Also known as circulating fluidized bed boiler, cfb boiler is one of the more widely used boilers in thermal power plants. Its main advantages are environmental protection, energy saving and high efficiency, so cfb boilers are widely used in China and have been vigorously developed. But cfb boilers also have a major power plant headache, cfb boilers often have water-cooled wall wear. Once the wear and tear problem occurs, there will be a burst tube leakage accident, which is many times more difficult to deal with the traditional pulverized coal furnace.
Power plant boilers once the water-cooled wall leakage burst, resulting in huge losses can not be overstated! If there is a technology to completely solve the cfb boiler water-cooled wall wear problem, it will save huge losses for thermal power plants and make a huge contribution to the thermal power industry! With the development of cfb boilers in China, the water-cooled wall wear leads to burst tube events regularly, many organizations have launched a variety of water-cooled wall anti-wear technology. For example: metal spraying, anti-wear beam, grille anti-wear and other anti-wear technology. So cfb boiler water-cooled wall anti-wear technology which one is better!
We compare from several dimensions, respectively, anti-wear effect, anti-wear cost, anti-wear cycle, etc. to do a comparison. The most thorough anti-wear effect is the grille anti-wear technology, grille anti-wear technology is currently the only technology that can completely cure the cfb boiler water-cooled wall wear problem. The anti-wear cycle is currently the longest of all anti-wear technologies on the market, a construction, lifelong use. Because of its long anti-wear cycle, power plants do not need to spend financial and human resources to solve the wear problem every year, all relatively speaking, the anti-wear cost of grille anti-wear is also relatively low.
Comprehensive comparison grille anti-wear technology is a cost-effective, thorough anti-wear technology, is the preferred cfb boiler water-cooled wall anti-wear technology for major thermal power plants.
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