21 Closed Loop Tolerance Engineering Modelling and Maturity …
307
References
Ali SA. Durupt, Adragna P (2013) Reverse engineering for manufacturing approach: based on the
combination of 3D and knowledge information. In: Abramovici M, StarkSmart R (ed) Product
engineering. Springer Berlin Heidelberg, p 137–146
Badke-Schaub P, Frankenberger E (2004) Management kritischer Situationen-Produktentwicklung
erfolgreich gestalten Heidelberg, Springer Verlag
Bjørke Ø (1989) Computer-aided tolerancing, New York, ASME Press. xiii, 216 s
Brown SL, Eisenhardt KM (1995) Product development: past research, present findings, and future
directions. Acad Manag Rev 20(2):343–378
Holt R, Barnes C (2010) Towards an integrated approach to “Design for X”: an agenda for decisionbased DFX research. Res Eng Des 21(2):123–136
Horváth I (2004) A treatise on order in engineering design research. Res Eng Des 15(3):155–181
Krogstie L, Martinsen K (2012) Closed loop tolerance engineering—a relational model connecting
activities of product development. Procedia CIRP 3:519–524
Krogstie L, Martinsen K (2013) Beyond lean and six sigma; cross-collaborative improvement of
tolerances and process variations-a case study. Procedia CIRP 7:610–615
Krogstie Lars, Martinsen Kristian, Andersen Bjørn (2014) Approaching the devil in the details.
Surv Improving Tolerance Eng Pract Procedia CIRP 17(1):230–235
Lieder M, Rashid A (2016) Towards circular economy implementation: a comprehensive review in
context of manufacturing industry. J Cleaner Prod 115:36–51
Martinsen K (2018) Industry 4.0 closed loop tolerance engineering maturity evaluation. In: Proceedings of the international workshop of advanced manufacturing and automation. https://link.spr
inger.com/book/10.1007/978–981-13-2375-1
Meadows D (1997) Places to intervene in a system. Whole Earth 91(1):78–84
Morse Edward, Dantan Jean-Yves, Anwer Nabil, Söderberg Rikard, Moroni Giovanni, Qureshi
Ahmed, Jiang Xiangqian, Mathieu Luc (2018) Tolerancing: managing uncertainty from conceptual design to final product. CIRP Ann 67(2):695–717
Nagel C, Meyer P (1999) Caught between ecology and economy: end-of-life aspects of environmentally conscious manufacturing. Comput Indus Eng 36(4):781–792
Pedersen SN, Howard T (2016) Data Acquisition for Quality Loss Function Modelling. Procedia
CIRP 43:112–117
Richtnér A, Åhlström P (2010) Top management control and knowledge creation in new product
development. Int J Oper Prod Manag 30(10):1006–1031
Shu LH, Duflou J, Herrmann C, Sakao T, Shimomura Y, De Bock Y, Srivastava J (2017) Design for
reduced resource consumption during the use phase of products. Ann CIRP 66(2):635
Singh N (2002) Integrated product and process design: a multi-objective modeling framework.
Robot Comput Integr Manuf 18(2):157–168
Söderberg R, Wärmefjord K, Carlson JS, Lindkvist L (2017) Toward a digital twin for real-time
geometry assurance in individualized production. CIRP Ann 66(1):137–140
Srinivasan V (2008) Standardizing the specification, verification, and exchange of product geometry:
research, status and trends. Comput Aided Des 40(7):738–749
Srinivasan V (2012) Reflections on the role of science in the evolution of dimensioning and tolerancing standards. In: 12th CIRP Conference on Computer Aided Tolerancing, Elsevier Ltd.
Huddersfield, UK
Sterman J (2000) Business dynamics: systems thinking and modeling for a complex world.
