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2012 | OriginalPaper | Buchkapitel

4. Traditional Machining Processes of MMC

verfasst von : H. A. Kishawy, S. Kannan, G. Parker

Erschienen in: Machining of Metal Matrix Composites

Verlag: Springer London

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Abstract

The present chapter focuses on the problems encountered during high-speed machining of Metal Matrix Composites (MMCs) and how it affects tool life, surface quality and integrity and cutting forces generated during different machining processes such as turning, drilling and milling. It should be mentioned here that most studies on the machinability of MMCs have been based entirely on experimental results while very few analytical models have yet been developed.

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Literatur
1.
Zurück zum Zitat Rohatgi PK, Asthana R, Das S (1986) Solidification, structures, and properties of cast metal-ceramic particle composites. Int Mater Rev 31:115–139CrossRef Rohatgi PK, Asthana R, Das S (1986) Solidification, structures, and properties of cast metal-ceramic particle composites. Int Mater Rev 31:115–139CrossRef
2.
Zurück zum Zitat Hashim J, Looney L, Hashmi MSJ (2002) Particle distribution in cast metal matrix composites—Part I. J Mater Process Tech 123(2):251CrossRef Hashim J, Looney L, Hashmi MSJ (2002) Particle distribution in cast metal matrix composites—Part I. J Mater Process Tech 123(2):251CrossRef
3.
Zurück zum Zitat Zhou W, Xu ZM (1997) Casting of SiC reinforced metal matrix composites. J Mater Proc Tech 63(1–3):358CrossRef Zhou W, Xu ZM (1997) Casting of SiC reinforced metal matrix composites. J Mater Proc Tech 63(1–3):358CrossRef
4.
Zurück zum Zitat Suresh S, Mortensen A, Needleman A (1993) Fundamentals of metal–matrix composites. Butterworth-Heinemann, UK Suresh S, Mortensen A, Needleman A (1993) Fundamentals of metal–matrix composites. Butterworth-Heinemann, UK
5.
Zurück zum Zitat Chawla KK, Chawla N (2006) Metal-matrix composites. Kirk-Othmer encyclopedia of chemical technology. Wiley, NJ Chawla KK, Chawla N (2006) Metal-matrix composites. Kirk-Othmer encyclopedia of chemical technology. Wiley, NJ
6.
Zurück zum Zitat Tomac N, Tannessen K, Rasch FO (1992) Machinability of particulate aluminium matrix composites. CIRP Annals Manuf Tech 41(1):55–58CrossRef Tomac N, Tannessen K, Rasch FO (1992) Machinability of particulate aluminium matrix composites. CIRP Annals Manuf Tech 41(1):55–58CrossRef
7.
Zurück zum Zitat Hung NP, Venkatesh VC, Loh NL (1998) Cutting tools for metal matrix composites. Key Eng Mater 138–140:289–326CrossRef Hung NP, Venkatesh VC, Loh NL (1998) Cutting tools for metal matrix composites. Key Eng Mater 138–140:289–326CrossRef
8.
Zurück zum Zitat Kishawy HA, Kannan S, Balazinski M (2005) Analytical modeling of tool wear progression during turning particulate reinforced metal matrix composites. CIRP Annals Manuf Tech 54(1):55–58CrossRef Kishawy HA, Kannan S, Balazinski M (2005) Analytical modeling of tool wear progression during turning particulate reinforced metal matrix composites. CIRP Annals Manuf Tech 54(1):55–58CrossRef
9.
Zurück zum Zitat Chen P, Hoshi T (1992) High-performance machining of sic whisker-reinforced aluminium composite by self-propelled rotary tools. CIRP Annals—Manuf Tech 41(1):59CrossRef Chen P, Hoshi T (1992) High-performance machining of sic whisker-reinforced aluminium composite by self-propelled rotary tools. CIRP Annals—Manuf Tech 41(1):59CrossRef
10.
