Production introduction
Crafted from robust carbon steel, the Fire Foam Chamber ensures durability in harsh industrial settings. It operates within a 0.3–0.6MPa pressure range, compatible with standard fire - fighting systems. Adhering to BS4504/GB flange standards, it integrates seamlessly into tank - protection infrastructures, enabling efficient foam distribution.
A defining feature of the Fire Foam Chamber is its low - expansion foam generation, with an expansion ratio of ≥5 times. This produces a dense foam blanket that smothers flames and cools tank surfaces, disrupting the fire triangle. The 25% liquid drain time of ≥120s ensures sustained foam coverage, critical for extinguishing persistent fires.
Available in models like PCL4 (240 LPM flow rate) to PCL24 (1440 LPM), the Fire Foam Chamber caters to diverse tank sizes. Inlet and outlet dimensions range from 2"/2.5" to 5"/6", allowing precise 适配 to tank - specific needs. Whether protecting small storage units or large industrial vessels, it delivers tailored fire - suppression performance.
Products Parameters
|
Model Number |
Type |
Flow Rate |
Inlet Size |
Outlet Size |
|
PCL4 |
Low Expansion,vertical |
240LPM |
50mm(2'') |
80mm (3'') |
|
PCL8 |
Low Expansion,vertical |
480LPM |
65mm(2.5'') |
100mm(4'') |
|
PCL16 |
Low Expansion,vertical |
960LPM |
80mm (3'') |
150mm(6'') |
|
PCL24 |
Low Expansion,vertical |
1440LPM |
100mm (4'') |
200mm (8'') |
Products Features
| Body Material |
Carbon Steel; |
| Working Pressure Range |
0.3-0.6MPa; |
| Expansion | Low expansion,≥5 Times; |
| 25% Liquid Drain Time | ≥ 120 s; |
|
Flange Standard of Proportioner |
ANSI / BS4504 / GB; |
| Surface Finishing | Painting |
Products Description




Products Detailed

FAQ
Q: How to verify Fire Foam Chamber compatibility with foam concentrates?
A: Check the concentrate's expansion ratio and chemical composition against the chamber's specs. Most low - expansion concentrates are compatible, but test a small batch to ensure optimal foam generation.
Q: Can Fire Foam Chamber operate in high - humidity environments?
A: Yes, but regular maintenance is key. High humidity may accelerate corrosion (even with carbon steel). After use, dry the chamber and apply protective coatings periodically.
Q: What's the impact of incorrect installation on Fire Foam Chamber performance?
A: Improper installation (e.g., misaligned flanges, incorrect piping) can reduce foam flow and expansion. Follow manufacturer guidelines and use certified installers to ensure optimal performance.
Q: How to test Fire Foam Chamber functionality without triggering a full system activation?
A: Conduct a "dry run" by isolating the chamber and testing pressure valves. Use a small - scale foam - flow test (with water) to verify spray patterns and drain times.
Q: Can Fire Foam Chamber be integrated with automated fire - detection systems?
A: Yes, via solenoid valves or control panels. Link to smoke/heat detectors to trigger automatic foam deployment, ensuring rapid response to emerging fires.