Irwin/McGraw-Hill, p 21–23
Tolio T, Bernard A, Colledani M, Kara S, Seliger G, Duflou J, Battaia O, Takata S (2017) Design,
management and control of demanufacturing and remanufacturing systems. CIRP Ann 66(2):585–
609
Umeda Umeda, Yasushi Shozo Takata, Kimura Fumihiko, Tomiyama Tetsuo, Sutherland John W,
Kara Sami, Herrmann Christoph, Duflou Joost R (2012) Toward integrated product and process
life cycle planning—an environmental perspective. Ann CIRP 61(2):681
307
References
Ali SA. Durupt, Adragna P (2013) Reverse engineering for manufacturing approach: based on the
combination of 3D and knowledge information. In: Abramovici M, StarkSmart R (ed) Product
engineering. Springer Berlin Heidelberg, p 137–146
Badke-Schaub P, Frankenberger E (2004) Management kritischer Situationen-Produktentwicklung
erfolgreich gestalten Heidelberg, Springer Verlag
Bjørke Ø (1989) Computer-aided tolerancing, New York, ASME Press. xiii, 216 s
Brown SL, Eisenhardt KM (1995) Product development: past research, present findings, and future
directions. Acad Manag Rev 20(2):343–378
Holt R, Barnes C (2010) Towards an integrated approach to “Design for X”: an agenda for decisionbased DFX research. Res Eng Des 21(2):123–136
Horváth I (2004) A treatise on order in engineering design research. Res Eng Des 15(3):155–181
Krogstie L, Martinsen K (2012) Closed loop tolerance engineering—a relational model connecting
activities of product development. Procedia CIRP 3:519–524
Krogstie L, Martinsen K (2013) Beyond lean and six sigma; cross-collaborative improvement of
tolerances and process variations-a case study. Procedia CIRP 7:610–615
Krogstie Lars, Martinsen Kristian, Andersen Bjørn (2014) Approaching the devil in the details.
Surv Improving Tolerance Eng Pract Procedia CIRP 17(1):230–235
Lieder M, Rashid A (2016) Towards circular economy implementation: a comprehensive review in
context of manufacturing industry. J Cleaner Prod 115:36–51
Martinsen K (2018) Industry 4.0 closed loop tolerance engineering maturity evaluation. In: Proceedings of the international workshop of advanced manufacturing and automation. https://link.spr
inger.com/book/10.1007/978–981-13-2375-1
Meadows D (1997) Places to intervene in a system. Whole Earth 91(1):78–84
Morse Edward, Dantan Jean-Yves, Anwer Nabil, Söderberg Rikard, Moroni Giovanni, Qureshi
Ahmed, Jiang Xiangqian, Mathieu Luc (2018) Tolerancing: managing uncertainty from conceptual design to final product. CIRP Ann 67(2):695–717
Nagel C, Meyer P (1999) Caught between ecology and economy: end-of-life aspects of environmentally conscious manufacturing. Comput Indus Eng 36(4):781–792
Pedersen SN, Howard T (2016) Data Acquisition for Quality Loss Function Modelling. Procedia
CIRP 43:112–117
Richtnér A, Åhlström P (2010) Top management control and knowledge creation in new product
development. Int J Oper Prod Manag 30(10):1006–1031
Shu LH, Duflou J, Herrmann C, Sakao T, Shimomura Y, De Bock Y, Srivastava J (2017) Design for
reduced resource consumption during the use phase of products. Ann CIRP 66(2):635
Singh N (2002) Integrated product and process design: a multi-objective modeling framework.
Robot Comput Integr Manuf 18(2):157–168
Söderberg R, Wärmefjord K, Carlson JS, Lindkvist L (2017) Toward a digital twin for real-time
geometry assurance in individualized production. CIRP Ann 66(1):137–140
Srinivasan V (2008) Standardizing the specification, verification, and exchange of product geometry:
research, status and trends. Comput Aided Des 40(7):738–749
Srinivasan V (2012) Reflections on the role of science in the evolution of dimensioning and tolerancing standards. In: 12th CIRP Conference on Computer Aided Tolerancing, Elsevier Ltd.
Huddersfield, UK
Sterman J (2000) Business dynamics: systems thinking and modeling for a complex world.
Irwin/McGraw-Hill, p 21–23
Tolio T, Bernard A, Colledani M, Kara S, Seliger G, Duflou J, Battaia O, Takata S (2017) Design,
management and control of demanufacturing and remanufacturing systems. CIRP Ann 66(2):585–
609
Umeda Umeda, Yasushi Shozo Takata, Kimura Fumihiko, Tomiyama Tetsuo, Sutherland John W,
Kara Sami, Herrmann Christoph, Duflou Joost R (2012) Toward integrated product and process
life cycle planning—an environmental perspective. Ann CIRP 61(2):681
