SuperArc MIG wire, 33 lb. Plastic spool

Diámetros / Embalaje

Diámetros
mm
33 lb Spool
44 lb Steel Spool
60 lb Spool
500 lb Accu-Pak® Box
1000 lb Accu-Pak® Box
0.035 in (0.9 mm) ED034270 ED032366 ED032894
0.045 in (1.1 mm) ED034271 ED032367 ED032896 ED032863
0.052 in (1.3 mm) ED034272 ED032368 ED032814 ED032864
1/16 in (1.6 mm) ED034356 ED032968 ED032865

SuperArc® L-59®

Soldadura de Arco Metálico con Gas (GMAW) | ED034271

CLASIFICACIONES:
ER70S-6

SuperArc® L-59® from Lincoln Electric is a copper coated, mild steel, engineered alloy MIG wire.

Detalles

A copper coated, mild steel, engineered alloy MIG wire that leads the industry in arc performance, wire feedability and consistency, as well as extending contact tip life.

Características

  • Engineered alloy system enhances silicon island management
  • Minimal spatter
  • Copper coated for long contact tip life
  • Fast travel speeds
  • MicroGuard® Ultra provides superior feeding and arc stability

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CONFORMANCE

CONFORMANCES SPECIFICATION CLASSIFICATION
AWS AWS A5.18 ER70S-6
ABS ABS - Part 2 3YSA H5
BV BV - Chapter 5 SA3YHHH
CWB CSA W48 B-G 49A 3 C1 S6, B-G 49A 3 C1 S6 (B-G 49A 3 C G6)
DNV-GL DNV - 2.9 III Y40MS H5
DB ISO 14341-A G 42 3 C1 3Si1, G 46 4 M21 3Si1
LR LR - Chapter 11 3YS H5
MIL MIL-E-23765/1D MIL-70S-6

MECHANICAL PROPERTIES

Classification Shielding Gas Polarity Yield Strength @ 0.2% Offset
MPa (ksi)
Tensile Strength
MPa (ksi)
Elongation
%
Charpy V-Notch
J (ft-lbs) @ -30°C (-20°F)
Charpy V-Notch
J (ft-lbs) @ -40°C (-40°F)
ER70S-6 Requirement 100% CO2 DC+ 400 (58) min. 480 (70) min. 22 min. 27 (20) min.
Typical Result, As-welded 100% CO2 DC+ 430 (62) 540-580 (78-83) 24 33-89 (24-66)
Typical Result, As-welded 90% Ar, 10% CO2 DC+ 500 (72) 610 (88) 23 80-91 (59-67)

WIRE COMPOSITION

Classification %C %Cr %Mn %Mo %Ni %P %S %Si %V %Total Cu
ER70S-6 Requirement 0.06 - 0.15 0.15 max. 1.40 - 1.85 0.15 max. 0.15 max. 0.025 max. 0.035 max. 0.80 - 1.15 0.03 max. 0.50 max.
Typical Result 0.07-0.10 0.02-0.05 1.42-1.49 0.01 0.01-0.02 0.005-0.010 0.017-0.027 0.81-0.89 0.005 max. 0.12-0.23

TYPICAL OPERATING PROCEDURES

Diameter Transfer Mode Shielding Gas Polarity CTWD
mm (in.)⁽¹⁾
Wire Feed Speed
m/min (in/min)
Voltage
volts
Approx. Current
amps
Melt-off Rate
kg/hr (lb/hr)
0.035 in (0.9 mm) Short Circuit Transfer ⁽²⁾ 75% Ar / 25% CO2 DC+ 12 (1/2) 2.5 (100) 17 80 0.7 (1.6)
0.035 in (0.9 mm) Short Circuit Transfer ⁽²⁾ 75% Ar / 25% CO2 DC+ 12 (1/2) 3.8 (150) 18 120 1.1 (2.4)
0.035 in (0.9 mm) Short Circuit Transfer ⁽²⁾ 75% Ar / 25% CO2 DC+ 12 (1/2) 6.4 (250) 20 175 1.8 (4.0)
0.035 in (0.9 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 9.5 (375) 23 195 2.7 (6.0)
0.035 in (0.9 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 12.7 (500) 29 230 3.6 (8.0)
0.035 in (0.9 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 15.2 (600) 30 275 4.4 (9.6)
0.045 in (1.1 mm) Short Circuit Transfer ⁽²⁾ 75% Ar / 25% CO2 DC+ 12 (1/2) 3.2 (125) 18 145 1.5 (3.4)
0.045 in (1.1 mm) Short Circuit Transfer ⁽²⁾ 75% Ar / 25% CO2 DC+ 12 (1/2) 3.8 (150) 19 165 1.8 (4.0)
0.045 in (1.1 mm) Short Circuit Transfer ⁽²⁾ 75% Ar / 25% CO2 DC+ 12 (1/2) 5.1 (200) 20 200 2.4 (5.4)
0.045 in (1.1 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 8.9 (350) 27 285 4.2 (9.2)
0.045 in (1.1 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 12.1 (475) 30 335 5.7 (12.5)
0.045 in (1.1 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 12.7 (500) 30 340 6.0 (13.2)
0.052 in (1.3 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 7.6 (300) 30 300 4.8 (10.6)
0.052 in (1.3 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 8.1 (320) 30 320 5.2 (11.5)
0.052 in (1.3 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 12.3 (485) 32 430 7.8 (17.1)
1/16 in (1.6 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 5.3 (210) 25 325 4.8 (10.7)
1/16 in (1.6 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 6.0 (235) 27 350 5.4 (12.0)
1/16 in (1.6 mm) Spray Transfer 90% Ar / 10% CO2 DC+ 19 (3/4) 7.4 (290) 28 430 6.7 (14.8)

NOTES

Note
⁽¹⁾ CTWD (Contact Tip to Work Distance). Subtract 1/4 in. (6.4 mm) to calculate Electrical Stickout.
⁽²⁾ Procedures in these areas are procedures for short circuiting mode using 75% Argon, 25% CO2. NOTE: For 100% CO2 procedures, add 1 to 2 volts for short circuit transfer and 2 to 3 volts for globular transfer.