Precision CNC Machining Services
Karry Precision provides high-precision CNC machining services for prototypes, low-volume production, and custom machined parts. With more than 10 years of manufacturing experience, we support complex component production through CNC milling, CNC turning, 5-axis machining, drilling, tapping, and wire EDM.
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3-axis, 4-axis, and 5-axis CNC machining capabilities
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CNC milling, turning, drilling, tapping, and wire EDM
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Complex geometries and multi-surface machining
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Prototype, low-volume, and production manufacturing
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Complex and High-Precision Machining Capability
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Advanced In-House CNC Equipment
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Fast Prototype-to-Production Transition
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ISO 9001:2015 Certified Quality Control
Our CNC Machining Processes
We offer 3/4/5-axis CNC milling for precision components and molds. We process metals and engineering plastics, supporting prototypes to mass production. Backed by ISO9001 standards, our services serve medical, automotive, aerospace and industrial sectors.
Our live-tool turn-mill machines accomplish turning, milling, drilling and tapping in one setup. We custom-make precision shafts, bushings and connectors with stable quality for batch orders.
Simultaneous 5-axis machining removes repeated clamping errors to fabricate intricate components in one run. Our process engineers provide DFM guidance to cut costs and shorten lead times for high-complexity parts.
Typical CNC Machined Parts
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Precision Housings -
Mounting Brackets -
Shafts and Axles -
Flanges -
Bushings and Sleeves -
Manifolds -
Gears and Pulleys -
Machine Fixtures -
Electronic Enclosures -
Custom Mechanical Components
Have a similar part to manufacture?
CNC Machining Materials
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. Metal .-
Aluminum Alloys
Lightweight, corrosion-resistant, and easy to machine. Ideal for precision parts requiring strength, dimensional stability, and reduced weight.
Typical Applications- Electronic Housings
- Heat Sinks
- Structural Brackets
- Automotive Components
Cost Efficiency: -
Stainless Steel
Strong, corrosion-resistant, and suitable for demanding operating environments. Commonly selected for parts requiring durability, hygiene, and long service life.
Typical Applications- Medical Components
- Food Processing Parts
- Valve Bodies
- Marine Hardware
Cost Efficiency: -
Carbon Steel
Provides high strength, good machinability, and cost-effective performance. Suitable for structural and mechanical parts exposed to heavy loads.
Typical Applications- Shafts and Axles
- Mounting Plates
- Machine Components
- Industrial Fixtures
Cost Efficiency: -
Tool Steel
Designed for high hardness, wear resistance, and dimensional stability. Ideal for components subjected to repeated impact, pressure, or abrasion.
Typical Applications- Molds and Dies
- Cutting Tools
- Precision Fixtures
- Wear-Resistant Inserts
Cost Efficiency: -
Titanium Alloys
Combines high strength, low weight, corrosion resistance, and excellent performance under extreme conditions.
Typical Applications- Aerospace Components
- Medical Implants
- High-Performance Fasteners
- Marine Parts
Cost Efficiency: -
Brass and Copper Alloys
Offer excellent electrical conductivity, thermal conductivity, corrosion resistance, and reliable machinability.
Typical Applications- Electrical Connectors
- Valve Components
- Heat Transfer Parts
- Precision Fittings
Cost Efficiency:
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. Plastic .-
ABS
A cost-effective engineering plastic with good impact resistance, dimensional stability, and machinability. Suitable for prototypes and functional components.
Typical Applications- Electronic Enclosures
- Control Panels
- Automotive Interior Parts
- Functional Prototypes
Cost Efficiency: -
POM / Acetal
Provides low friction, high stiffness, excellent dimensional stability, and good wear resistance for precision mechanical parts.
Typical Applications- Gears
- Bushings
- Rollers
- Precision Mechanical Parts
Cost Efficiency: -
Nylon (PA)
Strong, lightweight, and wear-resistant, with good fatigue resistance and low-friction performance.
Typical Applications- Bearings
- Gears
- Spacers
- Industrial Wear Components
Cost Efficiency: -
Polycarbonate
A durable, impact-resistant plastic with good dimensional stability and optional optical transparency.
Typical Applications- Protective Covers
- Transparent Housings
- Inspection Windows
- Electronic Components
Cost Efficiency: -
PEEK
A high-performance engineering plastic with excellent heat resistance, chemical resistance, strength, and dimensional stability.
Typical Applications- Aerospace Components
- Medical Parts
- Semiconductor Equipment
- High-Temperature Insulators
Cost Efficiency: -
PTFE
Offers extremely low friction, excellent chemical resistance, and reliable performance in corrosive or high-temperature environments.
Typical Applications- Valve Seats
- Insulating Components
- Seals and Gaskets
- Chemical Processing Parts
Cost Efficiency:
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Explore our full material list or contact our engineering team for recommendations.
