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Supporting military maintenance and repair with additive manufacturing


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Additive Center, (2020). Royal Dutch Army: Increasing adaptability on the battlefield with 3D printing. Available at: https://additivecenter.com/2020/01/23/royal-dutch-army-increasing-adaptability-on-the-battlefield-with-3d-printing/ [accessed 15 January, 2021]. Additive Center 2020 Royal Dutch Army: Increasing adaptability on the battlefield with 3D printing Available at: https://additivecenter.com/2020/01/23/royal-dutch-army-increasing-adaptability-on-the-battlefield-with-3d-printing/ [accessed 15 January, 2021]. Search in Google Scholar

AM Chronicle (2018). Norwegian Researchers Compare 3D Printing Results: Factory Setting vs. Onsite Military Container. Available at: https://www.amchronicle.com/news/norwegian-researchers-explores-use-of-3d-printing/ [accessed 15 January, 2021]. AM Chronicle 2018 Norwegian Researchers Compare 3D Printing Results: Factory Setting vs. Onsite Military Container Available at: https://www.amchronicle.com/news/norwegian-researchers-explores-use-of-3d-printing/ [accessed 15 January, 2021]. Search in Google Scholar

Bass, F. M. (1969). A new product growth for model consumer durables. Management Science, 15, pp. 215–227. BassF. M. 1969 A new product growth for model consumer durables Management Science 15 215 227 10.1007/978-3-642-51565-1_107 Search in Google Scholar

Berman, B. (2012). 3-D printing: The new industrial revolution. Business Horizons, 55(2), pp. 155–162. BermanB. 2012 3-D printing: The new industrial revolution Business Horizons 55 2 155 162 10.1016/j.bushor.2011.11.003 Search in Google Scholar

Busachi, A., Erkoyuncu, J., Colegrove, P., Drake, R., Watts, C., & Martina, F. (2016). Defining Next-Generation Additive Manufacturing Applications for the Ministry of Defence (MoD). s.l., Amsterdam: Elsevier, pp. 302–307. BusachiA. ErkoyuncuJ. ColegroveP. DrakeR. WattsC. MartinaF. 2016 Defining Next-Generation Additive Manufacturing Applications for the Ministry of Defence (MoD) s.l., Amsterdam Elsevier 302 307 10.1016/j.procir.2016.08.029 Search in Google Scholar

Busachi, A., Erkoyuncu, J., Colegrove, P., Drake, R., Watts, C., & Martina, F. (2018). Modelling Applications of Additive Manufacturing in Defence Support Services: Introducing the AM – Decision Support System, Milano: North Atlantic Treaty Organization Science and Technology Organization. BusachiA. ErkoyuncuJ. ColegroveP. DrakeR. WattsC. MartinaF. 2018 Modelling Applications of Additive Manufacturing in Defence Support Services: Introducing the AM – Decision Support System Milano North Atlantic Treaty Organization Science and Technology Organization Search in Google Scholar

Campuzano, F., & Mula, J. (2011). Supply Chain Simulation A System Dynamics Approach for Improving Performance, London: Springer. CampuzanoF. MulaJ. 2011 Supply Chain Simulation A System Dynamics Approach for Improving Performance London Springer 10.1007/978-0-85729-719-8 Search in Google Scholar

den Boer, J., Lambrechts, W., & Krikke, H. (2020). Additive manufacturing in military and humanitarian missions: Advantages and challenges in the spare parts supply chain. Journal of Cleaner Production, 257, p. 120301. den BoerJ. LambrechtsW. KrikkeH. 2020 Additive manufacturing in military and humanitarian missions: Advantages and challenges in the spare parts supply chain Journal of Cleaner Production 257 120301 10.1016/j.jclepro.2020.120301 Search in Google Scholar

Department of Defence (1983). MILITARY STANDARD – LOGISTIC SUPPORT ANALYSIS, Washington DC: Department of Defence United States of America. Department of Defence 1983 MILITARY STANDARD – LOGISTIC SUPPORT ANALYSIS Washington DC Department of Defence United States of America Search in Google Scholar

