PA11 与 PA12 怎么选?几个百分点的细节差异

塑料知识科普 发布时间: 2026-09-14 3224 阅读

78 PA11 and PA12: How to Grasp the Detailed Differences Between the Two Long-Chain Brothers

1. Why are these two materials often listed together?

PA11 and PA12 are both long-chain nylons:

PA11: Derived from castor oil (bio-based), polyamide 11.

PA12: Derived from butadiene or lauric acid (petroleum-based or bio-based), lactam ring-opening of lauric acid.

They both belong to the long carbon chain family (11 carbons, 12 carbons) and have very similar properties, but there are slight differences. Many projects get stuck choosing between these two materials — in fact, it's just a difference of a few percentage points in performance, not several orders of magnitude.

This article explains this 'subtle but real' difference clearly.

Ski bindings and eyeglass temples are the most visually representative pair of applications for PA11 and PA12. A sporting goods manufacturer used both materials at the same time: the locking parts of the bindings used PA11, valued for its toughness and fatigue resistance at low temperatures; the eyeglass temples used PA12, chosen for its dimensional stability and elastic memory.

Their senior engineer said: PA11 is an athlete, PA12 is an accountant—one can endure impacts, the other calculates accurately.

At ski resorts in winter, with temperatures at minus twenty degrees, PA11 fasteners can be repeatedly opened and closed without breaking; eyeglass temples constantly pressed against the face causing sweat, PA12 does not deform or loosen over time.

Neither of the two materials replaces the other; each sticks to its own working conditions. In the end, when choosing, what you are really choosing is an understanding of the material's characteristics.

2. Differences in Chemical Structure

PA11: Monomer with 11 carbon atoms (amino acid chain).

PA12: monomer with 12 carbons (laurolactam).

The differences are reflected in three aspects:

① Chain segment symmetry

PA12 chain segments are more symmetrical than PA11. Chain segments with higher duality crystallize more slowly and more finely.

② Carbon chain length

PA12 has one more CH₂ than PA11. Longer chain segment → lower concentration of polar amide groups → lower water absorption, better chemical resistance, slightly better processing flowability.

③ Different sources

PA11 is mainly produced in France (dominated by Arkema), based on castor oil, with a high bio-based content. PA12 is mainly produced in Germany, France, Japan, and the United States, petroleum-based or partially bio-based.

3. Key Performance Comparison

IndicatorPA11PA12Direction of difference
Number of Carbons (Monomer)ElevenTwelvePA12 plus 1
SourceCastor oil (bio-based)Petroleum-based (partially bio-based)
Tensile Strength (Unreinforced, MPa)50-6050-60approach
Bending modulus (unreinforced, GPa)1.0-1.51.2-1.7PA12 slightly higher
Notch Impact (kJ/m²)8-15 (Toughened)6-12PA11 slightly high
Water absorption rate (23℃ saturated, %)0.8-1.20.5-0.8PA12 slightly lower
Melting point (°C)185-195175-185PA11 slightly higher
Glass transition temperature (°C)45-5035-40PA11 slightly higher
Fuel-resistantVery goodGoodPA11 slightly better
Alcohol-tolerant (methanol, ethanol)GoodVery goodPA12 slightly better
Resistant to hydraulic oilVery goodGoodPA11 slightly better
Heat-resistant to water (80°C long-term)middlemiddleapproach
Welding strengthmiddlemiddleapproach
Injection molding fluiditymiddlemedium preferencePA12 slightly better
Glass Fiber Synergy Efficiencymiddlemiddleapproach
UV resistantmiddlemiddleapproach
Unit price (standard grade, for reference)1.5-2×1.0×PA11 is slightly more expensive

4. Where PA11 Excels

① Oil circuit, fuel pipe

PA11 is slightly better than PA12 in gasoline, diesel, and engine oil. In automotive fuel pipes, hydraulic pipes, and oil line fittings, PA11 is slightly more stable.

② Impact Resistance

The notch impact strength of PA11 is slightly higher than that of PA12, especially at low temperatures. At a low temperature of -40°C, the elastic components of PA11 are slightly better.

③ Bio-based content

PA11 is mainly produced in France via the castor oil route, with a bio-based content of 50-100% achievable in the formulation. Automotive OEMs (such as Renault) use PA11 for 'eco-friendly' grades. PA11 is the mainstay of bio-based certification projects.

④ Slightly higher melting point

PA11 is 10℃ higher than PA12, with a slightly higher upper temperature limit. For long-term operation at 90-100℃, PA11 is slightly more stable.

