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Excalibur 308/308H-16, 308L-16

Key Features

  • Q2 Lot® – Certificate showing actual deposit chemistry and calculated ferrite number (FN) available online
  • Designed with low carbon levels to help eliminate carbide precipitation in high temperature service
  • Flux coating provides smooth arc transfer and slag is self-peeling for easy removal
  • Versatile electrode designed to weld several types of austenitic steels

Conformances

AWS A5.4/A5.4M: 2006:
308/308H-16 E308-16, E308H-16
308L-16 E308L-16
ASME SFA-A5.4: Same as AWS
ABS:
308/308H-16 E308-16, E308H-16
308L-16 E308L-16
CWB/CSA W48-06:
308/308H-16 E308-16, E308H-16
308L-16 E308L-16
MIL-E-22200/2:
308/308H-16 MIL-308-16
308L-16 MIL-308L-16

Excalibur 308/308L-15

Key Features

  • Flux coating is fast freezing for vertical down welding
  • Versatile electrode designed to weld several types of austenitic steels
  • Q2 Lot® – Certificate showing actual deposit composition and calculated ferrite number (FN) available online
  • Designed with low carbon levels to help eliminate carbide precipitation in high temperature service

Conformances

AWS A5.4/A5.4M: 2006 E308-15, E308L-15
ASME SFA-A5.4: E308-15, E308L-15
ABS: E308-15, E308L-15

Excalibur 309/309L-15, -16, -17

Key Features

  • Q2 Lot® – Certificate showing actual deposit chemistry and calculated ferrite number (FN) available online
  • Designed with low carbon levels to help eliminate carbide precipitation in high temperature service
  • Designed for joining stainless steel to mild or low alloy steel
  • 309/309L-15
    • Flux coating is fast freezing for vertical down welding and slag is self-peeling for easy removal
    • Smooth bead appearance with evenly spaced ripples and flat face
  • 09/309L-16
    • Flux coating provides smooth arc transfer and slag is self-peeling for easy removal
  • 309/309L-17
    • Flux coating provides smooth arc transfer in the flat and horizontal positions and slag is self-peeling foreasy removal

Conformances

AWS A5.4/A5.4M: 2006:
309/309L-15 E309-15, E309L-15
309/309L-16 E309-16, E309L-16
309/309L-17 E309-17, E309L-17
ABS:
309/309L-15 E309-15, E309L-15
309/309L-16 E309-16, E309L-16
309/309L-17 E309-17, E309L-17
CWB/CSA W48-06:
309/309L-16 E309-16, E309L-16
309/309L-17 E309-17, E309L-17
MIL-E-22200/2:
309/309L-16 MIL-309-16, MIL-309L-16

Excalibur 316/316L-15, -16, -17

Key Features

  • Q2 Lot® – Certificate showing actual deposit chemistry and calculated ferrite number (FN) available online
  • Designed with low carbon levels to help eliminate carbide precipitation in high temperature service
  • Molybdenum grade for increased corrosion resistance
  • 316/316L-15
    • Flux coating is fast freezing for vertical down welding and slag is self-peeling for easy removal
    • Smooth bead appearance with evenly spaced ripples and flat face
  • 316/316L-16
    • Flux coating provides smooth arc transfer and slag is self-peeling for easy removal
  • 316/316L-17
    • Flux coating provides smooth arc transfer in the flat and horizontal positions and slag is self-peeling for easy removal

Conformances

AWS A5.4/A5.4M: 2006:
316/316L-15 E316-15, E316L-15
316/316L-16 E316-16, E316L-16
316/316L-17 E316-17, E316L-17
ABS:
316/316L-15 E316-15, E316L-15
316/316L-16 E316-16, E316L-16
CWB/CSA W48-06:
316/316L-15 E316-15, E316L-15
316/316L-16 E316-16, E316L-16
316/316L-17 E316-17, E316L-17
MIL-E-22200/2:
316/316L-16 MIL-316-16, MIL-316L-16

Limarosta 312

Key Features

  • A rutile-basic high CrNi-alloyed all position electrode
  • Excellent for repair welding
  • Especially developed for steels difficult to weld, such as armour plates, austenitic Mn-steels and high C-steels
  • Excellent weldability and self releasing slag
  • Weldable on AC and DC+ polarity
  • Also available in vacuum sealed Sahara ReadyPack® (SRP)

Conformances

AWS A5.4 : E312-17
EN 1600 : E 29 9 R 12

LINCOLN ER410

Key Features

  • Designed to weld stainless steels of similar chemical composition as well as to overlay carbon steels to impart corrosion, erosion and abrasion resistance
  • This material, being an air-hardening type, calls for a pre-heat and inter-pass temperature of 400°F (200°C) or greater during welding
  • Q2 Lot® – Certificate showing actual wire composition and calculated ferrite number (FN) available online
  • Ink jet printing identification on entire length of electrode

Conformances

AWS A5.9/A5.9M: ER410
ISO 14343: 2009: 13
ASME SFA-5.9: ER410

LINCOLN ER308/308H

Key Features

  • Provides a high carbon deposit (minimum of .04% carbon) for high temperature applications
  • Q2 Lot® – Certificate showing actual wire composition and calculated ferrite number (FN) available online
  • The high carbon deposit provides creep strength and a high tensile strength at elevated temperatures
  • Ink jet printing identification on entire length of electrode

