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Fire resistant combustion testing machine

Fire resistant combustion testing machine

136065.0 INR/Unit

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Fire resistant combustion testing machine Price And Quantity

  • 1 Unit
  • 136065.0 INR/Unit

Fire resistant combustion testing machine Trade Information

  • Cash in Advance (CID)
  • 100 Unit Per Month
  • 7 Days
  • All India

Product Description

STANDARD FEATURES


Burning Chamber Capacity

0.75m with glass observation door

Burning Angle

20 , 45 , 90  (ie 0 ) adjustable

Flame Time

0 ~ 99 minutes 99 seconds can be set

After Flame Time

0 ~ 99 minutes 99 seconds can be set

After Glow Time

0 ~ 99 minutes 99 seconds can be set

 

Burner Dimensions

The inner diameter of the nozzle is 9.50.3mmthe effective length of the

nozzle is 10010mm, and there is an air adjustment hole

Combustion Gas

LPG gas (Customize)

Flame Height

Adjustable from 20mm to 175mm as standard

 

 

Features

It is also equipped with lighting device, air extraction device, gas flow regulating

valve, gas pressure gauge, gas pressure regulating valve, gas flow meter, gas

U-shaped pressure gauge and sample fixture

Power

AC 220v 50HZ

Fire resistant combustion testing machine Main Uses
1.Fire resistance test: Evaluate the fire resistance of materials, components or systems under the action of high-temperature flame, including fire resistance time, integrity, heat insulation and so on.
2.Quality control: In the production process, it is used for the quality control of raw materials and finished products to ensure that the products meet the fire resistance standards.
3.Certification testing: for product certification testing to ensure that the products comply with international and national standards, such as ISO, EN, GB, ASTM, etc.
4.R&D and Improvement: In the R&D stage, it is used to evaluate the fire resistance performance of new materials and products, and to guide product design and improvement.

Fire resistant combustion testing machine Design Elements
a. Combustion chamber design
- Size and Construction:
According to the test standards and requirements, design the appropriate size and structure of the combustion chamber to ensure that it can accommodate the test specimen and provide sufficient space for flame action.
- High Temperature Resistant Materials:
Use high temperature and corrosion resistant materials (e.g. stainless steel, refractory bricks, etc.) to construct the combustion chamber to ensure that it can withstand the long term action of high temperature flames.
- Sealing:
Ensure the sealing of the combustion chamber to prevent flame and smoke leakage, which may affect the test results and safety.
b. Sample Fixture Design
- Variety of fixtures:
According to different types of test samples, design diversified sample fixtures to ensure that the samples are firmly fixed during the test to avoid affecting the test results.
- Adjustability:
Sample fixtures should be adjustable to accommodate samples of different sizes and shapes.
- High Temperature Resistant Materials:
The sample fixture should be made of high temperature resistant material to ensure its stability and durability under the action of high temperature flame.
c. Gas supply system design
- Gas type:
According to the testing requirements, select the appropriate type of gas (e.g. propane, butane, natural gas, etc.) and ensure the purity and stability of the gas.
- Pressure stabilizing device:
Equip with gas pressure stabilizer to ensure the stability and consistency of gas supply pressure.
- Safety measures:
Equipped with gas leakage detection device and emergency cut-off device to prevent gas leakage from causing safety accidents.
d. Design of Ventilation and Smoke Exhaust System
- Ventilation system:
Equipped with forced ventilation system to replenish fresh air in time to ensure oxygen supply in the combustion chamber.
- Smoke exhaust system:
Equipped with efficient smoke exhaust system, timely discharge of smoke and toxic gases generated in the combustion process, to ensure the air quality of the test environment.
- Filtering device:
Filtering device is installed in the smoke exhaust system to remove harmful substances in the smoke and protect the environment.
e. Thermal insulation and heat preservation design
- Thermal insulation materials:
Use efficient thermal insulation materials (e.g. ceramic fiber, rock wool, etc.) around the combustion chamber to reduce heat loss and improve energy efficiency.
- Thermal insulation:
Provide insulation layer on the outside of the equipment to prevent the surface temperature of the equipment from being too high and to protect the safety of the operators.
f. Electrical control system design
- Electrical component selection:
Select high-quality electrical components to ensure that they can work properly in harsh environments such as high temperature, high humidity and vibration.
- Wiring and grounding:
Reasonable wiring, ensure the insulation and safety of electrical lines, and set up reliable grounding system to prevent electrical accidents.
- Lightning and anti-static measures:
Take lightning and anti-static measures to protect the equipment from lightning strikes and static interference.
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