5. Where PA12 Excels

① Alcohol-resistant media

PA12 performs better than PA11 in methanol, ethanol, and isopropanol. For battery cooling liquid pipes and automotive urea pipes, PA12 is the first choice.

② Price Advantage

PA12 has sufficient global supply, and its unit price is 1/1.5-2 of PA11. In scenarios sensitive to large-quantity pricing, PA12 has an advantage.

③ Liquidity

PA12 has slightly better fluidity than PA11, and PA12 is easy to mold for complex parts, thin-walled parts, and long-process parts.

④ Slightly lower water absorption rate

0.5-0.8% vs 0.8-1.2%. PA12 is more stable for precision parts.

⑤ Supply and Domestic Substitution

There are many global suppliers of PA12 (Evonik, Ube Industries, Arkema, etc.). Domestic PA12 also already has production capacity. PA11 mainly relies on one supplier, posing a high supply risk.

6. Operating conditions in which neither is proficient

① Long-term ≥100℃ hot water

Neither of them works. With long-term exposure to water at 80°C, both will gradually absorb water and swell. Use heat-resistant plastics like PPS or PEEK.

② High rigidity Long carbon chain

Both are flexible materials. Use PA66 long-chain composite/alloy.

③ Food-grade, medical-grade (direct contact)

Both have FDA/EU food-grade listings. But if you want a specialized formula, a general formula may not necessarily be compliant.

④ Ultra-low temperature (below -40℃) High rigidity

Neither is suitable. Use PA66-GF for toughening.

7. Four Combination Pairings

① Fuel pipe PA11 Clip PA12-GF

Main oil pipe PA11 (oil-resistant), snap connector PA12-GF (high strength, does not absorb water).

② Coolant pipe PA12 Housing PA66-GF

Coolant pipe PA12 (alcohol-resistant, non-water-absorbing), housing PA66-GF30 (strength).

③ Pneumatic pipe PA12 Connector PA66-GF

Pneumatic tube PA12 (flexible, non-absorbent), metal insert PA66-GF connector (strong, weldable).

④ Double-layer pipe PA11/PA12 composite

Automotive multi-layer fuel pipes commonly use PA11/PA12 co-extrusion composites, with PA11 as the oil-resistant layer and PA12 as the barrier layer.

VIII. Four Extended Judgments (Long Carbon Chain Comparison General)

Judgment 1: The core advantage of long-chain polymers is 'hydrolysis resistance and chemical resistance,' not strength. The tensile strength of PA11 and PA12 is 30-50% lower than that of PA66. Using these two materials is not for strength, but for media resistance.

Judgment 2: Water absorption is more important than imagined. PA66 absorbs 2.5% water, PA12 absorbs 0.5%. For precision dimension parts, PA12 is 5 times more stable than PA66.

Judgment Three: The oil circuit and the water circuit are two different media. PA11 tends to be used for oil circuits (hydrocarbons), while PA12 tends to be used for water circuits (alcohols). Using 'long-chain nylon' is not a matter of whichever works; it depends on the type of medium.

Judgment Four: The difference between bio-based and petroleum-based is more about marketing than engineering. The performance gap between PA11 and PA12 is small. The premium for bio-based PA11 in most projects is 30-80%—this is money paid for the 'eco-friendly label,' not for 'performance'.

9. Boundary Statement

Operating conditionSuggestion
Fuel pipes, oil lines, hydraulic pipesPA11 (preferred)
Coolant pipes, urea pipes, alcohol-based mediaPA12 (preferred)
Battery coolant pipePA12
Food-grade hosePA12 (see formula)
High elasticity components, low temperature toughnessPA11
Price-sensitive waterwayPA12
Bio-based Environmental Protection ProjectPA11
High-pressure oxygen and acetylene pipelinesUse PTFE / Metal Tubing

Appendix: Two selection examples

Example 1: Car Fuel Pipe

Working conditions: long-term exposure to gasoline E10 ethanol; requires low-temperature elasticity; long service life.

Deduction:

Oils → PA11 slightly better

E10 Ethanol → PA12 slightly better

Comprehensive → PA11 / PA11/PA12 Co-Extrusion

Conclusion: PA11 inner layer, PA12 outer layer, double-layer structure (automotive multilayer oil pipe solution).

Example 2: Energy Storage Coolant Pipeline

Operating conditions: Long-term exposure to ethylene glycol-based coolant; temperature fluctuation from -20 to 60°C; long-term duration of 5 years.

Deduction:

Alcohol-based medium → PA12 is slightly better

Long-term soaking → PA12 absorbs less water

Comprehensive → PA12

Conclusion: PA12 (specialized formulation).

