基于场景化设计方法的木塑复合材料制品应用分析
Application Analysis of Wood-Plastic Composite Products Based on the Scenario-Based Design Method
- 2021年35卷第4期 页码:64-68
DOI: 10.12326/j.2096-9694.2020139
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1.生物基材料与能源教育部重点实验室,华南农业大学材料与能源学院,广东广州 510642
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易欣,牛征北,孙理超等.基于场景化设计方法的木塑复合材料制品应用分析[J].木材科学与技术,2021,35(04):64-68.
YI Xin,NIU Zheng-bei,SUN Li-chao,et al.Application Analysis of Wood-Plastic Composite Products Based on the Scenario-Based Design Method[J].Chinese Journal of Wood Science and Technology,2021,35(04):64-68.
概述了木塑复合材料(WPCs)的制造技术及应用现状,讨论了WPCs制品在应用中因关注一般性能忽略特殊性能导致的低附加值的问题。分析了场景化设计(SBD)方法在WPCs制品开发与应用中的可行性和必要性。最后在分析典型案例的基础上,阐述了SBD方法在WPCs制品中的具体应用,提出了基于SBD方法的WPCs功能化的开发思路、方向和途径。基于SBD方法指导WPCs制品的功能化开发,可为高附加值WPCs制品的设计和利用提供参考。
The manufacturing technology and application status of wood-plastic composites (WPCs) were summarized. The low-value characteristics caused by paying much attention to the general properties and ignoring the special properties in the application of WPCs were discussed. The scenario-based design (SBD) method was applied. The feasibility and necessity of the application of the SBD method in the development of WPCs products were summarized. By analyzing the typical cases, the concrete application of the SBD method in WPCs was expounded; the suggestion on the functional development of WPCs based on the SBD method was proposed; the trend and approaches of functional development were stated. Based on the SBD method to guide the functional development of WPCs products, it provides a reference for the high value-added design and application of WPCs products.
木塑复合材料(WPCs)场景化设计(SBD)开发与应用
wood-plastic composites(WPCs)scenario-based design(SBD)development and application
李凯夫, 谢雪甜, 戴东花, 等. 木塑复合包装材料的性能评价[J].木材工业, 2006, 20(3): 29-31.
LI K F, XIE X T, DAI D H, et al. Evaluating the properties of wood-plastic composites[J].China Wood Industry, 2006, 20(3): 29-31.
王伟宏, 李春桃, 王清文. 木塑复合材料产业化现状及制造关键技术[J].现代化工, 2010, 30(1): 6-10.
WANG W H, LI C T, WANG Q W. Industrial development status and key technologies of wood plastics composites[J].Modern Chemical Industry, 2010, 30(1): 6-10.
付贺龙, 王忠明, 马文君, 等. 世界木塑复合材料专利分析[J].木材工业, 2019, 33(2):39-43.
FU H L, WANG Z M, MA W J, et al. Global patent analysis of wood-plastic composites[J].China Wood Indudstry, 2019, 33(2):39-43.
王清文, 易欣, 沈静. 木塑复合材料在家具制造领域的发展机遇[J].林业工程学报, 2016, 1(3): 1-8.
WANG Q W, YI X, SHEN J. Tailoring wood-plastic composites for furniture production: possibilities and opportunities[J].Journal of Forestry Engineering, 2016, 1(3): 1-8.
李嘉敏, 易欣, 王清文. 基于挤出成型的木塑家具制造技术与优化设计[J].林产工业, 2020, 57(2): 50-54.
LI J M, YI X, WANG Q W. Wood-plastic composite furniture manufacturing technology and optimization design based on extrusion molding[J].China Forest Products Industry, 2020, 57(2): 50-54.
姚德权. 木材防腐技术在园林景观工程中的应用研究[J].林产工业, 2019, 56(12): 87-89.
YAO D Q. Application of wood preservation technology in landscape engineering[J].China Forest Products Industry, 2019, 56(12): 87-89.
马澜, 杨小军, 郁岗, 等. 木塑建筑墙体隔声性能试验研究[J].林产工业, 2018, 55(12): 16-21, 28.
MA L, YANG X J, YU G, et al. Experimental study on sound insulation performance of wood-plastic building wall[J].China Forest Products Industry, 2018, 55(12): 16-21, 28.
ERUING G. The presentation of self in everyday life[M].Beijing: Peking University Press, 2008.
Deldjoo Y, Elahi M, Cremonesi P, et al. Recommending movies based on mise-en-scene design[C].Proceedings of the 2016 CHI Conference Extended Abstracts on Human Factors in Computing Systems. San Jose California USA. New York, NY, USA: ACM, 2016.
吴明, 刘振宇. 基于场景变化的社交产品交互设计[J].包装工程, 2020, 41(8): 134-139.
WU M, LIU Z Y. Social product interaction design based on usage scenarios[J].Packaging Engineering, 2020, 41(8): 134-139.
王丹力, 华庆一, 戴国忠. 以用户为中心的场景设计方法研究[J].计算机学报, 2005, 28(6): 1043-1047.
WANG D L, HUA Q Y, DAI G Z. Research on user-centered scenario-based design[J].Chinese Journal of Computers, 2005, 28(6): 1043-1047.
陈义冰. 浅谈影视动画中的场景设计[J].新闻界, 2008(5): 177-180.
CHEN Y B. On the layout design in animated film and video[J].Press Circles, 2008(5): 177-180.
Woodruff R B. Customer value: The next source for competitive advantage[J].Journal of the Academy of Marketing Science, 1997, 25(2): 139-153.
马立波, 张枝苗, 张洋. 木塑复合材料热变形温度研究[J].林业科技开发, 2014, 28(1): 70-72.
