Skip to main content
Top
Published in:
Cover of the book

2013 | OriginalPaper | Chapter

1. Abrasive Tools and Bonding Systems

Authors : Mark J. Jackson, Michael P. Hitchiner

Published in: High Performance Grinding and Advanced Cutting Tools

Publisher: Springer New York

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

search-config
loading …

Abstract

This chapter focuses on characterizing abrasive tools in terms of grain shape, wear factors, grain toughness, and other physical characteristics. The chapter considers both conventional and superabrasive materials.

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!

Literature
1.
go back to reference De Pellegrin DV, Corbin ND, Baldoni G, Torrance AA (2002) The measurement and description of diamond particle shape in abrasion. Wear 253:1016–1025CrossRef De Pellegrin DV, Corbin ND, Baldoni G, Torrance AA (2002) The measurement and description of diamond particle shape in abrasion. Wear 253:1016–1025CrossRef
2.
go back to reference De Pellegrin DV, Corbin ND, Baldoni G, Torrance AA (2008) Diamond particle shape: its measurement and influence in abrasive wear. Tribol Int 42(1):160–168CrossRef De Pellegrin DV, Corbin ND, Baldoni G, Torrance AA (2008) Diamond particle shape: its measurement and influence in abrasive wear. Tribol Int 42(1):160–168CrossRef
3.
go back to reference De Pellegrin DV, Stachowiak GW (2004) Evaluating the role of particle distribution and shape in two-body abrasion by statistical simulation. Tribol Int 37:255–270CrossRef De Pellegrin DV, Stachowiak GW (2004) Evaluating the role of particle distribution and shape in two-body abrasion by statistical simulation. Tribol Int 37:255–270CrossRef
6.
go back to reference Verspui MA, van der Velden P, de With G, Slikkerveer PJ (1996) Angularity determination of abrasive powders. Wear 199:122–126CrossRef Verspui MA, van der Velden P, de With G, Slikkerveer PJ (1996) Angularity determination of abrasive powders. Wear 199:122–126CrossRef
7.
go back to reference Hamblin MG, Stachowiak GW (1996) Description of abrasive shape and its relation to two body abrasion. Tribol Trans 39(4):803–810CrossRef Hamblin MG, Stachowiak GW (1996) Description of abrasive shape and its relation to two body abrasion. Tribol Trans 39(4):803–810CrossRef
8.
go back to reference Kaye BH (1984) Fractal description of fine particle systems. In: Beddow JC (ed) Particle characterization in technology, applications and microanalysis, vol 1. CRC Press, Boca Raton, FL Kaye BH (1984) Fractal description of fine particle systems. In: Beddow JC (ed) Particle characterization in technology, applications and microanalysis, vol 1. CRC Press, Boca Raton, FL
9.
go back to reference Swanson PA, Vetter AF (1984) The measurement of abrasive particle shape and its effect on wear. ASLE Trans 28(2):225–230CrossRef Swanson PA, Vetter AF (1984) The measurement of abrasive particle shape and its effect on wear. ASLE Trans 28(2):225–230CrossRef
10.
go back to reference Leavers VF (2000) Use of the two-dimensional radon transform to generate a taxonomy of shape for the characterization of abrasive powder particles. IEEE Trans Pattern Anal Mach Intell 22(12):1411–1423CrossRef Leavers VF (2000) Use of the two-dimensional radon transform to generate a taxonomy of shape for the characterization of abrasive powder particles. IEEE Trans Pattern Anal Mach Intell 22(12):1411–1423CrossRef
11.
go back to reference Roquefeuil F (2003) Abral: a new approach to precision grinding. Abrasive Magazine December:24–29 Roquefeuil F (2003) Abral: a new approach to precision grinding. Abrasive Magazine December:24–29
12.
go back to reference Komanduri R, Shaw MC (1975) Attritious wear of silicon carbide. ASME Paper # 75-WA/Prod-36 Komanduri R, Shaw MC (1975) Attritious wear of silicon carbide. ASME Paper # 75-WA/Prod-36
13.
