# 耐油TPE怎么选?机油泡一周,体积变化见真章

塑料知识科普 发布时间: 2026-09-12 1457 阅读

Oil seals soaked in oil for three months swelled and leaked; the customer's workshop floor was covered with oil. Choosing the wrong oil-resistant TPE means this part will eventually become a leak point.

Accident site: Oil-resistant TPE, soaking problems

Oil-resistant TPE used in automotive oil circuit seals, industrial oil seals, oil-resistant pipe fittings—almost all crash sites are "soaked":

On-site 1: Seals soaked in oil for a week, bulge and size shift—oil resistance grade not matching oil, swelling is inevitable; Site 2:

Oil-resistant pipe fittings harden and crack after oil soaking—oil removes plasticizer, making material brittle; On-site 3: Use standard grade hardtop oil seals—if hardness, temperature resistance, and oil resistance all fail to meet standards, replace them every three months.

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Oil resistance must be considered together with compression permanent deformation: seals must be oil-resistant and must not fail during long-term compression—these two indicators are linked.

Only seals that resist oil and have high pressure changes, will not leak in the short term, but will inevitably leak in the long term. Dual-indicator acceptance is the professional threshold for oil-resistant seals.

Mixing oils is a hidden risk: when different oils are mixed in the equipment, the material may face the "mixed oil" operating condition—the swelling of mixed oil is harder to predict than that of a single oil.

Therefore, when selecting oil-resistant parts, list "all oils that may come into contact" and calculate them as strictly.

The "replacement cycle" for oil-resistant parts is a factor to be accounted for in procurement: ordinary grades are replaced every 3 months, oil-resistant grades every 12 months — materials are 30% more expensive, replacement costs save 75%.

Therefore, the cost-performance ratio of oil-resistant TPE should be calculated by "hourly sealing cost," not per ton price.

Oil temperature and swelling work together: the higher the oil temperature, the more severe the swelling—oil at 80°C and oil at room temperature can differ by half in swelling rate.

Therefore, the operating conditions for oil-resistant parts should be listed as "oil quality + oil temperature," and suppliers provide data based on these two numbers. If only the word "oil resistance" is listed, suppliers cannot provide accurate information. When selecting

Oil-resistant TPE, first ask "What kind of oil to soak, how long, and how hot?"—three questions: determine the system, grade, and lifespan.

StepsActionOutput
OneFixed Oil Quality, Fixed TemperatureMedium List
TwoSelect SystemCandidate System
ThreeDataSwelling Rate Conclusion

Cause Breakdown: Mechanism of Oil Resistance

Oil Damage to TPE, mainly 'extraction' and 'swelling'—oil extracts oil and additives from the material, making it hard and brittle; Oil seeps into the material, causing volume expansion and reduced strength.

Oil resistance rating refers to the material's volume change in oil and strength retention.

MediumTest of TPEOil resistance requirements
Engine oilSwelling, pumping/pumpingHigh
DieselSignificant swellingHigh
Hydraulic oilSwelling, agingMedium-high
GasolineSevere swellingVery high
Lubricating oilMedium swellingMedium-high

Technical wisdom: Oil resistance TPE oil resistance data should be measured as "actual oil quality + actual temperature"—the standard oil report may differ by two levels from actual operating conditions.

Directly change soaking cycle data: 72h short bubbles and 1000h long bubbles have completely different data—there are many materials on the market that meet short-term standards but exceed long-term swelling standards.

Therefore, when inspecting oil-resistant parts, set the soaking time according to the actual replacement cycle, not just short-term reports.

Troubleshooting steps: three-step lock in oil-resistant materials

The qualification line for these three numbers can be more specific: soak for 72 hours based on actual oil quality and temperature, with volume change generally controlled within 5%, hardness change not exceeding ±10 Shore A,

tensile strength retention rate not less than 70%.

Only when all three numbers are set together is sealing dimensions stable; 72h passing does not mean 1000h passing.

Costs should be spent by grade: not all oil-resistant parts need to be the highest grade—those with low contact frequency and low temperature are sufficient for ordinary oil resistance grades; Only parts with high temperature and high pressure dynamics are considered high-grade.

Graded selection can save 20% in costs.

Re-inspection should be included in the annual rhythm: oil-resistant data is not a one-time solution—if suppliers change raw materials or formulas, oil resistance performance may change.

Therefore, it is recommended to re-check swelling data once a year for oil-resistant parts, or immediately re-inspect when suppliers change. Re-inspection is an annual action in the oil-resistant parts supply chain.

Create a "media list" template for oil-resistant parts procurement: oil name, grade, temperature, pressure, contact method (immersion/sputter/vapor), replacement cycle—write all six items.

