Bionic Modeling Design of Desk Lamp Products Based on the Translation of Fu Lu Culture Symbols

XU Xialin

Packaging Engineering ›› 2026, Vol. 47 ›› Issue (14) : 406-416.

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Packaging Engineering ›› 2026, Vol. 47 ›› Issue (14) : 406-416. DOI: 10.19554/j.cnki.1001-3563.2026.14.034
Design Discussion

Bionic Modeling Design of Desk Lamp Products Based on the Translation of Fu Lu Culture Symbols

  • XU Xialin*
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Abstract

The work aims to explore the bionic design of desk lamp products based on Fu Lu culture, so as to promote the iterative design of desk lamp product forms through innovative design methods. With the Double Diamond model as a framework, FAHP, QFD, and TRIZ methods were combined to provide a complete design research process. In the "Discovery Stage", through in-depth analysis of Fu Lu cultural symbols, potential opportunities for desk lamp product form design were identified, and actual needs were refined through user research. In the "Definition Stage", the FAHP method was used to prioritize the symbol elements in Fu Lu culture, and the QFD analysis was used to match cultural symbol requirements with product form features. In the "Development Stage", the TRIZ method was adopted to solve the technical and form contradictions in the design, ensuring the innovation and feasibility of the product. The bionic design of desk lamp products based on Fu Lu culture not only has cultural value but also can achieve a balance between functionality and artistry in the market, promoting the application of traditional culture in modern desk lamp products. It can also effectively guide product form design and enhance the application effect of cultural elements and design innovation.

Key words

Fu Lu culture / symbol translation / desk lamp design / Double Diamond model / cultural and creative products

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XU Xialin. Bionic Modeling Design of Desk Lamp Products Based on the Translation of Fu Lu Culture Symbols[J]. Packaging Engineering. 2026, 47(14): 406-416 https://doi.org/10.19554/j.cnki.1001-3563.2026.14.034