go back to reference Kugemai N, Kiyoshi K (1984) Grinding of titanium with jet infusion of grinding fluid. In: Proceedings of the fifth International conference on titanium science and technology, 10–14 Sept 1984, Munich Kugemai N, Kiyoshi K (1984) Grinding of titanium with jet infusion of grinding fluid. In: Proceedings of the fifth International conference on titanium science and technology, 10–14 Sept 1984, Munich
14.
go back to reference Hirosaki K, Shintani K, Kato H, Asakura F, Matsuo K (2004) High speed machining of Bio-Titanium alloy with a binderless PcBN tool. JSME Int J C 47(1):14–20CrossRef Hirosaki K, Shintani K, Kato H, Asakura F, Matsuo K (2004) High speed machining of Bio-Titanium alloy with a binderless PcBN tool. JSME Int J C 47(1):14–20CrossRef
15.
go back to reference Kumar KV (1990) Superabrasive grinding of titanium alloys. In: Fourth international grinding conference on SME, 9–11 Oct 1990, Detroit Kumar KV (1990) Superabrasive grinding of titanium alloys. In: Fourth international grinding conference on SME, 9–11 Oct 1990, Detroit
16.
go back to reference Hagiwara S, Obikawa T, Usui E (1998) Edge fracture characteristics of abrasive grain. Trans ASME J Manuf Sci Eng 120:708–714CrossRef Hagiwara S, Obikawa T, Usui E (1998) Edge fracture characteristics of abrasive grain. Trans ASME J Manuf Sci Eng 120:708–714CrossRef
17.
go back to reference Ishikawa T, Kumar K (1991) Conditioning of vitrified bond superabrasive wheels. Superabrasives ’91 SME MR91-172 Ishikawa T, Kumar K (1991) Conditioning of vitrified bond superabrasive wheels. Superabrasives ’91 SME MR91-172
18.
go back to reference Takagi J, Liu M (1996) Fracture characteristics of grain cutting edges of CBN in truing operation. J Mater Process Technol 62:397–402CrossRef Takagi J, Liu M (1996) Fracture characteristics of grain cutting edges of CBN in truing operation. J Mater Process Technol 62:397–402CrossRef
19.
go back to reference Jakobuss M, Webster J (1996) Optimizing the truing and dressing of vitrified-bond CBN grinding wheels. Abrasives Magazine August/September:23 Jakobuss M, Webster J (1996) Optimizing the truing and dressing of vitrified-bond CBN grinding wheels. Abrasives Magazine August/September:23
20.
go back to reference Fujimoto M, Ichida Y, Sato R, Morimoto Y (2006) Characterization of wheel surface topography in cBN grinding. JSME Int J C 19(1):106–113CrossRef Fujimoto M, Ichida Y, Sato R, Morimoto Y (2006) Characterization of wheel surface topography in cBN grinding. JSME Int J C 19(1):106–113CrossRef
21.
go back to reference Yonekura Y (1983) Effects of Tsukidashiryo of resinoid bonded borazon CBN wheels on grinding performance. Bull JSPE 17(2):113–118 Yonekura Y (1983) Effects of Tsukidashiryo of resinoid bonded borazon CBN wheels on grinding performance. Bull JSPE 17(2):113–118
22.
go back to reference Mindek R (1992) Improved rotary disc truing of hot-pressed CBN grinding wheels. MSc Thesis, University of Connecticut Mindek R (1992) Improved rotary disc truing of hot-pressed CBN grinding wheels. MSc Thesis, University of Connecticut
23.
go back to reference Acheson EG (1893) Production of artificial crystalline carbonaceous material. US Patent 492,767 Acheson EG (1893) Production of artificial crystalline carbonaceous material. US Patent 492,767
24.
go back to reference Cowles AH, Cowles EH (1885) US Patent 319945 Cowles AH, Cowles EH (1885) US Patent 319945
25.
go back to reference Kern EL, Hamill DW, Deem HW, Sheets HD (1969) Mater Res Bull 4 Kern EL, Hamill DW, Deem HW, Sheets HD (1969) Mater Res Bull 4
26.
go back to reference Kern EL, Hamil DW, Deam HW, Sheets HD (1969) Mater Res Bull Special Issue 4:S25–S32. Proceedings of the international conference on silicon carbide, University Park, Pennsylvania, 20–23 Oct 1968 Kern EL, Hamil DW, Deam HW, Sheets HD (1969) Mater Res Bull Special Issue 4:S25–S32. Proceedings of the international conference on silicon carbide, University Park, Pennsylvania, 20–23 Oct 1968
27.
