PA6 与 PMMA 怎么选?承重件和透明件是两条路

塑料知识科普 发布时间: 2026-09-15 4696 阅读

75 PA6 and PMMA: How to choose between the two directions for exterior parts

1. Why are these two materials placed in one comparison?

PA6 and PMMA are two completely different materials, in completely different positions:

PA6: Semi-crystalline nylon, semi-transparent or opaque, mainly used for structural components.

PMMA: Polymethyl methacrylate (acrylic/plexiglass), amorphous and highly transparent, mainly used for appearance parts.

Once there is a demand for exterior parts, 'structural' and 'transparent/attractive' is a contradiction. This article explains the boundaries between these two materials— and why in most cases they are divided in function rather than one being chosen over the other.

Aquarium equipment is a rare place where PA6 and PMMA appear together. One customer's water pump housing uses PA6-GF, and the transparent cover uses PMMA. This set has been sold for five years without major issues.

Later, they tried replacing the water pump housing with PMMA as well, thinking it would look clearer. Two months later, the vibration from the high-speed operation of the motor caused the base of the cover to crack, and PMMA's fatigue resistance could not withstand the continuous vibrational force.

Switching back to PA6 with glass fiber, the problem disappeared. The customer's notebook added a line: exterior parts can be transparent, structural parts must be sturdy.

The premise of having two types of materials in the same frame is that each does its own work. Once someone oversteps, the vibration will speak for the material.

2. Differences in Chemical Structure

PA6: Caprolactam ring-opening polymerization, semi-crystalline.

PMMA: polymethyl methacrylate, amorphous.

The differences directly lead to three distinctions:

① Transparency

PMMA has an amorphous light transmittance of 92% (up to 94% for optical grade), making it one of the plastics with the highest light transmittance. PA6 is semi-crystalline, with a light transmittance of less than 5%. Once transparency is required, PA6 is automatically out.

② Surface hardness

The Mohs hardness of PMMA is 3-4, one grade higher than PA6's 2-3. PMMA's surface scratch resistance is stronger than PA6's — this is a hard indicator for appearance parts.

③ Impact Resistance

PMMA has relatively low impact resistance among plastics (notched impact 1.5-2.5 kJ/m²) and is considered 'hard and brittle.' The impact toughness of PA6 is one level higher than that of PMMA. Therefore, PMMA is not used for load-bearing parts, and PA6 is not used for transparent parts.

3. Key Performance Comparison

IndicatorPA6PMMADirection of difference
Light Transmittance (%)Below 590-94PMMA far surpasses
Mohs hardness2-33-4PMMA high grade
Tensile Strength (Unreinforced, MPa)70-8070-80approach
Notch Impact (kJ/m²)5-101.5-2.5PA66 high grade
Glass transition temperature (°C)50-65100-110PMMA high grade
Maximum long-term operating temperature (°C)100-12080-95PA6 slightly higher
Water Absorption Rate (%)3.5-4.50.3-0.5PMMA extremely low
Surface glossmiddleExtremely highPMMA far exceeds
Scratch-resistantpoormiddlePMMA is slightly better
Welding strengthmiddleLowPA6 Strong
Injection molding fluiditymiddleGoodPMMA is good
Glass fiber collaborationTallExtremely lowPA6-GF Strong
UV resistant and anti-agingmiddlemiddleapproach
Unit price (standard grade, reference)1.0×1.5-2.0×PMMA is slightly more expensive

4. Where PMMA Excels

① Transparent part High-gloss appearance

Car lamp covers, lamp housings, signboards, acrylic panels, cosmetic bottles, electronic product panels, handicrafts. PMMA is irreplaceable in the 'appearance' indicator of transparent parts.

② Almost does not absorb water

PMMA has a water absorption rate of 0.3-0.5%, and its dimensions remain stable after outdoor exposure. It does not warp or deform over a long period. It is an order of magnitude stronger than PA6's 3.5-4.5%.

③ High surface hardness

Scratch resistance is one grade stronger than PA6. This is crucial for transparent parts — a single scratch on a transparent part is very noticeable.

④ Long-term outdoor weather resistance

PMMA does not yellow outdoors for 5-10 years, and its UV resistance is excellent among plastics.

5. Where PA6 Excels

① Structural member Load-bearing member

PMMA cracks under stress. PA6 is much tougher and can be used for structural parts, casings, clips, and gears.

② Welded assembly

PMMA cannot be ultrasonic welded. PA6 can be used to make weld line assemblies.

