To enhance the strength and durability of timing belts, manufacturers often incorporate reinforcement materials such as fiberglass or aramid fibers (e.g., Kevlar). These reinforcements prevent elongation and ensure that the belt maintains its shape under tension. Fiberglass is commonly used for its high tensile strength and ease of manufacturing, while aramid fibers are known for their impressive heat resistance and toughness. Using these materials in timing belts results in better performance under high-load conditions, reducing the likelihood of belt failure.
- The performance of an oil seal is crucial in ensuring the efficiency and longevity of the equipment in which it is used. A high-quality oil seal can withstand high temperatures, pressure, and speed, while maintaining a tight seal to prevent leaks. This is especially important in industries such as automotive, aerospace, and manufacturing, where even a small leak can lead to significant damage and downtime.
There are three main different types of headlights. These car headlights types are Halogen, Xenon & LED headlights. Each work quite differently in the way they produce light and therefore produce different types of light on the road.
Properly installed, an oil seal will help keep machinery in perfect working order. Its primary functions include retaining or separating fluids, maintaining a bearing’s lubricity, preventing seal leakage, and preventing the entry of foreign contaminants. Other benefits of Emerson Bearing’s oil seals include:
The care taken during the installation process will pay off by allowing the seal to work quietly and operate efficiently behind the scenes of your application.
Common materials used in oil seals include nitrile rubber, fluorine rubber, silicone rubber, acrylic rubber, polyurethane, polytetrafluoroethylene, etc. When selecting the material of the oil seal, the compatibility of the material with the working medium, the adaptability to the working temperature range and the ability of the lip to follow the rotating shaft at high speed must be considered. When the oil seal is working, the temperature of its lip is higher than the working medium temperature by 20~50°C. Attention should be paid when selecting the oil seal material. The working range of the oil seal is related to the material used for the oil seal: the material is nitrile rubber (-40~120°C), Aggreko rubber (ACM) -30~180°C, fluorine rubber (FPM) -25~300°C.
Common materials used in oil seals include nitrile rubber, fluorine rubber, silicone rubber, acrylic rubber, polyurethane, polytetrafluoroethylene, etc. When selecting the material of the oil seal, the compatibility of the material with the working medium, the adaptability to the working temperature range and the ability of the lip to follow the rotating shaft at high speed must be considered. When the oil seal is working, the temperature of its lip is higher than the working medium temperature by 20~50°C. Attention should be paid when selecting the oil seal material. The working range of the oil seal is related to the material used for the oil seal: the material is nitrile rubber (-40~120°C), Aggreko rubber (ACM) -30~180°C, fluorine rubber (FPM) -25~300°C.
Valve stem seal


The functionality of oil seals in between machines cannot be emphasized. Apart from their primary function of preventing the entry and escape of elements that can damage the machines, they also help to elongate the machines’ lifespan.