Construction of digital 3D magic-cube organization structure for innovation-driven manufacturing

被引:2
|
作者
Xiang, Qiao [1 ]
Zhang, You [2 ]
Zhong, Jie [2 ]
Wang, Guoxuan [3 ]
Long, Lirong [3 ]
机构
[1] Aero Engine Corp China AECC, Beijing 100097, Peoples R China
[2] Chengdu Holy Ind & Commerce Corp Ltd Grp, Pengzhou 611936, Peoples R China
[3] Huazhong Univ Sci & Technol, Sch Management, Wuhan 430074, Peoples R China
基金
中国国家自然科学基金;
关键词
innovation; manufacturing; 3D magic-cube organization structure; coordination; DETERMINANTS; COORDINATION; STRATEGY; FIRM;
D O I
10.1007/s42524-022-0237-x
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Owing to the heterogeneity between functional units and resource scarcity, manufacturing firms have been struggling with intra-organizational coordination for productivity and innovation. Traditional organizational structures, such as linear-functional and matrix, may cause responsibility division and independent goals (Shahani, 2020), and are more difficult to be adopted by large-sized innovative manufacturing firms for quantity production. This is based on a review of several new forms of organization (i.e., network organization, multiteam system, and platform organization) compared with the traditional forms of organization (i.e., linear, matrix, and business unit organization, among others). This study proposes a three-dimensional (3D) magic-cube organizational structure, considering the product dimensions, business, and administration. Moreover, the characteristics, propositions of system operation, system dynamic model, and working model of the 3D magic-cube organization are described. Finally, the 3D model is applied in a Chinese manufacturing firm to test its effectiveness. By redesigning the post and pay system, the pilot organization establishes a project-driven and cross-functional coordination mechanism, positively affecting the firm's financial profit, output value, labor productivity, and income of per capita. The proposed 3D model can be adopted by large- or medium-sized manufacturing firms for product development and innovation. The implications of both practice and theory are also discussed in this study.
引用
收藏
页码:373 / 390
页数:18
相关论文
共 50 条
  • [31] 3D real estate cadastre: Risks associated with digital innovation
    Boldyrev, V. A.
    Svarchevsky, K. G.
    Klepalova, Yu. I.
    VESTNIK OF SAINT PETERSBURG UNIVERSITY-LAW-VESTNIK SANKT-PETERBURGSKOGO UNIVERSITETA-PRAVO, 2024, 15 (01): : 275 - 293
  • [32] 3D building modeling, organization and application in digital city system
    Xue Yang
    JingNong Weng
    YuBin Xia
    Lun Wu
    ZhengWei Sui
    Science China Technological Sciences, 2010, 53 : 134 - 142
  • [33] 3D building modeling,organization and application in digital city system
    YANG Xue 1
    2 College of Computer
    3 Institute of Remote Sensing and GIS
    Science China Technological Sciences, 2010, (S1) : 134 - 142
  • [34] Digital Manufacturing of Pathologically-Complex 3D Printed Antennas
    Johnson, Kerry
    Zemba, Michael
    Conner, Brett P.
    Walker, Jason
    Burden, Edward
    Rogers, Kirk
    Cwiok, Kevin R.
    MacDonald, Eric
    Cortes, Pedro
    IEEE ACCESS, 2019, 7 : 39378 - 39389
  • [35] 3D digital manufacturing technologies, materials, and artificial intelligence in art
    Nocheseda, Carla Joyce C.
    Santos, Marielle Francesca A.
    Espera, Alejandro H.
    Advincula, Rigoberto C.
    MRS COMMUNICATIONS, 2023, 13 (06) : 1102 - 1118
  • [36] 3D digital manufacturing technologies, materials, and artificial intelligence in art
    Carla Joyce C. Nocheseda
    Marielle Francesca A. Santos
    Alejandro H. Espera
    Rigoberto C. Advincula
    MRS Communications, 2023, 13 : 1102 - 1118
  • [37] Digital Garment Manufacturing Steps Using 3D Simulation Technology
    Choi, Young-Lim
    Kim, Min-Kyoung
    Yunja-nam
    TEXTILE BIOENGINEERING AND INFORMATICS SYMPOSIUM PROCEEDINGS, VOLS 1-3, 2011, : 1280 - 1284
  • [38] Siemens Exec: 3D Printing, Digital Twins Revamping Manufacturing
    不详
    MANUFACTURING ENGINEERING, 2022, 169 (01): : 25 - 26
  • [39] A 2D driven 3D vessel segmentation algorithm for 3D digital subtraction angiography data
    Spiegel, M.
    Redel, T.
    Struffert, T.
    Hornegger, J.
    Doerfler, A.
    PHYSICS IN MEDICINE AND BIOLOGY, 2011, 56 (19): : 6401 - 6419
  • [40] The essential roles of cohesin in organization of 3D genome structure
    Sakata, Toyonori
    Shirahige, Katsuhiko
    CANCER SCIENCE, 2018, 109 : 940 - 940