③ High rigidity after glass fiber reinforcement

The flowability of PMMA reinforced with glass fiber drops sharply, and the interfacial bonding is poor. PA6-GF30 far outperforms PMMA in structural components.

④ Alcohol-resistant / Weak acid-resistant

PMMA is not resistant to alcohol, acetone, or esters. PA6 performs better in these media.

⑤ Food grade, medical grade

The food-grade formulation of PA6 is mature (FDA, EU). PMMA requires a special formulation for food-grade applications.

6. Operating conditions that neither of them is good at

① High Impact Transparent

PMMA is brittle, PC is for high impact. It's neither the work of PA6 nor PMMA. Needs 'PC transparent parts with an additional 10-20% glass fiber' for reinforcement.

② High temperature ≥100℃ long-term

PMMA begins to yellow after long-term exposure above 90°C. PMMA is not used in high-temperature applications.

③ Transparent parts with extremely high scratch resistance requirements

For PC, choose coated glass (such as car windshields with anti-scratch coatings), or select high-hardness coated PMMA.

④ High rigidity High transparency

There is no perfect solution for this 'double high' combination. You either sacrifice transparency or sacrifice rigidity.

7. Four Combination Pairings

① PMMA PA-GF30 two-color part

The shell is PMMA (looks good), and the frame is PA6-GF30 (strong). This is commonly done in mobile phones, smart door locks, and consumer electronics.

② PMMA panel, black PA6 frame

Transparent panel with black frame printing, commonly used for outdoor advertising machines and subway station signs.

③ PMMA coated aluminum

High-gloss transparent PMMA with a metal frame is a common structure used in luxury packaging and cosmetic sets.

④ PA6 all surface PMMA paint

PA6 interior with PMMA coating on the surface. This 'double-material' approach increases the cost of both molding and spraying, but offers high flexibility.

8. Four Extended Judgments (General Comparison of Exterior Parts)

Judgment 1: Transparency Stress = Dual-indicator paradox. Almost all 'high transparency, high strength' combinations are not cheap. When making engineering decisions, first determine 'which indicator can be compromised'.

Judgment 2: The difference in surface hardness is the reason why PMMA is "expensive for a reason." High-hardness exterior parts resist scratches, a key indicator for long-term transparent parts. Part of the reason why PMMA is 1.5 times more expensive lies here.

Judgment Three: Long-term outdoor transparent parts need UV stability. PMMA is already naturally weather-resistant. Even more weather-resistant than PMMA are PC with UV coating, ASA, etc.

Judgment Four: The selection of materials for exterior parts should follow the 'working condition and visual' dual lines. Working conditions determine the structure, while visual aspects determine the surface. It is best to discuss these two lines separately.

9. Boundary Statement

Operating conditionSuggestion
Transparent OutdoorPMMA
Transparent Under forcePC / PC-GF
Structural member (opaque)PA6-GF30
Welded assemblyPA6-GF30
Food-grade transparentPMMA (see catalog)
Alcohol-resistant / Weak acid-resistantPA6
High-gloss finishPMMA
High-temperature exterior partsPC / High-Temperature PC
Scratch-resistant transparent partsPMMA coating or PC hard coating

Appendix: Two selection examples

Example 1: Advertising Lightbox Panel

Working conditions: long-term outdoor use; requires high transparency; must not yellow for 5 years.

Deduction:

Transparent → PMMA / PC

Outdoor 5 years → PMMA UV resistance is better than PC

No force applied → Just make it transparent

Conclusion: PMMA (optical grade).

Example 2: Electric Toothbrush Housing

Operating conditions: Transparent outer cover; the casing should withstand the user's grip (not strong); contact with non-slip rubber soft material.

Deduction:

Transparent → PMMA / PC

Transparent Under force → Thicken PMMA or PC

Contact with food → Check compliance

Conclusion: PC (impact resistance superior to PMMA, suitable for 'hand-held use with grip force' conditions, PMMA impact resistance is too weak). However, a UV coating must be applied or UV-stable PC should be selected.

Industry insight: Transparent parts vs. opaque parts—it seems like a 'visual' issue, but in reality, it's a 'working condition' issue. We once saw a project for a children's learning machine where the casing was originally made of PC (transparent looks nice), but because the drop test required 1.2m drops 5 times without cracking, the engineers evaluated and switched to a PC/ABS alloy. On the surface, it looks like a 'change in formula,' but behind it is the trade-off between 'impact resistance, transparency, and good appearance.' Choosing materials for cosmetic parts is even harder than for structural parts because you need to balance 'looks good, functional, and compliant.'