Department of Defence (1991). MILITARY STANDARD 1388-2B, Washington DC: Department of Defence – United States of America. Department of Defence 1991 MILITARY STANDARD 1388-2B Washington DC Department of Defence – United States of America Search in Google Scholar

Department of Defence (2021). Department of Defense Additive Manufacturing Strategy, Washington DC: Strategic Technology Protection and Exploitation Office of the Under Secretary of Defense for Research and Engineering. Department of Defence 2021 Department of Defense Additive Manufacturing Strategy Washington DC Strategic Technology Protection and Exploitation Office of the Under Secretary of Defense for Research and Engineering Search in Google Scholar

DeVisser, K. K. (2017). Qualification and certification of 3D printed parts for naval ships, Monterey, CA: Naval Postgraduate School. DeVisserK. K. 2017 Qualification and certification of 3D printed parts for naval ships Monterey, CA Naval Postgraduate School Search in Google Scholar

Ekström, T., Hilletofth, P., & Skoglund, P. (2020). Differentiation strategies for defence supply chain design. Journal of Defense Analytics and Logistics, 4(2), pp. 183–202. EkströmT. HilletofthP. SkoglundP. 2020 Differentiation strategies for defence supply chain design Journal of Defense Analytics and Logistics 4 2 183 202 10.1108/JDAL-06-2020-0011 Search in Google Scholar

EOS, (2021). EOS M 290. Available at: https://www.eos.info/en/additive-manufacturing/3d-printing-metal/eos-metal-systems/eos-m-290 [Accessed accessed 12 March, 2021]. EOS 2021 EOS M 290 Available at: https://www.eos.info/en/additive-manufacturing/3d-printing-metal/eos-metal-systems/eos-m-290 [Accessed accessed 12 March, 2021]. Search in Google Scholar

Epler, I. J., Andrejić, M. D., Milenkov, M. A. & Sokolović, V. S. (2017). Concept of logistics prevention development in a defence system. Vojnotehnički glasnik/Military Technical Courier, 65(4), pp. 1027–1043. EplerI. J. AndrejićM. D. MilenkovM. A. SokolovićV. S. 2017 Concept of logistics prevention development in a defence system Vojnotehnički glasnik/Military Technical Courier 65 4 1027 1043 10.5937/vojtehg65-8884 Search in Google Scholar

Espíndola, D., Frazzon, E. M., Hellingrath, B. & Pereira, C. E. (2012). Integrating Intelligent Maintenance Systems and Spare Parts Supply Chains. Bucharest, Elsevier, pp. 1017–1022. EspíndolaD. FrazzonE. M. HellingrathB. PereiraC. E. 2012 Integrating Intelligent Maintenance Systems and Spare Parts Supply Chains Bucharest Elsevier 1017 1022 10.3182/20120523-3-RO-2023.00384 Search in Google Scholar

Fieldmade A. S. (2020). Fieldmade – Increasing your combat readiness on-site. Available at: https://fieldmade.no/nomad-series/ [accessed 20 February, 2021]. FieldmadeA. S. 2020 Fieldmade – Increasing your combat readiness on-site Available at: https://fieldmade.no/nomad-series/ [accessed 20 February, 2021]. Search in Google Scholar

Finnish Defence Forces (2013). Panssariprikaati. Available at: https://docplayer.fi/4333779-Panssariprikaati-8-8-2013.html [accessed 15 February, 2019]. Finnish Defence Forces 2013 Panssariprikaati Available at: https://docplayer.fi/4333779-Panssariprikaati-8-8-2013.html [accessed 15 February, 2019]. Search in Google Scholar

Finnish MoD (2011). Puolustushallinnon Materiaalipolitiikka, Helsinki: Finnish Ministry of Defence. Finnish MoD 2011 Puolustushallinnon Materiaalipolitiikka Helsinki Finnish Ministry of Defence Search in Google Scholar

Finnish MoD (2012). Huoltovarmuuskriittinen teknologia, tuotanto ja osaaminen (HTTO), Helsinki: Finnish Ministry of Defence. Finnish MoD 2012 Huoltovarmuuskriittinen teknologia, tuotanto ja osaaminen (HTTO) Helsinki Finnish Ministry of Defence Search in Google Scholar