go back to reference Nilsson O, Mehling H, Horn R, Fricke J, Hofmann R, Muller SG, Eckstein R, Hofmann D (1997) High temperatures-high pressures 29:73–79 Nilsson O, Mehling H, Horn R, Fricke J, Hofmann R, Muller SG, Eckstein R, Hofmann D (1997) High temperatures-high pressures 29:73–79
28.
go back to reference Tymeson MM (1953) The Norton story. Norton Co, Worcester, MA Tymeson MM (1953) The Norton story. Norton Co, Worcester, MA
29.
go back to reference Wikipedia (2009) Bayer process. Online encyclopedia reading, 20 Nov 2009 Wikipedia (2009) Bayer process. Online encyclopedia reading, 20 Nov 2009
30.
go back to reference Wolfe LA, Lunghofer EP (1998) New fused alumina production in South Korea and Australia. In: 13th Industrial minerals international congress, Kuala Lumpur, Malaysia, 26–29 Apr 1998 Wolfe LA, Lunghofer EP (1998) New fused alumina production in South Korea and Australia. In: 13th Industrial minerals international congress, Kuala Lumpur, Malaysia, 26–29 Apr 1998
32.
go back to reference Whiting Equipment Canada Inc. (n.d.) Metallurgical equipment. Commercial brochure Whiting Equipment Canada Inc. (n.d.) Metallurgical equipment. Commercial brochure
33.
go back to reference USGS Geological Survey (2009) Mineral commodity summaries. January USGS Geological Survey (2009) Mineral commodity summaries. January
34.
go back to reference U.S.G.S. Geological Survey (2008) Minerals yearbook abrasives, Manufactured (advance release) U.S.G.S. Geological Survey (2008) Minerals yearbook abrasives, Manufactured (advance release)
35.
go back to reference Wellborn WW (1991) Synthetic minerals—the foundation stone of modern abrasive tools. AES Magazine 31(1):6–13 Wellborn WW (1991) Synthetic minerals—the foundation stone of modern abrasive tools. AES Magazine 31(1):6–13
36.
go back to reference Coes L (1971) Abrasives. Springer, New York, p 65 Coes L (1971) Abrasives. Springer, New York, p 65
37.
38.
go back to reference Robie NP (1959) Abrasive material and method of making same. US Patent 2877104, 10 Mar 1959 Robie NP (1959) Abrasive material and method of making same. US Patent 2877104, 10 Mar 1959
39.
go back to reference Foot DG (1965) Mixture of fused alumina and fused granules in bonded abrasive articles. US Patent 3,175,8943/30 Foot DG (1965) Mixture of fused alumina and fused granules in bonded abrasive articles. US Patent 3,175,8943/30
40.
go back to reference Marshall DW (1965) Fused alumina-zirconia abrasives. US Patent 3181939, 4 May 1965 Marshall DW (1965) Fused alumina-zirconia abrasives. US Patent 3181939, 4 May 1965
41.
go back to reference Cichy P (1973) Apparatus for producing oxide refractory material having fine crystal structure. US Patent 3,726,6214/10 Cichy P (1973) Apparatus for producing oxide refractory material having fine crystal structure. US Patent 3,726,6214/10
42.
go back to reference Richmond WQ, Cichy P (1975) Apparatus for producing oxide refractory material having fine crystal structure. US Patent 3,861,849, 21 Jan 1975 Richmond WQ, Cichy P (1975) Apparatus for producing oxide refractory material having fine crystal structure. US Patent 3,861,849, 21 Jan 1975
43.
go back to reference Richmond WQ, Cichy P (1975) Semi-continuous process for producing oxide refractory material having fine crystal structure. US Patent 3,928,515, 23 Nov 1975 Richmond WQ, Cichy P (1975) Semi-continuous process for producing oxide refractory material having fine crystal structure. US Patent 3,928,515, 23 Nov 1975
44.
go back to reference Sekigawa H (1976) Process for manufacturing high strength Al2O3-ZRO2 alloy grains. US Patent 3,977,132, 31 Aug 1976 Sekigawa H (1976) Process for manufacturing high strength Al2O3-ZRO2 alloy grains. US Patent 3,977,132, 31 Aug 1976
45.
go back to reference Ilmaier B, Zeiringer H (1977) Method for producing alumina and alumina-zirconia abrasive material. US Patent 4,059,417, 22 Nov 1977 Ilmaier B, Zeiringer H (1977) Method for producing alumina and alumina-zirconia abrasive material. US Patent 4,059,417, 22 Nov 1977
46.