Zurück zum Zitat Coelho RT et al. (1993) Conventional machining of an aluminium based Sic reinforced metal matrix composite (MMC) alloy. In: Proceedings of 30th Matador, Manchester Coelho RT et al. (1993) Conventional machining of an aluminium based Sic reinforced metal matrix composite (MMC) alloy. In: Proceedings of 30th Matador, Manchester
11.
Zurück zum Zitat Lin JT, Bhattacharyya D, Lane C (1995) Machinability of a silicon carbide reinforced aluminium metal matrix composite. Wear 181–183(Part-2):883CrossRef Lin JT, Bhattacharyya D, Lane C (1995) Machinability of a silicon carbide reinforced aluminium metal matrix composite. Wear 181–183(Part-2):883CrossRef
12.
Zurück zum Zitat Sahin Y (2004) Preparation and some properties of SiC particle reinforced aluminium alloy composites. Mater Des 24(8):671CrossRef Sahin Y (2004) Preparation and some properties of SiC particle reinforced aluminium alloy composites. Mater Des 24(8):671CrossRef
13.
Zurück zum Zitat Tonshoff HK, Winkler J (1997) The influence of tool coatings in machining of magnesium. Surf Coat Tech 94–95:610CrossRef Tonshoff HK, Winkler J (1997) The influence of tool coatings in machining of magnesium. Surf Coat Tech 94–95:610CrossRef
14.
Zurück zum Zitat El-Gallab M, Sklad M (1998) Machining of Al/SiC particulate metal-matrix composites. Part I: Tool performance. J Mater Process Tech 83(1–3):151–158CrossRef El-Gallab M, Sklad M (1998) Machining of Al/SiC particulate metal-matrix composites. Part I: Tool performance. J Mater Process Tech 83(1–3):151–158CrossRef
15.
Zurück zum Zitat El-Gallab M, Sklad M (2000) Machining of Al/SiC particulate metal matrix composites. Part III: Comprehensive tool wear models. J Mater Process Tech 101(1–3):10CrossRef El-Gallab M, Sklad M (2000) Machining of Al/SiC particulate metal matrix composites. Part III: Comprehensive tool wear models. J Mater Process Tech 101(1–3):10CrossRef
16.
Zurück zum Zitat Weinert K, Konig W (1993) A consideration of tool wear mechanism when Machining Metal Matrix Composites (MMC). CIRP Annals—Manuf Tech 42(1):95–98CrossRef Weinert K, Konig W (1993) A consideration of tool wear mechanism when Machining Metal Matrix Composites (MMC). CIRP Annals—Manuf Tech 42(1):95–98CrossRef
17.
Zurück zum Zitat Yanming Q, Zehua Z (2000) Tool wear and its mechanism for cutting SiC particle-reinforced aluminium matrix composites. J Mater Proc Tech 100(1–3):194CrossRef Yanming Q, Zehua Z (2000) Tool wear and its mechanism for cutting SiC particle-reinforced aluminium matrix composites. J Mater Proc Tech 100(1–3):194CrossRef
18.
Zurück zum Zitat Barnes S, Pashby IR, Mok DK (1996) The effect of workpiece temperature on the machinability of an aluminum/SiC MMC. J Manuf Sci Eng 118(3):422–427CrossRef Barnes S, Pashby IR, Mok DK (1996) The effect of workpiece temperature on the machinability of an aluminum/SiC MMC. J Manuf Sci Eng 118(3):422–427CrossRef
19.
Zurück zum Zitat Ding X, Liew WYH, Liu D (2005) Evaluation of machining performance of MMC with PCBN and PCD tools. Wear 259(7–12):1225CrossRef Ding X, Liew WYH, Liu D (2005) Evaluation of machining performance of MMC with PCBN and PCD tools. Wear 259(7–12):1225CrossRef
20.
