Experimental investigation of the effect of different chip breaker forms on cutting forces and surface roughness in turning of aisi 304 stainless steel
2019
0 views
0 downloads
Advisor: Dr. Öğr. Üyesi Ali Serhat Ersoyoğlu
Abstract (EN)
In this study, the effect of different chip breaker forms on cutting forces and surface roughness during chip removal process has been investigated experimentally. AISI 304 grade austenitic stainless-steel material was machined by the cutting tools with an ISO notation of WNMG O80408 EA, WNMG 080408 EM, WNMG 080408 MP and the effects of these factors on cutting forces and surface roughness values were determined. In the experimental studies, the highest cutting forces were obtained by the cutting tools with the EM coded chip breaker form and the best surface quality was obtained by the MP coded cutting tool.
Author
Dr. Buğra Arslan
How to Cite
Buğra Arslan (Master Thesis). Experimental investigation of the effect of different chip breaker forms on cutting forces and surface roughness in turning of aisi 304 stainless steel, 2019, Konya Technical University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Konya Technical University
- Numerical and experimental in vestigation of optimization of Pelton turbine rotor design parameters in micro turbine size(2018)
- Comparison of some manufacturing costs according to various analysis parameters and other regulations of reinforced concrete structures with different floor systems(2018)
- The use of silica fume in self-compacting concretes affects the concrete compressive strength and adherence(2018)
- Load-bearing carrier system properties in the historical buildings repair and strengthening techniques for damages model analysis of Zenburi masjid(2018)
- Lateral rigidity improvement of deficient reinforced concrete structures with the use of user friendly systems(2018)
- Application of artificial intelligence methods to estimate monthly pan evaporation using meteorological data(2018)
