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Our CNC Machining Capabilities
CNC Milling Service
3-, 4-, and 5-axis machining for solid metals and plastics. We deliver tight-tolerance prototypes and production parts within short lead times.
Ideal For: Custom enclosures, mold & die, precision brackets and complex planar components.
CNC Turning Service
Equipped with conventional turning centers and Swiss-type lathes for precision cylindrical parts from bar stock. Live tooling enables multi-axis machining in a single setup for efficient production.
Ideal For: Precision shafts, bushings, pins and tight-tolerance rotary parts with milled features.
CNC Turn-Mill Machining Service
Combines turning and multi-axis milling on one machine. Complex cylindrical profiles are completed in one clamping to achieve superior concentricity.
Ideal For: Multi-feature shafts, cross-drilled components, aerospace fasteners and hydraulic fittings.
Wire EDM Service
Precision cutting using continuously fed energized micro wire. Achieves micron-level tolerances, sharp internal corners and burr-free edges.
Ideal For: Extrusion dies, thick plate profiling, thin-wall delicate parts and intricate undercut structures.
Advantages of Accuro Rapid
CNC Machining
With nearly 30 years of experience, our CNC machining delivers industry-leading manufacturing solutions. We continuously combine rich practical know-how with cutting-edge production technology. The core strengths of our CNC service are listed below:
Rapid Turnaround
Orders start processing promptly upon confirmation. Equipped with advanced machinery, we produce high-quality components within 24 hours after client approval.
Custom Finishes
We strictly follow customer specifications to achieve precise results. Whether machining solid metal or plastic blanks, every detail is manufactured exactly as required.
Precision Engineering
Our advanced multi-axis equipment enables strict tolerance control. Every component is machined fully compliant with drawing requirements to deliver unmatched dimensional accuracy.
Material Selection
We adopt premium certified raw materials. All finished parts feature outstanding strength, durability and long-term reliability.
How does CNC Machining Work?
01 Setup
CNC machining is a subtractive manufacturing technology. Computer-controlled machine tools remove material from raw blanks to form finished components. Workpieces are securely clamped via fixtures to prevent shifting during machining.
02 Machining
Core CNC processes include drilling, milling and turning. CNC drilling creates cylindrical holes for fasteners using drill bits. CNC milling adopts rotating cutters to remove material at multiple axes and angles. In CNC turning, material is cut away while the workpiece rotates on a lathe.Workpieces are securely clamped via fixtures to prevent shifting during machining.
03 Post-Processing
Post-processing delivers consistent surface appearance across parts. Machined workpieces often carry visible tool marks. Available options include bead blasting to eliminate tool traces, painting for custom colours, anodizing and functional coatings to boost performance of metal and plastic components.
CNC Machining Materials
PC (Polycarbonate)
Known for its exceptional impact resistance and transparency. Used in eyewear, automotive parts, and durable plastic products.
PA (Polyamide)
Strong, flexible, and resistant to chemicals. Common in fibers, automotive parts, and industrial components.
ABS
Combines strength, rigidity, and toughness. Widely used in automotive and electronics.
PVC (Polyvinyl Chloride)
Durable and cost-effective. Employed in plumbing, vinyl siding, and medical devices.
Acrylic (PMMA)
Lightweight with high clarity. ldeal for aquariums, windows, and signage.
Nylon
Resistant to wear, self-lubricating. Utilized in textiles, brushes, and mechanical parts.
PSU (Polysulfone)
High-temperature resistance and rigidity. Suitable for electrical components and cookware.
POM (Polyoxymethylene)
Stiff and resistant to abrasion. Common in gears, bearings, and automotive parts.
PTFE (Teflon)
Non-stick and heat resistant. Used in non-stick cookware and industrial coatings.
UHMWPE
Exceptionally wear-resistant and low friction. Employed in liners, gears, and artificial joints.
Stainless Steel
Known for corrosion resistance and durability. Employed in cutlery, medical equipment, and architectural applications.
Aluminum Alloys
Known for its exceptional impact resistance and transparency. Used in eyewear, automotive parts, and durable plastic products.
Copper Alloys
Exhibit high thermal and electrical conductivity. Widely used in electrical systems, heat exchangers, and coinage.
Titanium
Provides exceptional strength with low density. Utilized in aerospace, medical implants, and high-end sports gear.
Brass
Combines strength and corrosion resistance. Commonly used in fittings, valves, and decorative items.
Steel
Offers high tensile strength and malleability. Used in construction, automotive, and manufacturing for structural components and tools.
Inconel
An austenitic family of superalloys with excellent heat and corrosion resistance. Used in gas turbines and chemical processing.
Surface Finish Options for CNC Machining
After CNC machining, various post-processing methods can eliminate defects such as machining marks and burrs, optimize the surface condition, and enhance the wear resistance, corrosion resistance, and scratch resistance of the parts. At the same time, it enriches the appearance texture, achieves various surface effects, and can also complete logo printing, balancing hand feel and aesthetics, and improving the overall quality and reliability of the product.
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