Nothing Special   »   [go: up one dir, main page]

Maiß et al., 2016 - Google Patents

Hybrid machining of roller bearing inner rings by hard turning and deep rolling

Maiß et al., 2016

Document ID
16696319490521874483
Author
Maiß O
Denkena B
Grove T
Publication year
Publication venue
Journal of Materials Processing Technology

External Links

Snippet

Hard turning and deep rolling are two processes with high potential to face the challenge of highly flexible and productive machining of hardened parts. On the one hand, the processes of grinding and honing are very productive to manufacture roller bearings, but on the other …
Continue reading at www.sciencedirect.com (other versions)

Similar Documents

Publication Publication Date Title
Maiß et al. Hybrid machining of roller bearing inner rings by hard turning and deep rolling
Nieslony et al. Surface quality and topographic inspection of variable compliance part after precise turning
Rao et al. A comprehensive dynamic cutting force model for chatter prediction in turning
Korzynski Modeling and experimental validation of the force–surface roughness relation for smoothing burnishing with a spherical tool
Gunnberg et al. The influence of cutting parameters on residual stresses and surface topography during hard turning of 18MnCr5 case carburised steel
Bhattacharya et al. Estimating the effect of cutting parameters on surface finish and power consumption during high speed machining of AISI 1045 steel using Taguchi design and ANOVA
El-Axir et al. Influence of orthogonal burnishing parameters on surface characteristics for various materials
Sagbas Analysis and optimization of surface roughness in the ball burnishing process using response surface methodology and desirabilty function
De Lacalle et al. Quality improvement of ball-end milled sculptured surfaces by ball burnishing
de Aguiar et al. Correlating surface roughness, tool wear and tool vibration in the milling process of hardened steel using long slender tools
Akkurt Comparison of roller burnishing method with other hole surface finishing processes applied on AISI 304 austenitic stainless steel
Korzynski et al. Surface layer characteristics due to slide diamond burnishing with a cylindrical-ended tool
Stalin John et al. Optimization of roller burnishing process on EN-9 grade alloy steel using response surface methodology
Aouici et al. Experimental investigation of cutting parameters influence on surface roughness and cutting forces in hard turning of X38CrMoV5-1 with CBN tool
John et al. An investigation of ball burnishing process on CNC lathe using finite element analysis
Kovács et al. Determination of the working gap and optimal machining parameters for magnetic assisted ball burnishing
Kersting et al. Experimental and numerical analysis of tribological effective surfaces for forming tools in Sheet-Bulk Metal Forming
Stalin John et al. Optimisation of internal roller burnishing process in CNC machining center using response surface methodology
Alshareef et al. Ball-burnishing factors affecting residual stress of AISI 8620 steel
Bleicher et al. Improving the tribological characteristics of tool and mould surfaces by machine hammer peening
Jouini et al. The ability of precision hard turning to increase rolling contact fatigue life
Sachin et al. Selection of optimal process parameters in sustainable diamond burnishing of 17-4 PH stainless steel
Vukelic et al. BURNISHING PROCESS BASED ON THE OPTIMAL DEPTH OF WORKPIECE PENETRATION
Huuki et al. Influence of ultrasonic burnishing technique on surface quality and change in the dimensions of metal shafts
Schulze et al. Determination of constitutive friction laws appropriate for simulation of cutting processes