Surface roughness variation in ultrasonic assisted burnishing of high-strength steels

Author:

Malygin Vladimir,Oblovatskaya Natalia,Lapteva Evgenia,Slutskov Vladimir,Shishkina Anastasia

Abstract

Abstract Ultrasonic assisted burnishing process is a newly developed alternative of conventional burnishing process that enhances the surface properties of engineering materials. The process needs careful selection of design parameters to improve the quality of surface layer of workpieces made of high-strength steel that are difficult to deform. The analytical models to predict the surface roughness after the ultrasonic assisted burnishing process for surfaces are developed. Feed, ultrasonic influence power and static static force could be considered as main factors influencing to surface roughness at that feed has the greatest impact among other parameters. The models are verified by experimental studies with various ultrasonic burnishing parameters. Technological parameters of the ultrasonic burnishing are found, which decrease surface roughness from 1-2 μm to 0.05-0.55 μm. It is experimentally proved that feed increase results in surface roughness increase. To low the surface roughness of high-strength steel workpieces it is necessary to increase ultrasonic influence power with simultaneous static force lowering. The analytical models obtained in the present work may be employed in determining the best conditions for ultrasonic assisted burnishing in industrial field.

Publisher

IOP Publishing

Subject

General Medicine

Reference34 articles.

1. Investigation of ultrasonic deformation characteristics of ultrathin miniaturized TA1 foil;Wang;Mater. Sci. Eng. A,2020

2. Experimental techniques for studying the effects of milling roller-burnishing parameters on surface integrity;El-Khabeery;AEJ - Alexandria Eng. J.,2001

3. Improving the surface integrity of additive-manufactured metal parts by ultrasonic vibration-assisted burnishing;Teramachi;J. Micro Nano-Manufacturing,2019

4. The relationship between surface roughness and burnishing factor in the burnishing process;Lin;Int. J. Adv. Manuf. Technol.,2004

5. Effect of burnishing parameters on the surface quality and hardness;Cobanoglu;Proc. Inst. Mech. Eng. Part B J. Eng. Manuf.,2015

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