CNC MACHINING ABS SERVICES
At XHYE, we specialize in CNC machining ABS (Acrylonitrile Butadiene Styrene) and its variants, delivering precise, functional, and cost-effective plastic components with excellent impact resistance, surface quality, and design flexibility. From complex functional prototypes and custom enclosures to low-volume production parts for consumer electronics, automotive interiors, and industrial applications, our advanced CNC capabilities enable rapid iteration and high-quality results without the need for expensive tooling.
Get Instant Quote | ISO 9001:2015 Certified | Standard Tolerances: ±0.005″ (±0.13 mm) — Tighter Available | Lead Times from 3 Days | Max Part Size: 1200 × 800 × 600 mm
ISO
9001:2015 Certified
10+
Sheet metal materials
±0.01 mm
Tolerance achievable
5-day
Fast lead time
What Is ABS Machining?
ABS CNC machining is a precision subtractive manufacturing process that uses computer-controlled machine tools — primarily milling centers and lathes — to remove material from ABS plastic stock (sheets, rods, or blocks) to create accurate, functional components with complex geometries.
ABS is a versatile thermoplastic known for its outstanding balance of mechanical properties: high impact strength and toughness, good dimensional stability, excellent machinability, and resistance to chemicals and heat (typically up to 80–100°C depending on grade). It machines cleanly with minimal tool wear, produces smooth surface finishes, and is easy to post-process, making it one of the most popular materials for rapid prototyping and low-to-medium volume production.
Key advantages in machining ABS:
- Excellent machinability allows high spindle speeds and feed rates with clean chip formation and low cutting forces.
- Ability to achieve tight tolerances and fine details on complex 3D geometries using 3-axis, 4-axis, and full 5-axis simultaneous machining in a single setup.
- Good thermal and chemical stability during machining, with minimal risk of melting or deformation when proper parameters and cooling are applied.
Our services include CNC milling (3/4/5-axis), CNC turning, drilling, tapping, threading, engraving, and integrated operations. We support everything from one-off functional prototypes and jigs/fixtures to low-volume production runs with consistent quality, full material traceability, and rigorous inspection.
Why Use Our ABS Machining Service
No MOQ
One-off aluminum prototype part or large quantity parts. No matter the size of your order, we can handle it.
Certified Quality & Reliability
ISO 9001:2015 certified processes, rigorous in-process and final inspection, material traceability, and secure confidential handling of your designs and IP.
End-to-End Service
From instant quoting and material sourcing to finishing, assembly, and global shipping. One trusted partner for your entire project.
High-precision and tight tolerance
We routinely achieve standard tolerances of ±0.005″ (±0.13 mm), with precision machining capabilities down to ±0.002″ (±0.05 mm) or tighter on critical features. Full CMM inspection reports available.
Products Made with ABS CNC Machining
Standard ABS offers an excellent all-around balance of impact strength, rigidity, dimensional stability, and machinability at a competitive cost. It is the most widely used grade for functional prototypes, enclosures, brackets, and consumer product components. At XHYE, we machine standard ABS with optimized parameters to achieve tight tolerances and smooth surface finishes, making it ideal for rapid design validation and low-volume parts where reliable mechanical performance and ease of post-processing are essential.
High-Impact ABS is formulated with higher rubber content to provide superior toughness and resistance to cracking or breakage under impact or stress. It is preferred for applications requiring greater durability, such as protective housings, automotive interior components, tool housings, and parts subject to repeated handling or drops. XHYE applies specialized machining strategies for high-impact grades to maintain surface integrity and dimensional accuracy while preserving the enhanced toughness that distinguishes this variant in demanding real-world use.
Flame-Retardant ABS incorporates additives to meet stringent fire safety standards while retaining good mechanical properties and machinability. It is commonly specified for electronics enclosures, electrical housings, consumer appliances, and any components where flame resistance is required for safety or regulatory compliance. XHYE maintains strict process controls when machining flame-retardant ABS to ensure consistent performance and surface quality, often followed by painting or other finishes to meet both functional and aesthetic requirements.
ABS/PC Blends combine the impact resistance and processability of ABS with the higher heat resistance and stiffness of polycarbonate. These alloys offer improved thermal performance (higher heat deflection temperature) and are well-suited for applications exposed to elevated temperatures or requiring greater structural rigidity, such as automotive components, electronic device housings, and industrial equipment parts. XHYE’s expertise in plastics machining enables precise production of ABS/PC components with excellent dimensional stability and surface finish.
Other Materials
Outstanding corrosion resistance, strength, and cleanability. Ideal for medical devices, food-grade equipment, marine hardware.
Exceptional strength-to-weight ratio, biocompatibility, and corrosion resistance. Primary choice for aerospace and medical implants.
Superior electrical and thermal conductivity, excellent machinability. Used for electrical connectors, heat exchangers, decorative hardware.
High strength and toughness. Often enhanced with heat treatment or coatings.
Lightweight with excellent corrosion resistance, good strength-to-weight ratio, and superior machinability. Used for aerospace components, heat sinks, automotive parts, and structural frames.
Excellent impact strength, high transparency, and good heat resistance. Used for protective covers, optical lenses, electronic housings, and safety equipment.
High mechanical strength, good wear resistance, and low friction. Used for gears, bearings, structural parts, and wear-resistant components.