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2. Design Specifications The unique design aspects, such as the sealing lip geometry and the hardness of the rubber, are optimized to balance flexibility and resilience. This design ensures proper contact with the shaft, reducing the risk of oil leakage and improving the overall efficiency of the machinery.
25 35 7 oil seal

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.


Seal design also varies, with common designs being single-acting, double-acting, and U-cup seals
hydraulic ram oil seals. The choice depends on the specific application requirements, such as pressure, speed, and duty cycle. Additionally, some advanced designs incorporate anti-extrusion rings to prevent seal deformation under high pressure.