A dual-material solution for an instrument cover

The starting point is the transparent cover of the outdoor instrument, and the customer is hesitating between PMMA and PC, while PA6 is only a candidate for the casing.

The incubation period was completed during the selection phase: for northern projects, winter low-temperature impact is a hard requirement. PMMA is brittle at low temperatures, so the transparent cover was directly eliminated and replaced with PC.

The shell is made of PA6-GF20 with an added weather-resistant formula, and the thermal expansion difference with the PC cover is absorbed using soft rubber gaskets.

A follow-up three years later showed that the surface was clean, the shell color was slightly darker but without chalking. This dual-material solution became their standard design.

The combination of PA6 and PMMA, three follow-up questions.

Follow-up Question 1: What environment does the transparent part come into contact with? Choose PMMA for outdoor UV exposure, and choose PC for low-temperature impact.

Follow-up Question 2: What load does the casing experience? Vibration and impact are present, PMMA is not a candidate.

Follow-up question 3: Has the thermal expansion difference of the two materials been accounted for? Leaving compensation at the joint is a required practice for the dual-material solution.

Extension: Four-step quick judgment (PA6 vs PMMA direction)

Four-step 'grab' structure vs transparent good' material pressing into walkable action:

Step 1: Ask 'Do you want transparency?' PMMA transmits 92% of light, while PA6 transmits less than 5% — once the transparency requirement is confirmed, PMMA is the basic answer.

Step 2: Measure impact resistance. PA6 has slightly better toughness than PMMA, but neither is used for high-impact parts—high impact requires PC.

Step 3: Measure outdoor and food contact. PMMA has better outdoor weather resistance than PA6; however, PMMA is not resistant to alcohols, ketones, and esters, so pay attention to the catalog when it comes to food contact.

Step 4: Calculate costs and collaboration. PMMA is 50-100% more expensive than PA6, but the premium for an attractive appearance of exterior parts is acceptable; high-strength components still use PA6-GF30.

Beyond these four points—many high-end products have a division of labor between the 'transparent shell and internal structural components': shell is PMMA, frame is PA6-GF30. More practical than 'either-or'.

Practical Combat: Three Steps

Step 1: Confirm transparency requirements→ PMMA first. PMMA with 92% light transmission is the most stable choice in the same price range.

Step 2: High impact requirements PC, prefer. PMMA has poor impact resistance; PC has the highest impact among transparent materials in the same grade.

Step 3: Outdoor vs. indoor two types. PMMA outdoors does not turn yellow for 5 years, PA6 outdoors starts to become brittle after 2-3 years. For long-term outdoor use, prioritize PMMA/PC.

Key Tip

Transparent parts long-term projects prioritize optical grade PMMA + UV coating — PMMA is one level higher than PA6 for UV aging resistance. However, PMMA is not resistant to alcohols, ketones, or esters, so for food-grade products, pay attention to the catalog formula.

Multiple components need to be divided: frame PA6-GF30 + shell PMMA, more stable than choosing one.

Engineering Memo

Dual-material division of labor for appearance parts is an industry convention: shell PMMA and frame PA6-GF30 are common structures in consumer electronics, cosmetics, and high-end home appliances. Both sides have UV formulations for long-term stability.

Industry Sensibility

PMMA is irreplaceable for optical components, billboards, and acrylic panels, while PA6 is the foundation for large structural parts, gears, and sliders. The two-material combination for "dual-material division" is industry convention—shell PMMA and frame PA6-GF30.

This structure is common in high-end home appliances, consumer electronics, and cosmetics packaging.

Adding a three-question, three-answer at the end.

High-frequency questionsOne-sentence answer
PMMA Is it good weather resistance?Yes, it's more resistant to yellowing under UV rays than PCs .
Can it bear loads?Decoration is fine, but the structure is not
PA6 What is there to worry about with appearance parts?Afraid of moisture-sensitive dimensions, floating, and floating fibers
How to handle assembly components?Thermal expansion compensation, flexible connection

adds another reverse case.

There was a project that used PMMA gear covers as load-bearing brackets, thinking "just make it thicker." Thickening solved strength, but didn't solve fatigue; after three months, screw holes cracked. The design allowance for light-transmitting materials should be calculated as brittle materials. Before applying structural loads, ask yourself: when it cracks, will it crack along with other parts?