Zurück zum Zitat Weinert K et al (2001) Spanende bearbeitung von bauteilen aus al-matrix-verbundwerkstoffen. Materialwissenschaft und werkstofftechnik 32(5):447–461CrossRefMathSciNet Weinert K et al (2001) Spanende bearbeitung von bauteilen aus al-matrix-verbundwerkstoffen. Materialwissenschaft und werkstofftechnik 32(5):447–461CrossRefMathSciNet
21.
Zurück zum Zitat Manna A, Bhattacharayya B (2003) A study on machinability of Al/SiC-MMC. J Mater Process Tech 140(1–3):711CrossRef Manna A, Bhattacharayya B (2003) A study on machinability of Al/SiC-MMC. J Mater Process Tech 140(1–3):711CrossRef
22.
Zurück zum Zitat Ciftci I, Turker M, Seker U (2004) Evaluation of tool wear when machining SiCp-reinforced Al-2014 alloy matrix composites. Mater Des 25(3):251–255CrossRef Ciftci I, Turker M, Seker U (2004) Evaluation of tool wear when machining SiCp-reinforced Al-2014 alloy matrix composites. Mater Des 25(3):251–255CrossRef
23.
Zurück zum Zitat Songmene V, Balazinski M (2001) Machining of a Graphitic Sic-Reinforced Aluminium Metal Matrix Composites with Diamond Tools. CIRP International Seminar on Program in Innovative Manufacturing Engineering Songmene V, Balazinski M (2001) Machining of a Graphitic Sic-Reinforced Aluminium Metal Matrix Composites with Diamond Tools. CIRP International Seminar on Program in Innovative Manufacturing Engineering
24.
Zurück zum Zitat Liu CS, Zhao B, Gao GF (2002) Research on the characteristics of the cutting force in the vibration cutting of a particle-reinforced metal matrix composites SiCp/Al. J Mater Process Technol 129(1–3):96–199 Liu CS, Zhao B, Gao GF (2002) Research on the characteristics of the cutting force in the vibration cutting of a particle-reinforced metal matrix composites SiCp/Al. J Mater Process Technol 129(1–3):96–199
25.
Zurück zum Zitat Hocheng H et al (1997) Fundamental turning characteristics of a tribology-favored graphite/aluminum alloy composite material. Comp A Appl Sci Manuf 28(9–10):883CrossRef Hocheng H et al (1997) Fundamental turning characteristics of a tribology-favored graphite/aluminum alloy composite material. Comp A Appl Sci Manuf 28(9–10):883CrossRef
26.
Zurück zum Zitat Kishawy HA, Kannan S, Balazinski M (2004) An energy based analytical force model for orthogonal cutting of metal matrix composites. CIRP Annals Manuf Tech 53(1):91–94CrossRef Kishawy HA, Kannan S, Balazinski M (2004) An energy based analytical force model for orthogonal cutting of metal matrix composites. CIRP Annals Manuf Tech 53(1):91–94CrossRef
27.
Zurück zum Zitat Pramanik A, Zhang LC, Arsecularatne JA (2006) Prediction of cutting forces in machining of metal matrix composites. Int J Mach Tool Manuf 46(14):1795–1803CrossRef Pramanik A, Zhang LC, Arsecularatne JA (2006) Prediction of cutting forces in machining of metal matrix composites. Int J Mach Tool Manuf 46(14):1795–1803CrossRef
28.
Zurück zum Zitat Davim JP, Silva J, Baptista AM (2007) Experimental cutting model of metal matrix composites (MMCs). J Mater Process Tech 183(2–3):358CrossRef Davim JP, Silva J, Baptista AM (2007) Experimental cutting model of metal matrix composites (MMCs). J Mater Process Tech 183(2–3):358CrossRef
29.
Zurück zum Zitat Dabade UA, Dapkekar D, Joshi SS (2009) Modeling of chip–tool interface friction to predict cutting forces in machining of Al/SiCp composites. Int J Mach Tool Manuf 49(9):690–700CrossRef Dabade UA, Dapkekar D, Joshi SS (2009) Modeling of chip–tool interface friction to predict cutting forces in machining of Al/SiCp composites. Int J Mach Tool Manuf 49(9):690–700CrossRef
30.
