eSUN PA Nylon Filament – 1.75mm, 1kg

Tough, wear-resistant nylon for functional 3D printed parts

eSUN PA Filament is a high-performance nylon 3D printing filament developed from a PA6/66 copolymer for functional parts that need toughness, impact resistance, wear resistance and reliable mechanical performance. Also commonly referred to as eSUN ePA Nylon, this 1.75mm filament is supplied on a 1kg spool and is available in Clear/Natural.

Unlike standard PLA and PETG, nylon is designed for applications where durability, flexibility and resistance to repeated mechanical use are more important than simple ease of printing. eSUN PA is particularly well suited to gears, brackets, bushings, mechanical components, fixtures, functional prototypes and other parts that experience impact, friction or repeated movement.

High toughness and impact resistance

eSUN PA is formulated to produce strong, durable parts with high resistance to fracture. eSUN reports elongation at break of up to approximately 175%, highlighting the material's toughness compared with more rigid but brittle 3D printing materials.

This makes PA nylon a practical choice for functional components that need to absorb impacts or tolerate some flex rather than snapping under load. Its mechanical properties also make it useful for prototypes intended to replicate the behaviour of injection-moulded nylon components.

Self-lubricating and wear-resistant

One of the major advantages of nylon filament is its suitability for moving and contacting parts. eSUN PA has self-lubricating and wear-resistant characteristics that make it particularly useful for gears, bearings, bushings, rollers and other components where friction is a consideration.

For mechanical projects, this can make PA a better material choice than PLA when the printed part will experience repeated movement or contact with another component.

Lower shrinkage for a nylon filament

Nylon can be challenging to print because of its tendency to absorb moisture and, depending on the formulation, warp during cooling. eSUN's PA formulation is designed with lower shrinkage to help reduce warping and cracking while maintaining strong layer adhesion.

The material still benefits substantially from an enclosed printing environment, especially for larger functional parts.

Designed for demanding functional applications

eSUN PA nylon filament is a good choice for applications including:

  • Gears and mechanical drive components

  • Bushings, rollers and wear components

  • Brackets and functional mounts

  • Fixtures, jigs and manufacturing aids

  • Impact-resistant parts

  • Functional prototypes

  • Replacement components

  • Robotics and mechanical assemblies

  • Low-friction moving components

  • Durable housings and enclosures

The material's combination of toughness, wear resistance and flexibility makes it particularly useful when a printed component needs to perform a job rather than simply look good.

Printing eSUN PA Nylon

Nylon is significantly more moisture-sensitive than common materials such as PLA and PETG. Drying is not optional if you want consistent results.

eSUN recommends drying PA filament at 70°C for more than 12 hours before printing. The filament should then be kept dry during printing and stored in a sealed, low-humidity environment between uses. eSUN specifically recommends using a filament dryer such as the eBOX when printing PA.

For best results, use a heated bed and an enclosed or well-controlled print environment. eSUN's current recommended starting parameters are 250–290°C nozzle temperature, 70–90°C bed temperature and 0% cooling fan, with the exact settings adjusted for the printer, nozzle, model and desired results.

Clear/Natural PA filament

The Clear/Natural colour has a translucent natural appearance rather than the opaque appearance of most coloured nylon filaments. This makes it useful when the natural colour of the polymer is preferred or when the finished component will be painted, dyed or otherwise finished after printing.

A practical nylon upgrade from PLA and PETG

If a PLA or PETG part is failing because of impact, repeated flexing, friction or wear, eSUN PA is a material worth considering. It occupies a different part of the performance spectrum from everyday desktop filaments and is better suited to mechanical applications where toughness and durability matter.

Nylon does require more preparation than PLA or PETG, particularly when it comes to moisture control and bed adhesion. When properly dried and printed under appropriate conditions, however, eSUN PA provides a versatile engineering-grade material for functional FDM/FFF 3D printing.

Compatibility

eSUN PA 1.75mm filament is compatible with FDM/FFF 3D printers that can accept 1.75mm filament and meet the material's temperature requirements.

A printer should have a hotend capable of reaching approximately 250–290°C and a heated build platform capable of approximately 70–90°C. An enclosed chamber is recommended, particularly for larger parts where temperature differences can contribute to warping or layer cracking.

Because PA is abrasive only when reinforced with fibres, standard eSUN PA does not require a hardened nozzle solely because it is nylon. A standard brass nozzle can generally be used, provided it is compatible with the printer and material temperatures. Hardened nozzles become important when moving to reinforced materials such as PA-CF or PA-GF.

This filament is not the same material as PA12, PA-CF or PA-GF. eSUN PA is a PA6/66 copolymer and should be selected when the properties of standard, unfilled nylon are appropriate for the application.

Always check the individual printer manufacturer's material recommendations and maximum temperatures before printing.

Specifications

Technical specifications

Brand eSUN
Material PA Nylon (Polyamide)
Material Type PA6/66 Copolymer
Colour Clear / Natural
Filament Diameter 1.75mm
Diameter Tolerance ±0.05mm
Net Weight 1kg
Spool Quantity 1 spool
Density 1.12 g/cm³
Recommended Nozzle Temperature 250–290°C
Recommended Bed Temperature 70–90°C
Recommended Cooling Fan 0%
Recommended Print Speed 40–100 mm/s
Recommended Drying Temperature 70°C
Recommended Drying Time More than 12 hours
Heated Bed Required
Enclosed Printer Recommended
Key Properties High toughness, impact resistance, wear resistance, self-lubricating properties, low shrinkage
Suitable Applications Gears, bushings, brackets, fixtures, functional prototypes, mechanical components and wear parts
Compatibility

Will it work with my printer?