The origin of the numbers: Why are two or three

PMMA? Why are they brittle and hard? Its main chain is rigid and the side base is large, making the chain segments less prone to slipping. Both hardness and light transmission come from this, but the trade-off is poor energy absorption, and impact and fatigue are weaknesses. Light transmission and brittleness are two sides of the same coin; choosing it means choosing the front of that coin.

PA6 Why does it withstand vibration? Moderate crystallinity and good toughness; under alternating stress, chain segments can repeatedly absorb and release energy, making cracking less likely. For continuous vibration locations like pumps and fans, PA6 or its reinforcement systems are common customers. Performance on vibration tables speaks for more than any static parameters.

Practical Checklist: Six actions for appearance and structure

Separate transparent parts and structural parts on the drawing

Disable PMMA for continuous vibration positions, write into design specifications

Leave thermal expansion compensation for dual-material joints, flexible connections or washers for digestion

PA6 Perform wet dimension verification for appearance parts, leave sufficient tolerances

Outdoor transparent parts prioritize PMMA, low-temperature impact to discuss PC

Assembly torque is separately calibrated by brittle materials, disabling experience value

When appearance parts and structural parts are in the same frame, joints are the whole subject. Adequate compensation ensures the advantages of both materials are present simultaneously; If compensation is skipped, the shortcomings will spread among themselves.

Quick Judgment Manual: Quick check for transparent parts and enclosure components ,

Scenarios ,Transparent parts ,Enclosure ,
Outdoor instrumentsPMMAPA6-GF weather-resistant formula
Food equipmentPMMA or PCfood-grade PA6
vibration devicePC (not PMMA)PA6-GF
room temperature static displayPMMAarbitr

The key to the matching table is in the vibration line: many devices have a transparent shield less than ten centimeters from the vibration source, and PMMA won't survive a quarter here. During design review, mark the location of the vibration source, so the material selection for transparent parts can be decided on the spot, without waiting for sample failures to be taught.

PA6 Another often underestimated aspect of exterior parts is the compatibility between spraying and electroplating. PA6 has high surface energy and good spray adhesion, but wet dimensional drift causes the coating to be stressed. We have seen two projects in southern China where fine coating lines appeared during the rainy season. The solution is to write the moisture control and drying before spraying on the process card, allowing the coating to cure at a stable size.

If this process detail is not written down, new technicians will definitely re-examine it during the rainy season.

Don't forget to check the acceptance of the dual-material solution with two copies: transparent parts check light transmission and haze, shell parts look at size and appearance, and the two inspection cards are done separately. Teams merged into one card often don't know who to return to during rework; the responsibility interface is blurred and the project is more damaging than material defects.

Aquarium and appearance parts add another detail about lighting effects: PMMA and PA6-GF have different surface reflective textures, and when they appear side by side on the same product, customers often feel they don't match. The solution lies in molds and processes: shell parts are treated with fine leather texture or matte, translucent parts are kept high polished, and the two textures actually form layers.

Some clients' product design departments include this in appearance design standards, calling it the texture matching principle. In the appearance component project, besides physical performance, these soft visual matching also carries acceptance weight; early alignment can save a lot of back and forth in appearance review.

PA6 The issue of floating fibers in appearance parts is magnified after color matching: the white spots on floating fibers in dark-colored parts are especially conspicuous, and the first photo customers complain about is always the dark shell. The process side solution is to raise mold temperature and slow down the holding pressure curve; the material side solution is to choose a low floating fiber grade or switch to fine fiber.

By combining these three methods, the floating fiber can be pushed below the acceptance line, but the cost will change by one notch. Setting the floating fiber grade clearly during the prototyping stage and writing it into the appearance acceptance is much more cost-effective than shirking after mass production. The cost of appearance parts is always spent on whether the standard is set early or the loss is lost.

Conclusion

PA6 The division of labor between PMMA is the complete separation of "structural parts" and "transparent parts."

PA6 is the main domain of structural parts: strength, toughness, welding, fiberglass—structural parts, housing, snaps.

PMMA is the main domain of transparent parts: high transparency, high gloss, non-absorbent—acrylic parts, exterior parts, outdoor signage.

's starting point for model selection is not "which is more expensive or better," but "Do I want this part to be transparent?" If you want transparency, PMMA is the answer; If you don't want transparency, PA6 is the more stable choice

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