Zurück zum Zitat Monaghan J, Brazil D (1998) Modelling the flow processes of a particle reinforced metal matrix composite during machining. Composites Part A: Appl Sci Manuf 29(1–2):87CrossRef Monaghan J, Brazil D (1998) Modelling the flow processes of a particle reinforced metal matrix composite during machining. Composites Part A: Appl Sci Manuf 29(1–2):87CrossRef
31.
Zurück zum Zitat El-Gallab M, Sklad M (2004) Machining of aluminum/silicon carbide particulate metal matrix composites: Part IV. Residual stresses in the machined workpiece. J Mater Process Tech 152(1):23CrossRef El-Gallab M, Sklad M (2004) Machining of aluminum/silicon carbide particulate metal matrix composites: Part IV. Residual stresses in the machined workpiece. J Mater Process Tech 152(1):23CrossRef
32.
Zurück zum Zitat Ramesh MV et al (2001) Finite-element analysis of diamond turning of aluminium matrix composites. Comp Sci Technol 61(10):1449CrossRef Ramesh MV et al (2001) Finite-element analysis of diamond turning of aluminium matrix composites. Comp Sci Technol 61(10):1449CrossRef
33.
Zurück zum Zitat Zhu Y, Kishawy HA (2005) Influence of alumina particles on the mechanics of machining metal matrix composites. Int J Mach Tool Manuf 45(4–5):389CrossRef Zhu Y, Kishawy HA (2005) Influence of alumina particles on the mechanics of machining metal matrix composites. Int J Mach Tool Manuf 45(4–5):389CrossRef
34.
Zurück zum Zitat Dandekar CR, Shin YR (2009) Multi-step 3-D finite element modeling of subsurface damage in machining particulate reinforced metal matrix composites. 15th Fr Natl Conf Compos 40(8):1231–1239 Dandekar CR, Shin YR (2009) Multi-step 3-D finite element modeling of subsurface damage in machining particulate reinforced metal matrix composites. 15th Fr Natl Conf Compos 40(8):1231–1239
35.
Zurück zum Zitat Cronjager L, Meister D (1991) Machining of fibre and particle-reinforced aluminium. CIRP Annals—Manuf Tech 41(1):63–66CrossRef Cronjager L, Meister D (1991) Machining of fibre and particle-reinforced aluminium. CIRP Annals—Manuf Tech 41(1):63–66CrossRef
36.
Zurück zum Zitat Cronjager L, Meister D (1992) Machining of fibre and particle-reinforced aluminum. Annals CIRP 41(1):63–66CrossRef Cronjager L, Meister D (1992) Machining of fibre and particle-reinforced aluminum. Annals CIRP 41(1):63–66CrossRef
37.
Zurück zum Zitat Coelho RT, Yamada, S, IeRoux, T, Aspinwall, DK, Wis, MLH (1993) Conventional machining of an aluminium based SIC reinforced metal matrix composite (MMC) alloy. Proceeding of the 30th MATADOR, Manchester, pp 125–133 Coelho RT, Yamada, S, IeRoux, T, Aspinwall, DK, Wis, MLH (1993) Conventional machining of an aluminium based SIC reinforced metal matrix composite (MMC) alloy. Proceeding of the 30th MATADOR, Manchester, pp 125–133
38.
Zurück zum Zitat Coelho RT, Aspinwall DK, Wise MLH (1994) Drilling and reaming aluminium-based Metal Matrix Composites (MMC) using PCD tooling. Trans NAMRI/SME Coelho RT, Aspinwall DK, Wise MLH (1994) Drilling and reaming aluminium-based Metal Matrix Composites (MMC) using PCD tooling. Trans NAMRI/SME
39.
