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2021 | OriginalPaper | Chapter

5. Modelling of Hybrid Machining Processes

Authors : Wit Grzesik, Adam Ruszaj

Published in: Hybrid Manufacturing Processes

Publisher: Springer International Publishing

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Abstract

Material removal in cutting and abrasive processes takes place under complex thermo-mechanical, and often thermo-mechanical-chemical conditions.

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Literature
1.
go back to reference Grzesik W (2017) Advanced machining processes of metallic materials. Elsevier, Amsterdam Grzesik W (2017) Advanced machining processes of metallic materials. Elsevier, Amsterdam
2.
go back to reference Melkote S, Grzesik W, Outerio J, Rech J, Schulze V, Attia H et al (2017) Advances in material and friction data for modelling of metal machining. CIRP Ann Manuf Technol 66(2):731–754CrossRef Melkote S, Grzesik W, Outerio J, Rech J, Schulze V, Attia H et al (2017) Advances in material and friction data for modelling of metal machining. CIRP Ann Manuf Technol 66(2):731–754CrossRef
3.
go back to reference Arrazola PJ, Ozel T, Umbrello D, Davies M, Jawahir JS (2013) Recent advances in modelling of metal machining processes. CIRP Ann Manuf Technol 62(2):695–718CrossRef Arrazola PJ, Ozel T, Umbrello D, Davies M, Jawahir JS (2013) Recent advances in modelling of metal machining processes. CIRP Ann Manuf Technol 62(2):695–718CrossRef
4.
go back to reference Grzesik W (2020) Modelling of heat generation and transfer in metal cutting: a short review. J Mach Eng 20(1):24–33 Grzesik W (2020) Modelling of heat generation and transfer in metal cutting: a short review. J Mach Eng 20(1):24–33
5.
go back to reference Klocke F (2011) Manufacturing processes 2. Grinding, lapping, polishing. Springer, Berlin Klocke F (2011) Manufacturing processes 2. Grinding, lapping, polishing. Springer, Berlin
6.
go back to reference Maradia U, Wegener K (2015) EDM modelling and simulation. In: Electrical discharge machining (EDM): types, technology and applications. Chap. 3, pp 67–121 Maradia U, Wegener K (2015) EDM modelling and simulation. In: Electrical discharge machining (EDM): types, technology and applications. Chap. 3, pp 67–121
7.
go back to reference Kozak J (2018) Mathematical modelling of advanced manufacturing processes. Institute of Aviation No. 56, Warsaw Kozak J (2018) Mathematical modelling of advanced manufacturing processes. Institute of Aviation No. 56, Warsaw
8.
go back to reference El-Hofy H (2005) Advanced machining processes. McGraw Hill, New York El-Hofy H (2005) Advanced machining processes. McGraw Hill, New York
9.
go back to reference Ruszaj A, Grzesik W (2012) Manufacturing of sculptured surfaces using EDM and ECM processes. In: Davim JP (ed) Machining of complex sculptured surfaces. Springer, London Limited pp 229–251 Ruszaj A, Grzesik W (2012) Manufacturing of sculptured surfaces using EDM and ECM processes. In: Davim JP (ed) Machining of complex sculptured surfaces. Springer, London Limited pp 229–251
10.
go back to reference Kozak J, Gulbinowicz Z (2011) The computer simulation of shaping in rotating electrical discharge machining. In: Machine learning and system engineering. Springer, London Kozak J, Gulbinowicz Z (2011) The computer simulation of shaping in rotating electrical discharge machining. In: Machine learning and system engineering. Springer, London
11.
go back to reference Guitrau EB (2009) The EDM handbook. Hanser Gardner, Cincinnati Guitrau EB (2009) The EDM handbook. Hanser Gardner, Cincinnati
12.
go back to reference Kalpakjan S, Schmid SR, Vijay Sekar KS (2014) Manufacturing engineering and technology. Pearson, Singapore Kalpakjan S, Schmid SR, Vijay Sekar KS (2014) Manufacturing engineering and technology. Pearson, Singapore
13.
