Super alloys or high performance alloys offered in an assortment of shapes and contain elements in different combinations to obtain a specific result. These alloys are of three types that include iron, Based, Cobalt, Based and nickel, Based alloys. The nickel, Based and cobalt, Based super alloys can be found presented as of cast or wrought based alloys based on composition and application. Super alloys have good oxidation and creep resistance and may serve as strengthened by precipitation hardening, Solid, Solution hardening and work hardening methods. They can also function under high mechanical stress and intense warmth and also in places that demand significant surface stability super alloy nnimonic 105 is a nickel, Cobalt, Chromium alloy. The following datasheet provides an overview of nimonic 105 . The structure of the chemical elements of nimonic 105 is outlined in the table that follows. Nickel content, Co 18, Ni percentage 51 cobalt, 22 chromium, Cr 14, 15. 7 molybdenum, Mo 4. 50, 5. 50 aluminum, Al 4. 50, 4. 90 iron, Fe 1 manganese, Mn 1 silicon, Si 1 titanium, Ti 0. 90, 1. 50 copper, Cu 0. 20 zirconium, Zr 0. 15 carbon, C 0. 12 sulfur, S 0. 010 boron, B 0. 0030, 0. 010 the table below presents the physical attributes shows the tangible attributes of nimonic 105 . Propertiesmetricimperial density 8. 01 g/cm 0. 289 lb/in melting point 1327 c 2420 f attributes related to mechanical functionality of nimonic 105 are displayed in the next section table. Measured tensile strength across metric and imperial systems precipitation hardened, Value at ambient temperature 1150 mpa 167000 psi yield strength precipitation hardened, Value at room temperature, @strain 0. 200% 770 mpa 112000 psi breaking extension measurement precipitation hardened 25% 25% thermal properties the thermal properties of nimonic 105 are given in the following table. Propertiesmetricimperial thermal expansion co, Efficient @20, 100 c/68, 212 f 12. 2 m/m c 6. 78 in/in f thermal conductivity 10. 89 w/mk 75. 58 btu in/hr. Ft . F