Skip to main content
Top

2020 | OriginalPaper | Chapter

Model-Based Manufacturing System Supported by Virtual Technologies in an Industry 4.0 Context

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Industry 4.0 concept of the new industrial revolution is based on the application of front-end and base technologies for producing digital solutions. Converging Smart Manufacturing and Smart Products with Big Data and Analytics plays a central role in implementing the I4.0 concept in today’s industry. This paper presents the virtual components of the proposed Model-based Manufacturing System and their role in the I4.0 context. Two different industrial cases demonstrate the application and benefits of the MBM approach, which integrates virtual and rapid technologies for the design, analysis and validation of a product and its fabrication processes of sheet metal forming and forging.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Castelo-Branco, I., Cruz-Jesus, F., Oliveira, T.: Assessing Industry 4.0 readiness in manufacturing: evidence for the European Union. Comput. Ind. 107, 22–32 (2019) Castelo-Branco, I., Cruz-Jesus, F., Oliveira, T.: Assessing Industry 4.0 readiness in manufacturing: evidence for the European Union. Comput. Ind. 107, 22–32 (2019)
5.
go back to reference Alcácer, V., Cruz-Machado, V.: Scanning the Industry 4.0: a literature review on technologies for manufacturing systems. Eng. Sci. Technol. Int. J. 22, 889–919 (2019) Alcácer, V., Cruz-Machado, V.: Scanning the Industry 4.0: a literature review on technologies for manufacturing systems. Eng. Sci. Technol. Int. J. 22, 889–919 (2019)
6.
go back to reference Konstantinov, S., Ahmad, M., Ananthanarayan, K., Harrison, R.: The cyber-physical e-machine manufacturing system: virtual engineering for complete lifecycle support. In: The 50th CIRP Conference on Manufacturing Systems (2017). Procedia CIRP 63, pp. 119–124 Konstantinov, S., Ahmad, M., Ananthanarayan, K., Harrison, R.: The cyber-physical e-machine manufacturing system: virtual engineering for complete lifecycle support. In: The 50th CIRP Conference on Manufacturing Systems (2017). Procedia CIRP 63, pp. 119–124
7.
go back to reference Majstorovic, V., Stojadinovic, S., Zivkovic, S., Djurdjanovic, D., Jakovljevic, Z., Gligorijevic, N.: Cyber-physical manufacturing metrology model (CPM3) for sculptured surfaces – turbine blade application. In: The 50th CIRP Conference on Manufacturing Systems (2017). Procedia CIRP 63, pp. 658–663 Majstorovic, V., Stojadinovic, S., Zivkovic, S., Djurdjanovic, D., Jakovljevic, Z., Gligorijevic, N.: Cyber-physical manufacturing metrology model (CPM3) for sculptured surfaces – turbine blade application. In: The 50th CIRP Conference on Manufacturing Systems (2017). Procedia CIRP 63, pp. 658–663
8.
go back to reference Frank, A.G., Dalenogare, L.S., Ayala, N.F.: Industry 4.0 technologies: implementation patterns in manufacturing companies. Int. J. Prod. Econ. 210, 15–26 (2019) Frank, A.G., Dalenogare, L.S., Ayala, N.F.: Industry 4.0 technologies: implementation patterns in manufacturing companies. Int. J. Prod. Econ. 210, 15–26 (2019)
9.
go back to reference Wagner, R., Schleich, B., Haefner, B., Kuhnle, A., Wartzack, S., Lanz, G.: Challenges and potentials of digital twins and Industry 4.0 in product design and production for high performance products. Procedia CIRP 84, 88–93 (2019) Wagner, R., Schleich, B., Haefner, B., Kuhnle, A., Wartzack, S., Lanz, G.: Challenges and potentials of digital twins and Industry 4.0 in product design and production for high performance products. Procedia CIRP 84, 88–93 (2019)
10.
go back to reference Salama, S., Eltawil, A.B.: A decision support system architecture based on simulation optimization for cyber-physical systems. Procedia Manuf. 26, 1147–1158 (2018) Salama, S., Eltawil, A.B.: A decision support system architecture based on simulation optimization for cyber-physical systems. Procedia Manuf. 26, 1147–1158 (2018)
11.
go back to reference Mandic, V.: Virtual engineering. Mechanical Engineering Faculty of the University of Kragujevac, Kragujevac, Serbia (2007). (in Serbian) Mandic, V.: Virtual engineering. Mechanical Engineering Faculty of the University of Kragujevac, Kragujevac, Serbia (2007). (in Serbian)
12.
go back to reference Mandic, V., Cosic, P.: Integrated product and process development in collaborative virtual engineering environment. Tech. Gaz. 18(3), 369–378 (2011) Mandic, V., Cosic, P.: Integrated product and process development in collaborative virtual engineering environment. Tech. Gaz. 18(3), 369–378 (2011)
13.
