ASTM E648 Flooring radiant panel for Fire Testing
Application
To measure the critical radiant flux of flame stop spreading horizontally, and smoke density of flooring material during test.
Product Features
1. Blower for gas supply of radiant plate can supply gas continuously, while air compressor supply gas uncontinuously.
2. Heat Flux meter, portable water cooling system without running water supply.
3. Ventilation hood of stainless steel on the top of the chamber.
4. Inner chamber of Heat and corrosion resistant Aluminum silicate plate.
5. Heat resistant honeycomb ceramic thermal radiant plate 300mmX450mm, inclined at 30 degree.
6. T-shape porous burner with auto ignition system ignites the specimen with automatic push system.
7. Gas control board. Needle valve control the height of burner flame, MFC controls the gas flux and digital display.
8. Inverter control blower output, ventruri control the proportion of air and gas, and flame is stable, and accurate.
9. Porous calibration apparatus: adjust radiant plate output by turning upward, left or right.
10. IR radiometer shows the temperature of the radiant plate.
11. Optional smoke density testing system.
12. Optical system 2900 ± 100 K light advanced optical signal receiver.
13. Integrated design with 19" PC of Lab view software.
14. Chimney with1pc thermocouple, and 1pc thermocouple inner Chamber controlled by software.
Standards
ISO 9239-1 reaction to fire test of flooring material, Part 1, measure the combustion performance of flooring material with radiant heat.
ISO 9239-2 reaction to fire test of flooring material, Part 2, measure the horizontal spread of flame, exposed to 25kw/m2 heat flux.
ASTM E 648 Standard test method for flooring covering system CHF with heat radiant energy source.
ASTM E 970 Standard test method for flooring material CHF of exposed attic floor insulation using heat radiant energy source.
NFPA 253 Standard test method for CHF of floor covering system with heat radiant energy source.
DIN 4102
Technical parameters
Dimension testing chamber |
2220(W)×1500(D)×2650(H)mm |
Control chamber |
600(W)×600(D)×1600(H)mm |
Gas control chamber |
600(W)×600(D)×1000(H)mm |
Power Supply |
AC 220V, 50/60Hz, 25A |
Weight |
220kg |
Air supply option propane |
95% |
Test Report
Report |
Testing agency |
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Standard |
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Operator |
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Test date |
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Ambient temperature |
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Environment humidity |
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Equipment deadline |
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Product name |
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Sample serial number |
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Model specification |
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Sample size |
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Device Code |
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Material density (g/㎡) |
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Test time(s) |
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Debug balance |
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Test Results: |
Distance (mm) |
Flame front end time(s) |
Distance(mm) |
Flame front end time(s) |
60 |
|
560 |
|
110 |
|
610 |
|
160 |
|
660 |
|
210 |
|
710 |
|
260 |
|
760 |
|
310 |
|
810 |
|
360 |
|
860 |
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410 |
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910 |
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460 |
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960 |
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510 |
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1100 |
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The front end of the flame reaches the longest distance (cm) |
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Critical radiant flux(kW/m2) |
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Total smoke value(%.min) |
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Maximum absorption rate(%) |
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10min flame front end reach distance(mm) |
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10min critical radiant heat value(kW/m2) |
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20min flame front end reach distance(mm) |
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20min critical radiant heat value(kW/m2) |
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30min flame front end reach distance(mm) |
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30min critical radiant heat value(kW/m2) |
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Ignition time(s) |
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Flame extinction time(s) |
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The phenomenon observed during the test: |
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