Folkeson, J. R., & Brauner, M. K. (2005). Improving the Army's Management of Reparable Spare Parts. Santa Monica, CA: RAND Corporation. FolkesonJ. R. BraunerM. K. 2005 Improving the Army's Management of Reparable Spare Parts Santa Monica, CA RAND Corporation 10.7249/RB9113 Search in Google Scholar

Forrester, J. W. (1969). Principles of Systems. 1st edn. Cambridge: Wright-Allen Press. ForresterJ. W. 1969 Principles of Systems 1st edn. Cambridge Wright-Allen Press Search in Google Scholar

GAO (1999). Management Actions Create Spare Parts Shortages and Operational Problems. Washington DC: United States Government Accountability Office. GAO 1999 Management Actions Create Spare Parts Shortages and Operational Problems Washington DC United States Government Accountability Office Search in Google Scholar

GAO, U. S. G. A. O. (2005). Actions Needed to Improve the Availability of Critical Items during Current and Future Operations. Washington D.C.: United States Government Accountability Office. GAO, U. S. G. A. O. 2005 Actions Needed to Improve the Availability of Critical Items during Current and Future Operations Washington D.C. United States Government Accountability Office Search in Google Scholar

Gebusa, A. W., & Lemu, H. G. (2017). Design for manufacturing to design to Additive Manufacturing: Analysis of implications for design optimality and product sustainability. Procedia Manufacturing, 13, pp. 724–731. GebusaA. W. LemuH. G. 2017 Design for manufacturing to design to Additive Manufacturing: Analysis of implications for design optimality and product sustainability Procedia Manufacturing 13 724 731 10.1016/j.promfg.2017.09.120 Search in Google Scholar

Gibson, I., Rosen, D. W., & Stucker, B. (2015). Additive Manufacturing Technologies: 3D printing, Rapid prototyping and direct digital maufacturing. 2nd edn. New York: Springer Science & Business Media. GibsonI. RosenD. W. StuckerB. 2015 Additive Manufacturing Technologies: 3D printing, Rapid prototyping and direct digital maufacturing 2nd edn. New York Springer Science & Business Media 10.1007/978-1-4939-2113-3 Search in Google Scholar

Goetschalckx, M. (2011). Supply Chain Engineering. New York: Springer. GoetschalckxM. 2011 Supply Chain Engineering New York Springer 10.1007/978-1-4419-6512-7 Search in Google Scholar

González, D. S., & Álvarez, A. G. (2018). Additive Manufacturing Feasibility Study & Technology Demonstration. Bryssel: European Defence Agency. GonzálezD. S. ÁlvarezA. G. 2018 Additive Manufacturing Feasibility Study & Technology Demonstration Bryssel European Defence Agency Search in Google Scholar

Headquarters United States Marine Corps. (2020). Marine Corps Order 4700.4 – Additive Manufacturing Policy. Washington DC: Department of Defence – Department of the Navy. Headquarters United States Marine Corps 2020 Marine Corps Order 4700.4 – Additive Manufacturing Policy Washington DC Department of Defence – Department of the Navy Search in Google Scholar

Hokkanen, M., & Rautio, S. (2018). 3D Printing Feasibility Study. Ylöjärvi: Finnish Defence Research Agency. HokkanenM. RautioS. 2018 3D Printing Feasibility Study Ylöjärvi Finnish Defence Research Agency Search in Google Scholar

Iftikhar, U. (2019). U.S Navy and Army Recruit 3D Printers for Effective Operations, Available at: https://3dprintingindustry.com/news/u-s-navy-and-army-recruit-3d-printers-for-effective-operations-150008/ [accessed 15 February, 2021]. IftikharU. 2019 U.S Navy and Army Recruit 3D Printers for Effective Operations Available at: https://3dprintingindustry.com/news/u-s-navy-and-army-recruit-3d-printers-for-effective-operations-150008/ [accessed 15 February, 2021]. Search in Google Scholar

ISO/ASTM, 5. (2016). Additive Manufacturing – General Principles – Terminology. s.l.: Mechanical Engineering and Metals Industry Standardization in Finland. ISO/ASTM, 5 2016 Additive Manufacturing – General Principles – Terminology s.l.: Mechanical Engineering and Metals Industry Standardization in Finland Search in Google Scholar

