01980nam a2200229 a 4500001001400000003000700014005001700021008004100038020002200079040000800101100002900109245013100138246012000269260003400389300005000423502009200473504002800565520109300593650002501686650002601711650001301737vtls000045863KUKTEM20251114204504.0100520t2009 my a f m 000 0 eng d aTHE0005728(Local) aUMP0 aNafisah Almisriah Maidin10aComputational properties of titanium using finite element prediction and experimental result /cNafisah Almisriah Binti Maidin3 aComputational properties of titanium using finite element prediction and experimental resulth[electronic resource] aKuantan, Pahang :bUMP,c2009 ax, 44 p. :bill. ;c30 cm. +e1 computer disc aProject paper (Bachelor of Mechanical Engineering) -- Universiti Malaysia Pahang - 2009 aBibliography : p. 39-413 aTitanium and its alloys are is widely used nowadays especially in aerospace applications, automobiles, building equipments and many more. Since, it was an expensive material, less research have been done to determine their actual properties. Finite Element (FE) method was applied to investigate response of titanium under different conditions. Computational model was developed in ALGOR FE code. The best model was choosen through mesh convergency analysis. Tensile experiment was carried out on ASTM standard titanium specimen and stress strain response was also obtained experimentally. The computational model was then validated with the experimental results. The results were found to be agreeable in terms of stress strain response both in elastic and plastic regions with error less than 2%. Further simulation were carried on with different strain rates. Stress strain response of titanium under different strain rates shows that strain increase monotonically at increased rate. Computational model can be used to economically determine material response under various conditions. 0aStrains and stresses 0aStrength of materials 0aTitanium