1. The tubular anode can be
used alone or as an anode string;
2. Prefabricated deep well
anode;
3. Can be used in all
natural environments, such as: soil, fresh water, sea water, soil, etc.;
4. Current output depends on anode size, substrate, use, and design life.
1. If the specific surface area is large, the current output is large, and the anode grounding resistance is small;
2. The tubular anode can save 15-35% installation cost compared with other anodes;
3. The unique flexibility of the tubular anode facilitates handling, transportation and installation.
Model |
OD(mm) |
Length(mm) |
Thick.(mm) |
Weight |
Surface area (m2) |
Output current |
CF-T-G1 |
19 |
1200 |
1.0 |
0.305 |
0.072 |
7.2 |
CF-T-G2 |
25 |
500 |
1.5 |
0.249 |
0.039 |
4 |
CF-T-G3 |
25 |
1000 |
1.5 |
0.498 |
0.079 |
8 |
CF-T-G4 |
25 |
1200 |
1.5 |
0.598 |
0.094 |
10 |
CF-T-G5 |
25 |
1500 |
1.5 |
0.747 |
0.118 |
12 |
CF-T-G6 |
31 |
1200 |
2.0 |
1.02 |
0.121 |
12 |
Coating |
Mixed metal oxide(MMO) |
|
Ingredient |
ASTM B338 grade 1 |
|
Maximum current intensity at the anode interface |
FHWA limit value |
110 mA/m2 |
Short-term limit value |
220 mA/m2 |
|
Thermal expansion coefficient |
8.7 ×10-5/k |
|
Thermal conductivity(20℃) |
15.6 W/(m·K) |
|
Resistivity |
0.000056 ohm/cm |
|
Tensile strength |
280MPa |
|
Residual elongation stress |
≥170Mpa |
|
Tensile rate |
Min 18% |