Judson, J. (2019). Still in service: ‘Ex Lab’ is the US Army's problem-solving MacGyver, Available at: https://www.defensenews.com/digital-show-dailies/ausa/2019/10/14/still-in-service-ex-lab-is-the-us-armys-problem-solving-macgyver/ [accessed 15 January, 2021]. JudsonJ. 2019 Still in service: ‘Ex Lab’ is the US Army's problem-solving MacGyver Available at: https://www.defensenews.com/digital-show-dailies/ausa/2019/10/14/still-in-service-ex-lab-is-the-us-armys-problem-solving-macgyver/ [accessed 15 January, 2021]. Search in Google Scholar

Katok, A., & Hasselblatt, B. (1995). Introduction to the Modern Theory of Dynamical Systems. Cambridge: Cambridge University Press. KatokA. HasselblattB. 1995 Introduction to the Modern Theory of Dynamical Systems Cambridge Cambridge University Press 10.1017/CBO9780511809187 Search in Google Scholar

Khajavi, S., Partanen, J., & Holmström, J. (2013). Additive manufacturing in the spare parts supply chain. Computers in Industry, 65(1), pp. 50–63. KhajaviS. PartanenJ. HolmströmJ. 2013 Additive manufacturing in the spare parts supply chain Computers in Industry 65 1 50 63 10.1016/j.compind.2013.07.008 Search in Google Scholar

Law, A. M. (2007). Simulation Modeling and Analysis. 4th edn. New York: Mc Graw-Hill Companies. LawA. M. 2007 Simulation Modeling and Analysis 4th edn. New York McGraw-Hill Companies Search in Google Scholar

Li, C. Y., & Yang, H. (2017). A mathematical model of demand-supply dynamics with collectability and saturation factors. International Journal of Bifurcation and Chaos, 27(1), pp. 1–14. LiC. Y. YangH. 2017 A mathematical model of demand-supply dynamics with collectability and saturation factors International Journal of Bifurcation and Chaos 27 1 1 14 10.1142/S021812741750016X Search in Google Scholar

Lu, B., Li, D., & Tian, X. (2015). Development trends in additive manufacturing and 3D printing. Engineering, 1(1), pp. 85–89. DOI: 10.15302/J-ENG-2015012 LuB. LiD. TianX. 2015 Development trends in additive manufacturing and 3D printing Engineering 1 1 85 89 10.15302/J-ENG-2015012 Open DOISearch in Google Scholar

Meier, F. H. (1998). New product diffusion models in innovation management – a system dynamics perspective. System Dynamics Review, 14(4), pp. 285–308. MeierF. H. 1998 New product diffusion models in innovation management – a system dynamics perspective System Dynamics Review 14 4 285 308 10.1002/(SICI)1099-1727(199824)14:4<285::AID-SDR153>3.0.CO;2-F Search in Google Scholar

Merten, P. P. (1991). Loop-based strategic decision support systems. Strategic Management Journal, 12(5), pp. 371–386. MertenP. P. 1991 Loop-based strategic decision support systems Strategic Management Journal 12 5 371 386 10.1002/smj.4250120504 Search in Google Scholar

Milling, P. M. (2002). Understanding and managing innovation processes. System Dynamics Review, 18(1), pp. 73–86. MillingP. M. 2002 Understanding and managing innovation processes System Dynamics Review 18 1 73 86 10.1002/sdr.231 Search in Google Scholar

Minculete, G., & Tutuianu, D. (2017). Aspects of logistic planning in a military unit AT peacetime. Journal of Defense Resources Management, 8(1), pp. 121–134. MinculeteG. TutuianuD. 2017 Aspects of logistic planning in a military unit AT peacetime Journal of Defense Resources Management 8 1 121 134 Search in Google Scholar

