我国板式家具先进制造技术研发与应用进展
Development and Application Progress of Advanced Manufacturing Technology for China’s Panel Furniture
- 2023年37卷第2期 页码:1-7
DOI: 10.12326/j.2096-9694.2022085
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1.中国林业科学研究院木材工业研究所
2.国家林业和草原局木材科学与技术重点实验室,北京 100091
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彭晓瑞,吕斌,李伟光等.我国板式家具先进制造技术研发与应用进展[J].木材科学与技术,2023,37(02):1-7.
PENG Xiaorui,LYU Bin,LI Weiguang,et al.Development and Application Progress of Advanced Manufacturing Technology for China’s Panel Furniture[J].Chinese Journal of Wood Science and Technology,2023,37(02):1-7.
随着科技进步及大数据与工业4.0在家具产业的渗透,我国板式家具产业无论在原材料研发、产品与工艺设计、制造技术与装备上,都发生了较大的变革。综述我国板式家具板件、专用装备、工艺及设计等先进制造技术,并对我国板式家具先进制造技术的研发与应用进行解析,以期促进板式家具产业发展。
With the continuous development of science, technology, the integration with big data and industry 4.0 in the furniture industry, China's panel furniture industry has undergone great revolutions in the exploitation of plate, designs of products and manufacturing process, manufacturing technologies, equipment development, and marketing strategies. This paper summarizes the advanced manufacturing technologies of the panel furniture industry in raw materials, special equipment, processing, and designing, etc. The development and application of advanced manufacturing technology of panel furniture in our country are analyzed, to promote the development of panel furniture industry.
板式家具先进制造板件加工装备信息化家具设计
panel furnitureadvanced manufacturingplateprocessing equipmentinformationfurniture design
中华人民共和国国家发展和改革委员会.板式家具成品名词术语第1部分:柜架类家具成品名词术语:QB/T 2913.1—2007[S]. 北京: 中国标准出版社, 2007.
张超, 冼迪研. 新中式家具大规模定制设计与技术体系研究[J]. 家具与室内装饰, 2019(2): 28-29.
ZHANG C, XIAN D Y. Research on mass customization design and technology system of new Chinese style furniture[J]. Furniture & Interior Design, 2019(2): 28-29.
吴智慧. 绿色家具的评价体系与评价方法[J]. 木材工业, 2008, 22(3): 29-32.
WU Z H. Evaluation method and system for green furniture[J]. China Wood Industry, 2008, 22(3): 29-32.
高云. 绿色家具与人和空间的互动关系[J]. 吉林广播电视大学学报, 2019(7): 128-129.
刘灵. 基于绿色家具理念的儿童家具设计探索[J]. 中国住宅设施, 2019(6): 48-49.
惠小雨, 吴智慧, 沈忠民. 定制家具行业数字化设计生产一体化现状的研究与分析[J]. 家具, 2019, 40(3): 7-11.
HUI X Y, WU Z H, SHEN Z M. Status analysis of design and production integration in the customized furniture industry[J]. Furniture, 2019, 40(3): 7-11.
吴智慧. 工业4.0时代中国家居产业的新思维与新模式[J]. 木材工业, 2017, 31(2):5-9.
WU Z H. New thinking and new models of the Chinese home furnishings industry in the industry 4.0 era[J]. China Wood Industry, 2017, 31(2):5-9.
王赫昱, 黄海兵. 高新技术在木材加工中的应用研究[J]. 科学技术创新, 2019(32): 138-139.
徐胜润. 基于激光传感器的板式家具特征提取和三维重构算法研究[D]. 哈尔滨: 哈尔滨工业大学, 2019.
张佳琦, 王洁, 杨波, 等. 基于人体工程学的红木养生家具造型设计[J]. 家具, 2014, 35(5): 75-83.
ZHANG J Q, WANG J, YANG B, et al. Modeling design of hongmu regimen furniture based on ergonomics[J]. Furniture, 2014, 35(5): 75-83.
