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Methods Of Reducing Heat Leakage Of Kiln With Ceramic Fiberboard

Dec 15, 2021

In order to prevent the heat leakage of industrial kilns, the structure of the main lining of the fiberboard and the use of the pipes need no expansion joints to reduce the thermal stress when the pipes are heated and swelled: pipe support frames are not installed as needed to prevent The pipe changes. Next, let's talk about the method of ceramic fiber board to reduce the heat leakage of the kiln.

 

1.The valve should be installed in a position that is convenient for operation and well-lit. For the valve installed at a high place, it should be equipped with maintenance channels and lifting equipment.

 

2.When closing the valve, do not apply excessive torque to the valve to cause damage to the valve. When suspending steam delivery, it is necessary to acknowledge whether the valve is closed, and to adopt methods such as determining equipment or special signs that others cannot open at will.

 ceramic fiber board sheets-

3.Guidelines for patrol inspections shall be drawn up for pipelines and adjustment gates. No exception should be made to underground and vacant places, and even pipelines in trenches. Pay special attention to the simple corroded underground pipelines and Xiaoshui pipelines. Once a leak is found, no matter how small, it should be immediately plugged up and repaired with ceramic fiberboard to avoid expansion.


4.Inspect and repair the furnace body and its orifice doors, and regularly replace the sealing material type of porcelain fiber paper to ensure its air tightness and reduce the escape of protective air or the inhalation of cold air. Minimize the mesh and area of the doors and openings of industrial furnaces, or use layers to seal the doors to reduce the number of openings, timings and fluctuations of the doors to reduce heat radiation, air leakage, and air leakage.


5.Minimize the number and dimensions of water-cooled components of industrial furnaces and kilns. When possible, properly increase the outlet temperature of the cooling water and reduce the flow rate to reduce the heat loss formed by the cooling water.

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