
PTFE-clad flat immersion heater for strong acid and alkali plating baths
Resistencia de inmersión revestida de PTFE
四氟管加热器
Elemento tubular revestido de PTFE para baños de ácidos y álcalis fuertes en galvanoplastia. Químicamente casi inerte, limitado a 80 °C y baja densidad de potencia; conformado a la disposición del tanque.
- Max medium temperature
- 176 °F(80 °C)
- Power range
- 0.5 – 6 kW
- Voltage
- 220 / 380 V, 50 Hz
- Sheath material
- PTFE
- Medium
- Acid, Alkali
- Mounting
- Bracket, Free-standing
- Tube diameter
- 0.472–0.63 in
- Watt density guidance
- ≤ 1.5 W/cm² (10 W/in²) — set by the cladding, not the coil
- Lead time
- 22–35 days
- MOQ
- 5 units
- Pricing
- On application
Design notes
Química de galvanoplastia con ácidos y álcalis fuertes hasta 80 °C
PTFE cladding is the answer when a bath is aggressive enough that even titanium will not survive it — strong acids, strong alkalis, hydrofluoric acid and the harsher end of plating and stripping chemistry. The fluoropolymer is close to chemically inert, so the sheath simply does not participate in the bath.
Two limits come with that inertness. PTFE softens well below the temperature a metal sheath tolerates, which caps service at about 80 °C. And it is a poor thermal conductor, so heat has to cross an insulating layer to reach the solution — meaning a low watt density, a longer heated length for the same kilowatts, and a physically larger element than a metal equivalent.
Design the mounting around the material. PTFE is soft: it will not take clamping loads, sharp bracket edges or the weight of the element cantilevered off one end. Support it along its length on smooth plastic saddles, and keep the transition where the cladding meets the terminal end out of the solution and out of the splash zone.
Features
- Revestimiento de PTFE sobre núcleo metálico, casi inerte a ácidos y álcalis fuertes
- Apto donde el titanio falla, incluido el servicio con ácido fluorhídrico
- Diseñado a la forma del tanque, no suministrado en largos estándar
- Bloque de terminales de PTFE opcional para protección en zona de salpicadura
- Baja densidad de potencia por diseño: elemento más largo, vida más larga
Typical applications
- Baños de cromo, níquel y zinc
- Tanques de decapado y desmetalizado ácido
- Líneas de ataque con ácido fluorhídrico y mezclas ácidas
- Tanques de desengrase con sosa fuerte
- Tanques de ataque fotoquímico y de circuitos impresos
North American build options
- Voltage
- 120 / 208 / 240 / 277 / 480 / 600 V @ 60 Hz
- Threads
- NPT or BSP cut to order
- Flanges
- ANSI B16.5 150# / 300#
- Drawings
- Issued in inches on request
These are build options, not stock items — the catalog part numbers above are 50 Hz with metric fine threads. State what you need on the RFQ.
Part numbers & dimensions
6 catalog part numbers in the JGS-PTFE series
PTFE elements are always made to the tank. Send internal tank dimensions, the bath chemistry and concentration, the operating temperature and the support arrangement with your inquiry.
Minimum order quantity for this series is 5 units. Dimensions switch between millimetres and inches with the unit toggle in the header.
Full specification
- Sheath material
- PTFE cladding over metal core
- Max. medium temperature
- 80 °C
- Chemistry
- Strong acid, strong alkali, HF-bearing baths
- Watt density
- ≤ 1.5 W/cm² (10 W/in²)
- Form
- Designed to the tank layout
- Voltage
- 220 V or 380 V, 50 Hz
- Power range
- 0.5 – 6 kW per element
- Support
- Smooth plastic saddles along the length; no metal clamps
Questions engineers ask
Why is a PTFE heater so much bigger than a metal one of the same rating?
Because the cladding that makes it chemically inert also insulates it. Heat has to cross the PTFE layer to reach the solution, so the safe watt density is roughly a fifth of what a metal sheath takes. The same kilowatts therefore need several times the heated length. Plan the tank space for it — trying to fit the load into a metal-sized element is what melts the cladding.
What happens if a PTFE element runs above 80 °C?
The cladding softens and eventually loses integrity, at which point the bath reaches the metal core and attacks it — usually followed by an earth fault. Fit a solution-temperature controller with a high-limit, and never rely on the bath's thermal mass to hold the element down. In a tank that must run hotter than 80 °C, PTFE is the wrong choice and the process needs a different sheath or indirect heating.
Can PTFE elements handle hydrofluoric acid?
Yes — this is one of the cases where PTFE is the only practical sheath, since titanium has no useful resistance to HF. Tell us the acid, its concentration and the operating temperature so the cladding thickness and support arrangement are specified for it rather than assumed.
Commonly specified with
Related series
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