go back to reference Ruszaj A (2017) Some aspects of electrochemical machining process modeling and applications. Adv Manuf Sci Technol 41(4):5–22 Ruszaj A (2017) Some aspects of electrochemical machining process modeling and applications. Adv Manuf Sci Technol 41(4):5–22
14.
go back to reference Niu S, Qu N, Fu S, Fang X, Li H (2017) Investigation of inner—jet electrochemical milling of nickel based Alloy GH4169/Inconel 718. Int J Manuf Technol 93:2123–2132CrossRef Niu S, Qu N, Fu S, Fang X, Li H (2017) Investigation of inner—jet electrochemical milling of nickel based Alloy GH4169/Inconel 718. Int J Manuf Technol 93:2123–2132CrossRef
15.
go back to reference Xu K, Zeng Y, Li P, Zhu D (2015) Study of surface roughness in wire electrochemical micromachining. J Mater Proc Technol 222:103–109CrossRef Xu K, Zeng Y, Li P, Zhu D (2015) Study of surface roughness in wire electrochemical micromachining. J Mater Proc Technol 222:103–109CrossRef
16.
go back to reference Parandoush P, Hossain A (2014) A review of modelling and simulation of laser beam machining. Int J Mach Tools Manuf 85:35–45CrossRef Parandoush P, Hossain A (2014) A review of modelling and simulation of laser beam machining. Int J Mach Tools Manuf 85:35–45CrossRef
17.
go back to reference Robinson M, Jackson MJ (2009) Non-conventional processes: laser micromachining. In: Davim JP (ed) Nano and micromanufacturing. Chap. 6 London, Wiley Robinson M, Jackson MJ (2009) Non-conventional processes: laser micromachining. In: Davim JP (ed) Nano and micromanufacturing. Chap. 6 London, Wiley
18.
go back to reference Jain VK (ed) (2013) Micromanufacturing processes. CRC Press, Boca Raton Jain VK (ed) (2013) Micromanufacturing processes. CRC Press, Boca Raton
19.
go back to reference Aswathy K, Govindan P (2015) Modeling of abrasive water jet machining process. Int J Rec Adv Mech Eng (IJMECH) 4(3):50–71 Aswathy K, Govindan P (2015) Modeling of abrasive water jet machining process. Int J Rec Adv Mech Eng (IJMECH) 4(3):50–71
20.
go back to reference Lebar A, Junkar M (2004) Simulation of abrasive water jet cutting process: part 1. Unit event approach. Model Simul Mater Sci Eng 12:1159–1170CrossRef Lebar A, Junkar M (2004) Simulation of abrasive water jet cutting process: part 1. Unit event approach. Model Simul Mater Sci Eng 12:1159–1170CrossRef
21.
go back to reference Hashish M (1995) Material properties in abrasive water jet machining. Trans ASME J Mater Sci Eng 117:578–583 Hashish M (1995) Material properties in abrasive water jet machining. Trans ASME J Mater Sci Eng 117:578–583
22.
go back to reference Grzesik W, Niesłony P, Laskowski P (2017) Determination of material constitutive laws for inconel 718 superalloy under different strain rates and working temperatures. J Mater Eng Perf 26(12):5705–5714CrossRef Grzesik W, Niesłony P, Laskowski P (2017) Determination of material constitutive laws for inconel 718 superalloy under different strain rates and working temperatures. J Mater Eng Perf 26(12):5705–5714CrossRef
23.
go back to reference Kulundzic N, Gostimirovic M, Kovac P, Sekulic M, Savkovic B (2015) Micro cutting simulation of abrasive grains in the grinding process. J Prod Eng 18(2):25–28 Kulundzic N, Gostimirovic M, Kovac P, Sekulic M, Savkovic B (2015) Micro cutting simulation of abrasive grains in the grinding process. J Prod Eng 18(2):25–28
24.
go back to reference Pandiyan V, Shevchik S, Wasmer K, Castagne S, Tjahjowidodo T (2020) Modelling and monitoring of abrasive finishing processes using artificial intelligence techniques: a review. J Manuf Proc 57:114–135CrossRef Pandiyan V, Shevchik S, Wasmer K, Castagne S, Tjahjowidodo T (2020) Modelling and monitoring of abrasive finishing processes using artificial intelligence techniques: a review. J Manuf Proc 57:114–135CrossRef
Metadata
Title
Modelling of Hybrid Machining Processes
Authors
Wit Grzesik
Adam Ruszaj
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-77107-2_5

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