Morecroft, J. D. W. (2017). Management attitudes, learning and scale in successful diversification: A dynamic and behavioural resource system view. System Dynamics, OR Essentials. Palgrave Macmillan, London. pp. 69–106. DOI: 10.1057/978-1-349-95257-1_3 MorecroftJ. D. W. 2017 Management attitudes, learning and scale in successful diversification: A dynamic and behavioural resource system view System Dynamics, OR Essentials Palgrave Macmillan London 69 106 10.1057/978-1-349-95257-1_3 Open DOISearch in Google Scholar

МТЛБРУС, ООО (2017). Electronic spare parts catalog on MTLB, MTLBV, MTLBU, Engels: MTLBRUS OOO. МТЛБРУС, ООО 2017 Electronic spare parts catalog on MTLB, MTLBV, MTLBU Engels MTLBRUS OOO Search in Google Scholar

NATO (2012). NATO Logistics Handbook. Bryssel: NATO HQ, Defence Policy and Planning Division, Logistics Capabilities Section. NATO 2012 NATO Logistics Handbook Bryssel NATO HQ, Defence Policy and Planning Division, Logistics Capabilities Section Search in Google Scholar

Nieminen, M., & Hyytinen, K. (2015). Päätöksenteko ja muutoksen edistäminen monimutkaisissa järjestelmissä. Espoo: Teknologian tutkimuskeskus VTT Oy. NieminenM. HyytinenK. 2015 Päätöksenteko ja muutoksen edistäminen monimutkaisissa järjestelmissä Espoo Teknologian tutkimuskeskus VTT Oy Search in Google Scholar

Parkatti, V. P. (2012). Maavoimien taistelu uudistuu. Sotilasaikakauslehti, 87(913), pp. 11–19. ParkattiV. P. 2012 Maavoimien taistelu uudistuu Sotilasaikakauslehti 87 913 11 19 Search in Google Scholar

Pejić-Bach, M., & Čerić, V. (2007). Developing system dynamic models with “step-by-step” approach. Journal of Information and Organizational Sciences, 31(1), pp. 171–185. Pejić-BachM. ČerićV. 2007 Developing system dynamic models with “step-by-step” approach Journal of Information and Organizational Sciences 31 1 171 185 Search in Google Scholar

Prebilič, V. (2006). Theoretical aspects of military logistics. Defense & Security Analysis, 22(2), pp. 159–177. PrebiličV. 2006 Theoretical aspects of military logistics Defense & Security Analysis 22 2 159 177 10.1080/14751790600764037 Search in Google Scholar

Puolustusvoimat – Finnish Defence Forces. (2003). Kunnossapito-opas. 1st edn. Helsinki: Edita Prima. Puolustusvoimat – Finnish Defence Forces 2003 Kunnossapito-opas 1st edn. Helsinki Edita Prima Search in Google Scholar

Puolustusvoimat – Finnish Defence Forces. (2020). Sotilaan käsikirja. Helsinki: Finnish Defence Forces. Puolustusvoimat – Finnish Defence Forces 2020 Sotilaan käsikirja Helsinki Finnish Defence Forces Search in Google Scholar

Rogers, M. B., McConnell, B. M., Hodgson, T. J., Kay, M. G., King, R. E., Parlier, G., et al. (2018). A military logistics network planning system. Military Operations Research, 23(4), pp. 5–24. RogersM. B. McConnellB. M. HodgsonT. J. KayM. G. KingR. E. ParlierG. 2018 A military logistics network planning system Military Operations Research 23 4 5 24 10.31224/osf.io/wnvpf Search in Google Scholar

Romeijnders, W., & Teunter, R., & Van Jaarsveld, W. (2012). A two-step method for forecasting spare parts demand using information. European Journal of Operational Research, 220(2), pp. 386–393. RomeijndersW. TeunterR. Van JaarsveldW. 2012 A two-step method for forecasting spare parts demand using information European Journal of Operational Research 220 2 386 393 10.1016/j.ejor.2012.01.019 Search in Google Scholar

Rumbaugh, J., Blaha, M., Premerlani, W., Eddy, F., & Lorensen, W. E. (1991). Object-Oriented Modeling and Design. New York: Prentice-Hall International Inc. RumbaughJ. BlahaM. PremerlaniW. EddyF. LorensenW. E. 1991 Object-Oriented Modeling and Design New York Prentice-Hall International Inc Search in Google Scholar