Surface Finishing Options
Karry Precision provides a range of surface finishing services to improve the appearance, corrosion resistance, wear performance, cleanliness, and service life of CNC machined parts.
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Anodizing
Anodizing forms a controlled oxide layer on aluminum surfaces, improving corrosion resistance, surface hardness, and wear performance. It also supports a wide range of colors for functional identification or decorative purposes.
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Bead Blasting
Bead blasting uses fine abrasive media to produce a smooth, uniform, non-reflective surface. It helps reduce visible machining marks and creates a clean matte appearance without significantly affecting part dimensions.
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Powder Coating
Powder coating applies a durable protective layer to metal surfaces through electrostatic spraying and heat curing. It provides strong resistance to corrosion, scratches, impact, and outdoor exposure.
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Electroplating
Electroplating deposits a thin metallic coating onto the part surface to improve corrosion resistance, conductivity, hardness, or decorative appearance. Common options include nickel, zinc, chrome, and tin plating.
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Polishing
Polishing reduces surface roughness and produces a smoother, brighter finish. Depending on the application, parts can be finished to a satin, brushed, or mirror-like appearance.
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Passivation
Passivation removes free iron and surface contaminants from stainless steel, helping restore and strengthen its natural corrosion-resistant oxide layer without changing the part’s dimensions.
*Not sure which finish is right for your part? Explore our complete guide
CNC Machining Tolerance Guide
Dimensional tolerance directly affects part fit, assembly performance, interchangeability, and manufacturing cost. Karry Precision evaluates tolerance requirements according to part function, material properties, geometry, machining method, and inspection conditions.
Proper tolerance planning can reduce unnecessary machining operations and improve production consistency:
- Apply tight tolerances only to functional or mating features
- Use general tolerances for non-critical dimensions
- Avoid unnecessary tolerance accumulation across assemblies
- Maintain consistent wall thickness where possible
- Allow suitable radii in deep pockets and internal corners
| Tolerance Category | Typical Tolerance | Suitable Materials | Cost Impact | Manufacturing Considerations |
| General Linear Dimensions | ±0.10 mm | Metals and engineering plastics | Low | Suitable for most non-critical dimensions using standard CNC milling or turning |
| Precision Linear Dimensions | ±0.05 mm | Aluminum, stainless steel, brass, steel and engineering plastics | Medium | May require precision tooling, controlled setups and in-process measurement |
| High-Precision Dimensions | ±0.02 to ±0.03 mm | Dimensionally stable metals and selected engineering plastics | High | Requires stable fixturing, controlled machining conditions and detailed inspection |
| Critical Features | Up to ±0.01 mm | Evaluated by material and geometry | High | Available for selected dimensions after engineering review; not applicable to every feature |
| Hole Diameter | ±0.02 to ±0.05 mm | Most machinable materials | Medium | Reaming, boring or precision drilling may be required for tighter hole tolerances |
| Hole Position | ±0.05 to ±0.10 mm | Metals and engineering plastics | Medium | Datum definition and inspection method should be clearly specified on the drawing |
| Surface Flatness | 0.05 to 0.10 mm | Primarily metal parts | Medium | Thin walls, large surfaces and residual material stress may increase deformation risk |
| Parallelism or Perpendicularity | 0.05 to 0.10 mm | Most machinable materials | Medium | Performance depends on datum selection, setup stability and feature spacing |
| Metric Internal Threads | Typically 6H | Metals and engineering plastics | Low | Standard fit for most general-purpose internal metric threads |
| Metric External Threads | Typically 6g | Metals and engineering plastics | Low | Standard fit for most general-purpose external metric threads |
Not sure about the right tolerance for your part?
Our CNC Machining Process
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STEP 1Drawing Review and Quotation
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STEP 2DFM Production Planning -
STEP 3Material Program Setup
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STEP 4Precision CNC Machining
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STEP 5Inspection Surface Finishing
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STEP 6Packaging Final Delivery
Guides to Optimize Your CNC Parts Design
Common CNC Machining Questions
Ready to Start Your Custom Parts Project?
Upload your drawings (STEP, STP, IGES, STL) or contact our team for a fast and confidential quotation.
Engineered CNC Machining Solutions You Can Rely On
At Karry Precision, we leverage years of industry experience, in-house advanced CNC equipment and ISO 9001-2015 certified quality management system to deliver dependable machining outcomes for all projects. Covering prototype development to volume manufacturing, we pursue high precision, efficient lead times and smooth communication to satisfy your manufacturing demands.
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Professional DFM & engineering design support
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Swift service spanning prototypes to mass production
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Strict ISO 9001-2015 quality control standards
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Proven capability in high-complexity precision machining
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Smooth communication serving worldwide clients
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Flexible production to suit all order volumes