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Nickel magnesium alloy

Almond shell Aluminium, atomized Aluminium, flake Aluminium-cobalt alloy Aluminium-copper alloy Aluminium-iron alloy Aluminium-lithium alloy Aluminium—magnesium alloy Aluminium-nickel alloy Aluminium-silicon alloy Aluminium acetate... [Pg.134]

Practices for preparation of and electroplating on Chromium (Electrodeposits) on Chromium Copper and Copper-Base Alloys Iron Castings Eead and Eead Alloys Magnesium and Magnesium Alloys Molybdenum and Molybdenum Alloys Nickel Alloys... [Pg.147]

J.J. Reilly, R.H. Wiswall, The reaction of hydrogen with alloys of magnesium and nickel and the formation of Mg2NiH4 , Inorg. Chem. 7 (1968) 2254-2256. [Pg.282]

For preparation of alloys nickel by cleanliness of 99.99 %, magnesium by cleanliness of 99.95 %, lanthanum by cleanliness of 99.79 %, and mishmetall (industrial mixture of rare-earth metals (REM) Ce - 50, La - 27, Nd - 16, Pr - 5, others REM - 2wt. %) were used. The melting of metal charge was carried out in the vacuum-induction furnace under fluxing agent from eutectic melt LiCl-KCl. The composition of alloys was supervised by the chemical analysis and the X-ray testing. [Pg.342]

Tarasov, B.P., Fokin, V.N., Borisov, D.N., Gusachenko, E.I., Klyamkin, S.N., Yakovleva, N.A., and Shilkin, S.P. (2004) Metal hydride hydrogen accumulators on the basis of alloys of magnesium and rare-earth metals with nickel. J. Altern. Energy and Ecology (ISJAEE), No. 1, 47-52 (in Russian). [Pg.346]

Pattison and Degering (16) have prepared a catalyst of the Raney type from a nickel-magnesium alloy. These authors used acetic acid to dissolve the inactive portion of the alloy. The catalyst was found to be as active as the W-4 Raney nickel of Pavlic and Adkins (10) and twice as active as the W-2 catalyst of Mozingo (9). [Pg.419]

Reilly, J. J. and Wiswall, R. H., The Reaction of Hydrogen With Alloys of Magnesium and Nickel and the Formation of Mg2NiH4, Inorganic Chem., 1968, 7, 2254. [Pg.329]

Of the 106 or so natural and man-made elements, less than 20% are non-metals. At present, few of the metals are used to any large extent by man, either because of their rarity or their instability. The major "tonnage metals are iron, copper, aluminium, zinc, nickel, and lead. These metals may be alloyed with one another, such as copper and zinc to form brass, and/or may be alloyed with smaller quantities of other metals. Steels are commonly alloyed with chromium, vanadium, molybdenum, or tungsten. Aluminium, for increased lightness and strength, may be alloyed with magnesium. [Pg.255]

Use Lighter flints, ferrous and nonferrous alloys, cast iron, aluminum, nickel, magnesium and copper alloys, getter in vacuum tubes, magnetic alloys. [Pg.851]

Brasses and bronzes, iron-base alloys, nickel, monel, magnesium alloys, hard rubber, plastics, tin, aluminum, and like metals must be added to ordinary gray and white cast iron as materials for pump construction. Practically any alloy or modern metal can be fabricated into pumps, and it remains only for the chemical engineer to stipulate the kind of solution he wishes to handle, or the kind of metal, and the pump manufacturer will attempt to construct a pump for the service demanded. (See Perry s Chemical Engineers Handbook, 3d ed., p. 1424.)... [Pg.147]

Intergranular corrosion can also occur in other metals and alloys in connection with grain boundary precipitation, for example, in aluminum magnesium (AlMg) 5 alloy, nickel chromium 30 iron (NiCr30Fe), or Ti, and in methanol with traces of water and HCl. Solution annealed austenitic chromium-nickel steels can suffer intergranular corrosion from strong oxidants such as chromium... [Pg.561]

Raney nickel has been prepared from nickel-magnesium alloy.In addition, Raney cobalt in ethanol or dioxane shows a reactivity similar to Raney nickel. [Pg.2304]

The most common matrices are the low-density metals, such as aluminum and aluminum alloys, and magnesium and its alloys. Some work has been carried out on lead alloys, mainly for bearing applications, and there is interest in the reinforcement, for example, of titanium-, nickel- and iron-base alloys for higher-temperature performance. However, the problems encountered in achieving the thermodynamic stability of fibers in intimate contact with metals become more severe as the potential service temperature is raised, and the bulk of development work at present rests with the light alloys. [Pg.262]

MgjNi alloy of magnesium with nickel with atomic ratio 2 1... [Pg.363]

Table 2 summarizes the known contaminant tolerance limits for the common commercially die cast alloys of magnesium plus the recently published tolerance limits for the developmental alloy AE42 [11], As may be noted in Table 2, while the tolerance limits for nickel and copper are essentially independent of the alloy composition, within its normal... [Pg.538]


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