Yes — if your printer takes 1.75mm filament (that's the vast majority of desktop FDM printers), this works. It runs at standard temperatures, so no hardware upgrades or enclosure are needed.

FAQ

Frequently asked

What is eSUN PA filament?


eSUN PA is a nylon 3D printing filament made from a PA6/66 copolymer. It is designed for tough, durable functional parts and offers high impact resistance, wear resistance and self-lubricating properties.

What is eSUN PA filament used for?


eSUN PA is commonly used for functional mechanical parts such as gears, bushings, brackets, fixtures, bearings, wear components, robotics parts and durable prototypes. Its toughness makes it suitable for parts that experience impact, movement or repeated mechanical stress.

Is eSUN PA the same as nylon?


Yes. PA stands for polyamide, which is the polymer family commonly known as nylon. eSUN PA is a PA6/66 copolymer formulation designed specifically for FDM/FFF 3D printing.

Is eSUN PA the same as PA12?


No. eSUN PA is based on a PA6/66 copolymer, while PA12 is a different nylon formulation with different mechanical, thermal and moisture-related characteristics. Do not substitute PA12 for PA6/66 without checking whether the material properties are appropriate for your application.

What temperature should I print eSUN PA at?


eSUN currently recommends a nozzle temperature of 250–290°C for PA. A good starting point is within this range, followed by adjustment based on the printer, nozzle, layer height, print speed and model.

What bed temperature does eSUN PA need?


eSUN recommends a heated bed at 70–90°C for PA. Proper bed preparation and adhesion are especially important for nylon because larger parts can be susceptible to warping.

Does eSUN PA need to be dried before printing?


Yes. Nylon is highly moisture-sensitive and eSUN recommends drying PA at 70°C for more than 12 hours before printing. Keeping the filament dry during printing and storing it in a sealed, low-humidity environment afterward is also important.

Why does nylon filament need to be dried?


Nylon readily absorbs moisture from the air. Wet PA can produce steam during extrusion, causing popping, bubbling, stringing, inconsistent extrusion, poor surface quality and reduced mechanical performance. Proper drying is one of the most important steps when printing nylon filament.

Can I print eSUN PA directly from a filament dryer?


Yes. Printing PA from a heated filament dryer or dry box is recommended because nylon can begin absorbing moisture again after drying. eSUN specifically recommends using an eBOX filament box when printing PA.

Does eSUN PA need an enclosed 3D printer?


An enclosed printer is recommended, particularly for larger parts. Maintaining a more stable printing environment helps reduce temperature-related warping and interlayer cracking.

Does eSUN PA require a hardened nozzle?


Standard unfilled eSUN PA does not require a hardened nozzle simply because it is nylon. A hardened nozzle is recommended when printing abrasive fibre-reinforced materials such as PA-CF or PA-GF.

Can I print eSUN PA on a Bambu Lab printer?


It depends on the specific Bambu Lab printer. The printer must support the required nozzle temperature, heated-bed temperature and preferably an enclosed printing environment. Check the material and temperature limitations of your specific Bambu Lab model before printing.

Can I print eSUN PA on a Prusa 3D printer?


It depends on the specific Prusa printer and hotend configuration. The printer must be capable of reaching the recommended PA extrusion temperature and provide an appropriate heated build platform. An enclosure is recommended for larger nylon parts.

Can eSUN PA be used for gears?


Yes. Gears are one of the applications eSUN specifically identifies for its PA filament because of its self-lubricating and wear-resistant characteristics.

Is eSUN PA stronger than PLA?


"Stronger" depends on which mechanical property is being compared. PA is generally much tougher and more impact-resistant than PLA and can tolerate more flex before breaking, making it a better choice for many functional parts. PLA can still have higher stiffness in some applications, so material selection should be based on the requirements of the finished part.

Is eSUN PA stronger than PETG?


PA offers excellent toughness, impact resistance and wear resistance and can be a better choice for demanding mechanical parts. PETG is generally easier to print and can be preferable when ease of printing and dimensional stability are more important than nylon's combination of toughness and wear resistance.

Is eSUN PA flexible?


eSUN PA is tough and has significant elongation at break compared with more brittle materials, but it is not a flexible filament in the same category as TPU or TPE. It is better described as a tough engineering nylon with some ability to flex under load.

What colour is eSUN PA Clear/Natural?


Clear/Natural eSUN PA has a translucent natural appearance. eSUN lists the material colour as Clear, while some older product listings refer to the same colour as Natural.

What diameter is eSUN PA filament?


This product is 1.75mm filament and is supplied on a 1kg spool.

Can eSUN PA be used for functional prototypes?


Yes. eSUN PA is well suited to functional prototypes where the prototype needs to tolerate impact, repeated movement, friction or mechanical loading more effectively than typical PLA prototypes.

How should I store eSUN PA filament?


Store PA in a sealed, low-humidity environment with desiccant after drying. For the best results, keep the filament dry during printing as well, since nylon can absorb moisture from the surrounding air relatively quickly.

Can eSUN PA be used for large 3D prints?


Yes, but large nylon prints require more attention to drying, bed adhesion and temperature control. An enclosed printer and stable chamber environment are recommended to reduce warping and cracking.

What is the difference between eSUN PA and eSUN PA-CF?


eSUN PA is an unfilled PA6/66 copolymer nylon, while PA-CF contains carbon fibre reinforcement. PA-CF is designed for greater stiffness and strength but is more abrasive and requires an appropriate hardened nozzle. Standard eSUN PA is the better choice when toughness, wear resistance and some flexibility are desired without fibre reinforcement.

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Clear/Natural - eSun PA Filament - 1.75mm, 1kg

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