Fire Testing Machine, Used for Building Materials, Surface Burning
Characteristics Testing Equipment
YY410 UL790 Fire Performance Tester for Building Materials





1. Scope of Application:
These requirements cover all roofing materials exposed to simulated
fires on the exterior of buildings for roofing materials installed
on combustible or non-combustible substrates. It is to assess the
fire resistance of roofs and assemblies under simulated real
conditions, evaluating specimens at A1.82m, B2.4m and C3.9m to
Class AC. In addition, it can be used to test the fire resistance
of photovoltaic cell modules.
2. Standards
UL 1730 Smoke Detector Monitors for Independent Living Units in
Multi-Family Dwellings and Hotel/Motel Rooms: Electric Signalers to
Detect Residential Smoke Conditions
UL 790 Standard Test Method for Fire Testing of Roof Coverings
IEC 61730-2 Photovoltaic Modules Appendix A Fire Tests Flame
Propagation
ASTM F 108-04 Standard Test Method for Fire Tests of Roof Coverings
NFPA 256 Fire Tests for Roof Coverings
3. Performance Parameters
- Plywood roof covering material, size: 1,300(W) × 1,000(D) × 120(H),
for the installation of test samples
- Non-combustible test plate, installed at the end of the test board,
can block the tempering below the test board
- Fan adjustment plate, the test Angle can be adjusted, the size is:
1,440(L) x 940(H) mm
- The main frame is used to support the test bracket, corrosion
resistant steel structure, size: 1,020(L) x 1,000(D) x 1,473(H) mm
- Non-combustible panel assembly, mounted at the front end of the
frame to simulate the eaves and cornice, extending the flame from
the burner to the specimen with dimensions of 330(W) x 2,130(D) x
584(H) mm
- the test panel air flow rate is: 19±8 km/h(5.5m/sec), and equipped
with anemometer monitoring
- Independent air duct, can be extracted from the outside of the
laboratory air
- The air duct is equipped with a honeycomb filter screen, and the
gas inlet is installed with a guide blade
- The adjustable turbulence sheet in the air duct, can strengthen the
wind speed, reduce turbulence, stainless steel, will not change
position with the change of wind pressure
- The air duct material is made of stainless steel, corrosion and
high temperature resistance, the size is: 2,130(W) x 762(H) x
5,200(L) mm
- The fan is 380V, 50HZ, three-phase power, equipped with reverse
system can automatically adjust the wind speed, the minimum flow is
300m3/min
- The reverse device is equipped with endless variable speed
function, which can be adjusted between 0-100%
- Gas burner (for intermittent fire, flame propagation and flying
fire test), 1.12m long, diameter 60.3mm, there is a 12.7mm wide
0.91m long slit towards the side of the test plate
- The gas burner can provide 22,000Btu/min(387kWh), and can
automatically adjust the gas flow rate according to A, B, C three
combustion grades
- Automatic ignition system, to ensure the safety of the test,
ignition electrode minimum high pressure of 1.8kVp mass flowmeter
according to different standards, control gas flow rate, Class A &
B: 21,000-22,000 Btu/min (369-387 kWh) for 10 minutes, Class C:
18,000 to 19,000 Btu/min (316-334 kWh) for 4 minutes
- Data acquisition system, using LabView programming language, data
acquisition board for the United States NI company provided
- The data acquisition system includes the following parts:
17.1 16-bit thermocouple input acquisition module to collect
temperature signal;
17.2 The 16-bit analog-to-digital conversion input module is used
to collect gas flow signal and control gas flow;
17.3 16-bit data input/output module collects fan pressure;
Industrial control computer + first-line brand 21-inch monitor.
Equipped with professional PC test software;
- Sample ignition device: a gas burner is provided, whose flame can
engulf the combustion material, and the temperature of the gas
burner can be adjusted to 880±10℃
- The metal grid can support the material, and the tray can be
rotated to facilitate the full burning of the material;
- Control system:
21.1 Temperature control: The temperature acquisition module is
used to feedback the temperature signal to the flow pid control
system, and then the flow size is adjusted by the gas mass
flowmeter to completely form a closed-loop control;
21.2 Fan wind speed control: the feedback signal of the wind speed
converter module is sent to the controller, and the wind speed is
automatically adjusted by the frequency converter;
22.1 Gas leakage and carbon monoxide alarms are installed in the
middle and top of the combustion chamber;
22.2 When the gas concentration in the test room reaches the set
safety value, stop the gas main valve and give an alarm, and open
the exhaust fan for exhaust;
22.3 When the concentration of carbon monoxide in the testing room
reaches the set safety value, alarm is given and the smoke exhaust
fan is opened for exhaust;
- Equipment power supply and power: power supply 380V 50HZ
three-phase five-wire system, power is not less than 30KW;
4. Equipment description and composition:
- The equipment, as shown in Figure A1 and A2, consists of the
following parts:
- A test platform mounted on a frame for mounting the sample under
test. The tilt of the frame is adjustable;
- a member made of non-combustible panels placed in front of the
frame for simulating eaves and cornice;
- A gas burner (for intermittent flame, flame diffusion and floating
block test), the structure of which is: a length of 1.12m, nominal
50mm (outer diameter 60.3 mm) stainless steel pipe, with a 12.7mm
wide, 910mm long slot in the direction of the test platform. The
burner is fed by a nominal 25mm (outer diameter 33.4mm) pipe from
both ends to maintain uniform pressure;
- a supply fan and a supply channel for providing the required wind
conditions. The air delivered by the blower is introduced from the
test room;
- Some adjustable fins are installed in the air supply channel to
adjust the direction of air flow and reduce turbulence;
- An isolation plate mounted on the tail edge of the test platform to
prevent flame reignition from the tail of the platform;
- Fire panels extending from the sides and bottom of the vent to the
simulated eaves and cornice (see A2) (not used in the burn block
test).
- The test should be carried out in a room that can be drained to
release the increase in air pressure caused by the injection of
air. During the test, all doors and Windows of the room should be
closed, otherwise other necessary measures should be taken to
prevent outside wind and weather from affecting the test results.
Tests should not be performed if the room temperature is below 10ºC
or above 32ºC.
- Before the test, mortar (cement, lime, water) should be used to
fill the gap between the front edge of the roof covering material
and the frame to prevent air or flame from passing through the
bottom of the sample during the test.
- In the test, the air flow should flow evenly from the top surface
of the test sample, and the air flow speed should be calibrated
with a piece of 1m× 1.3m plywood before the test. Put the plywood
on the slope, and the inclination is: every 300 ㎜ increase in the
horizontal direction and 127 ㎜ increase in the vertical height. The
three measuring points are located in the middle of the slope, 94 ㎜
above the surface of the plate, 1 in the center position, and 2 in
the 76 ㎜ from both sides. The airflow speed should be (19 ± 0.8)
km/h, and the airflow speed should be read using a direct reading
device with a scale not exceeding 6m/min or a timing reading device
with a scale not exceeding 1.5m /min (timing 1 minute).
- The inclination of the test platform during the test should be
127mm/300mm; Or use the maximum pitch recommended by the
manufacturer of building roofing materials, but not exceeding
127mm/300mm.

