02036nam a2200229 a 4500001001400000003000700014005001700021008004100038020002200079040000800101100002300109245008800132246008300220260003400303300006400337502012300401504002800524520121500552650001401767650001101781650001401792vtls000046423KUKTEM20251114204452.0100617t2009 my dao f m 000 0 eng d aTHE0005943(Local) aUMP0 aNazihah Shaharudin10aCylindricity of workpiece in conventional lathe machine /cNazihah Binti Shaharudin3 aCylindricity of workpiece in conventional lathe machineh[electronic resource] aKuantan, Pahang :bUMP,c2009 axvi, 43 p. :bill. (some col.) ;c30 cm. +e1 computer disc aProject paper (Bachelor of Mechanical Engineering with Manufacturing Engineering) -- Universiti Malaysia Pahang - 2009 aBibliography : p. 42-433 aCylindrical aspects are one of the most fundamental traits in mechanical designs because they contribute significantly to various mechanical products such as shafts and revolving devices. Besides, it is crucial because it can determine the performance of the parts like the application used in transmission system. Basically, cylindricity can be defined as a condition of a surface of revolution in which all points on the surface are equidistant from a common axis. Cylindrical parts can be produced by using many machines and processes that are available. Numerous factors in manufacturing processes may cause a cylindrical part to depart from its ideal shape. It is essential to design proper experiment for assessing cylindricity. Therefore, the choice of the best combination parameters is important to control the cylindrical geometry. Turning operation using conventional lathe machine is used to produce this feature, while for evaluating the geometry, dial gauge is utilized. From the experiment, the best combination of parameter are feed rate of 0.15 mm/rev which had the biggest effect on cylindricity measurement followed by the cutting speed of 150 m/min and lastly is the depth of cut of 0.5 mm. 0aCylinders 0aLathes 0aMachining