The disruptive impact of additive manufacturing on supply chains: A literature study, conceptual framework and research agenda

被引:71
作者
Verboeket, Victor [1 ]
Krikke, Harold [2 ]
机构
[1] Zuyd Univ Appl Sci, Fac Int Business & Commun, POB 634, NL-6200 AP Maastricht, Netherlands
[2] Open Univ Netherlands, Fac Management Sci, POB 2960, NL-6401 DL Heerlen, Netherlands
关键词
Additive manufacturing; Supply chain design; Literature review; Research agenda; Propositions; Roadmap; SPARE PARTS; DESIGN THEORY; CLICK HERE; TECHNOLOGY; FUTURE; SUSTAINABILITY; FABRICATION; MANAGEMENT; ADOPTION; IMPLEMENTATION;
D O I
10.1016/j.compind.2019.07.003
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Additive Manufacturing (AM) is one of the advanced computer technologies that digitizes supply chains (SCs). This article presents a structured literature review on the impact of AM on SC design based on 67 peer-reviewed articles. We address the business settings in which AM operates, AM SC design choices, and AM SC performance outputs. We use the SCOR model to structure this article. Our results show that while AM is currently used for many applications it is mainly used for small, low demand and geometrically complex products. SC design involves making choices related to SC configurations, supplier relationships, AM production, installation of a return channel, IT system requirements and human resources. The main SC performance outputs influenced by AM are (reduced) SC cost and (improved) SC responsiveness. Many bottlenecks prevent AM being used to its full potential. This article contributes to the AM SC design knowledge base by developing a conceptual framework, including 18 propositions, and a research agenda identifying relevant AM SC design research themes. Moreover, a roadmap is presented describing the steps to a full roll-out of AM for manufacturing purposes, in which bottlenecks (serving as thresholds) need to be eliminated in order to trigger a series of disrupting SC effects. We expect that AM will eventually lead to SC disruption, and has the potential to largely replace conventional manufacturing for mainstream products. (C) 2019 Elsevier B.V. All rights reserved.
引用
收藏
页码:91 / 107
页数:17
相关论文
共 90 条
[11]   Additive manufacturing in offsite repair of consumer electronics [J].
Chekurov, Sergei ;
Salmi, Mika .
16TH NORDIC LASER MATERIALS PROCESSING CONFERENCE, NOLAMP16, 2017, 89 :23-30
[12]  
CHEN Z, 2016, ADV MATER SCI ENG, V6, P1
[13]   Implementation of rapid prototyping technology - A Hong Kong manufacturing industry's perspective [J].
Chin, KS .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 1998, 14 (08) :570-579
[14]   Simulation based method considering design for additive manufacturing and supply chain An empirical study of lamp industry [J].
Chiu, Ming-Chuan ;
Lin, Yi-Hsuan .
INDUSTRIAL MANAGEMENT & DATA SYSTEMS, 2016, 116 (02) :322-348
[15]  
Chopra S., 2013, SUPPLY CHAIN MANAGEM
[16]   Rapid prototyping in the development of optical pickup unit [J].
Chua, CK ;
Hong, KH ;
Lee, CW .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2005, 25 (5-6) :484-492
[17]   Rapid tooling technology. Part 2. A case study using arc spray metal tooling [J].
Chua, CK ;
Hong, KH ;
Ho, SL .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 1999, 15 (08) :609-614
[18]  
Cohen D., 2014, MCKINSEY Q 3 PRINTIN
[19]   Rapid Prototyping in Humanitarian Aid To Manufacture Last Mile Vehicles Spare Parts: An Implementation Plan [J].
De la Torre, N. ;
Espinosa, M. M. ;
Dominguez, M. .
HUMAN FACTORS AND ERGONOMICS IN MANUFACTURING & SERVICE INDUSTRIES, 2016, 26 (05) :533-540
[20]   Developing design propositions through research synthesis [J].
Denyer, David ;
Tranfield, David ;
van Aken, Joan Ernst .
ORGANIZATION STUDIES, 2008, 29 (03) :393-413