O型圈用TPE还是橡胶?一个图便宜,一个图省心

应用领域 发布时间: 2026-09-14 1230 阅读

The O-ring leaked oil after just three months, and the machine is idle waiting for parts. The O-ring's sealing and medium compatibility were not chosen correctly, and one small ring can ruin the entire piece of equipment.

A small seal leaks for three months, and the entire device stops

O-rings are 'components that are sealed and pressure-resistant': sealing, pressure-resistant, and resistant to media. The material must seal well, be pressure-resistant, and resistant to media — conclusion first: for static O-rings, TPE is mainstream; for dynamic conditions, rubber (NBR/EPDM) is retained.

The biggest pitfall of O-rings: one picture is cheap, another picture is worry-free. Cheap is temporary, worry-free is long-lasting—the usage is the dividing line for O-rings.

O-rings are functional components: leakage and aging are both problems. Choosing the right material ensures equipment stability—don't skimp on material costs for functional parts.

Why do O-rings tend to favor TPE?

Reasons for using TPE for O-rings: sealing is possible, costs are controllable, efficiency is high, and it is recyclable—together, these four make it suitable for static O-rings.

Sealing is key: sealing prevents leaks. Seal testing is written into the acceptance criteria—leakage is the problem.

Pressure resistance cannot be compromised: pressure conditions. Pressure resistance testing should be included in the acceptance—if it bursts, it’s a problem.

Static and dynamic media, three barriers

Static condition: fixed sealing. Sealing data needs to be checked — leakage is the problem.

Dynamic working condition: reciprocating motion. Wear resistance data need to be tested—wear is the issue.

Medium conditions: Contacting medium. Resistance data must be verified—the swelling, that's the problem.

TPE or rubber? O-ring chart

DimensionTPERubber
SealCan be doneGood
Withstand pressureCan be doneGood
DynamicgeneralGood
CostmiddleMedium-high
EfficiencyInjection moldingVulcanization
PurposeStaticDynamic

Table reading: Rubber has good dynamic pressure resistance but is expensive; TPE is low-cost and efficient — static TPE, dynamic rubber.

Choose according to working conditions: dynamic rubber, static TPE.

O-Ring Acceptance: Two Accounts of Sealing Pressure Resistance

ProjectMethodstandard
SealLeak testFlawless
Pressure-resistantStress testMeet the standard
Media-resistantSoaking testNo swelling
HardnessMeasurementMeet the standard

Reading the table: After four tests, only the worry-free ones count—voltage resistance, media resistance, pressure change, and rebound, calculated separately for static and dynamic conditions.

Purpose is the distinction of the O-ring.

Mixed static and dynamic selection, three pitfalls

Pitfall 1: Mixing static and dynamic use. Static parts make do with cheap materials, while dynamic reciprocating parts still leak oil—choose according to working conditions.

Pitfall 2: Leakage resistance to media not tested. Swelling—the resistance to media test is a must.

Pitfall 3: False sealing labels. Leakage — sealing should be inspected according to actual measurements.

When selecting O-ring material, first distinguish between dynamic and static

Three questions: Is it static or dynamic, how much pressure, what is the medium. One verification: actual operating conditions measured—three questions and one verification, the supplier's details are clear.

Operating condition verification must come first: static sealing or dynamic reciprocating, clarify this before choosing materials. First determine the operating condition, then discuss the price — purpose is the dividing line for O-rings.

Making sample retention a habit: retain samples from each batch, and reseal and test them under pressure batch by batch. When changing materials between batches, compare first before increasing the volume—stable batches result in fewer customer complaints.

O-Rings: Old Problems, New Solutions, A Comparison Table

PhenomenonReasonCountermeasure
LeakInsufficient sealingAdjust hardness level
to squeeze until it breaksInsufficient pressure resistanceChange to high-voltage resistant material
SwellingResistant to weak mediaChange the wear-resistant material
WearDynamic wear resistanceChange the rubber
Batch DriftFormula fluctuationLock window

The mainstream Shore A hardness for static O-rings is 70-80, and the compression should be kept at 15%-25% to prevent leakage. If compressed over 30%, it won't return to its original shape; long-term compressed parts permanently deform if compression exceeds 30% (70℃ × 22h) — the seals in the grooves rely on this level of hardness.

Use TPE for static applications without vulcanization, and keep NBR/EPDM for dynamic applications. Don't try to use one material for everything. TPE injection molding is fast and scraps can be recycled, while rubber is wear-resistant under reciprocating motion but requires vulcanization—choose TPE for static applications to improve efficiency.

Rubber only returns under dynamic wear conditions.

Don't blame the material first if the O-ring is leaking; first check the groove dimensions and lubrication compatibility. If the groove is too small and gets crushed, or if the lubricant is incompatible and causes swelling, these are assembly issues; assembly tests should be done first, then you can talk about the formulation.

O-ring acceptance three-piece set: leak-free test, 24-hour media soaking, hardness retest. Static parts are assembled and checked according to groove dimensions, while moving parts undergo reciprocating wear resistance — no item passes if it fails.

Hardness is locked within ±3A, does not break when bent at -40℃, and the O-ring rebounds like new after being installed for a year. Samples from each batch are re-tested for compression set and hardness, and when changing material batches, a comparison is made before increasing the quantity.

O-ring groove dimensions are based on the inner diameter, and lubricant compatibility is tested separately for swelling. If the groove is too small, it gets crushed; if the oil is incompatible, it swells. If the assembly end doesn’t pass the check, changing the material is pointless. The static part should have a compression of 15%-25% to accommodate the seal.

Moving parts with reciprocating wear resistance, stationary parts tested with no leakage, hardness locked within ±3A. Does not break when bent at -40℃, compressive deformation at 70℃×22h does not exceed 30%, and samples from each batch are retained to re-test compressive deformation and hardness before mass release.

For batch material changes, first compare small batches before scaling up; compression set and hardness follow each batch. Keep samples from each batch to retest compression set and hardness; review groove assembly before discussing the formula. Conduct separate tests for the reciprocating wear of moving parts.

The compressive deformation of static parts is the life limit; long-term compression should not exceed thirty percent. The inner diameter of the groove and the lubricant compatibility are handled separately; moving parts are reciprocally wear-resistant, and static parts have no leakage.

Hardness locks narrow windows at low temperatures without bending, with each batch of samples retained for pressure change and hardness.

For O-rings, each batch should retain samples to retest compression set and hardness; when changing materials between batches, first compare with a small batch. Groove dimensions and lubrication compatibility should be verified first; moving parts should add reciprocating wear resistance, and compression set of static parts should not exceed 30%.

Cologne Customer Case: Hardness Batch Drift, Low Temperature Bending in Small Batch Trial Production

An industrial equipment factory in Hefei experienced batch-to-batch variations in the hardness of O-rings, with the texture fluctuating between soft and hard. Cologne coordinated small-batch trial production before scaling up; the hardness stabilized, and it passed a -40℃ low-temperature bend test on the first attempt. In small-batch trial production, the hardness is locked before mass production—batch drift is first checked by examining the formulation window.

Summary

For O-ring selection, first determine the working conditions, then test pressure resistance. One diagram is cost-effective, another diagram provides peace of mind; the intended use is the dividing criterion.

We summarize who we are in three lines:

Performance modification—modified thermoplastic elastomers, modified nylon (PA6 / PA66 / PA46 / PA11 / PA12 / PA6T / PA9T and nylon alloys), modified PPO / PPS;

Supply availability—nylon resins from major chemical giants, secondary brand materials, bulk materials in stock;

Decision-making support—what part should use what material.

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