000 02458nam a2200253 a 4500
001 vtls000077811
003 KUKTEM
005 20251114204558.0
008 140425t2012 my a m 000 0 eng d
020 _aTHE0005912(Local)
039 9 _a201905141423
_baida
_c201404281412
_dtraining4
_y201404251623
_ztraining4
040 _aUMP
090 _aTA475 .Z85 2012 rs Bc.
100 0 _aZul Shukri Nawawi
245 1 0 _aModelling of material removal rate on grinding ductile iron using water based SIO2 nanocoolant /
_cZul Shukri Nawawi
260 _aKuantan, Pahang :
_bUMP,
_c2012
300 _axiii, 32 p. :
_bill. (some col.) ;
_c30 cm. +
_e1 CD-ROM
502 _aProject paper ( Bachelor of Mechanical Engineering) -- Universiti Malaysia Pahang - 2012
504 _aBibilography : p. 32
520 3 _aThis project presents the modelling of the material removal rate on grinding ductile iron using water based silicon dioxide (SiO) nanocoolant using response surface method. The grinding fluids used in this study are conventional coolant and water based SiO2 nanoparticle grinding fluid. The SiO2 nanocoolant is prepared using two step methods. The design of experiment for the grinding process is developed using central composite design method. The method of grinding process is single pass and multiple pass. For the experiment, the parameter has been considered as speed of table and depth of cut. The range of the speed of table is 20-40 m/min and the depth of cut is 20-60 µm. The surface roughness, G-ratio, temperature different, and also material removal rate are selected as the output parameters. The use of central composite design method is use to obtained the prediction model for material removal rate. The analysis of variance has been performed to check the adequacy of the develop mathematical model. It can be seen that the lack of fit for all models are less than 0.005 and R-square value for all model are more than 90 %. Therefore, the mathematical models for conventional and SiO nanocoolant with single and multiple pass grinding acceptable. The obtained results show the better medium for grinding fluid are the conventional grinding in terms of material removal rate however, the surface roughness for conventional coolant is poor compared to the SiO2 nanocoolant.
650 0 _aCast-iron
_xAnalysis
650 0 _aRemoval rate
999 _aVIRTUA40
_c4464
_d4470
999 _aVTLSSORT0080*0200*0400*0900*1000*2450*2600*3000*5020*5040*5200*6500*6501*9992