G-TECH 102

SMAW
  • CARBON STEELS
STRUCTURAL STEEL

Description

Rutile type electrode for universal application of non-alloyed structural steels
Rutile medium coated welding electrode, producing a mild steel deposit. Suitable for positional welds, except vertical down. High current carrying capacity, minimum spatter formation and virtually self-cleaning slag produce a concave bead with minimal ripple as well as a smooth and clean weld profile. Suitable for the light section steel fabrication, storage tanks, shipyards, car body works, boilers construction, sheet metal works, etc.
Specifications
ISO 2560-A
E 42 0 RR 12
AWS A5.1
E6013
Shielding
-
Positions
PA, PB, PC, PD, PE, PF
Current
AC, DC+, DC-
Packaging Type
Carton box and dry pack
Asme qualifications
F-No (QW432)
2
A-No (QW442)
1
Chem. Comp. %
DEFAULT
C
0.07
Mn
0.64
P
0.02
S
0.01
Si
0.4
Mechanical Properties
min
variant
Tensile strength Rm MPa
430
520
Yield strength Rp0.2 MPa
420
450
Elongation A (L0=5d0) %
22
22
Impact Charpy ISO-V
27J
47J @ -20°C
Impact Charpy ISO-V
-
60J
Welding Parameters
2.5 mm
3.2 mm
4 mm
5 mm
Ampere
50A - 80A
80A - 120A
110A - 160A
160A - 200A
Voltage
-
-
-
-
Packaging
50 pcs/kg
31 pcs/kg
20 pcs/kg
10 pcs/kg
Packaging Type
Carton box and dry pack
Carton box and dry pack
Carton box and dry pack
Carton box and dry pack
Description

Application

Carbon-manganese (C-Mn) steels serve as the predominant structural steels extensively used across various applications in the engineering industry. Successful welding of C-Mn steel fabrications is generally achievable, provided the steel composition is known, necessary precautions are taken, and qualified procedures are adhered to. Weldability varies among C-Mn steels, with potential cracking mechanisms, including hydrogen cracking, solidification cracking, and reheat cracking, depending on specific circumstances. These consumables effectively resist such issues, emphasizing the importance of a meticulous welding procedure. While preheat and post-weld heat treatment (PWHT) may not be universally required, the actual specifications depend on the grade and thickness of the base material being welded. Attaining the required mechanical properties in a welded joint with C-Mn steels is achievable through the use of appropriate welding consumables. However, the intricate structural changes during the weld thermal cycle necessitate careful evaluation of properties such as heat-affected zone (HAZ) toughness and hardness.

Alloy Type

Consumables for welding mild and C-Mn steels of 340-510MPa tensile strength.

Microstructure

Predominantly ferrite.

Materials


EN W.Nr.: EN AW-Al 99,0 (1200), EN AW-Al 99,7 (1070A), EN AW-Al 99,5 (1050A), EN AW-Al 99,5 (1350), EN AW-Al 99,8 (1080A).

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