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| O-Ring Material Selection Guide

Author: Morgan

Jun. 24, 2024

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| O-Ring Material Selection Guide

At Fournier Rubber & Supply, we have hundreds of O-rings available in different sizes and materials for virtually any commercial, consumer, and industrial application. Choosing the right O-ring guarantees better performance, so we&#;ve compiled this guide to different types and materials to help you select the best type of O-ring for your needs.

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Rubber O-Ring Types

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Rubber materials are cost-effective and hold their shape well, making them ideal for use in sealing applications. Some of the most popular rubber material options we have in our O-ring inventory include:

  • Silicone O-rings. Silicone resists fatigue, flex damage, and damage from high temperatures. It can also withstand ozone and UV radiation for outdoor applications. These O-rings provide insulation, flexibility, and reliable sealing capabilities in static use cases.
  • EPDM O-rings. Ethylene propylene diene monomer (EPDM) rubber is a cost-effective synthetic material that resists damage from mild chemicals, acids, and steam. These O-rings are commonly used in water systems, automobiles, and manufacturing and production systems for food, dairy, and pharmaceutical products.
  • Neoprene O-rings (chloroprene). Neoprene is an excellent material for outdoor O-ring applications where the component will face exposure to the elements. Neoprene O-rings resist damage from weather, water, oxidation, and UV radiation. They also withstand exposure to coolants and ammonia, making them a popular choice for refrigerator assemblies.
  • Viton O-rings (fluorocarbon elastomer). Viton is a relatively hard rubber that retains its characteristics in temperatures from -20°F to 400°F. It features excellent resistances to chemicals, fire, weather, and oils. It also resists physical damage, providing long-term performance in rough conditions.
  • Nitrile (NBR) O-rings. Nitriles&#;especially high-concentration nitriles&#;resist oils and fuels, so they won&#;t break down in the presence of these and other petroleum products. This makes them an excellent choice for use in fuel systems and machinery. The material also complies with many military material standards. Of note, nitrile O-rings can become inflexible at low temperatures.
  • Clear O-rings. These thin, flat O-rings are transparent, making them an ideal choice for highly visible applications or sensitive assemblies that need high standards of cleanliness. Clear O-rings are chemically inert, non-toxic, and odorless, so they won&#;t interfere with the production of consumable goods. Most clear O-rings are made from silicone compounds.
  • Teflon O-rings. Polytetrafluoroethylene (PTFE)&#;commonly known by the brand name Teflon&#;is a synthetic alternative to elastomers that resists corrosion, works well in electrical environments, and retains its positive characteristics across a wide temperature range. PTFE O-rings also have an extremely long lifespan.
  • Teflon-encapsulated O-rings. Teflon encapsulation gives these O-rings an excellent level of chemical resistance. Because these O-rings have a rubber core, they retain flexibility and resistance to high temperatures.
  • Aflas O-rings (TFE/P). Aflas O-rings offer resistances to steam, water, other chemicals, high temperatures, and caustic environments. This makes them ideal for use in processing assemblies that handle the production of liquid goods, such as oil.
  • Metric O-rings. For equipment and assemblies measured in metric units, these O-rings are measured in millimeters for easy sourcing and ordering of O-rings that fall outside of normal AS568 sizes.
  • Urethane O-rings. Polyurethane rubbers include polyester urethane (AU) and polyether urethane (EU), both of which are strong and wear-resistant. Polyester urethane O-rings can resist oils and solvents, though they may weaken when exposed to water. Polyether urethane O-rings can resist low-level fuels and oils while also resisting hydrolysis.

Fournier Rubber & Supply also provides custom O-rings constructed from vulcanized rubber upon request.

Factors to Consider When Choosing O-Ring Material

As you select materials, keep these important factors in mind:

  • Properties. The type of material you choose may have a long or short lifespan, may require different production techniques, and can cost more or less than comparable materials.
  • Temperature. Consider the operating temperature your O-ring needs to function within. Nitrile-based O-rings are popular for high-temperature applications, whereas different silicones can resist wider temperature ranges.
  • Flexibility. The inner diameter of your O-ring must be smaller than the installation groove in its mating component, and it must stretch to fill that groove. This characteristic helps ensure a reliable seal.
  • Pressure. Consider the hardness of the material. A higher application pressure for the O-ring will require higher shore hardness.
  • Size. Choose the appropriate size based on the size of the mating surface&#;s groove&#;both diameter and the groove&#;s width&#;and the flexibility of the material.
  • Surface finish. O-rings should fall within a tight surface roughness range of 5-16 µ inch RMS to minimize the risk of friction or accelerated wear.

Choosing the Right O-Ring Supplier

O-rings must be constructed from the right material to withstand environmental conditions and offer reliable performance during operations. Beyond material, it&#;s just as important to choose the right supplier. Look for an O-ring supplier that can:

  • Meet your material and production requirements
  • Operate within your timeline and budget
  • Offers customization
  • Provide reliable delivery

To see how Fournier Rubber can meet your needs as an O-ring supplier, please contact us today.

Everything You Need To Know About O-Rings And Seals

In this section, we&#;ll look a little more closely at what o-rings do, and some of the applications that they&#;re very often used for.

