000 02044nam a2200265 a 4500
001 vtls000075683
003 KUKTEM
005 20251114204546.0
008 131021t2012 my da f abm 000 0 eng d
020 _aTHE0006644(Local)
039 9 _a201905161509
_bamirul
_y201310211451
_znabilah
040 _aUMP
090 _aTJ1280 .L35 2012 rs Bc.
100 1 _aLai, Woon Shyz
245 1 0 _aPrediction of grinding machinability when grind P20 tool steel using TiO2 nanofluid /
_cLai Woon Shyz
260 _aKuantan, Pahang :
_bUMP,
_c2012
300 _axix, 92 p. :
_bill. ;
_c30 cm. +
_e1 CD-ROM
502 _aProject paper (Bachelor of Mechanical Engineering (Manufacturing Engineering)) -- Universiti Malaysia Pahang – 2012
504 _aBibliography : p. 69-72
520 3 _aThe surface roughness is a variable often used to describe the quality of ground surfaces as well as to evaluate the competitiveness of the overall grinding system. A grinding process was performed on the P20 tool steel by changing the grinding conditions, including the depth of cut, the grinding passes, the type of wheel, and the cutting fluid supply in the experiment. The main objective of the study is to investigate the effect of TiO2 nanofluid on the grinding surface finish and wheel tool life. The 0.1 % volume concentration of the TiO2 nanofluid is prepared as to compare the effectiveness with the water based coolant. The selected specimens undergo SEM to assess the surface integrity of the machined surfaces. ANN prediction models are developed from the collected data.The result showed the reduction of 20 % to 40 % surface roughness value in grinding with TiO2 nanofluid. As conclusion, TiO2 nanofluid exhibits the better grinding surface quality. For recommendation, various machining can be conducted using nanofluid to emphasize better results.
650 0 _aGrinding machines
650 0 _aSurface roughness
650 0 _aNanofluids
999 _aVIRTUA40
_c4112
_d4118
999 _aVTLSSORT0080*0200*0400*0900*1000*2450*2600*3000*5020*5040*5200*6500*6501*6502*9992