go back to reference Bikas, H., Stavropoulos, P., Chryssolouris, G.: Additive manufacturing methods and modelling approaches: a critical review. Int. J. Adv. Manuf. Technol. 83, 389–405 (2016) Bikas, H., Stavropoulos, P., Chryssolouris, G.: Additive manufacturing methods and modelling approaches: a critical review. Int. J. Adv. Manuf. Technol. 83, 389–405 (2016)
14.
go back to reference Shahrubudina, N., Leea, T.C., Ramlana, R.: An overview on 3D printing technology: technological, materials, and applications. In: 2nd International Conference on Sustainable Materials Processing and Manufacturing (SMPM 2019) (2019). Procedia Manufacturing 35, pp. 1286–1296 Shahrubudina, N., Leea, T.C., Ramlana, R.: An overview on 3D printing technology: technological, materials, and applications. In: 2nd International Conference on Sustainable Materials Processing and Manufacturing (SMPM 2019) (2019). Procedia Manufacturing 35, pp. 1286–1296
15.
go back to reference Horst, D.J., Duvoisin, C.A., de Almeida Vieira, R.: Additive manufacturing at Industry 4.0: a review. Int. J. Eng. Tech. Res. (IJETR) 8(8), 3–8 (2018) Horst, D.J., Duvoisin, C.A., de Almeida Vieira, R.: Additive manufacturing at Industry 4.0: a review. Int. J. Eng. Tech. Res. (IJETR) 8(8), 3–8 (2018)
16.
go back to reference Stojanovic, G., Mandic, V., Curcic, M., Vasiljevic, D., Kisic, M., Radosavljevic, N.: Combining rapid prototyping techniques in mechanical engineering and electronics for realization of a variable capacitor. Rapid Prototyp. J. 20(2), 115–120 (2014) Stojanovic, G., Mandic, V., Curcic, M., Vasiljevic, D., Kisic, M., Radosavljevic, N.: Combining rapid prototyping techniques in mechanical engineering and electronics for realization of a variable capacitor. Rapid Prototyp. J. 20(2), 115–120 (2014)
17.
go back to reference Dilberoglua, U.M., Gharehpapagha, B., Yamana, U., Dolena, M.: The role of additive manufacturing in the era of Industry 4.0. Procedia Manuf. 11, 545–554 (2017) Dilberoglua, U.M., Gharehpapagha, B., Yamana, U., Dolena, M.: The role of additive manufacturing in the era of Industry 4.0. Procedia Manuf. 11, 545–554 (2017)
18.
go back to reference Lunback, A., Lindgren, L.-E.: Finite element simulation to support sustainable production by additive manufacturing. Procedia Manuf. 7, 127–130 (2016) Lunback, A., Lindgren, L.-E.: Finite element simulation to support sustainable production by additive manufacturing. Procedia Manuf. 7, 127–130 (2016)
20.
go back to reference Rosenthala, S., Hahna, M., Tekkayaa, A.E.: Simulation approach for three-point plastic bending of additively manufactured Hastelloy X sheets. In: 47th SME North American Manufacturing Research Conference, Pennsylvania, USA (2019). Procedia Manufacturing 34, pp. 475–481 Rosenthala, S., Hahna, M., Tekkayaa, A.E.: Simulation approach for three-point plastic bending of additively manufactured Hastelloy X sheets. In: 47th SME North American Manufacturing Research Conference, Pennsylvania, USA (2019). Procedia Manufacturing 34, pp. 475–481
21.
go back to reference Mandic, V., Eric, D., Adamovic, D., Janjic, M., Jurkovic, Z., Babic, Z., Cosic, P.: Concurrent engineering based on virtual manufacturing. Tech. Gaz. 19(4), 885–892 (2012) Mandic, V., Eric, D., Adamovic, D., Janjic, M., Jurkovic, Z., Babic, Z., Cosic, P.: Concurrent engineering based on virtual manufacturing. Tech. Gaz. 19(4), 885–892 (2012)
22.
go back to reference Sharma, P.: Concept of virtual manufacturing. GRD J. Global Res. Dev. J. Eng. 2(6), 2455–5703 (2017) Sharma, P.: Concept of virtual manufacturing. GRD J. Global Res. Dev. J. Eng. 2(6), 2455–5703 (2017)
23.
go back to reference Dobrescu, R., Merezeanu, D., Mocanu, S.: Process simulation platform for virtual manufacturing systems evaluation. Comput. Ind. 104, 131–140 (2019) Dobrescu, R., Merezeanu, D., Mocanu, S.: Process simulation platform for virtual manufacturing systems evaluation. Comput. Ind. 104, 131–140 (2019)
25.