Conformances

AWS: A5.9/A5.9M: ER308, ER308H

LINCOLN ER308/308L

Key Features

  • Balanced chromium and nickel levels provide enough ferrite in the weld for high resistance to hot cracking
  • Dual classification ensures the maximum carbon content is 0.03%
  • Q2 Lot® – Certificate showing actual wire composition and calculated ferrite number (FN) available online
  • 0.03% carbon content increases resistance to intergranular corrosion
  • Ink jet printing identification on entire length of electrode

Conformances

AWS A5.9/A5.9M: ER308, ER308L
ASME SFA-A5.9: ER308, ER308L
EN ISO 14343-B: SS308L

LINCOLN ER309/309L

Key Features

  • Q2 Lot® – Certificate showing actual wire composition and calculated ferrite number (FN) available online
  • 0.03% carbon content increases resistance to intergranular corrosion
  • Ink jet printing identification on entire length of electrode

Conformances

AWS A5.9/A5.9M: ER312
ISO 14343: 2009: (29 9)
ASME SFA-5.9: ER312

LINCOLN ER312

Key Features

  • Weld deposit work-hardens, providing good wear resistance and high tensile strength
  • Applications should be limited to 800°F (420°C)
  • Q2 Lot® – Certificate showing actual wire composition and calculated ferrite number (FN) available online
  • Ink jet printing identification on entire length of electrode

Conformances

AWS A5.9/A5.9M: ER308, ER308L
ASME SFA-A5.9: ER308, ER308L
EN ISO 14343-B: SS308L

LINCOLN ER316/316L

Key Features

  • The 2-3% molybdenum improves pitting corrosion resistance of the weld deposit
  • Molybdenum grade increases corrosion resistance
  • Use for high temperature service applications
  • Q2 Lot® – Certificate showing actual wire composition and calculated ferrite number (FN) available online
  • 0.03% carbon content increases resistance to intergranular corrosion
  • Ink jet printing identification on entire length of electrode

Conformances

AWS A5.9/A5.9M: ER316, ER316L
ISO 14343: 2009: SS316L
ASME SFA-5.9: ER316, ER316L

LINCOLN ER2209

Key Features

  • The welds offer excellent resistance to stress corrosion, cracking and pitting
  • The microstructure of the weld metal consists of austenite and ferrite
  • The ferrite content of the weld metal will be lower than the ferrite content of type 2205 base metal
  • Welding of duplex stainless steels calls for controlled welding parameters to achieve specified mechanical and corrosion resistant properties
  • Q2 Lot® – Certificate showing actual wire composition and calculated ferrite number (FN) available online
  • Ink jet printing identification on entire length of electrode

Conformances

AWS A5.9/A5.9M: ER2209
ISO 14343:2009: (22 9 3 N L)

Blue Max MIG 308L N

Key Features

  • Q2 Lot® – Certificate showing actual wire composition and calculated ferrite number (FN) available online
  • Available as Batch Managed Inventory
  • “N” Designator – cobalt restriction of 0.05% max
  • Meets the low Si levels typically required in the nuclear industry
  • Meets the low cobalt levels typically required in the nuclear industry.
  • Prior to using this material for ASME Boiler and Pressure Vessel Code Section III applications, please contact the Lincoln Electric Specials Department to receive a Certified Material Test Report (CMTR) which meets all requirements of NCA-3860
  • Composition controlled to meet nuclear and power generation requirements
  • Each spool is identified with AWS classification and LOT number

Conformances

AWS A5.9/A5.9M: 2006: ER308, ER308L
ASME SFA-5.9: ER308, ER308L

Blue Max MIG 309L N

Key Features

  • Q2 Lot® – Certificate showing actual wire composition and calculated ferrite number (FN) available online
  • Available as Batch Managed Inventory
  • “N” Designator – cobalt restriction of 0.05% max
  • Meets the low Si levels typically required in the nuclear industry
  • Meets the low cobalt levels typically required in the nuclear industry.
  • Prior to using this material for ASME Boiler and Pressure Vessel Code Section III applications, please contact the Lincoln Electric Specials Department to receive a Certified Material Test Report (CMTR) which meets all requirements of NCA-3860
  • Capable of meeting drop weight testing requirements as commonly required for nuclear applications
  • Composition controlled to meet nuclear and power generation requirements
  • Each spool is identified with AWS classification and LOT number

Conformances

AWS A5.9/A5.9M: 2006: ER309, ER309L
ASME SFA-A5.9: ER309, ER309L

Blue Max MIG 316L N

Key Features

  • Q2 Lot® – Certificate showing actual wire composition and calculated ferrite number (FN) available online
  • Available as Batch Managed Inventory
  • “N” Designator – cobalt restriction of 0.05% max
  • Meets the low Si levels typically required in the nuclear industry
  • Meets the low cobalt levels typically required in the nuclear industry.
  • Prior to using this material for ASME Boiler and Pressure Vessel Code Section III applications, please contact the Lincoln Electric Specials Department to receive a Certified Material Test Report (CMTR) which meets all requirements of NCA-3860
  • Composition controlled to meet nuclear and power generation requirements
  • Each spool is identified with AWS classification and LOT number

Conformances

AWS A5.9/A5.9M: 2006: ER316, ER316L
ASME SFA-5.9: ER316, ER316L
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