References

[1] 杨钦, 汤繁稀. 基于可供性理论与FBS模型的台灯创新体验设计[J]. 包装工程, 2024, 45(18): 358-367.
YANG Q, TANG F X.Innovative Experience Design of Desk Lamp Based on Availability Theory and FBS Model[J]. Packaging Engineering, 2024, 45(18): 358-367.
[2] 王南轶, 傅雷, 石畅, 等. 基于Kano模型与TRIZ理论的台灯创新设计研究[J]. 机械设计, 2022, 39(增刊2): 221-226.
WANG N Y, FU L, SHI C, et al.Research on Innovative Design of Desk Lamp Based on Kano Model and TRIZ Theory[J]. Machine Design, 2022, 39(Sup.2): 221-226.
[3] 于婷, 宋立荣. 文旅融合视角下档案文创产品开发利用探析[J]. 北京档案, 2025(5): 53-56.
YU T, SONG L R.Analysis on the Development and Utilization of Archival Cultural and Creative Products from the Perspective of Cultural and Tourism Integration[J]. Beijing Archives, 2025(5): 53-56.
[4] 喻建铭. 浅析《福禄》的艺术特色[J]. 陶瓷科学与艺术, 2024, 58(4): 173.
YU J M.A Brief Analysis of the Artistic Characteristics of "Fu Lu"[J]. Ceramic Science and Art, 2024, 58(4): 173.
[5] 冯圣媖, 韩李李. 长江源生态文创产品设计——“福禄”斜挎包[J]. 包装工程, 2023, 44(16): 2.
FENG S Y, HAN L L.Ecological Cultural and Creative Product Design of the Yangtze River Source - "Fu Lu" Crossbody Bag[J]. Packaging Engineering, 2023, 44(16): 2.
[6] 王鹏, 张军. 基于心流理论与感性工学的文创产品设计研究[J]. 包装工程, 2025, 46(10): 246-255.
WANG P, ZHANG J.Research on Cultural and Creative Product Design Based on Flow Theory and Sensory Engineering[J]. Packaging Engineering, 2025, 46(10): 246-255.
[7] 王伟伟, 张阳, 金秋宇, 等. 基于情境分析与FBS的家具创新设计方法研究[J]. 家具与室内装饰, 2022, 29(1): 42-47.
WANG W W, ZHANG Y, JIN Q Y, et al.Research on Innovative Furniture Design Method Based on Context Analysis and FBS[J]. Furniture & Interior Decoration, 2022, 29(1): 42-47.
[8] 吴国荣, 黄诗雯, 汤繁稀, 等. 基于FAHP-FAST-FBS集成方法的餐厅座椅功能创新设计[J]. 家具与室内装饰, 2025, 32(4): 18-25.
WU G R, HUANG S W, TANG F X, et al.Innovative Design of Restaurant Seat Functions Based on the Integrated Method of FAHP-FAST-FBS[J]. Furniture & Interior Decoration, 2025, 32(4): 18-25.
[9] 陈旭辉, 梁熙楠, 刘宗明. 基于FAHP-FQFD-TRIZ的水下搜救机器人设计研究[J]. 包装工程, 2025, 46(6): 366-375.
CHEN X H, LIANG X N, LIU Z M.Research on the Design of Underwater Search and Rescue Robot Based on FAHP-FQFD-TRIZ[J]. Packaging Engineering, 2025, 46(6): 366-375.
[10] 万晴娟, 罗坤明, 陈振益. 基于FAHP-ZMET的佛山非遗“南海藤编”家具产品设计研究[J]. 包装工程, 2025, 46(6): 151-160.
WAN Q J, LUO K M, CHEN Z Y.Research on the Product Design of Foshan Intangible Cultural Heritage "Nanhai Rattan Weaving" Furniture Based on FAHP- ZMET[J]. Packaging Engineering, 2025, 46(06): 151-160.
[11] 胡绮, 吴玉环, 万衡. 基于叙事理论-FAHP的工业文创产品设计研究[J]. 包装工程, 2025, 46(02): 156-167.
HU Q, WU Y H, WAN H.Research on Industrial Cultural and Creative Product Design Based on Narrative Theory -FAHP[J]. Packaging Engineering, 2025, 46(2): 156-167.
[12] 袁菁菁, 汤繁稀. 基于FAHP/QFD/SWOT的山西“黎侯虎”可拼装体验产品设计[J]. 包装工程, 2024, 45(20): 433-441.
YUAN J J, TANG F X.Design of Shanxi "Lihou Tiger" Assemblable Experience Product Based on FAHP/QFD/ SWOT[J]. Packaging Engineering, 2024, 45(20): 433-441.
[13] 焦鑫, 肖于琳, 勒立, 等. 基于文化基因-AHP法的川剧文创产品设计研究[J]. 包装工程, 2025, 46(18): 201-211.
JIAO X, XIAO Y L, LE L, et al.Research on the Design of Sichuan Opera Cultural and Creative Products Based on Cultural Gene-AHP Method[J]. Packaging Engineering, 2020, 46(18): 201-211.
[14] 刘宗明, 陈旭辉. 瑶绣技艺在智能家居设计中的传承与创新应用研究[J]. 包装工程, 2024, 45(16): 390-399.
LIU Z M, CHEN X H.Research on the Inheritance and Innovative Application of Yao Embroidery Skills in Smart Home Design[J]. Packaging Engineering, 2024, 45(16): 390-399.