go back to reference Souza, M.C.F., Sacco, M., Porto, A.J.V.: Virtual manufacturing as a way for the factory of the future. J. Intell. Manuf. 17, 725–735 (2006) Souza, M.C.F., Sacco, M., Porto, A.J.V.: Virtual manufacturing as a way for the factory of the future. J. Intell. Manuf. 17, 725–735 (2006)
26.
go back to reference Ahmeda, M.B., Saninb, C., Szczerbickic, E.: Smart virtual product development (SVPD) to enhance product manufacturing in Industry 4.0. In: 23rd International Conference on Knowledge-Based and Intelligent Information & Engineering Systems (2019). Procedia Computer Science 159, pp. 2232–2239 Ahmeda, M.B., Saninb, C., Szczerbickic, E.: Smart virtual product development (SVPD) to enhance product manufacturing in Industry 4.0. In: 23rd International Conference on Knowledge-Based and Intelligent Information & Engineering Systems (2019). Procedia Computer Science 159, pp. 2232–2239
27.
go back to reference Hagenah, H., Schulte, R., Vogel, M., Hermann, J., Scharrer, H., Lechner, M., Merklein, M.: 4.0 in metal forming – questions and challenges. In: 12th CIRP Conference on Intelligent Computation in Manufacturing Engineering, CIRP ICME 2018 (2019). Procedia CIRP 79, pp. 649–654 Hagenah, H., Schulte, R., Vogel, M., Hermann, J., Scharrer, H., Lechner, M., Merklein, M.: 4.0 in metal forming – questions and challenges. In: 12th CIRP Conference on Intelligent Computation in Manufacturing Engineering, CIRP ICME 2018 (2019). Procedia CIRP 79, pp. 649–654
28.
go back to reference Bauza, M.B., Tenboer, J., Li, M., Lisovich, A., Zhou, J., Pratt, D., Edwards, J., Zhang, H., Turch, C., Knebel, R.: Realization of Industry 4.0 with high speed CT in high volume production. CIRP J. Manufact. Sci. Technol. 22, 121–125 (2018) Bauza, M.B., Tenboer, J., Li, M., Lisovich, A., Zhou, J., Pratt, D., Edwards, J., Zhang, H., Turch, C., Knebel, R.: Realization of Industry 4.0 with high speed CT in high volume production. CIRP J. Manufact. Sci. Technol. 22, 121–125 (2018)
29.
go back to reference Djukic, T., Mandic, V., Filipovic, N.: Virtual reality aided visualization of fluid flow simulations with application in medical education and diagnostics. Comput. Biol. Med. 43(12), 2046–2052 (2013) Djukic, T., Mandic, V., Filipovic, N.: Virtual reality aided visualization of fluid flow simulations with application in medical education and diagnostics. Comput. Biol. Med. 43(12), 2046–2052 (2013)
30.
go back to reference Roldán, J.J., Crespo, E., Martín-Barrio, A., Peña-Tapia, E., Barrientos, A.: A training system for Industry 4.0 operators in complex assemblies based on virtual reality and process mining. Robot. Comput. Integr. Manuf. 59, 305–316 (2019) Roldán, J.J., Crespo, E., Martín-Barrio, A., Peña-Tapia, E., Barrientos, A.: A training system for Industry 4.0 operators in complex assemblies based on virtual reality and process mining. Robot. Comput. Integr. Manuf. 59, 305–316 (2019)
31.
go back to reference Ceruti, A., Marzocca, P., Liverani, A., Bil, C.: Maintenance in aeronautics in an Industry 4.0 context: the role of augmented reality and additive manufacturing. J. Comput. Des. Eng. 6, 516–526 (2019) Ceruti, A., Marzocca, P., Liverani, A., Bil, C.: Maintenance in aeronautics in an Industry 4.0 context: the role of augmented reality and additive manufacturing. J. Comput. Des. Eng. 6, 516–526 (2019)
32.
go back to reference Mandic, V., Stefanovic, M., Gavrilovic, Z.: Development of the forging technology for producing the artificial hip stem through application of virtual manufacturing. In: Proceedings of XII International Conference KODIP 2014, Budva, Montenegro, pp. 96–105 (2014) Mandic, V., Stefanovic, M., Gavrilovic, Z.: Development of the forging technology for producing the artificial hip stem through application of virtual manufacturing. In: Proceedings of XII International Conference KODIP 2014, Budva, Montenegro, pp. 96–105 (2014)
Metadata
Title
Model-Based Manufacturing System Supported by Virtual Technologies in an Industry 4.0 Context
Author
Vesna Mandic
Copyright Year
2020
DOI
https://doi.org/10.1007/978-3-030-46212-3_15

Premium Partners