ABS CNC Machining Service

ABS in CNC Machining
ABS (Acrylonitrile Butadiene Styrene) is a versatile engineering thermoplastic widely used for CNC machining due to its good machinability, impact resistance, strength, and dimensional stability. It can be machined into detailed and complex geometries while maintaining consistent accuracy and a smooth surface finish. ABS is a practical and cost-effective material for functional prototypes, housings, fixtures, enclosures, and low-volume production components across a wide range of industries.
| Available ABS | Natural Beige, Black, White; Custom Colors on Request |
| Prix | $ |
| Délai de livraison | Moins de 10 jours |
| Épaisseur de la paroi | 0,8 mm |
| Tolérances | ±0.005″ (±0.125mm) |
| Taille maximale des pièces | 200 cm x 80 cm x 100 cm |

ABS CNC Machining Materials
Machined ABS Properties
ABS is widely used in CNC machining due to its excellent impact resistance, durability, lightweight properties, and ease of fabrication. Its balanced mechanical performance makes it suitable for prototypes, functional components, enclosures, and custom machined parts.








Tolérances générales d'usinage CNC
| Description | Tolérance générale ou norme |
|---|---|
| Tolérances dimensionnelles générales | ±0.005″ (±0.127 mm) for metals; ±0.010″ (±0.254 mm) for plastics in line with ISO 2768-mK unless otherwise specified |
| Tolérances serrées | Down to ±0.001″ (±0.025 mm) available upon request, with detailed 2D drawings and GD&T specifications |
| Taille minimale de l'objet | ~0.020″ (0.50 mm), depends on part geometry, tool diameter, and material |
| Tolérance sur le diamètre du trou | ±0.002″ (±0.05 mm) typical; tighter tolerances with boring or reaming |
| Planéité/parallélisme | ≤0.002″ per 6″ (≤0.05 mm per 150 mm), varies by material and fixture setup |
| Tolérances de filetage | Filets métriques et impériaux standard selon ISO/ASME ; filets personnalisés ou fins disponibles sur demande |
| Tolérance angulaire | ±0,5° typique |
| État des bords | Les arêtes vives sont cassées et ébarbées par défaut, sauf indication contraire. |
| Finition de la surface (standard) | Ra 3,2 μm (125 μin) tel qu'usiné ; des finitions améliorées sont disponibles par polissage, microbillage, anodisation, etc. |
| Taille maximale des pièces | Milling: Up to 80″ × 48″ × 24″ (2,032 × 1,219 × 610 mm) Turning: Up to 62″ length × 32″ diameter (1,575 × 813 mm) |






Advantages and Limitations of ABS CNC Machining
ABS is a popular engineering thermoplastic for CNC machining because of its good machinability, impact strength, dimensional stability, and affordability. It is well suited for prototypes and functional components, although its temperature, UV, and chemical resistance should be considered for demanding applications.
- Excellent Machinability:
ABS machines efficiently and can be used to produce precise features, detailed geometries, pockets, holes, and complex components. - Good Impact Strength:
Its strong impact resistance makes ABS suitable for parts exposed to everyday mechanical loads, vibration, and handling. - Cost-Effective Material:
ABS is relatively economical compared with many engineering plastics, making it an attractive option for prototypes and low-volume production. - Dimensional Stability:
ABS provides good dimensional consistency under normal operating conditions, helping achieve accurate and repeatable CNC machined parts. - Wide Range of Applications:
CNC machined ABS components are commonly used for housings, enclosures, fixtures, prototypes, consumer products, electronics, and industrial components.
- Limited Heat Resistance:
ABS can soften or lose dimensional stability at elevated temperatures, making it unsuitable for certain high-temperature applications. - Poor UV Resistance:
Long-term exposure to sunlight and UV radiation can cause fading, discoloration, and gradual degradation unless suitable protection is applied. - Limited Chemical Resistance:
Certain solvents and aggressive chemicals can damage ABS, so chemical compatibility should be evaluated before using it in harsh environments.
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ABS CNC Machining FAQs
Can ABS Plastic Be CNC Machined?
Yes. ABS is highly suitable for CNC machining because it cuts cleanly and can hold accurate dimensions. It allows manufacturers to produce complex geometries, detailed features, and smooth finishes for both prototypes and functional production parts.
What Is the Best Way to Cut ABS Plastic?
ABS can be effectively machined using CNC milling, turning, drilling, and routing. Sharp cutting tools, appropriate feeds and speeds, and proper heat control are important to prevent melting or deformation and achieve a clean surface finish.
What Are Common Applications of CNC-Machined ABS?
CNC-machined ABS is commonly used for electronic enclosures, equipment housings, automotive components, fixtures, functional prototypes, consumer products, and custom mechanical parts.
Is ABS Easy to Machine?
Yes. ABS offers excellent machinability compared with many engineering plastics. It can be cut, drilled, milled, and turned efficiently while maintaining good dimensional accuracy. Proper machining parameters help minimize heat buildup and improve surface quality.
Why Choose ABS CNC Machining Instead of Injection Molding?
CNC machining is particularly suitable for prototypes, custom components, and low-volume ABS production because it does not require expensive molds or tooling. It also allows faster design changes and shorter setup times. Injection molding, on the other hand, can become more economical when producing parts in large quantities.