M. ÖZDEMİR Et Al. , "Analysis of the Effect of Tool Nose Radius, Feed Rate, and Cutting Depth Parameters on Surface Roughness and Cutting Force in CNC Lathe Machining of 36CrNiMo4 Alloy Steel," Gazi University Journal of Science Part A: Engineering and Innovation , vol.8, no.2, 2021
ÖZDEMİR, M. Et Al. 2021. Analysis of the Effect of Tool Nose Radius, Feed Rate, and Cutting Depth Parameters on Surface Roughness and Cutting Force in CNC Lathe Machining of 36CrNiMo4 Alloy Steel. Gazi University Journal of Science Part A: Engineering and Innovation , vol.8, no.2 .
ÖZDEMİR, M., ERCAN, K., BÜYÜKER, B., & AKYILDIZ, H. K., (2021). Analysis of the Effect of Tool Nose Radius, Feed Rate, and Cutting Depth Parameters on Surface Roughness and Cutting Force in CNC Lathe Machining of 36CrNiMo4 Alloy Steel. Gazi University Journal of Science Part A: Engineering and Innovation , vol.8, no.2.
ÖZDEMİR, MUSTAFA Et Al. "Analysis of the Effect of Tool Nose Radius, Feed Rate, and Cutting Depth Parameters on Surface Roughness and Cutting Force in CNC Lathe Machining of 36CrNiMo4 Alloy Steel," Gazi University Journal of Science Part A: Engineering and Innovation , vol.8, no.2, 2021
ÖZDEMİR, MUSTAFA Et Al. "Analysis of the Effect of Tool Nose Radius, Feed Rate, and Cutting Depth Parameters on Surface Roughness and Cutting Force in CNC Lathe Machining of 36CrNiMo4 Alloy Steel." Gazi University Journal of Science Part A: Engineering and Innovation , vol.8, no.2, 2021
ÖZDEMİR, M. Et Al. (2021) . "Analysis of the Effect of Tool Nose Radius, Feed Rate, and Cutting Depth Parameters on Surface Roughness and Cutting Force in CNC Lathe Machining of 36CrNiMo4 Alloy Steel." Gazi University Journal of Science Part A: Engineering and Innovation , vol.8, no.2.
@article{article, author={MUSTAFA ÖZDEMİR Et Al. }, title={Analysis of the Effect of Tool Nose Radius, Feed Rate, and Cutting Depth Parameters on Surface Roughness and Cutting Force in CNC Lathe Machining of 36CrNiMo4 Alloy Steel}, journal={Gazi University Journal of Science Part A: Engineering and Innovation}, year=2021}