Flooring Radiant Panel Test Apparatus EN ISO 9239-1
The Flooring Radiant Panel Test Apparatus is used to tester a variety of flooring materials, such as: textile carpets, cork, wood, rubber and plastic flooring and floor spray materials. The results can reflect the combustion properties of the floor material (including the substrate), which is used in the test combustion chamber to ignite the floor material placed horizontally and exposed to the tilted thermal radiation field with a small flame. It can be used to evaluate the material flame Communication ability.
Application
The Flooring Radiant Panel Test Apparatus is suitable for:
Construction industry: Testing flame spread and combustion characteristics of flooring materials such as carpets, wooden floors, and rubber flooring.
Transportation: Evaluating flooring materials used in railways, aviation, and shipping for fire performance.
Fire safety: Providing data for fire safety organizations and certification authorities.
Residential and commercial interiors: Testing flooring materials used in homes, offices, and public spaces.
Material research and development: Supporting the design of new flooring materials or fire-retardant products.
Standards
ASTM E648-15 Standard test method for critical radiant flux of floor-covering systems using radiant heat energy source
BS EN ISO Reaction to fire test for flooring-Part 1: Determination of the burning behavior using a radiant heat source
GB/T 11785-2005 Determination of Combustion Performance -Floor material radiation heat source method
ISO 9239-1: Flooring fire reaction test- Part 1: Combustion performance of flooring materials tested by radiant heat
ASTM E 648: Critical Radiant Flux of Floor standard test - covering system uses radiant heat energy
ASTM E 970: Using a Radiant Heat Energy Source, test insulation floorinsulation insulation standard test for Critical Radiant Flux using a radiant heat energy.
NFPA 253: Standard Test Method for using radiant heat energy, test plates overlay system Critical Radiant Flux
Technical Parameters
| Parameter | Specification |
|---|---|
| Maximum power | 5 kW |
| Timing accuracy | <1 s/h |
| Heat flux sensor range | 0–15 kW/m² |
| Heat flux sensor accuracy | ±0.2 kW/m² |
| Heat flux sensor precision | <±3% |
| Radiant high-temperature sensor range | 400–600°C, ±0.5°C |
| Black body temperature error | ±5°C |
| Exhaust air velocity | (2.5 ± 0.2) m/s |
| Exhaust capacity | 39–85 m³/min |
| Porous refractory radiation panel size | 300 × 450 mm, withstands ~900°C |
| Thermocouple specification | Ø3.2 mm, K-type stainless steel armored |
| Burner specification | Outer Ø10 mm, inner Ø6 mm, nozzle Ø0.7 mm |
| Flame height adjustment | 60–120 mm, adjustable |
| Ignition system | High-voltage electronic ignition |
| Exhaust system | Forced ventilation, fumes discharged outdoors |
Accessories
| Accessory | Quantity | Description |
|---|---|---|
| 304 stainless steel flame height gauge | 1 | Measures flame height |
| Gas pipe clamps | 2 | Secures gas tubes |
| User manual | 1 | Instructions for operation and maintenance |
| Certificate of conformity | 1 | Confirms product quality inspection |
Features
The main components are imported, which is safe and reliable, long service life;
Gas pipeline layout is reasonable, equipped with gas leakage and tempering device. The instrument automatically closes at the inlet of gas leakage, and alarm;
Radiant plate temperature can be automatically adjusted.
Propane gas supply is equipped with imported mass flow controller. The air output is equipped with a separate blower. Automatic adjustment of the frequency without manual;
Normal test, the flame spread distance can be recorded through the foot switch, without the need to manually click the mouse to operate the computer;
Instrument with industrial one machine, is easy to operate and reliable;
The instrument adopts advanced control software developed by VB language. Centralized control acquisition and processing data analysis;
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