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- W2100081086 abstract "In this present work, The effect of input parameters viz. work speed, wheel speed, abrasive material, depth of cut, concentration of cutting fluid and number of passes has been found on the surface roughness of cylindrical grinded AISI 1045 steel has been found. Three levels of each variable have been selected except wheel speed. Two levels of wheel speed have been taken. Heat treated AISI 1045 has been taken as work piece material. The result reveals that type of abrasive material is the most significant to influence surface roughness, followed by work speed. The optimum set of input parameters for minimizing the surface roughness has also been found. wheel speed, coolant flow rate and truing on Zirconia and M2 tool steel using a vitreous bond CBN wheel for high speed grinding. The author found that both normal and tangential grinding forces were reduced, but surface finish and roundness of ground parts did not improve. High coolant flow rate eliminate grinding burn on M2 steel layer and layer of Zirconia powder on wheel after grinding Zirconia. Nathan et al. (3) studied on In-process monitoring of grinding burn in the cylindrical grinding of steel. In steels burn is characterized by a visible bluish temper colour on the ground surface. The authors found that spark temperature can be considered to be good representative of grinding zone temperature and hence useful for process-monitoring purposes. Kwak (4) studied on evaluating the grinding parameters effect on geometric error by the taguchi method and developing a mathematical model by the response surface method for predicting geometric error. The author concluded that depth of cut effect more for geometric error and next was grain size. The utilization of response surface model was evaluated to select proper grinding conditions with constraints of the surface roughness and response surface model was very useful for predicting the geometric error. Sahin (5) studied wear resistance of three types of steels a low carbon steel (A1SI 1020), Carbon steel (A1SI 1340) and low alloyed steel (A1SI 5150) on a pin-on-disc type apparatus. The experiments were carried to analyze the influence of testing parameters on weight loss of various steel work pieces. An L9 orthogonal array was used. The orthogonal array, signal-tonoise ratio and analysis of variance were used to investigate the optimal testing Parameters. For AISI 1340 steel, abrasive grain size exerted the most or greatest effect on wear, but in AISI 1020 and AISI 5150 steels sliding distance exerted greatest effect on the weight loss. Kwak et al. (6) developed response surface models to predicate the grinding power and surface roughness in external cylindrical grinding of pardoned SCM 440 steel and also help in selection of grinding conditions. They concluded that due to response surface model, it is possible to predict the grinding power and the surface roughness" @default.
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- W2100081086 date "2014-05-01" @default.
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- W2100081086 title "To Study the Effect of Process Parameters for Minimum Surface Roughness of Cylindrical Grinded AISI 1045 Steel" @default.
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- W2100081086 doi "https://doi.org/10.13189/mst.2014.020302" @default.
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