[15] 王昀, 陈枫. 基于共生体系的成长式儿童课桌椅创新设计研究[J]. 家具与室内装饰, 2024, 31(8): 10-16.
WANG Y, CHEN F.Research on Innovative Design of Growth-oriented Children's Desks and Chairs Based on Symbiotic System[J]. Furniture & Interior Decoration, 2024, 31(8): 10-16.
[16] 钟蕾, 李铭洋. 基于模糊层次分析法的大漆文创设计研究与实践[J]. 包装工程, 2024, 45(16): 323-333.
ZHONG L, LI M Y.Research and Practice of Lacquer Cultural and Creative Design Based on Fuzzy Analytic Hierarchy Process[J]. Packaging Engineering, 2024, 45(16): 323-333.
[17] 李明浩, 李程. 基于FAHP/QFD/TRIZ的智能医疗配送机器人创新设计研究[J]. 科技创新与应用, 2023, 13(36): 55-58.
LI M H, LI C.Research on Innovative Design of Intelligent Medical Delivery Robot Based on FAHP/QFD/ TRIZ[J]. Science and Technology Innovation and Application, 2023, 13(36): 55-58.
[18] 苏晨, 胡王毅文, 江驭鹏, 等. 基于SETC/FAHP/ TRIZ的电动工具创新设计[J]. 机械设计, 2023, 40(12): 163-169.
SU C, HU W Y W, JIANG Y P, et al. Innovative Design of Power Tools Based on SETC/FAHP/TRIZ[J]. Mechanical design, 2023, 40(12) : 163-169.
[19] 张爱莉, 张新蕙, 王皖皖, 等. 基于文本挖掘-FAHP的适老化智能床头柜设计研究[J]. 包装工程, 2024, 45(14): 158-167.
ZHANG A L, ZHANG X H, WANG W W, et al.Research on the Design of Aging-Friendly Intelligent Bedside Table Based on Text Mining-FAHP[J]. Packaging Engineering, 2024, 45(14): 158-167.
[20] 张朝晖, 杨鸿. 基于FAHP/KE框架下的海昏侯文创茶具设计[J]. 包装工程, 2024, 45(12): 347-355.
ZHANG Z H, YANG H.Design of Haihunhou Cultural and Creative Tea Sets Based on FAHP/KE Framework[J]. Packaging Engineering, 2024, 45(12): 347-355.
[21] 巢文博, 黄黎清, 何灿群, 等. 基于FAHP的产品可供性测量方法与应用研究[J]. 包装与设计, 2023(4): 98-99.
CHAO W B, HUANG L Q, HE C Q, et al.Research on Product Availability Measurement Method and Application Based on FAHP[J]. Packaging & Design, 2023(4): 98-99.
[22] 刘子琦, 郭炳晖, 程臻, 等. 基于熵值模糊层次分析法的科技战略评价[J]. 计算机科学, 2020, 47(增刊1): 1-5.
LIU Z Q, GUO B H, CHEN Z, et al.Evaluation of Science and Technology Strategy Based on Entropy Fuzzy Analytic Hierarchy Process[J]. Computer Science, 2020, 47(Sup.1): 1-5.
[23] 鞠萍华, 黄广全, 肖莉明, 等. 多目标模糊综合评价的装配序列优选方法[J]. 哈尔滨工业大学学报, 2018, 50(7): 154-163.
JU P H, HUANG G Q, XIAO L M, et al.Assembly sequence optimization Method based on Multi-objective Fuzzy Comprehensive Evaluation[J]. Journal of Harbin Institute of Technology, 2018, 50(7): 154-163.
[24] 张欣悦, 于炜. 基于高斯模糊AHP/HOQ/TRIZ分层策略的多场景办公桌设计[J]. 包装工程, 2025, 46(10): 436-448.
ZHANG X Y, YU W.Multi-scenario Desk Design Based on Gaussian Fuzzy AHP/HOQ/TRIZ Hierarchical Strategy[J]. Packaging Engineering, 2025, 46(10): 436-448.
[25] 朱致弘. 浅谈对住宅空间的认识与理解——室内设计中的家具设计[J]. 居舍, 2025, (8): 32-34.
ZHU Z H.A Brief Discussion on the Recognition and Understanding of Residential Space-Furniture Design in Interior Design[J]. House, 2025(8): 32-34.
[26] 罗方, 戴向东. 基于信息空间理论的传统家具文化遗产信息可视化设计与传播[J]. 包装工程, 2024, 45(24): 459-467.
LUO F, DAI X D.Visualization Design and Dissemination of Traditional Furniture Cultural Heritage Information Based on Information Space Theory[J]. Packaging Engineering, 2024, 45(24): 459-467.
[27] 杨钦, 汤繁稀, 王远兵. 基于TRIZ/AHP/GRA理论的通用灯泡包装设计研究[J]. 包装工程, 2025, 46(2): 436-445.
YANG Q, TANG F X, WANG Y B.Research on General Bulb Packaging Design Based on TRIZ/AHP/GRA Theory[J]. Packaging Engineering, 2025, 46(2): 436-445.
[28] 易菲. 基于QFD/TRIZ理论的人宠共用生态家具设计[J]. 装饰, 2023(6): 136-138.
YI F.Design of Human-Pet Shared Ecological Furniture Based on QFD/TRIZ Theory[J]. Decoration, 2023(6): 136-138.
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