During food processing, storage, and transportation, rubber sealing rings can effectively prevent food contamination and oxidation, and protect the freshness and quality of food. At the same time, rubber sealing rings can also reduce air, water, and heat loss between equipment and improve production efficiency. and energy saving and emission reduction. Other parts of manufacturing food processing equipment, such as pipes, pumps, valves, scrapers, etc. can also be made of rubber materials.
In food processing screening equipment, rubber sealing rings are used to ensure the sealing performance of the equipment. Rubber sealing rings are mainly used to prevent leakage of materials, liquids or gases, and provide stable sealing effects and maintain food safety.
Shaft seal is most commonly used in various pumping equipment. The seal between the rotating pump shaft and the fixed pump casing is called a shaft seal. Its function is to prevent high-pressure liquid from leaking from the pump along the shaft, or outside air from infiltrating along the shaft.
The radial shaft seal structure mainly consists of sealing lip, metal frame and self-tightening coil spring. The sealing lip has good elasticity. When the end of the sealing lip contacts the shaft, an oil film will be formed on the contact ends of the oil side and the air side to prevent lubricating oil from leaking and contaminants from entering, thereby achieving the sealing function of the rotating shaft.
Most of the sealing methods used in vacuum pump O-ring are rubber seals, viscose machine seals, magnetic fluid seals, and metal seals. It mainly appears in the form of O-rings. Due to its simple structure, easy disassembly, low friction resistance and no need for periodic adjustment, it is widely used in the sealing of vacuum obtaining equipment. Even vacuum pump oil mist filters also use this method.
Rubber u seal is a seal made of pure rubber or synthetic rubber, usually showing a U-shaped shape. Its main function is to prevent the leakage of liquid or gas, thereby effectively protecting the safety of equipment and pipelines.
Product name : PTFE shaft seals
Material del producto : Caucho/ Silicona/ Custon
Dureza (Shore A) : 20 a 90
Temperatura aplicable °C : -60 a 300
Certificación : IOS: 9001, ISO: 14001, IATF: 16949
TPU rubber sealing rings can also effectively prevent food contamination and oxidation during food processing, storage and transportation, and protect the freshness and quality of food. At the same time, rubber sealing rings can also reduce air, water and heat loss between equipment and improve production efficiency. and energy saving and emission reduction.
Soda Machine gaskets are rubber gaskets used to seal the interior of soda machines, ensuring reliability and safety during soda production. They connect carbonizers, cylinders, and pipelines—as well as other sections of soda fountains—and are made of silicone rubber, which is resistant to heat and chemicals. They need to be very flexible and corrosion-resistant in order to function well under extreme pressure. They have to follow ISO 9001, RoHS, NSF, FDA, and REACH certifications. The main purpose of the gaskets is to offer trustworthy sealing, stopping leaks and carbon dioxide gas loss. They work well in soda fountains because they are flexible, resistant to chemicals, and temperature-resistant. Additionally, Linde Polymer has to secure FDA and NSF certifications to ensure its food safety.
Juicer rubber rings seal may seem small and insignificant, but it plays a vital role in the juicing process. By understanding the material and importance of this component, you can choose the proper ring type for your juicer and maintain it properly for efficient and reliable juicing. A well-made rubber seal can make all the difference in the quality and quantity of your juice, so take good care of it and enjoy the benefits of healthy fresh juice every day.
Propiedades físicas | Valor | Unidad | Métodos de ensayo |
Proporción | 1.26 g/cc | 1.26 g/cc | ASTM D297 |
Comportamiento mecánico | Valor nominal (métrico) | Valor nominal (Imperial) | Métodos de ensayo |
Dureza Shore (Shore A) | 50 | 50 |
|
Resistencia a la tracción (límite elástico) | 9.00 MPa | 1310 psi |
|
Alargamiento (rotura) | 400 % | 400 % |
|
Resistencia al desgarro | 17,0 kN/m | 97,0 pli |
|
Compresión permanente | 30 % @Temperatura 70,0 °C, Tiempo 79200 seg. | 30 % @Temperatura 158 °F, Tiempo 22.0 hora |
|
Rendimiento térmico | Valor nominal (métrico) | Valor nominal (Imperial) | Métodos de ensayo |
Temperatura máxima de funcionamiento, Aire | 110 °C | 230 °F |
|
Temperatura mínima de funcionamiento, Aire | -40.0 °C | -40.0 °F |
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