Zurück zum Zitat Lane C (1990) Machining characteristics of particulate-reinforced aluminum. In: Fabrication of particle reinforced metal composites. ASM, Ohio Lane C (1990) Machining characteristics of particulate-reinforced aluminum. In: Fabrication of particle reinforced metal composites. ASM, Ohio
40.
Zurück zum Zitat Jawaid A, Barnes S, Ghadimzadeh SR (1992) Drilling of particulate aluminum silicon carbide metal matrix composites. Proceeding of the ASM Mater Workshop, Chicago, IL Jawaid A, Barnes S, Ghadimzadeh SR (1992) Drilling of particulate aluminum silicon carbide metal matrix composites. Proceeding of the ASM Mater Workshop, Chicago, IL
41.
Zurück zum Zitat Venkatesh VC et al. (2001) Micro-drilling of composite. In: International Conferrence on Material for Advanced Technologies. Sun Tech City, Singapore Venkatesh VC et al. (2001) Micro-drilling of composite. In: International Conferrence on Material for Advanced Technologies. Sun Tech City, Singapore
42.
Zurück zum Zitat Narutaki N (1996) Mach MMC’s. Vdi berichte 1276:359–370 Narutaki N (1996) Mach MMC’s. Vdi berichte 1276:359–370
43.
Zurück zum Zitat Songmene V, Balazinski M (1999) Machinability of graphitic metal matrix composites as a function of reinforcing particles. CIRP Annals—Manuf Tech 48(1):77CrossRef Songmene V, Balazinski M (1999) Machinability of graphitic metal matrix composites as a function of reinforcing particles. CIRP Annals—Manuf Tech 48(1):77CrossRef
44.
Zurück zum Zitat Songmene V, Stephenson TF, Waner AEM (1997) Machinability of Graphitic Silicon Carbide Aluminum Metal Matrix Composite GrA-NiTM. ASME Int. Mech. Eng. Congr. and Expo. Dallas, Texas Songmene V, Stephenson TF, Waner AEM (1997) Machinability of Graphitic Silicon Carbide Aluminum Metal Matrix Composite GrA-NiTM. ASME Int. Mech. Eng. Congr. and Expo. Dallas, Texas
45.
Zurück zum Zitat Tosun G, Muratoglu M (2004) The drilling of an Al/SiCp metal-matrix composites. Part I: Microstructure. Comp Sci Technol 64(2):299–308CrossRef Tosun G, Muratoglu M (2004) The drilling of an Al/SiCp metal-matrix composites. Part I: Microstructure. Comp Sci Technol 64(2):299–308CrossRef
46.
Zurück zum Zitat Basavarajappa S et al (2007) Drilling of hybrid metal matrix composites—workpiece surface integrity. Int J Mach Tools Manuf 47(1):92CrossRef Basavarajappa S et al (2007) Drilling of hybrid metal matrix composites—workpiece surface integrity. Int J Mach Tools Manuf 47(1):92CrossRef
47.
Zurück zum Zitat Lane C, Finn M (1992) Observations on using CVD diamond in milling MMCs. In: Machining and the physics of the machining process. TMS, Chicago, IL Lane C, Finn M (1992) Observations on using CVD diamond in milling MMCs. In: Machining and the physics of the machining process. TMS, Chicago, IL
48.
Zurück zum Zitat Chandrasekaran H, Johansson J (1996) On the behaviour of fibre/particle reinforced aluminium alloy matrix composites in milling and grinding. VDI Berichte 1276:463–478 Chandrasekaran H, Johansson J (1996) On the behaviour of fibre/particle reinforced aluminium alloy matrix composites in milling and grinding. VDI Berichte 1276:463–478
Metadaten
Titel
Traditional Machining Processes of MMC
verfasst von
H. A. Kishawy
S. Kannan
G. Parker
Copyright-Jahr
2012
Verlag
Springer London
DOI
https://doi.org/10.1007/978-0-85729-938-3_4

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