Industry Insight: The 'expensiveness' of long-chain nylon mainly comes from its raw materials. PA11 is derived from castor oil, and fluctuations in castor oil prices are directly reflected in PA11 prices. In Europe, the difference in PA11 prices between a year of abundant castor oil production and a year of poor production can be 30-50%. When undertaking a PA11 project, 'raw material risk' must be considered as part of the procurement decision. PA12 prices are more stable, mainly because its raw material comes from butadiene (linked to bulk petrochemicals).

A batch of medical catheter connector collision tests

The starting point is the medical catheter connector project, with prototyping for both PA11 and PA12 options.

Latency on the test bench: the connector needs to be repeatedly plugged and unplugged two thousand times while maintaining a seal. The PA12 group maintains more stable dimensions, and the PA11 group is more drop-resistant.

As expected, in the transportation stage: the PA11 group fell from 1.2 meters without any cracks, while 20% of the PA12 group showed minor cracks. The final plan is to split by channel—use PA11 for domestic transport with poor conditions, and PA12 for export with fully controlled cold chain.

The purchasing department said this is called selecting materials based on logistics. It's the first time I've heard of it, but it works really well.

Comparison meeting of PA11 and PA12, three follow-up questions.

Follow-up Question 1: What is the minimum operating temperature? For frequent extremely low temperature impacts, PA11 is preferred.

Follow-up Question 2: How strict is the dimensional accuracy? For precision fitting and long-term sealing, PA12 is preferred.

Follow-up Question 3: Do we need bio-based documentation? Yes, the certification chain for PA11 is more complete.

Extension: Four-Step Quick Judgment (PA11 vs PA12 Direction)

Four steps to compare and compress the 'long carbon chain twins' into a feasible action:

Step 1: Measure the type of medium. Oils (fuel oil, engine oil, hydraulic oil) → PA11 is slightly better; Alcohols (methanol, ethanol, coolant, urea) → PA12 is slightly better.

Step 2: Measure elastic demand. PA11 has slightly better impact resistance, and elastic components are slightly more stable at -40℃; PA12 has slightly better fluidity, making it easier to mold complex parts.

Step 3: Measure price tolerance. The price of PA11 is 1.5-2 times that of PA12. In situations sensitive to large-volume prices, PA12 is advantageous.

Step 4: Measure the demand for bio-based materials. PA11 has a bio-based content of 50-100%; PA12 is mainly petroleum-based. For OEM environmental labeling projects, PA11 is preferred.

Apart from these four points—many automotive multi-layer fuel pipes use PA11/PA12 co-extruded composites (PA11 oil-resistant layer, PA12 barrier layer). This is the best division of labor for PA11 and PA12.

Practical Combat: Three Steps

Step 1: The medium determines the main material. Oils → PA11, Alcohols → PA12. This is the first step.

Step 2: Choose by bio-based type / price tier. Bio-based demand → PA11, price sensitive → PA12.

Step 3: Multi-layer co-extrusion of PA11/PA12. Automotive multi-layer oil pipe = PA11 oil-resistant layer, PA12 barrier layer — the division of labor is better than a single material.

Key Tips

The difference between PA11 and PA12 is very small (within 10%), and most projects are torn between the two. A simplified judgment method: use PA11 for oil lines, and PA12 for water/alcohol/cooling pipes. For automotive multilayer oil pipes, co-extruded PA11/PA12 composite is the best current industry solution.

Engineering Memo

The difference between PA11 and PA12 is very small, about 10%. For large-volume price-sensitive applications, PA12 is used, while bio-based projects use PA11. For multilayer pipes, co-extrusion of PA11/PA12 is the best solution in the industry.

Industry sense

For automotive multi-layer fuel pipes, co-extrusion with PA11/PA12 is the best solution in the industry. Single-layer PA11 or PA12 cannot completely replace the multi-layer structure. Multi-layer pipes are already mature and do not require innovative solutions.

Finish off by adding one more 'Three Questions and Three Answers'.

Frequently Asked QuestionsAnswer in one sentence
Who is softer?PA12 is slightly softer under the same grade
Who can withstand low-temperature shock?PA11, verified under ski resort conditions
Who is more stable?PA12, even lower water absorption
What's the price difference?Close, fluctuates with raw materials

Add another reverse case.

There was a project that used PA11 in precision gears, attracted by its toughness. Gears are sensitive to dimensions, and PA11’s slightly higher water absorption combined with a relatively soft modulus caused the meshing clearances to drift, leading to noise complaints. Switching to PA12 solved the problem. Toughness is PA11's trademark, not a ticket for precision parts — using a trademark in the right place is more important than anything.

