Download e-book for iPad: Engineering Properties of Nickel and Nickel Alloys by John Everhart
By John Everhart
Nickel is definitely one of the such a lot flexible of the steel parts. between alloys containing nickel are a few having excessive corrosion resistance and others that continue first-class energy and ductility from temperatures drawing close ab solute 0 to these close to 2000 F. a few nickel alloys are strongly magnetic, others are nearly nonmagnetic; a few have low charges of thermal enlargement, others have excessive premiums; a few have excessive electric resistivities; a few have essentially consistent moduli of elasticity; one has an "elastic" reminiscence. moreover, nickel is magnetostrictive. With this wide variety of features, it's not incredible that there are a number of thousand alloys containing nickel. it truly is most unlikely to contemplate all of those compositions during this ebook and, hence, a number of alloys in every one of a couple of different types were chosen to point the homes to be anticipated of the crowd. Low-alloy and constructional nickel-containing steels were excluded on grounds. To do them justice will require over the top area and, additionally, their purposes vary typically from those of the fabrics below dialogue. nonetheless, nickel-containing stainkss steels were incorporated simply because a lot of their purposes fall into an analogous components as these of the various high-nickel alloys. a number of the compositions mentioned are proprietary alloys and they're safe by way of emblems. an inventory of the logos and their proprietors is in cluded within the appendix.
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Additional resources for Engineering Properties of Nickel and Nickel Alloys
13 ,14,15,16 Alloy X has a lower 100-hour rupture strength at 1200 F than Temperature, K 400 600 140 800 1000 1200 120 ·Vi 100 --X: £ c;, 80 c: ~ if) (j) Vi 60 c: (j) f- 40 20 o 400 800 1200 1600 2000 Temperature, F Fig. 3-8. 078-in. 109-in. sheet, heat treated at 2225 F, water quenched; (3) alloy X, O. 063-in. sheet, heat treated at 2150 F, rapid air cooled. 51 Nickel-Base Corrosion- and Heat-Resistant Alloys-I Table 3-13. 078 in. 141 in. 063 in. 2 Form and condition aRapid air cooled. ·1400 F.
13. M. J. Mekin, "The effect of neutron radiation on the mechanical properties of copper and nickel," J. Inst. Metals 86, 449 (1957). 14. W. D. Jenkins, T. G. Digges, and C. R. Johnson, "Creep of high purity nickel," J. Res. Nat. Bur. of Std. 53, 329 (1954). 15. W. D. Jenkins and W. A. Willard, "Creep of cold drawn nickel, copper, 70% nickel30% copper and 30% nickel-70% copper," J. Res. Nat. Bur, Std. C 66,59 (1962). 16. P. Shahinean and M. R. Achter, "Comparison of the creep rupture properties of nickel in air and vacuum," Trans.
3-7, both tensile and yield strength increase continuously as the temperature falls from room to -423 F. Charpy V-notch impact tests showed very little loss in energy absorbed as the temperature was reduced: 41 ft-lb at room temperature, 39 ft-Ib at -320 F. Chapter 3 46 Temperature, K 160 50 100 150 200 250 -200 -100 0 300 140 ~120 en
Engineering Properties of Nickel and Nickel Alloys by John Everhart