A5.10/A5.10M:1999(R2007) SPECIFICATION FOR BARE ALUMINUM AND ALUMINUM-ALLOY WELDING ELECTRODES AND RODS (HISTORICAL) Member Price: $48.00 Non-Member Price: $64.00 This.
- A5.10/A5.10M:1999 represents the seventh revision of the first bare aluminum filler metal specification issued in 1954 as a joint ASTM/AWS specification. After two revisions and publication a joint specification, ASTM agreed to as of accept AWS.
- ER4043 Aluminum / Silicon AWS A 5.10 CLASS ER4043 ER4043 (commonly referred to as ALSi-5) is a 5% Silicon Aluminum filler metal that is used primarily for welding Aluminum Alloys 3003, 3004, 5052.
- Aws a5.10/a5.10m: 2012 Superseded View Superseded By Superseded A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
Welding Consumables - Wire Electrodes, Wires and Rods for Welding of Aluminum and Aluminum-Alloys - Classification
This specification prescribes requirements for the classification of bare, wrought, and cast aluminum-alloy electrodes and rods for use with the gas metal arc, gas tungsten arc, oxyfuel gas, and plasma arc welding processes. This specification makes use of both U.S. Customary Units and the International System of Units (SI). Since these are not equivalent, each system must be used independently of the other.
Content Provider
American Welding Society [AWS]
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ER5554
Class: ER5554
AWS: A5.10
Aws 5.10 Specification Pdf
Conforms to Certification: AWS A5.10 ASME SFA A5.10
Weld Process: Tig, Electron bead, Oxyfuel gas
AWS Chemical Composition Requirements | |
Si = 0.25 max | Cr = 0.05 – 0.20 |
Fe = 0.40 max | Zn = 0.25 max |
Cu = 0.10 max | Ti = 0.05 – 0.20 |
Mn = 0.50 – 1.0 | Al = Remainder |
Mg = 2.4 – 3.0 | Be = 0.0003 max |
Other = 0.05 each – 0.15 total |
Available Sizes:
Upon Request, call for more information
Application
This material can be used to weld base material types 5454 and 5456. All inert gas processes, electron beam and oxyfuel gas welding processed can be used.
- The proper choice of aluminum filler metal mainly depends on the base metal properties to be achieved and Welding technique. Post weld cracking, corrosion resistance and behavior under elevated temperature also need to be taken into consideration.
- Cracking usually can be minimized by choosing a filler metal alloy of higher alloy content then the base metal.
Aws A5.10-80
Deposited Chemical Composition % (Typical)
Deposited chemistry is influenced by many factors so no typical analysis can be recorded.
Deposited All Weld Metal Properties %
As-Welded
Aws 5.10
Deposited all weld metal properties are influenced by many factors such as weld process used, so no typical weld metal properties can be reported.
Deposited Charpy-V-Notch Impact Properties %
Not applicable
Recommended Operation of Welding Rods
Weld parameters are dependent upon the actual weld process being utilized.