N-102

Specification
AWS Specification: AWS A5.1 E6013
JIS Specification: D4313
Other Specification: DIN E4342R(C)3
Description
  • N-102 is an iron powder lime-titania type electrode that provides highly efficient welding by high deposition rate and good re-striking property
TYPICAL CHEMICAL COMPOSITION OF ALL WELD METAL DEPOSITS (%):

C

Si

Mn

P

S

0.08

 

 

 

 

 

0.15

0.47

0.014

0.008

 

TYPICAL MECHANICAL PROPERTIES OF ALL WELD METAL DEPOSITS:
Yield Point
N/mm2 (KSI)
 
Tensile Strength
N/mm2 (KSI)
 
Elongation
%
 
Impact Value
°C, J (°F, Ft-Lbs)
 

430  (62)

470 (68)

31

0°, 120  (32°, 89)

 

SIZE AND RECOMMENDED CURRENT RANGE: AC, DC (+)

DIAMETER (mm)

2.6

3.2

4.0

5.0

LENGTH (mm)

350

350

350

350

Current Amp

Flat

50 - 100

90 - 130

140 - 180

190 - 250

Vertical Overhead

50 - 90

80 - 130

110 - 170

140 - 210


Welding Positions: ALL POSITIONS
Approvals: N/A

NOTE:

The information contained or otherwise referenced herein is presented only as “typical” without guarantee or warranty, and Industrial Welding Corporation expressly disclaims any liability incurred from any reliance thereon. Typical data and test results for mechanical properties, deposit, or electrode composition and other properties were obtained from a weld produced and tested according to prescribed standards and should not be assumed to be the expected results in a particular application or weldment. Actual results will vary depending on many factors, including, but not limited to, weld procedure, plate chemistry and temperature, weldment design, and fabrication methods. Users are cautioned to confirm by qualification testing, or other appropriate means, the suitability of any welding consumable and procedure before use in the intended application.

  • Ship hulls
  • Vehicles
  • Machinery
  • Buildings
  • Pay attention not to exceed the range of proper currents
  • Welding in excessive current increases spatter, undercut, and insufficient covering
  • Dry the electrodes at 70-100C for 30-60 minutes before use
  • Excessive moisture absorption lowers usability and may result in some porosity

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