MA L B, ZHANG Z M, ZHANG Y. Study on heat distortion temperature of wood-plastic composite[J].China Forestry Science and Technology, 2014, 28(1): 70-72.
辛向阳. 交互设计: 从物理逻辑到行为逻辑[J].装饰, 2015(1): 58-62.
XIN X Y. Interaction design: from logic of things to logic of behaviors[J].Art & Design, 2015(1): 58-62.
杨守禄, 罗莎, 章磊, 等. 木塑复合材料功能化改性研究进展[J].材料导报, 2018, 32(17): 3090-3098.
YANG S L, LUO S, ZHANG L, et al. An overview on functionalization modification of wood-plastic composites[J].Materials Review, 2018, 32(17): 3090-3098.
李珊珊, 吕群, 张清锋, 等. APP在PE基木塑复合材料中的阻燃作用研究[J].塑料工业, 2009, 37(12): 60-63.
LI S S, LU Q, ZHANG Q F, et al. Study on effect of APP on flame retardancy of wood-plastic based PE composite[J].China Plastics Industry, 2009, 37(12): 60-63.
白晓艳, 王清文. 硼酸锌对PVC木塑复合材料的产烟影响[J].消防科学与技术, 2015, 34(4): 424-427.
BAI X Y, WANG Q W. Influence of zinc borate on smoke emission of polyvinyl chloride wood-plastics composite[J].Fire Science and Technology, 2015, 34(4): 424-427.
邓云, 盛清泉. 光稳定剂对木粉/回收聚乙烯复合材料老化性能的影响[J].西南林业大学学报, 2016, 36(6): 154-157, 177.
DENG Y, SHENG Q Q. Effects of photo stabilizers on aging properties of WPC[J].Journal of Southwest Forestry University, 2016, 36(6): 154-157, 177.
徐兵, 梅长彤, 刘朝政, 等. 光稳定剂复配对核壳WPC抗紫外老化性能的影响[J].工程塑料应用, 2017, 45(4): 17-23.
XU B, MEI C T, LIU C Z, et al. Ultraviolet weathering properties of core-shell wood plastic composite with mixed light stabilizer[J].Engineering Plastics Application, 2017, 45(4): 17-23.
杨万丽, 王清文, 李陆军, 等. 紫外光接枝改性木塑复合材料的表面抑菌性[J].东北林业大学学报, 2014, 42(10): 111-114.
YANG W L, WANG Q W, LI L J, et al. Interface bacteriostasis of wood-plastic composites modified by UV-irradiation grafting[J].Journal of Northeast Forestry University, 2014, 42(10): 111-114.
温安华, 薛平, 贾明印. 微发泡木塑复合材料的研究进展[J].塑料工业, 2006, 34(6): 1-4, 11.
WEN A H, XUE P, JIA M Y. Progress in research on microcellular foamed plastics/wood fiber composite[J].China Plastics Industry, 2006, 34(6): 1-4, 11.
张求慧. 新型木塑复合材料研究进展[J].化工新型材料, 2014, 42(2): 6-8.
ZHANG Q H. Research progress of new wood-plastic composite materials[J].New Chemical Materials, 2014, 42(2): 6-8.
孙占英, 李大纲, 吴正元, 等. 自然气候条件下木塑复合材料性质的变化[J].木材工业, 2006, 20(3): 17-19.
SUN Z Y, LI D G, WU Z Y, et al. Property changes of wood-plastic composites under outdoor weathering[J].China Wood Industry, 2006, 20(3): 17-19.
梁恺文, 李焱林. 基于用户场景的交互设计流程研究[J].包装工程, 2018, 39(16): 197-201.
LIANG K W, LI Y L. Interaction design flow based on user scenario[J].Packaging Engineering, 2018, 39(16): 197-201.
朱媛, 张祖耀. 基于服务场景的智能养老产品交互设计研究[J].包装工程, 2019, 40(22): 153-159.
ZHU Y, ZHANG Z Y. Intelligent pension product interaction design based on service scenarios[J].Packaging Engineering, 2019, 40(22): 153-159.
周新军. 聚乙二醇单甲醚在储能材料及其它功能材料中的改性应用[J].乙醛醋酸化工, 2017(7): 28-31.
黄胜方. 建筑屋面相变材料与木塑复合材料的热力学性能研究[J].塑料工业, 2019, 47(9): 102-105.
HUANG S F. Study on thermodynamic properties of phase change materials and wood-plastic composites for building roof[J].China Plastics Industry, 2019, 47(9): 102-105.
毕强, 赵锋, 陈金亮. 基于情绪调节和场景理论的交互设计研究[J].包装工程, 2018, 39(8): 80-83.
BI Q, ZHAO F, CHEN J L. Interaction design based on emotion regulation and scenario theory[J].Packaging Engineering, 2018, 39(8): 80-83.
姜海洋, 梅云, 顾宪松. 场景化交互设计理论的分析与研究[J].包装工程, 2019, 40(18): 269-275.
JIANG H Y, MEI Y, GU X S. Analysis and research on theory of scene interaction design[J].Packaging Engineering, 2019, 40(18): 269-275.
Hsieh C T, Chen W Y, Wu F L. Fabrication and superhydrophobicity of fluorinated carbon fabrics with micro/nanoscaled two-tier roughness[J].Carbon, 2008, 46(9): 1218-1224.
李娜. 有机-无机杂化超疏水材料的制备及性能研究[D].西安: 西安理工大学, 2020.
Falde E J, Yohe S T, Colson Y L, et al. Superhydrophobic materials for biomedical applications[J].Biomaterials, 2016(104): 87-103.
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