go back to reference Cichy P (1977) Continuous process for producing oxide refractory material. US Patent 4,061,699, 6 Dec 1977 Cichy P (1977) Continuous process for producing oxide refractory material. US Patent 4,061,699, 6 Dec 1977
47.
go back to reference Ueltz HFG (1980) Fused alumina-zirconia abrasive material formed by an immersion method. US Patent 4,194,887, 25 Mar 1980 Ueltz HFG (1980) Fused alumina-zirconia abrasive material formed by an immersion method. US Patent 4,194,887, 25 Mar 1980
48.
go back to reference Richmond WQ (1983) Process for making oxide refractory material having fine crystal structure. US Patent 4,415,510, 15 Nov 1983 Richmond WQ (1983) Process for making oxide refractory material having fine crystal structure. US Patent 4,415,510, 15 Nov 1983
49.
go back to reference Richmond WQ (1984) Oxide refractory material having fine crystal structure and process and apparatus for making same. US Patent 4,439,895, 3 Apr 1984 Richmond WQ (1984) Oxide refractory material having fine crystal structure and process and apparatus for making same. US Patent 4,439,895, 3 Apr 1984
50.
go back to reference Scott JJ (1976) Progressively or continuously cycle mold for forming and discharging a fine crystalline material. US Patent 3,993,119, 23 Nov 1976 Scott JJ (1976) Progressively or continuously cycle mold for forming and discharging a fine crystalline material. US Patent 3,993,119, 23 Nov 1976
51.
go back to reference Scott JJ (1978) Method of producing abrasive grits. US Patent 4,070,796, 31 Jan 1978 Scott JJ (1978) Method of producing abrasive grits. US Patent 4,070,796, 31 Jan 1978
52.
go back to reference Rowse RA, Watson GR (1975) Zirconia-alumina abrasive grain and grinding tools. US Patent 3,891,408, 24 June 1975 Rowse RA, Watson GR (1975) Zirconia-alumina abrasive grain and grinding tools. US Patent 3,891,408, 24 June 1975
53.
go back to reference Bange D, Wood B, Erickson D (2001) Developemnt and growth of sol gel abrasives grains. Abrasives Magazine June/July:24–30 Bange D, Wood B, Erickson D (2001) Developemnt and growth of sol gel abrasives grains. Abrasives Magazine June/July:24–30
54.
go back to reference Webster JA, Tricard M (2004) Innovations in abrasive products for precision grinding. In: CIRP innovations in abrasive products for precision grinding keynote STC G, 23 Aug 2004 Webster JA, Tricard M (2004) Innovations in abrasive products for precision grinding. In: CIRP innovations in abrasive products for precision grinding keynote STC G, 23 Aug 2004
55.
go back to reference Bauer R (1987) Process for production of alpha alumina bodies by sintering seeded boehmite made from alumina hydrates. US Statutory Invention Disclosure H000189, 6 Jan 1987 Bauer R (1987) Process for production of alpha alumina bodies by sintering seeded boehmite made from alumina hydrates. US Statutory Invention Disclosure H000189, 6 Jan 1987
56.
go back to reference Leitheiser MA, Sowman HG (1982) Non-fused aluminum oxide-based abrasive mineral. US Patent 4,314,827, 9 Feb 1982 Leitheiser MA, Sowman HG (1982) Non-fused aluminum oxide-based abrasive mineral. US Patent 4,314,827, 9 Feb 1982
57.
go back to reference Wood WP, Monroe LD, Conwell SL (1989) Abrasive grits formed of ceramic containing oxides of aluminum and rare earth metal, method of making and products made therewith. US Patent 4,881,951, 21 Nov 1989 Wood WP, Monroe LD, Conwell SL (1989) Abrasive grits formed of ceramic containing oxides of aluminum and rare earth metal, method of making and products made therewith. US Patent 4,881,951, 21 Nov 1989
58.
go back to reference Bange D, Wood B, Erickson D (2001) Development and growth of sol gel abrasives grains. Abrasives Magazine June/July:24–30 Bange D, Wood B, Erickson D (2001) Development and growth of sol gel abrasives grains. Abrasives Magazine June/July:24–30
59.
go back to reference Cottringer TE, van de Merwe RH, Bauer R (1986) Abrasive material and method for preparing the same. US Patent 4,623,364, 18 Nov 1986 Cottringer TE, van de Merwe RH, Bauer R (1986) Abrasive material and method for preparing the same. US Patent 4,623,364, 18 Nov 1986
