SuperArc MIG wire, 33 lb. Plastic spool

Diametri / imballo

Diametri
BOBINA 15 KG
1,1 mm (0,045 in) ED034271

SuperArc® L-59® MIG (GMAW) Wire

Saldatura MIG (GMAW) | ED034271

CLASSIFICAZIONI:
ER70S-6

SuperArc® L-59® di Lincoln Electric è un filo MIG ramato, in acciaio C-Mn in lega ingegnerizzata.

DETTAGLI

Filo MIG ramato, in acciaio C-Mn, in lega ingegnerizzata, leader nel settore per prestazioni dell’arco, avanzamento del filo e consistenza, oltre a prolungare la vita della punta di contatto.

Caratteristiche

  • Il sistema di leghe ingegnerizzate migliora la gestione delle isole di silicio
  • Spruzzi minimi
  • ramato per una lunga durata della punta di contatto
  • Velocità di corsa elevate
  • MicroGuard® Ultra fornisce un avanzamento superiore e stabilità dell’arco

Informazioni sui servizi

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BEFORE USE, READ AND UNDERSTAND THE SAFETY DATA SHEET (SDS) FOR THIS PRODUCT AND SPECIFIC INFORMATION PRINTED ON THE PRODUCT CONTAINER. Pagina di ricerca SDS

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.