis[J]. Journal of Tianjin University, 2001, 1(34):99-102
[13] 黄庆, 周贤永, 杨智懿. TRIZ技术进化理论及其应用研究综述与展望[J]. 科学学与科学技术管理, 1999, 1(10):84-89 HANG Qing, ZHOU Xianyong, YANG Zhiyi. Review on the research of TRIZ technological evolution theory and it’s application[J]. Science of science and management of S.& T., 1999, 1(10):84-89
[14] 周长青, 彭伟. TRIZ理论物-场模型的演化及应用[J]. 轻工机械, 2010, 2(28):89-92 ZHOU Changqing, PENG Wei. Evolution and application of TRIZ Theory of Su-field model[J]. Light industry machinery, 2010, 2(28):89-92
[15] 周勇, 黄娜. 萃智(TRIZ)理论中的物场模型[J]. 科学与管理, 2009 ZHOU Yong, HUANG Na. The Su-field model of TRIZ[J]. Science and management, 2009
[16] 谢斌. 基于TRIZ理论的产品结构创新设计[J]. 上海第二工业大学学报, 2012, 2(29):117-120 XIE Bin. Product structure innovation design based on the theory of TRIZ[J]. Journal of Shanghai Second Polytechnic University, 2012, 2(29):117-120
[17] 付敏, 王述洋. 基于TRIZ(发明问题解决理论)的林木生物粉碎机安全设计[J]. 中国安全科学学报, 2008, 11(18):97-103 FU Min, WANG Shuyang. Safety design of forest biomass pulverizers based on TRIZ theory[J]. China safety science journal, 2008, 11(18):97-103
[18] ZHANG Xin. Research on product for forecasting based on paten analysis and technology evolution theory-take LED lighting products as an example[J]. Guangzhou:Guangdong University of Technology, 2001, 1(34):99-102.
[19] 周贤永, 陈光. TRIZ40条发明原理的可拓变换表述形式研究[J]. 科技进步与对策, 2011, 5(28):107-115 ZHOU Xianguang, CHEN Guang. Study on extension transformation presentation of TRIZ’ 40 inventive principle[J]. Science & technology progress and policy, 2011, 5(28):107-115
[20] 王利, 王光明. 质变与量变的辩证关系及现实意义[J]. 南昌教育学院学报理论与实践, 2013, 2(28):6-7 WANG Li, WANG Guangming. The dialectical relationship between quantitative change and qualitative change and its practical signification[J]. Journal on Nan Chang College of education theory and practice, 2013, 2(28):6-7
Similar References:

Memo

-

Last Update: 2019-08-25

Copyright © CAAI Transactions on Intelligent Systems