Beryllium Copper Welding Electrodes/Wheels/Parts

Wonder copper are capable of producing beryllium copper welding electrodes/wheels/parts according to Customer’s drawing and available samples or detailed inquiry.
Wonder copper is capable of producing the beryllium copper welding electrode, welding tips, welding discs, contact tips, shafts, beryllium copper seam welding wheels, spot welding tips, spot welding electrode, electrode caps, adaptors, holders, etc…
In arc welding an electrode is used to conduct current through a workpiece to fuse two pieces together. Depending upon the process, the electrode is either consumable, in the case of gas metal arc welding or shielded metal arc welding, or non-consumable, such as in gas tungsten arc welding. For a direct current system the weld rod or stick may be a cathode for a filling type weld or an anode for other welding processes. For an alternating current arc welder the welding electrode would not be considered an anode or cathode.

Welding Electrodes/Wheels/Parts Available products

  • C17200 beryllium copper welding electrode
  • C17500 beryllium copper welding electrode
  • C17510 beryllium copper welding electrode
  • CuCo1Ni1Be beryllium copper welding electrode
  • Other welding components

Welding Electrodes/Wheels/Parts Typical application

  • Electrodes for medical purposes, such as EEG, ECG, ECT, defibrillator
  • Electrodes for execution by the electric chair
  • Electrodes for electroplating
  • Electrodes for arc welding
  • Robotic welding machines
  • Automatic industry
  • Electrodes for chemical analysis using electrochemical methods Inert electrodes for electrolysis (made of platinum)
  • Membrane electrode assembly
  • Electrodes for electrophysiology techniques in biomedical research
  • Flat Welding dies, projection welding electrode, electrical components Robotic welding machines
  • Resistance Welding industry
  • Projection Welding industry
  • Arc Welding industry
  • MIG & MAG Welding industry
  • Plasma And laser cutting nozzles
  • Electrodes for cathodic protection
  • Electrodes for grounding

Electrodes/Wheels/Parts Case Studies

Excellent Properties Of Beryllium Copper Alloy
High Flexibility
High Hardness
High Strength
High Conductivity
High Thermal Conductivity
Good Molding Properties
Good Fatigue Performance
Excellent Corrosion Resistance
No Spark Impact

Chemical Composition

Executive standard:ASTM/GB/T5233-2001/EN12163(%max., unless shown as range or min.)
Numbering
Be
Co+Ni
Cu
Fe
Pb
Si
Al
C17200
1.8-2.0
Co+Ni≥0.2
Margin
0.15
-
0.15
0.15
C17300
1.8-2.0
Co+Ni≥0.2
Margin
0.15
0.2-0.6
0.15
0.15
C17500
0.4-0.7
Co 2.4-2.7
Margin
0.15
-
0.15
0.15
C17510
0.2-0.6
Co≤0.3,Ni 1.4-2.2
Margin
0.15
-
0.15
0.15
QBe2.0
1.8-2.1
Ni 0.2-0.5
Margin
0.15
0.005
0.15
0.15
BeCo1Ni1
0.4-0.7
Co 0.8-1.3,Ni 0.8-1.3
Margin
0.02
-
0.02
0.04
Mechanical properties and conductivity analysis
(AT/TF00)
Numbering
Tensile Strength /MPa
Yield Strength /MPa
Elongation %
Hardness
Conductivity %IACS
C17200
1160-1380
980-1240
3—15
36-42HRC
22-28
C17300
1160-1380
980-1240
3—15
36-42HRC
22-28
C17500
700-920
560-710
10—25
92-100HRB
45-60
C17510
700-920
560-710
10—25
92-100HRB
45-60
QBe2.0
1160-1380
980-1240
3—15
36-42HRC
18-20
BeCo1Ni1
700-920
560-710
10—25
92-100HRB
45-60
Available status
Brush Name
ASTM Name
Description
A
TB00
Solution annealing state (quenched state)
¼H
TD01
Quarter hard
½H
TD02
Half hard (semi-hard)
¾H
TD03
Three-quarters hard
H
TD04
Hard state (full hard)
AT
TF00
Standard aging heat treatment in quenched state
¼HT
TH01
Quarter hard standard aging heat treatment
½HT
TH02
Half-hard standard aging heat treatment
¾HT
TH03
Three-quarters hard standard aging heat treatment
HT
TH04
Hard standard aging heat treatment (a process of comprehensive strengthening of deformation and aging)
Note: In the Brush name:
  • "A" represents the state of solution annealing (annealed, the alloy is in the softest state, easy to be stamped and formed, and needs to be cold worked or strengthened during the direct failure period);
  • "H" stands for cold processing state (hard);
  • "T" means that the material has been aging hardened by standard heat treatment (heat treatment means the state of aging strengthening heat treatment).
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