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|Material Type:||Document, Internet resource|
|Document Type:||Internet Resource, Computer File|
|All Authors / Contributors:||
Hugh Baker; ASM International Staff,
|Target Audience:||Scholarly & Professional|
|Description:||1 online resource (512 p.) ill.|
|Series Title:||ASM Handbook Ser., vol. 3.|
ALLOY PHASE DIAGRAMS, the work of more than 300 contributors, contains more than 1,100 binary & 313 ternary phase diagrams chosen by experts for their industrial importance. Organized into 4 sections, this Handbook features: Introductory background for phase diagram use, including thermodynamic principles; basic definitions; diagram types; diagram applications; processing; alloy design processing; metallography; & failure analysis. A section on Binary Phase Diagrams, with diagrams from 1,079 systems chosen for their industrial importance & crystallographic information. A crystal structure table for each binary system. A complete Binary Alloy Index listing 2,970 binary systems (including 835 systems where no diagram is available, but some data exists) giving the most recent source for information. An explanation of crystal structure, including space group notations. Updated illustrations of the most important metallurgical crystal types are provided. Each binary diagram includes a crystal structure table. A section of Ternary Phase Diagrams with about 300 diagrams from 82 selected industrially important systems. Includes liquidus projections, isotherms, & isopleths. Phase diagrams plotted in weight percent. (Binary diagrams include secondary scale for atomic percent.) Published by ASM International (tm), Materials Park, OH 44073.
Presents the diagrams of the most commercially important systems (1,046 binaries plus 80 ternaries) in a single volume. These alloy systems are represented by more than 1,100 binary diagrams and 313 ternary diagrams, all plotted in weight percent as the primary scale. The compilation is based on ASM's Binary Alloy Phase Diagrams, 2d ed., and the upcoming Handbook of Ternary Alloy Phase Diagrams. Useful to engineers involved in alloy design, selection of hot working and fabricating parameters, prediction of performance, selection of heat treating process parameters, and solving performance problems (including failure analysis). Annotation c. by Book News, Inc., Portland, Or.