Kurumun Atıf Alan Makalesi
Atıf Alan Yayın
Experimental study and analysis of machinability characteristics of metal matrix composites during drilling
Scopus
Toplam 130 atıf DOI
In this study, the metal matrix composite materials were produced by hot press with various production parameters. The drilling experiments were performed on computer numerical control vertical machining centre without cutting fluid. Analysis of variance (ANOVA) was carried out in order to determine the effects of the production parameters on thrust force and surface roughness of metal matrix composites drilled with different feed rate. The effect of production parameters such as temperature, pressure and reinforcement ratio were investigated, and their effects were presented. The optimal level for each production parameters was determined by ‘Maximize the S/N ratio approach with a Taguchi design’. The test results revealed that the reinforcement ratio was the main factor affecting the surface roughness of the metal matrix composites for both feed rate. However, same singularity was not matter on thrust force due to close contribution rates of production parameters and high error rates of analysis. In literature, an increase on the thrust force and the surface roughness values was reported as the feed rate increased during machining. Nevertheless, in our MMCs system, the thrust force and the surface roughness values were in tendency of declination as the feed rate increased which makes this study more novel research.
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Atıf Yapan Yayın
Machining induced tribological investigations in sustainable milling of Hardox 500 steel: A new approach of measurement science
Scopus
Havuzumuzda 28 atıf almış
Hardox 500 is known as hard-to-cut steel possessing supreme abrasive wear resistance that makes it suitable for industrial applications especially for transportation. However, such properties limit the machinability of this low alloy, martensitic material in addition to being sensitive to thermal loading. Therefore, this study purposes to improve the machinability index of Hardox 500 steel by questioning the tribological influence of the various cooling and lubricating environments during milling operation. In this direction, dry, pure-MQL, conventional flooding and LN2 based cryogenic mediums were tested while observing tool wear, surface roughness and topography, cutting temperature and chips morphology. Seemingly, cryogenic environment suppresses the thermal effects while cutting with improving tool wear resistance, surface quality of the part and chips morphology, in comparison with other regimes. A supreme enhancement in the flank wear (114 %), cutting temperature (319 %) and surface roughness (152 %) were achieved by using cryogenic cooling over dry regime. Obtained findings were discussed within the framework of the tribological performance of the sustainable lubri-cooling regimes.
Atıf Yapan Makale Bilgileri
Kurumlar (1)
Selçuk Üniversitesi
Selçuklu, Turkey