The more comprehensive the six items, the more accurate the supplier selection and the less rework there is.

Prepare a "grading table" for oil-resistant parts procurement: divide all oil-resistant parts in the factory into three levels based on "oil quality + temperature + dynamic and still" — light (normal temperature, static), medium (medium temperature, static), heavy (high temperature, dynamic ).

lock the corresponding system for each level.

Build a grading table, and selection, inventory, and price negotiation all go smoothly.

Sealing structure must be reviewed together with materials: besides oil resistance, the design of lip and compression must also be correct—if the structure is wrong, even the oil-resistant material will leak.

Therefore, oil-resistant seals are a combination of "material + structure," and structural design should be reviewed together during material selection.

How to fix swelling oil leakage: Modifications in materials, processes, and systems

Material direction: Adjust oil resistance levels within the same system — oil and additive systems of oil-resistant grades are specially formulated; poor oil resistance of ordinary grades depends on the formula.

Process direction: molding of oil-resistant parts, mold and material temperature directly affect density—insufficient density, easier oil seepage. Control the process window to elevate oil resistance performance.

System direction: oil resistance classification: SEBS base oil resistance average, TPV oil resistance medium to high, TPEE oil resistance good and high temperature resistance — heavy oil scenario, directly TPV/TPEE.

Distinguish between dynamic and static first: static oil-resistant parts (gaskets) and dynamic oil-resistant parts (oil seals) require different requirements—dynamic parts must not only be oil-resistant, but also resistant to friction and fatigue, and the material grade should be one level higher.

Clearly describe both dynamic and static components, so procurement can accurately determine the grade.

Oil resistance and temperature resistance must be tested together: The oil-resistant parts in the car engine compartment operate under dual "oil + high temperature" conditions—each item meets both oil resistance and temperature resistance, but combined conditions may fail

For parts with dual operating conditions, a 'high temperature and oil' combined aging test should be conducted, rather than inferring from single-item data.

Cologne Customer Case: Swelling deformation addressed with production adjustments, 1000-hour aging passed in one go

A modified material application factory in Yantai experienced oil swelling and deformation of oil-resistant parts. Kolon cooperated on-site with production to adjust and debug until the yield stabilized, passing the 1000-hour aging test in one go.

Swelling deformation: first check the density and formulation, then talk about changing the material—adjusting production parameters often saves more than changing the system.

Check these four items when oil-resistant materials arrive; soaking and weight gain must be tested.

Among the four checks, actual oil product testing is the one that should be done the most

Acceptance itemWhat are you looking at?Key points
Swelling dataActual oil swelling rateMeasure according to operating conditions
Intensity retentionStrength after oil soakingThe higher, the more stable
BatchHardness size fluctuationMonitor batch
sample retentionOil immersion test sample retentionRetest comparison

The supplier's standard oil report cannot replace your actual medium.

Summary

We'll stop here for this part. If you're unsure about the working conditions of oil-resistant TPE, feel free to ask anytime and just match them accordingly.

The selection of oil-resistant TPE involves three factors: 'oil × temperature × system' — the type of oil determines the grade, the temperature determines the difficulty, and the system determines the upper limit, so that the seals can withstand it.

Have suppliers send samples soaked in the same oil: soak them in real oil for a week to observe swelling, which is more intuitive than the report — based on actual measurements, it's the final step in sourcing oil-resistant materials. Seeing the swelling after a week is more concrete than just looking at the report.

This assembly step also needs to prevent slipping: seals that have been oiled have an oily film on the surface, making them easy to slip or misalign—clean them before assembly or follow standard procedures. Controlling the assembly process directly affects the actual sealing performance of oil-resistant parts.

Finally, an additional suggestion for 'actual medium sampling': keep a sample of the oil actually used and perform the soaking test together with the materials. In case of disputes, retest under the same conditions—the results may differ if the oil batch changes. Sampling and retesting constitute a complete closed loop for the acceptance of oil-resistant parts.

After being soaked in oil, the surface should be checked for exudation: the material surface may exude additives or become sticky—exudation can affect the feel and may also hinder downstream assembly. Therefore, the acceptance inspection of oil-resistant parts should include a 'post-oil-soaking surface condition' check, and materials that become sticky or exude substances should be handled with caution.

The type of oil determines the degree of swelling: mineral oil, synthetic oil, vegetable oil, hydraulic oil all cause completely different swelling in materials — with the same material, soaking in mineral oil and soaking in vegetable oil can yield data that differs by a factor of two. Therefore, the operating conditions for oil-resistant parts should specify the 'specific type of oil' rather than vaguely writing 'oil-resistant'.

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