Skip Nav Destination
Close Modal
Search Results for
binary phase diagram
Update search
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
NARROW
Format
Topics
Subjects
Journal
Article Type
Date
Availability
1-4 of 4 Search Results for
binary phase diagram
Follow your search
Access your saved searches in your account
Would you like to receive an alert when new items match your search?
Sort by
Journal Articles
Alloy Digest (1996) 45 (4): Ni-507.
Published: 01 April 1996
...: Ni-507. Producer or source: Inco Alloys International Inc. Producer or Source: Inco Alloys International Inc. Copyright © ASM International® 1996 1996 ASM International binary phase diagram chemical composition hardness joinability NI-ROD FILLER METAL 99 tensile properties wires...
Abstract
View article
PDF
NI-Rod Filler Metal 99 is a commercially pure nickel solid wire developed for weld deposition on as-welded cast irons by automatic or semiautomatic processes. This datasheet provides information on composition, hardness, and tensile properties. It also includes information on joining. Filing Code: Ni-507. Producer or source: Inco Alloys International Inc.
Journal Articles
Alloy Digest (2007) 56 (10): Ni-654.
Published: 01 October 2007
... ± 1.8 °F)) Upper superelastic plateau stress, MPa (ksi) 344 (50) Lower superelastic plateau stress, MPa (ksi) 14 (2) Permanent set after 6% strain, % 0.5 Tensile strength, MPa (ksi) 1237 (180) Elongation to failure, % 12 Maximum strain recovery, % 8 Metallurgy: The equilibrium phase diagram for titanium...
Abstract
View article
PDF
Body-Temperature Ni-Ti alloys are binary nickel-titanium alloys better known as shape memory or nitinol alloys. This is the second of several data sheets that cover these materials by austenite start temperature. This data sheet covers materials with an austenite start temperature of approximately 15 ± 5 deg C (59 ± 9 deg F). This datasheet provides information on composition, physical properties, elasticity, and tensile properties. It also includes information on forming and machining. Filing Code: Ni-654. Producer or source: Special Metals, Shape Memory Alloy Division.
Journal Articles
Alloy Digest (2006) 55 (11): Ni-643.
Published: 01 November 2006
... of martensite after transition, 1275 (185) MPa (ksi) Ultimate tensile strength, MPa (ksi) 1448 (210) Elongation to failure, % 12.5 Maximum strain recovery, % 8 Metallurgy: The equilibrium phase diagram for titanium and nickel is shown in Fig. 1. The austenite start temperature for the full range of nickel...
Abstract
View article
PDF
Superelastic and high-temperature superelastic alloys are binary nickel-titanium alloys better known as shape memory or Nitinol alloys. This is the first of several data sheets that cover these materials; this data sheet covers materials with an austenite start temperature of 10 deg C (14 deg F). This datasheet provides information on composition, physical properties, and tensile properties. It also includes information on forming and machining. Filing Code: Ni-643. Producer or source: Special Metals, Shape Memory Alloy Division.
Journal Articles
Alloy Digest (2005) 54 (7): Ti-136.
Published: 01 July 2005
...-614X Ti-136B Fig. 1 Molybdenum-titanium phase diagram (Ref 5,6) Fig. 2 TTT diagram for Ti-12Mo Alloy (Ref 7) Fig. 3 TTT diagram for Ti-15Mo Alloy (Ref 8) ...
Abstract
View article
PDF
Allvac Ti-15Mo is a metastable beta alloy melted in a vacuum arc remelting (VAR) furnace to minimize segregation. The alloy has a unique combination of properties and is used in the medical, chemical, and aerospace industries. This datasheet provides information on composition. Filing Code: TI-136. Producer or source: Allvac, an Allegheny Technologies Company.