60.
go back to reference Schwebel MG (1988) Process for durable sol-gel produced alumina-based ceramics, abrasive grain and abrasive products. US Patent 4,744,802, 17 May 1988 Schwebel MG (1988) Process for durable sol-gel produced alumina-based ceramics, abrasive grain and abrasive products. US Patent 4,744,802, 17 May 1988
61.
go back to reference Rue CV (1985) Vitrified bonded grinding wheels containing sintered gel aluminous abrasive grits. US Patent 4,543,107, 24 Sept 1985 Rue CV (1985) Vitrified bonded grinding wheels containing sintered gel aluminous abrasive grits. US Patent 4,543,107, 24 Sept 1985
62.
go back to reference Pellow SW (1992) Process for the manufacture of filamentary abrasive particles. US Patent 5,090,968, 25 Feb 1992 Pellow SW (1992) Process for the manufacture of filamentary abrasive particles. US Patent 5,090,968, 25 Feb 1992
63.
go back to reference DiCorletto J (2001) Innovations in abrasive products for precision grinding. In: Conference on precision grinding & finishing in the global economy—2001, Oak Brook, IL, 1–3 Oct 2001 DiCorletto J (2001) Innovations in abrasive products for precision grinding. In: Conference on precision grinding & finishing in the global economy—2001, Oak Brook, IL, 1–3 Oct 2001
64.
go back to reference Roffman R (2005) Natural industrial diamonds. Finer Point Magazine 26–30 Roffman R (2005) Natural industrial diamonds. Finer Point Magazine 26–30
65.
go back to reference Cockburn C (2002) Diamonds: the real story. National Geographic March:2–3 Cockburn C (2002) Diamonds: the real story. National Geographic March:2–3
66.
go back to reference Trautman R, Griffin BJ, Scharf D (1998) Microdiamonds. Scientific American August:82–87 Trautman R, Griffin BJ, Scharf D (1998) Microdiamonds. Scientific American August:82–87
67.
go back to reference U.S. Geological Survey (2005) Data series 140 U.S. Geological Survey (2005) Data series 140
68.
go back to reference Ladd R (n.d.) Manufactured large single crystals. Finer Points—Wire Die Products and Applications 23–28 Ladd R (n.d.) Manufactured large single crystals. Finer Points—Wire Die Products and Applications 23–28
69.
go back to reference Bailey MW, Juchem HO (1993) The advantages of CBN grinding: low cutting forces and improved workpiece integrity. IDR Pt 3:83–89 Bailey MW, Juchem HO (1993) The advantages of CBN grinding: low cutting forces and improved workpiece integrity. IDR Pt 3:83–89
108.
go back to reference Snoeys R, Leuven KU, Maris M, Wo NF, Peters J (1978) Thermally induced damage in grinding. Annals CIRP 27(1):571–581 Snoeys R, Leuven KU, Maris M, Wo NF, Peters J (1978) Thermally induced damage in grinding. Annals CIRP 27(1):571–581
109.
go back to reference Shaw MC (1991) Metal cutting principles. Clarendon, Oxford, p 410 Shaw MC (1991) Metal cutting principles. Clarendon, Oxford, p 410
110.
go back to reference United Grinding Technology (1995) Method of grinding titanium. WIPO Patent Application, WO/1995/003154 United Grinding Technology (1995) Method of grinding titanium. WIPO Patent Application, WO/1995/003154
111.
go back to reference Campbell JD (1993) (UTC Hartford CT) Method of grinding titanium. US Patent, 5,203,122 Campbell JD (1993) (UTC Hartford CT) Method of grinding titanium. US Patent, 5,203,122
112.
go back to reference Soo SL, Hood R, Lannette M, Aspinwall DK, Voice WE (2011) Creep feed grinding of burn reissistant titanium (BuRTi) using superabrasive wheels. Int J Adv Manuf Technol 53:1019–1026CrossRef Soo SL, Hood R, Lannette M, Aspinwall DK, Voice WE (2011) Creep feed grinding of burn reissistant titanium (BuRTi) using superabrasive wheels. Int J Adv Manuf Technol 53:1019–1026CrossRef
Metadata
Title
Abrasive Tools and Bonding Systems
Authors
Mark J. Jackson
Michael P. Hitchiner
Copyright Year
2013
Publisher
Springer New York
DOI
https://doi.org/10.1007/978-1-4614-3116-9_1

Premium Partners