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IR thermal camera makes it difficult to measure the temperature of objects in winter due to the small temperature difference between most objects and the environment. This makes it easy for the environment to affect temperature measurement. With the added difficulty of the sun's direct radiation, it is best to conduct measurements at night during winter. If measurements must be taken during the day, it is important to avoid the sun's direct radiation.


IR thermal camera can be used to detect electrical equipment faults, reduce energy consumption, and lower energy losses in the power industry


By detecting the thermal defects in electrical equipment and circuits, potential failure points can be discovered and eliminated, achieving energy conservation and emission reduction goals.


IR thermal camera can be used in boiler and pipe insulation


Since the thermal pipes are directly exposed to the air, their walls and insulation layers can become thinner due to external forces, erosion by rain, etc. The damaged parts will have a surface temperature that is higher than normal due to heat loss, and the IR thermal camera can locate the faults based on the temperature difference.


The integrity of the inner lining of high-temperature equipment (such as boilers) affects not only its normal operation, but may also cause catastrophic accidents. Damage to the inner lining can cause the wall temperature of the equipment to rise, possibly exceeding safe operating ranges and causing equipment damage.  A cost-effective way to achieve this is by using an affordable thermal imager. Using an online thermal imager to test the temperature of the entire outer wall of the equipment can effectively detect all types of inner lining faults such as thinning, cracks, bulges, delamination, etc. This way, accidents can be averted and equipment can work efficiently.


IR thermal camera can improve the transmission efficiency of power equipment


Operating and maintenance personnel can use the IR thermography camera to detect the operating status of transmission systems, motor bearings, pumps, pump bearings, conveyor belts, etc. by detecting early signs of overheating and taking targeted cooling measures to reduce friction, energy loss, and increase transmission efficiency, and prolong equipment life, thereby achieving energy conservation and emission reduction goals.


Currently, IR thermal cameras have a wide range of applications. With the continuous improvement and maturation of infrared thermal imaging technology, and the emergence of various low-cost IR thermal cameras suitable for civilian use, its role in various sectors of the national economy will become increasingly important.

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