阿伦. 国内轻质刨花板的研究概述[J]. 林业机械与木工设备, 2005, 33(12): 4-6.
A L. Summary on the development of light particleboard in China[J]. Forestry Machinery & Woodworking Equipment, 2005, 33(12): 4-6.
张挺, 李新兵, 陈所宁, 等. 各类刨花板在定制家居中的应用[J]. 中国人造板, 2022, 29(1): 2-5.
ZHANG T, LI X B, CHEN S N, et al. Application of various particleboards in customized furniture[J]. China Wood Based Panels, 2022, 29(1): 2-5.
国家林业局. 轻质纤维板:LY/T 1718—2007[S].北京:中国标准出版社, 2007.
熊薇. 低碳家具创新设计的研究[J]. 包装工程, 2012, 33(4): 68-71.
姜征. 高端定制、优质环保,特种胶合板制造业的领跑者——访广东佛山唐朝木业有限公司[J]. 木材工业, 2017, 31(1):65-67.
张雨湉, 施江靖, 叶交友, 等. 家居用疏水保温胶合板制备及性能研究[J]. 林业工程学报, 2021, 35(6): 190-196.
ZHANG Y T, SHI J J, YE J Y, et al. Preparation and performance of hydrophobic thermal insulation plywood for household[J]. Journal of Forestry Engineering, 2021, 35(6): 190-196.
李文萍. 防霉环保型豆胶胶合板的制备及其性能研究[D]. 北京: 北京林业大学, 2020.
郭文静, 常亮. 无醛胶粘剂人造板产业化应用状况[J]. 国际木业, 2016, 46(9): 4-5.
姜鹏, 陈志林. 连续平压阻燃刨花板性能研究[J]. 中国人造板, 2019, 26(5): 7-10.
JIANG P, CHEN Z L. Study on performance of continuous flat pressure flame retardant particleboard[J]. China Wood Based Panels, 2019, 26(5): 7-10.
刘培义, 刘振宇, 张元桂. 国内高分子封边条及其相关工艺研究进展[J]. 广东化工, 2018, 45(19): 87-88.
LIU P Y, LIU Z Y, ZHANG Y G. Domestic polymer sealing strip and related technology’s research progress[J]. Guangdong Chemical Industry, 2018, 45(19): 87-88.
曹平祥, 王福辕. 板式家具数字化制造技术浅谈[J]. 木材工业, 2013, 27(1): 35-38.
CAO P X, WANG F Y. Application of digital manufacturing technology in panel furniture industry[J]. China Wood Industry, 2013, 27(1): 35-38.
曾庆景, 刘培义. 板式家具封边技术以及激光封边研究进展[J]. 广东化工, 2018, 45(22): 67-68.
ZENG Q J, LIU P Y. Research progress of edge sealing technology of panel furniture and laser sealing[J]. Guangdong Chemical Industry, 2018, 45(22) : 67-68.
丁翼, 马连祥, 付晓. 板式家具封边技术的研究进展[J]. 家具, 2017, 38(4): 17-19.
DING Y, MA L X, FU X. The research progress of edge banding technology of panel furniture[J]. Furniture, 2017, 38(4): 17-19.
毛宇轩, 王金宝. 板式家具激光封边设备[J]. 林业机械与木工设备, 2019, 47(3): 19-23.
MAO Y X, WANG J B. Laser-based edge banding equipment for panel furniture[J]. Forestry Machinery & Woodworking Equipment, 2019, 47(3): 19-23.
李中原, 丁建文. 板式定制家具智能制造技术浅探[J]. 家具, 2018, 39(4): 106-110.
LI Z Y, DING J W. Application of intelligent manufacturing technology in customized furniture industry[J]. Furniture, 2018, 39(4): 106-110.
乡碧云. 高效数控板式封边排钻智能制造设备的研制[J]. 机床与液压, 2015, 43(20): 78-80.
