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Alloys high-temperature

Metal Crystal 22° C stmeture 1000° c Melting point, °C Density, g/cm Thermal expansion coefficient at RT, ioV°c Thermal conductivity at RT, W/(m-K) Young s modulus, GPa  [Pg.109]

Density is a particularly important characteristic of alloys used in rotating machinery, because centrifugal stresses increase with density. Densities of the various metals in Table 1 range from 6.1 to 19.3 g/cm. Those of iron, nickel, and cobalt-base superaHoys fall in the range 7-8.5 g/cm. Those alloys which contain the heavier elements, ie, molybdenum, tantalum, or tungsten, have correspondingly high densities. [Pg.109]

Kirk-Othmer Encyclopedia of Chemical Technology (4th Edition) [Pg.109]


Fig. 4. Fatigue data for high temperature alloys (a) As vs cycles to failure for various alloys tested under strain control. (°) = testing at RT in air ... Fig. 4. Fatigue data for high temperature alloys (a) As vs cycles to failure for various alloys tested under strain control. (°) = testing at RT in air ...
Table 2. Strengthening Mechanisms in High Temperature Alloys... Table 2. Strengthening Mechanisms in High Temperature Alloys...

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See also in sourсe #XX -- [ Pg.774 , Pg.775 ]




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Alloy design, high-temperature corrosion

Alloying high-temperature alloys

Alloying high-temperature alloys

Alloys for High-Temperature Use

Alloys for high-temperature corrosion

Alloys for high-temperature corrosion alloy

Alloys high melting-temperature

Alloys high-temperature film breakdown

Alloys oxidation-resistant high temperature

Alloys, high-temperature corrosion

Alumina high-temperature alloys

Aluminium alloys high-temperature corrosion

Argon high-temperature alloys

Austenites high-temperature alloys

Cavitation high-temperature alloys

Cementation, high-temperature alloys

Chemical high-temperature alloys

Chemical high-temperature alloys/coatings

Chromia high-temperature alloys

Coefficient high-temperature alloys

Creep high-temperature alloys

Crystal high-temperature alloys

Degradation high-temperature alloys

Diffusion high-temperature alloys

Dusting, high-temperature alloys

Embrittlement high-temperature alloys

Exposure times, high-temperature alloys

Ferrites high-temperature alloys

Grain high-temperature alloys

Growth high-temperature alloys

Hardening high-temperature alloys

Hardness: Brinellof aluminium-copper-zinc alloy high temperatures

High Alloys

High-temperature R alloys inward

High-temperature R alloys oxidation rate

High-temperature R alloys oxidation resistance

High-temperature corrosion alloying elements

High-temperature oxidation corrosion alumina-forming alloys

High-temperature oxidation corrosion chromia-forming alloys

Intermediate heat exchangers high-temperature alloys

Internal high-temperature alloys

Interstitial elements, high-temperature alloys

Iron oxides, high-temperature alloys

Kinetics high-temperature alloys

Metallic alloys, high-temperature corrosion

Microstructures high-temperature alloys

Nickel alloys high-temperature corrosion

Oxidation-resistant high temperature alumina-forming alloys

Oxidation-resistant high temperature chromia-forming alloys

Oxides high-temperature alloys

Phase high-temperature alloys

Platinum-rhodium alloys high-temperature properties

Precipitation high-temperature alloys

Producers list, high-temperature alloys

Protective high-temperature alloys

Refractory metal alloys oxidation-resistant high temperature

Resistance high-temperature alloys

Silica high-temperature alloys

Strength high-temperature alloys

Thermal Conductivity of Some Alloys at High Temperature

Thermal high-temperature alloys

Toughness high-temperature alloys

Transient scaling, high-temperature alloys

Vacancies high-temperature alloys

Vaporization, high-temperature alloys

Voids high-temperature alloys

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