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Surface hardening by ball burnishing
Tribology International, 1990Abstract The ball burnishing process is becoming more popular not only as a finishing process but also for improving the service properties of machine parts. Experimental work was carried out on a vertical machining centre to establish the effects of four ball burnishing parameters, depth of penetration, feed, ball material and lubricant, on the ...
N.H. Loh, S.C. Tam, S. Miyazawa
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Introduction to Surface Hardening of Steels
2013Abstract Surface hardening improves the wear resistance of steel parts. This article focuses exclusively on the methods that involve surface and subsurface modification without any intentional buildup or increase in part dimensions.
Michael J. Schneider +1 more
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2008
Abstract This chapter discusses the process characteristics, advantages, disadvantages, and applications of various processes involved in surface hardening of steel. These include pack carburizing, liquid carburizing, gas carburizing, vacuum carburizing, plasma carburizing, gas nitriding, liquid nitriding, carbonitriding, and hardfacing.
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Abstract This chapter discusses the process characteristics, advantages, disadvantages, and applications of various processes involved in surface hardening of steel. These include pack carburizing, liquid carburizing, gas carburizing, vacuum carburizing, plasma carburizing, gas nitriding, liquid nitriding, carbonitriding, and hardfacing.
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Laser surface hardening and electric-spark surface hardening of materials
Journal of Soviet Laser Research, 1988V. S. Kovalenko +3 more
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Surface hardening of stainless steels
International Heat Treatment and Surface Engineering, 2008Although impressive surface hardening of stainless steels has been reported in Europe and elsewhere in recent years, using a variety of low temperature carburisation and nitriding technologies, the recognition that the tribological properties of a variety of stainless steels can be significantly improved without serious degradation in other properties ...
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Abstract This chapter describes case depth and discusses flame hardening, laser heat treatment, electron beam hardening, induction heat treatment, and induction hardening.
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