XIANG B Y. Development of efficient intelligent NC manufacturing device for edge banding and multi-axis drilling[J]. Machine Tool & Hydraulics, 2015, 43(20): 78-80.
包瑜亮, 熊先青, 邱富建, 等. 基于数字化技术的木家具制造车间计划排产的研究[J]. 林产工业, 2019, 46(3): 65-68.
BAO Y L, XIONG X Q, QIU F J, et al. Research on planning and scheduling of wood furniture manufacturing workshop based on digital technology[J]. China Forest Products Industry, 2019, 46(3): 65-68.
熊先青, 袁莹莹, 牛怡婷, 等. 大规模定制家具ERP系统的构建及其关键技术[J]. 林业工程学报, 2019, 4(4): 162-168.
XIONG X Q, YUAN Y Y, NIU Y T, et al. Research on key technologies of ERP system for mass customization furniture production[J]. China Forestry Science and Technology, 2019, 4(4): 162-168.
侯晓鹏, 吴智慧, 刘海波, 等. 基于OPC统一架构的木制品加工设备信息互联互通方法[J]. 木材科学与技术, 2022, 36(6): 95-102.
HOU X P, WU Z H, LIU H B, et al. Information interconnection and intercommunication method for woodworking equipment based on open platform communications unified architecture(OPC UA)[J]. Chinese Journal of Wood Science and Technology, 2022, 36(6): 95-102.
刘慧, 熊先青, 于克, 等. 板式定制家具智能分拣系统关键技术架构[J]. 木材工业, 2019, 33(6):33-37.
LIU H, XIONG X Q, YU K, et al. Technical framework of smart sorting system for making customized panel furniture[J]. China Wood Industry, 2019, 33(6):33-37.
徐建峰, 龙玲, 刘如. 人造板饰面装饰纸无醛化研究现状[J]. 木材科学与技术, 2021, 35(2): 1-5.
XU J F, LONG L, LIU R. Research status review of formaldehyde-free decorative paper for wood-based panels[J]. Chinese Journal of Wood Science and Technology, 2021, 35(2): 1-5.
王雪莹. 3D打印技术与产业的发展及前景分析[J]. 中国高新技术企业, 2012(26): 3-5.
汪菲, 吴智慧, 黄琼涛. 家具与木制品表面数字化木纹图案UV树脂3D打印装饰技术[J]. 家具, 2017, 38(1): 5-10.
WANG F, WU Z H, HUANG Q. UV 3D inkjet print decoration technology applied in the surface of furniture and wood products[J]. Furniture, 2017, 38(1): 5-10.
桑瑞娟, 吴智慧. UV喷墨打印技术在家具表面装饰上的应用[J]. 包装工程, 2011, 32(6): 29-32, 39.
SANG R J, WU Z. Application of UV inkjet printing technology in the surface decoration of furniture[J]. Packaging Engineering, 2011, 32(6): 29-32, 39.
吴志强. 板式家具设计与制造中的减碳技术与应用[J]. 林产工业, 2020, 57(3): 96-98.
WU Z Q. Carbon reduction technology and application in the design and manufacture of panel furniture[J]. China Forest Products Industry, 2020, 57(3): 96-98.
刘玉林, 张乘风. 探析低碳理念在室内设计中的应用[J]. 家具与室内装饰, 2019(5): 104-105.
LIU Y L, ZHANG C F. Analysis on the application of low carbon concept in interior design[J]. Furniture & Interior Design, 2019(5): 104-105.
郭琼, 袁纳新, 符路特, 等. 以废弃物为主材的低碳家具设计研究[J]. 机械设计, 2013, 30(8): 120-122.
GUO Q, YUAN N X, FU L T, et al. Research on low-carbon furniture design based on waste[J]. Journal of Machine Design, 2013, 30(8): 120-122.
刘玫, 陈亮. 产品碳足迹国际标准(ISO14067)进展及我国面临的形势[J]. 中国标准化, 2010(8): 10-12.
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