Introduction
Titanium electric heating tubes are suitable for processes such as chrome plating, acid copper plating, nickel plating, passivation, filling, oxidation tanks, chromic acid anodizing, phosphating, and acidic tin plating.
Detailed Explanation
Electric heating tubes use a metal tube as the outer shell (including stainless steel and copper tubes), with spiral electric heating alloy wires (nickel-chromium, iron-chromium-aluminum) evenly distributed along the central axis inside the tube. The gaps are filled and compacted with magnesium oxide sand, which has good insulation and thermal conductivity. The tube ends are sealed with silicone gel. This metal-sheathed electric heating element can heat air, metal molds, and various liquids. Titanium electric heating tubes use titanium tubes as the outer shell and are suitable for processes such as chrome plating, acid copper plating, nickel plating, and oxidation tanks.
Model | Applicable Environment and Process | Tube Outer Material | Tube Unit Surface Load | Max Operating Temperature ℃ | Service Life |
Fluoroplastic Electric Heater | Suitable for strong acid, strong alkali and other corrosive liquids, process temperature ≤105℃, non-adhesive, non-scaling, uniform surface heat dissipation | PEA/PTFE Jacket/PTFE Jacket | Stainless Steel, Titanium, Iron, Copper 1.5W/CM2 | 105 | 5000h |
Titanium Electric Heater | Suitable for processes such as chrome plating, acid copper plating, nickel plating, passivation, filling, oxidation tanks, chromic acid anodizing, phosphating, and acidic tin plating | Titanium Ti | 6-4.5W/CM2 | 140 | 5000h |
Stainless Steel (316L) Electric Heater | Suitable for liquids with pH>7-14, oil, and other liquids | Stainless Steel 316L | 6-4.5W/CM2 | 140 | 5000h |