O-rings for high-temperature sealing

High-temperature sealing o-rings are, as the name implies, designed to withstand extreme heat while continuing to provide a reliable seal between two surfaces or components.

This makes them ideal for demanding industries and environments such as oil and gas refineries, chemical processing, or any other scenario where a high-temperature seal is required, such as performance transport applications like turbo engines and aerospace engineering.

Best O-ring seal materials for high temperatures

There are a number of popular high-temperature o-ring material choices, including nitrile, hydrogenated nitrile, silicone rubber, polyacrylate and more. Securing the best choice in any given scenario will generally be a balancing act between the specific operating temperature needed, and the most economical material option at that performance point.

For more detail on all types of O-ring materials and designated temperature ranges, feel free to contact our expert support team any time - they&#;ll be glad to offer further advice and assistance on specific high-temperature seals, materials and applications.

O-ring seal temperature ranges

Again, all industrial o-ring purchases should be carefully planned with direct reference to the specific role and environment the seal is required to perform in. However, as a rough guide to o-ring temperature rating and use limits, some of the more popular materials on sale generally operate within the following sorts of temperature ranges:

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  • Nitrile: anywhere from -50 C to 120 C
  • Hydrogenated nitrile: anywhere from -45 C to 150 C
  • Polyacrylate: anywhere from -25 C to 175 C
  • Ethylene-propylene: anywhere from -50 C to 135 C
  • Chloroprene: anywhere from -40 C to 120 C
  • Butyl (petroleum compound): anywhere from -55 C to 205 C
  • Fluorosilicone: anywhere from -60 C to 205 C
  • Fluorocarbon: anywhere from -25 C to 205 C

O-rings for high-pressure sealing


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High-pressure resistance is a common requirement of industrial o-rings, along with reliable performance in high temperature and dynamic environments. For a high-pressure seal to work to optimal levels, o-ring design and manufacture again depends on choosing specific materials for better performance under specific conditions.

O-rings function on the principle that even pressure placed on the (more or less incompressible) o-ring material creates predictable deformation patterns around the perimeter of the gasket in its groove. This means there&#;s a fairly uniform mechanical stress placed on all contacting surfaces of an o-ring.

Provided the internal pressure from fluids being contained stays below a given O-ring's contact stress rating, it&#;s largely impossible for leaks to occur, even under high pressure. However, mechanical failure under high pressure can easily cause extrusion or destruction of the o-ring, which is why it&#;s important to choose the right material for the precise environment you&#;re looking to use it in.

O-ring seals for engines

An engine o-ring, especially one used in high performance or turbo engines, is a good example of a product that has to be rugged enough in design and material construction to handle various challenging requirements of temperature, pressure and chemical compatibility.

Many basic rubbers and polymers aren&#;t suitable for use with oils, fuels or solvent-based compounds. For use in an engine, an oil o-ring has to be created specifically from compatible hybrid materials that allow it to maintain crucial o-ring properties (flexibility, incompressibility) while offering more robust resistance to heat, pressure, o-ring leaking and chemical attack than a standard elastomer typically could.

For more advice and information on suitable products to use as engine o-rings, feel free to contact our customer service team through the support pages on our site.

O-ring seals for plumbers

Plumbing o-ring choices are widespread, given the range of materials, sizes and gauges available for use in ducting and pipework applications, as well as to form tight waterproof seals around taps and other fittings. Choosing the best product for the job depends on finding the correct size and shape for the specific role you have in mind.

Food Grade O-ring seals

Food-grade o-rings have been manufactured to more exacting standards of material composition, such that they&#;ve been officially declared &#;food safe&#; for use in the production and preparation of meals, beverages and dining products.

Best food grade O-ring seal materials

An approved food-grade o-ring must only consist of the material(s) declared and approved as food safety compliant in the country of manufacture/sale. In the UK, this applies to natural and synthetic rubbers, elastomers and polymers.

To achieve food grade approval, an o-ring manufacturer must also take into account extractable ingredients/compounds if the seal is to be used in direct contact with aqueous, acidic or fatty foods and drinks. Some common food-safe o-ring materials include EPDM, fluorocarbon, nitrile, neoprene and silicone.

O-ring seals for CO2

Carbon dioxide often presents an issue for many types of o-rings, as softer materials have a tendency to absorb the gas over time and swell up. This can lead to an unreliable seal in the short term, and over time the CO2 will actually cause the o-ring to start to break down from within.

Some popular choices for use in applications where the o-ring will have extended CO2 contact include polyurethane, PTFE, nitrile, and fluoroelastomers. However, the best choice will always depend on the consideration of other environmental or application factors.

O-ring seals for aircrafts

Aircraft o-rings and aerospace o-rings generally need to be highly chemically resistant, and able to operate within a wide range of temperatures and pressures in order to keep an aerospace craft&#;s powertrain running cleanly, efficiently and smoothly. Typical applications include fuel cap gaskets, fuel system o-rings, and valve cover seals.

Common elastomers for use in aerospace-type applications include nitriles, ethylene-propylene, fluorosilicones and more. Because there are so many different sizes and gauges of o-ring distributed throughout most aircraft engines and systems, most sales for aerospace and aeronautics are through bulk orders of multi-size o-ring kits.

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