A review on single-pass grinding processes

Krzysztof Nadolny

Journal of Central South University ›› 2013, Vol. 20 ›› Issue (6) : 1502 -1509.

PDF
Journal of Central South University ›› 2013, Vol. 20 ›› Issue (6) : 1502 -1509. DOI: 10.1007/s11771-013-1641-5
Article

A review on single-pass grinding processes

Author information +
History +
PDF

Abstract

The most important grinding processes were realized in a single pass of the grinding wheel, such as continuous path controlled grinding (CPCG/Peelgrinding/HSP), CPCG with reduced contact of the grinding wheel (Quickpoint), single-pass longitudinal internal grinding, creep feed grinding (CFG), longitudinal cylindrical grinding with grinding wheels made of conventional abrasive materials and longitudinal internal cylindrical grinding using grinding wheels with zone-diversified structure.

Keywords

single-pass grinding / grinding efficiency / grinding wheels / surface roughness

Cite this article

Download citation ▾
Krzysztof Nadolny. A review on single-pass grinding processes. Journal of Central South University, 2013, 20(6): 1502-1509 DOI:10.1007/s11771-013-1641-5

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

WernerG. Rapid material removal and high processing quality through innovative HEDG grinding processes [J]. Maschinenmarkt, 1997, 103(36): 44-54

[2]

HegenerG. In a single ground. Flexible and high performance grinding technology of wavy workpieces [J]. Maschinenmarkt, 2000, 106(16): 38-43

[3]

KlockeF, HegenerG. Fast, good and flexible: continous path-controlled grinding [J]. IDR, 1999, 33(2): 153-160

[4]

LüetjensP, MushardtH. Grinding out hardened parts [J]. American Mechanist, 2004, 148(3): 52-59

[5]

LüetjensP. Hard turning or grinding — which is the more economical alternative? [J]. IDR, 2001, 61(1): 22-26

[6]

OczośKE. Improvement of grinding technology. Part II [J]. Mechanic, 2005, 78(10): 745-750

[7]

XingasA. Next generation grinding [J]. American Mechanist, 1999, 143(9): 58

[8]

KlockeF, HegenerG, DeacuL. Continous path-controlled grinding. Innovative manufacturing process combines high flexibility and productivity [J]. ZWF, 1996, 91(4): 164-167

[9]

JunkerEMethod and apparatus for high speed profile grinding of rotationally symmetrical workpieces: European Patent 0176654[P], 1985

[10]

KlockeF, BückerC. Quickpoint grinding: a flexible production module. Complete machining in a single setup [J]. Industrie-Anzeiger, 1996, 118(43–44): 48-49

[11]

TönshoffHK, KarpuschewskiB, MandryschT, InasakiI. Grinding process achievements and consequences on machine tools challenges and opportunities [J]. Annals of the CIRP, 1998, 47(2): 651-668

[12]

MückeK. Quickpoint grinding machine with reversible spindle. Repositioning the workpiece is unnecessary [J]. Industrie-Anzeiger, 2000, 122(42/43): 51

[13]

WeinertK, FinkeM, KötterD. Economic alternative for hard turning. Internal cylindrical peel grinding increases flexibility when grinding chuck parts [J]. Maschinenmarkt, 2003, 109(48): 44-47

[14]

NoakerPM. Creep Feed Grains Ground [J]. Manufacturing Engineering, 1993, 110(2): 66-69

[15]

ExcellM. Grinding process creeps forward [J]. Metalworking Production, 1995, 139(10): 67-70

[16]

GuoC, CampomanesM, McintoshD, BeczeC. Modelbased monitoring and control of continuous dress creep-feed form grinding [J]. Annals of the CIRP, 2004, 53(1): 263-266

[17]

MatsuoT. Recent researches on high efficiency and heavy duty grinding [J]. International Journal of the Japan Society for Precision Engineering, 1993, 27(4): 303-306

[18]

SalmonS. Creep-feed grinding is surprisingly versatile [J]. Manufacturing Engineering, 2004, 133(5): 59-64

[19]

Sunarto, IchidaY. Creep feed profile grinding of Ni-based superalloys with ultrafine-polycrystalline cBN abrasive grits [J]. Precision Engineering, 2001, 25(4): 274-283

[20]

NakajimaT, OkamuraK, UnoY. Traverse grinding techniques for improving both productivity and surface finish [C]. International Grinding Conference, 1984FontanaSME

[21]

HermanD, PlichtaJ, NadolnyK. New ceramic abrasive tools for rough and finishing grinding in one pass [J]. Materials Science Forum, 2006, 526: 163-168

[22]

NadolnyK, KaplonekW. Design of a device for precision shaping of the grinding wheel macro- and microgeometry [J]. Journal of Central South University of Technology, 2012, 19(1): 135-143

[23]

SłowińskiB, NadolnyK. Effective manufacturing method for automated diameter grinding [J]. Journal of Advanced Mechanical Design, Systems, and Manufacturing, 2007, 1(4): 472-480

[24]

NadolnyK, PlichtaJ, HermanD, SłowińskiB. Single-Pass Grinding - An Effective Manufacturing Method for Finishing [C]. Proceedings of the 19th Int. Conference on Systems Engineering, 2008Las VegasUniversity of Nevada236-241

[25]

NadolnyK. The effect of integrating the structural modifications of the grinding wheel upon the internal cylindrical grinding process [J]. Archives of Civil and Mechanical Engineering, 2012, 12(1): 60-67

AI Summary AI Mindmap
PDF

132

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/