Nylon (PA) CNC Machining Service
Get precision Nylon (PA) CNC machined parts with excellent mechanical strength, wear resistance, and durability. Our advanced CNC machining capabilities produce accurate components with complex geometries, consistent tolerances, and quality surface finishes. Ideal for prototypes and production parts used in demanding industrial and mechanical applications.

Nylon in CNC Machining
Nylon (PA) is a durable engineering thermoplastic valued for its high mechanical strength, excellent wear resistance, low friction, and good machinability. These characteristics make it an excellent material for CNC machined components that require reliable performance under repeated movement and mechanical loads.
Nylon can be precisely machined into complex geometries and functional parts while maintaining good dimensional accuracy. It is commonly used for gears, bearings, bushings, rollers, electrical components, automotive parts, fixtures, and industrial machinery components.
| Available Nylon Grades | PA6 Nylon, PA6 + GF15, PA6 + GF30, PA66 Natural, PA66 Black |
| Preço | $ |
| Prazo de entrega | Menos de 10 dias |
| Espessura da parede | 0,8 mm |
| Tolerâncias | ±0,125 mm (±0,005 pol.) |
| Tamanho máximo da peça | 1200 × 500 × 150 mm |

Nylon PA CNC Machining Materials
Machined Nylon Properties
Nylon (PA) is a high-performance engineering thermoplastic valued for its excellent mechanical strength, wear resistance, toughness, and low-friction characteristics. Its combination of durability and machinability makes it well suited for precision CNC components exposed to repeated movement, mechanical loads, and demanding operating conditions.
Tolerâncias gerais de usinagem CNC
| Descrição | Tolerância geral ou padrão |
|---|---|
| Tolerâncias dimensionais gerais | ±0,005″ (±0,127 mm) para metais; ±0,010″ (±0,254 mm) para plásticos, de acordo com a norma ISO 2768-mK, salvo indicação em contrário |
| Tolerâncias rígidas | Precisão de até ±0,001″ (±0,025 mm) disponível mediante solicitação, com desenhos 2D detalhados e especificações de GD&T |
| Tamanho mínimo do recurso | ~0,020″ (0,50 mm), dependendo da geometria da peça, do diâmetro da ferramenta e do material |
| Tolerância do diâmetro do furo | ±0,002″ (±0,05 mm) típico; tolerâncias mais estreitas com mandrilamento ou alargamento |
| Planicidade/Paralelismo | ≤0,002″ por 6″ (≤0,05 mm por 150 mm), varia de acordo com o material e a configuração do dispositivo de fixação |
| Tolerâncias de rosca | Roscas métricas e imperiais padrão conforme ISO/ASME; roscas personalizadas ou finas disponíveis mediante solicitação |
| Tolerância angular | ±0,5° típico |
| Condição da borda | As bordas afiadas são quebradas e rebarbadas por padrão, salvo indicação em contrário |
| Acabamento da superfície (padrão) | Ra 3,2 μm (125 μin) como usinado; acabamentos aprimorados disponíveis por meio de polimento, jateamento de esferas, anodização, etc. |
| Tamanho máximo da peça | Fresagem: Até 80″ × 48″ × 24″ (2.032 × 1.219 × 610 mm) Torneamento: Até 62″ de comprimento × 32″ de diâmetro (1.575 × 813 mm) |






Advantages and Limitations of Nylon CNC Machining
Nylon is widely used for CNC machining because it combines strength, wear resistance, low friction, and lightweight performance. However, factors such as moisture absorption and temperature sensitivity should be considered when selecting Nylon for precision components.
- High Mechanical Strength:
Nylon provides excellent strength and toughness, making CNC-machined parts suitable for repeated loads and demanding mechanical applications. - Low Friction & Wear:
Its naturally low-friction characteristics make Nylon particularly suitable for gears, bushings, bearings, rollers, and other moving components. - Good Chemical Resistance:
Nylon performs well against many oils, greases, fuels, and common chemicals, making it useful in various industrial environments. - Lightweight Performance:
Nylon offers useful mechanical strength at a significantly lower weight than many metals, making it suitable for weight-sensitive components. - Material com boa relação custo-benefício:
Its combination of machinability, durability, and affordability makes Nylon a practical choice for prototypes, custom parts, and low-volume production.
- Moisture Absorption:
Nylon can absorb moisture from its surroundings, which may cause dimensional changes and affect mechanical properties in precision applications. - Temperature Limitations:
Although Nylon performs well under moderate temperatures, prolonged exposure to high heat can reduce its stiffness and dimensional stability. - Machining Considerations:
Nylon requires appropriate cutting tools, feeds, speeds, and heat management. Poor machining parameters may cause deformation, dimensional variation, or an inconsistent surface finish.
Dê vida aos seus projetos com a Elite Mold Tech
Experimente a usinagem CNC de precisão com a Elite Mold Tech. De protótipos complexos à produção em larga escala, estamos prontos para transformar suas ideias em realidade. Entre em contato conosco hoje mesmo para discutir as necessidades do seu projeto!
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Nylon CNC Machining FAQs
Is Nylon difficult to machine?
Nylon is generally easy to CNC machine, but its moisture absorption and thermal sensitivity require proper machining control. Using suitable cutting tools, speeds, feeds, and cooling methods helps achieve accurate dimensions and smooth surface finishes.
Is Nylon flammable?
Recommended cutting speeds for brass vary depending on the specific alloy and machining process. Generally, cutting speeds for brass range between 100 to 300 meters per minute. The appropriate cutting speed helps maintain tool life and achieve a high-quality finish.
Which type of Nylon is best suited for machining?
PA66 (Nylon 66) is one of the most commonly used Nylon grades for CNC machining due to its high strength, stiffness, wear resistance, and thermal performance. It is suitable for producing durable precision components for demanding applications.
Which variety of Nylon is the strongest?
Brass generally offers easier machinability than aluminum. Compared to aluminum, brass has a lower tendency to stick to tools, allowing for faster machining at a lower power. Brass’s lower friction coefficient and superior chip formation result in less tool wear and higher precision during machining operations. Brass C360 is a highly machinable brass alloy, making it commonly referred to as free-machining brass.