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Home > News Center Co., Ltd. > Thermal Oil Applications and Characteristics
News Center Co., Ltd.
Thermal Oil Applications and Characteristics
Publish Time:2024-01-20        View Count:119        Return to List


An organic heat carrier boiler is a new type of thermal energy equipment that uses thermal oil as the circulating medium for heating, and is now widely used in industries such as textiles, dyeing and printing, and building materials. Thermal oil can be divided into synthetic oil and mineral oil, and under nearly atmospheric pressure conditions, it can achieve very high operating temperatures. This can significantly reduce the operating pressure and safety requirements of high-temperature heating systems, thereby enhancing the reliability of the system and equipment. Can different types of thermal oil be mixed?

Some businesses replace or add a portion of thermal oil to their boilers after one or two years of operation, but the newly added oil differs significantly in brand and performance from the original thermal oil, which greatly shortens the lifespan of the thermal oil. Thermal oil cannot be mixed; if not replaced in a timely manner, during operation, the carbon deposits in the oil will settle at the bottom of the boiler drum, leading to overheating and bulging, and may also accumulate on the tube walls, causing overheating and tube bursts, posing serious safety hazards.

The performance of thermal oil in terms of its thermal conductivity is evident: the higher the purity and the narrower the boiling range, the better its thermal stability. Therefore, the mixing of thermal oils should adhere to scientific methods. Generally, oils of different properties should not be mixed, and even among similar oils, mixing should be determined through testing and based on the analysis of test data. Thus, Bag Lubricants reminds all enterprises that the current market price of thermal oil is quite high, and to avoid unnecessary economic losses, thermal oil should not be mixed.



Performance Features


Extend Hydraulic Oil Life to Save Maintenance Costs

M Hydraulic Oil prevents equipment failure due to high temperatures and chemical reactions, thereby aiding in extending maintenance intervals. It significantly reduces the formation of sludge. This product's performance in the Industrial Standard 943 TOST Test (Turbine Oil Oxidation Stability Test) demonstrates enhanced stability and system cleanliness.

Moreover, under humid conditions, hydraulic oil exhibits excellent stability, which can extend the service life of hydraulic oil and reduce the risks of corrosion and rust.

2. Abrasion Resistance Performance

Hydraulic oil incorporates high-quality anti-wear additives, ensuring efficiency under various operating conditions, including low and extreme high load conditions. In various tests of piston and vane pumps, including the stringent Denison T6C test (both dry and wet environments) and the rigorous Vickers 35VQ25 test, M hydraulic oil demonstrated exceptional performance, validating that the product can help extend the service life of system components.

3. Maintain System Efficiency

Excellent cleanliness, filtration, and superior drainage, air release, and anti-foaming properties all contribute to maintaining or enhancing the efficiency of hydraulic systems.

The additives used, combined with excellent cleanliness (the outgoing products meet and exceed the ISO 4406 21/19/16 classification requirements, and have been approved by the DIN 51524 standard), help reduce the impact of pollutants on filter clogging. This not only extends the lifespan of the filter cores but also allows for the use of more precise filters, enhancing equipment protection.


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