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In industries like automotive, aerospace, and manufacturing, where precision and reliability are crucial, the quality of oil seals cannot be overstated. In automotive engines, for example, oil seals ensure that engine oil stays within the system, lubricating moving parts and preventing costly damage. In the aerospace industry, they are vital for maintaining the integrity of hydraulic systems, ensuring safe flight operations In the aerospace industry, they are vital for maintaining the integrity of hydraulic systems, ensuring safe flight operations
In the aerospace industry, they are vital for maintaining the integrity of hydraulic systems, ensuring safe flight operations In the aerospace industry, they are vital for maintaining the integrity of hydraulic systems, ensuring safe flight operations
industrial oil seals.


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Made from high-quality materials, these seals often incorporate a rubber compound, such as Nitrile Butadiene Rubber (NBR), which offers excellent resistance to oil and heat. The '5mm' thickness provides the necessary rigidity to withstand pressure while maintaining flexibility for effective sealing action The '5mm' thickness provides the necessary rigidity to withstand pressure while maintaining flexibility for effective sealing action
The '5mm' thickness provides the necessary rigidity to withstand pressure while maintaining flexibility for effective sealing action The '5mm' thickness provides the necessary rigidity to withstand pressure while maintaining flexibility for effective sealing action
14x22x5 oil seal.


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Latest articles
The selection of the right oil seal for a motor depends on factors such as operating conditions, temperature, pressure, and speed. For instance, in high-temperature environments, oil seals made of heat-resistant materials like silicone rubber or fluoroelastomers are preferred For instance, in high-temperature environments, oil seals made of heat-resistant materials like silicone rubber or fluoroelastomers are preferred
For instance, in high-temperature environments, oil seals made of heat-resistant materials like silicone rubber or fluoroelastomers are preferred For instance, in high-temperature environments, oil seals made of heat-resistant materials like silicone rubber or fluoroelastomers are preferred
oil seal for motor. Similarly, in applications involving harsh chemicals, oil seals with chemical resistance, like those made from Teflon, may be more suitable.


The degree of substitution (DS) refers to the average number of hydroxyethyl groups substituting the hydroxyl groups in the cellulose. It is a crucial factor that determines the properties of HEC, such as its solubility, thickening power, and rheology. Manufacturers carefully control the conditions of the etherification process to achieve the desired DS, which can range from 0.1 to 2.5. Precise control during this stage ensures consistent performance of the HEC in various applications.
hydroxyethyl cellulose manufacturing process