The Origin of Numbers: Why Two and Three

Just one carbon atom difference—where does the difference come from? PA11 and PA12 have almost the same amide group density, but the odd carbon chain in PA11 is more regularly arranged, leading to different crystallization behavior, with more outstanding low-temperature impact and fatigue resistance; PA12 has better chain segment flexibility, slightly lower modulus, and more stable dimensions.

The names differ by a single digit, but the difference in performance is in their prioritization: one is tough first, stable later; the other is stable first, tough later.

How can differences in water absorption be amplified into differences in precision? Long carbon chain families all have low water absorption, but precision parts are calculated per filament, and a few ten-thousandths of water absorption multiplied by wall thickness and time results in measurable drift. The tightness of eyeglass arms, seal of joints, and gear backlash are all determined by this multiplication.

Practical Checklist: Six Actions for Long Carbon Chain Precision Parts

For locations with repeated extreme low-temperature impact, PA11 is preferred

Precision fit and long-term sealing, PA12 preferred

Logistics and usage conditions are written into the selection form, and drop tests are conducted according to real working conditions.

Biobased documents are prepared according to channels, and the export list is checked in advance

Both plug/unplug and drop tests have passed, decide on the grade next

Elastic memory components (temple arms, wristband clasps) default to PA12

There are no major pitfalls in selecting long carbon chains, only small detail pitfalls. There is only one solution to the detail pitfalls: break down the usage scenarios in detail—the more detailed, the more accurate the grade.

Quick Reference Manual: PA11 and PA12 Quick Lookup

Operating conditionfirst choiceExplanation
Extreme low temperature repeated impactPA11Ski Resort and Cold Region Verification
Precision sealing long-term servicePA12Absorbs less water and is more stable
Pneumatic hosePA12Balance between suppleness and fatigue resistance
Bio-based Export FormPA11Complete file chain

The usage of the quick reference table is to first ask about the working conditions and then ask about the material; if the two columns match, it is determined, and if they don't match, testing is done. The number of grades in the long carbon chain family is not many, and testing costs are controllable. The practice of making samples for two options is very common in this industry, so don't skip this step.

Let's elaborate on that case of material selection based on logistics. Behind it lies a bigger principle: in the list of operating conditions for model selection, transportation and storage are the most frequently forgotten items. When the product leaves the factory, it is the engineers' treasure, but before it reaches the user, it has to endure drops, stacking, and cycles of temperature and humidity. The risks during this stage are on par with its service life.

Including logistics conditions in the operating conditions table is one of the most worthwhile things to do for families like long carbon chains, which are sensitive to drops. I have seen too many projects where testing went perfectly, but logistics failed, and only during the review did we realize that no one had asked about the transportation stage.

Last detail: The welding and bonding process of long carbon chain parts must follow the material grade. The thermal welding windows of PA11 and PA12 are slightly different, and ultrasonic welding parameters cannot be directly reused. When changing the material grade, include the verification of the welding process in the plan to avoid batch failures during assembly.

One more storage detail for long carbon chain parts: low-temperature storage and low-temperature use are two different things. PA11 and PA12 have excellent low-temperature toughness, but the performance of parts assembled at low temperatures differs from parts assembled at room temperature and then exposed to low temperatures—in low temperatures, the material becomes harder and the stress during press fitting is more concentrated. For interference-fit parts assembled in cold regions on-site, design allowances or preheated fixtures should be provided.

A client suffered this kind of loss on an on-site project in the northeast, and later turned the 'Cold Region On-Site Assembly Guidelines' into a document that accompanies the goods, solving a type of complaint with a single sheet of paper. No matter how good the nature of long carbon chains is, the people using them still need to know their temper.

There is another type of demand for long carbon chain components that is increasing: 'damping pad positions' in metal substitution. PA11 and PA12 have better damping performance than PA66, and when used in transitional pads between clips and rigid connections, they can reduce the transmission of vibrations.

There was an in-vehicle electronic screen project. After changing the hard connection to a transition pad, the abnormal noise during road testing was reduced by half, and the solution was later written into their design manual. The secondary properties of materials often hide such unexpected gains; damping is a card that the long carbon chain family tends to overlook and is worth proactively highlighting during design reviews.

Conclusion

The division of labor between PA11 and PA12 corresponds to 'oil circuit and water circuit'.

PA11 is used in oil circuits: oil-resistant, impact-resistant, bio-based — fuel pipes, hydraulic pipes, automotive oil circuits.

PA12 is used in water systems: resistant to alcohol, inexpensive, does not absorb water—coolant pipes, urea pipes, food pipes.

The starting point for selection is not "which is more versatile," but "does this project involve oil or water/alcohol." Oil uses PA11, water uses PA12. The difference between the two is small but practically stable.

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