1. Yan BH, Wang CC, Chow HM et al (2000) Feasibility study of rotary electrical discharge machining with ball burnishing for Al2O3/6061Al composite. Int J Machine Tools Manuf 40(10): 1403–14212. Gharbi F, Sghaier S, Hamdi H et al (2012) Ductility improvement of Al 1050A rolled sheet by a newly designed ball burnishing tool device. Int J Adv Manuf Technol 60:87–993. Lopez de Lacalle LN, Lamikiz A, Sanchez JA et al (2007) The effect of ball burnishing on heat-treated steel and Inconel 718 milled surfaces. Int J Adv Manuf Technol 32:958–9684. El-Axir MH (2000) An investigation into roller burnishing. Int J Machine Tools Manuf 40(11):1603–16175. El-Khabeery MM, El-Axir MH (2001) Experimental techniques for studying the effects of milling roller-burnishing parameters on surface integrity. Int J Machine Tools Manuf 41(12):1705–17196. Luo H, Liu J, Wang L, Zhong Q (2005) Investigation of the burnishing process with PCD tool on non-ferrous metals. Int J Adv Manuf Technol 25:454–4597. Luo H, Liu J, Wang L, Wang Q (2006) The effect of burnishing parameters on burnishing force and surface microhardness. Int J Adv Manuf Technol 28:707–7138. Luoa H, Liu J, Wang L, Zhong Q (2006) Study of the mechanism of the burnishing process with cylindrical polycrystalline diamond tools. J Mater Process Technol 180:9–169. Yeldose BC, Ramamoorthy B (2008) An investigation into the high performance of TiN-coated rollers in burnishing process.J Mater Process Technol 207:350–35510. El-Taweel TA, El-Axir MH (2009) Analysis and optimization of the ball burnishing process through the Taguchi technique. Int J Adv Manuf Technol 41:301–31011. Klocke F, Backer V, Wegner H et al (2009) Influence of process and geometry parameters on the surface layer state after roller burnishing of IN718. Prod Eng Res Dev 3:391–39912. Franzen V, Trompeter M, Brosius A et al (2010) Finishing of thermally sprayed tool coatings for sheet metal forming operations by roller burnishing. Int J Mater Form 3(1):147–15013. Aysun S (2011) Analysis and optimization of surface roughness in the ball burnishing process using response surface methodology and desirabilty function. Adv Eng Softw 42:992–99814. Korzynski M, Lubas J, Swirad S et al (2011) Surface layer characteristics due to slide diamond burnishing with a cylindrical-ended tool. J Mater Process Technol 211:84–9415. Swirad S (2011) The surface texture analysis after sliding burnishing with cylindrical elements. Wear 271:576–58116. Tadic B, Todorovic PM, Luzanin O et al (2013) Using specially designed high-stiffness burnishing tool to achieve high-quality surface finish. Int J Adv Manuf Technol 67:601–61117. Balland P, Tabourot L, Degre F et al (2013) An investigation of the mechanics of roller burnishing through finite element simulation and experiments. Int J Machine Tools Manuf 65:29–3618. Balland P, Tabourot L, Degre F et al (2013) Mechanics of the burnishing process. Precis Eng 37:129–13419. Dwivedi SP, Kumar S, Kumar A (2012) Effect of turning parameters on surface roughness of A356/5% SiC compositeproduced by electromagnetic stir casting. J Mech Sci Technol 26(12):3973–397920. Muralidharan R, Ramana GR (2013) Thermal plasma synthesis of SiC. Adv Manuf 1:50–6121. Rao TB, Gopala Krishna A (2013) Simultaneous optimization of multiple performance characteristics in WEDM for machining ZC63/SiCp MMC. Adv Manuf 1:265–27522. El-Tayeb NSM, Low KO, Brevern PV (2007) Influence of roller burnishing contact width and burnishing orientation on surface quality and tribological behaviour of Aluminium 6061. J Mater Process Technol 186:272–27823. Dwivedi SP, Sharma S, Mishra K (2014) Microstructure and mechanical behavior of A356/SiC/Fly-ash hybrid composites produced by electromagnetic stir casting. J Braz Soc Mech Sci Eng 1–1124. Wang G, Rong YM (2013) Advances of physics-based precision modeling and simulation for manufacturing processes. Adv Manuf 1:75–8125. Chen SL, Cao WS, Zhang F et al (2013) Development of a computational tool for materials design. Adv Manuf 1:123–12926. Kosaraju S, Anne VG (2013) Optimal machining conditions for turning Ti–6Al–4V using response surface methodology. Adv Manuf 1:329–33927. Xu Y, Gao F, Zhang B et al (2013) Technology of self-repairing and reinforcement of metal worn surface. Adv Manuf 1:102–10528. Lu WC, Ji XB, Li MJ et al (2013) Using support vector machine for materials design. Adv Manuf 1:151–15929. Li FL, Xia W, Zhou ZY et al (2013) Analytical prediction and experimental verification of surface roughness during the burnishing process. Int J Machine Tools Manuf 62:67–75 |