
MIG
Solid Wire Electrode BA-MIG 316H for MIG/MAG Welding
Classification:
EN ISO 14343-A: G 19 12 3 H
SFA 5.9 / AWS A5.9: ER316H
Main Application
BA-MIG 316H is a solid wire electrode for GMAW, suitable to weld austenitic stainless steels that will operate at high temperatures 500-800°C, under long term creep conditions. BA-MIG 316H is also suitable for welding 321/321H and 347/347H grades for high temperature service. Recommended for welding steam piping, super heater headers for petro-chemical industry and power plants.
Typical analysis and chemical composition acc. to AWS A5.9
Wire electrode | C | Si | Mn | Mo | Ni | Cr | P | S | Cu total |
---|---|---|---|---|---|---|---|---|---|
Typical analysis BA-MIG 316H | 0.05 | 0.45 | 1.7 | 2.7 | 12.3 | 19.0 | 0.02 | 0.013 | 0.15 |
G 19 12 3 H acc. to ISO 14343-A | 0.04 - 0.08 | 1.0 | 1.0 - 2.5 | 2.0 - 3.0 | 11.0 - 14.0 | 18.0 - 20.0 | 0.03 | 0.02 | 0.3 |
ER316H acc. to AWS A5.9 | 0.04 - 0.08 | 0.30 - 0.65 | 1.0 - 2.5 | 2.0 - 3.0 | 11.0 - 14.0 | 18.0 - 20.0 | 0.03 | 0.03 | 0.75 |
All - Weld Metal Mechanical Properties / Welding Data:
Heat Treatment |
As Welded |
|
Yield Strength Re, N/mm² (ksi) |
380 (55) |
|
Tensile Strength Rm, N/mm² (ksi) |
570 (83) |
|
Elongation A5 [%] |
>30 |
|
Impact Energy ISO-V, J (ft lbs) |
+20°C: 70 (52) |
|
Current/polarity |
DC + |
|
Shielding Gas |
ISO 14175: M13 |
Base Materials
316/316H, CF10M, BS 316S51, 316S52, 316S53, 316C16, 316C71, UNS S31609
Suitable fluxes: BF 38, WP 380
Flux type suitability is strongly dependent on its application. In combination with the wire electrode the most suitable flux should match the requirements of the plate material as closely as possible under the existing welding conditions. Further information can be obtained from the technical flux data sheets.
Package Forms
Spools BS300/15 kg, D200/5 kg, and drums as standard package forms for GMAW wire electrodes.
Diameter
0,8 - 1,6 mm; sizes and tolerances acc. to ISO 544 and AWS A5.9.
Wire Electrode Surface
Smooth finish free from surface defects and foreign matter.