Shreckengost, R. C. (1985). Dynamic simulation models: How valid are they?. Self-Report Methods of Estimating Drug Use: Current Challenges to Validity. Rockville: National Institute on Drug Abuse Research Monograph. 57, pp. 63–70. ShreckengostR. C. 1985 Dynamic simulation models: How valid are they? Self-Report Methods of Estimating Drug Use: Current Challenges to Validity Rockville National Institute on Drug Abuse Research Monograph 57 63 70 10.1037/e496952006-007 Search in Google Scholar

SLM Solutions (2018). SLM®280 2.0, Available at: https://www.slm-solutions.com/en/products/machines/slmr280-20/ [accessed 16 February, 2019]. SLM Solutions 2018 SLM®280 2.0 Available at: https://www.slm-solutions.com/en/products/machines/slmr280-20/ [accessed 16 February, 2019]. Search in Google Scholar

SPEE3D (2020). Australian Army Push Metal 3D Printing to Extremes in Latest Field Trial, Available at: https://spee3d.com/australian-army-push-metal-3d-printing-to-extremes-in-latest-field-trial/ [accessed 21 January, 2021]. SPEE3D 2020 Australian Army Push Metal 3D Printing to Extremes in Latest Field Trial Available at: https://spee3d.com/australian-army-push-metal-3d-printing-to-extremes-in-latest-field-trial/ [accessed 21 January, 2021]. Search in Google Scholar

Thomas, D. S., & Gilbert, S. W. (2014). Costs and Cost Effectiveness of Additive Manufacturing. Gaithersburg, MD: National Institute of Standards and Technology. ThomasD. S. GilbertS. W. 2014 Costs and Cost Effectiveness of Additive Manufacturing Gaithersburg, MD National Institute of Standards and Technology 10.6028/NIST.SP.1176 Search in Google Scholar

US ARMY (2013a). Commanders’ Maintenance Handbook. Washington DC: Headquarters Department of the Army. US ARMY 2013a Commanders’ Maintenance Handbook Washington DC Headquarters Department of the Army Search in Google Scholar

US ARMY (2013b). Soldiers’ Guide for Field Maintenance Operations. Washington DC: Hedquarters Department of the Army. US ARMY 2013b Soldiers’ Guide for Field Maintenance Operations Washington DC Hedquarters Department of the Army Search in Google Scholar

US ARMY (2014). General Supply and Field Services Operations ATP 4–42. Washington DC: US ARMY. US ARMY 2014 General Supply and Field Services Operations ATP 4–42 Washington DC US ARMY Search in Google Scholar

von Bertanlaffy, L. (1968). General System Theory. New York: George Braziller, Inc. von BertanlaffyL. 1968 General System Theory New York George Braziller, Inc. Search in Google Scholar

VTT & AALTO. (2018). Digital Spare Pa0072ts. Helsinki: AALTO and VTT. VTT & AALTO 2018 Digital Spare Pa0072ts Helsinki AALTO and VTT Search in Google Scholar

Wright, I. (2018). Additive Manufacturing Materials for Production, Available at: https://www.engineering.com/AdvancedManufacturing/ArticleID/16955/Additive-Manufacturing-Materials-for-Production.aspx [accessed 4 March, 2019]. WrightI. 2018 Additive Manufacturing Materials for Production Available at: https://www.engineering.com/AdvancedManufacturing/ArticleID/16955/Additive-Manufacturing-Materials-for-Production.aspx [accessed 4 March, 2019]. Search in Google Scholar

Yin, R. K. (2003). Case Study Research, Design and Methods, 3rd edn. London New Delhi: SAGE Publications. YinR. K. 2003 Case Study Research, Design and Methods 3rd edn. London New Delhi SAGE Publications Search in Google Scholar

Zeimpekis, V., Kaimakamis, G., & Daras, N. J. (2015). Military Logistics. 1st edn. Heidelberg New York Dordrecht London: Springer International Publishing. ZeimpekisV. KaimakamisG. DarasN. J. 2015 Military Logistics 1st edn. Heidelberg New York Dordrecht London Springer International Publishing 10.1007/978-3-319-12075-1 Search in Google Scholar

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