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OEM CNC Milling Machining Services Stainless Steel Aluminum Brass Material

Categories CNC Milling Service
Brand Name: Yexin
Model Number: CNC95-3
Certification: ISO9001:2015
Place of Origin: Dongguan, China
MOQ: 1 pcs
Price: Negotiable
Payment Terms: L/C, D/A, D/P, T/T, Western Union, Paypal
Supply Ability: 200000 pcs/month
Delivery Time: 3-11 work days
Packaging Details: Standard Export Carton, Wooden Case, etc.
Application: Aerospace, Automotive Industry, Consumer Electronics, Medical, Oil and Gas Machine, etc.
Material: Stainless Steel, Aluminum, Brass, Plastic, Wood, Copper, etc.
Processing: Stainless Steel, Aluminum, Brass, Plastic, Mild steel, Titanium, Wood, Copper, etc.
Service: OEM, ODM, Customized
Surface Finish: Anodizing, Polishing, Painting, etc.
Tolerance: ±0.01mm, ±0.005mm, etc.
Drawing Format: PDF, CAD, STEP, STP, IGES, IGS, SLDPRT, 3DM, SAT, etc.
Inspection: 100% Inspection
Keyword: Custom CNC Milling Service
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  • Product Details
  • Company Profile

OEM CNC Milling Machining Services Stainless Steel Aluminum Brass Material

Custom CNC Milling Machining Services Stainless Steel CNC Machining Milling Parts


Our CNC mills, or CNC milling machines, are capable of producing parts in almost any shape,

using a variety of materials.


From soft metals like aluminum to tougher metals like steel, and even plastics such as acetal,

we provide cost-effective milling services.


Whether you require a single part, a batch of prototypes, or a full production order,

we have you covered.


Product Details


We have experience working with a wide range of materials, including carbon alloys, aluminum,

brass, stainless steel, high-nickel alloys, and engineered plastics.


If you're unsure about the best material for your specific application or if you're considering a

material that isn't listed here, our team can provide guidance and assistance.


Common Materials for CNC Machining
MaterialProperties
Aluminum2024: Good fatigue resistance and strength; excellent toughness at moderate to high strength levels; improved fracture toughness
6061: Excellent machinability, low cost, and versatility
7075: High strength, hardness, low weight, and heat tolerance
BrassVersatile and highly attractive copper/zinc alloy with warm yellow color accommodates severe forming/drawing
CopperHigh ductility and high electrical and thermal conductivity; develops attractive blue-green surface patina over time
Stainless SteelExcellent machinability and outstanding uniformity; good workability and weldability, high ductility and formability
Steel AlloyMix of chromium, molybdenum, and manganese yields toughness, good torsional and fatigue strength
Steel Mild Low CarbonHigh machinability and weldability, high stiffness; good mechanical properties, machinability, and weldability at low cost
TitaniumExcellent strength to weight ratio, used in aerospace, automotive, and medical industries
ABSExcellent impact resistance, good mechanical properties, susceptible to solvents
NylonExcellent mechanical properties, high toughness, poor moisture resistance
POMHigh stiffness, excellent thermal & electrical properties, relatively brittle

CNC Milling Tolerances
Limits for nominal sizePlasticsMetals
0.5mm* to 3mm±0.1mm±0.05mm
Over 3mm to 6mm±0.1mm±0.05mm
Over 6mm to 30mm±0.2mm±0.10mm
Over 30mm to 120mm±0.3mm±0.15mm
Over 120mm to 400mm±0.5mm±0.20mm
Over 400mm to 1000mm±0.8mm±0.30mm
Over 1000mm to 2000mm±1.2mm±0.50mm
Over 2000mm to 4000mm±2.0mm

*Please clearly indicate tolerances for nominal sizes below 0.5mm on your technical drawing.


CNC Machining Applications


CNC milling is employed to fabricate products composed of glass, metal, plastic, wood, and

custom-designed components.


Machinists utilize this process to create prototypes and items for various industries, including

aerospace, automotive, hardware startups, manufacturing, medical devices, robotics, and others.

Company Profile

FAQ's


1. What tolerances can be achieved?


Tolerances are not standardized across all processes and materials.

The final tolerances on your part depend on various factors, such as part size, design complexity,

the number and size of features, materials used, surface finish, and the manufacturing process

employed.


Once your order is confirmed, we conduct a Design for Manufacturing review to identify areas

that may need modification for better manufacturability.


It's helpful if you can specify which areas in your design have critical tolerances that must be

met and which can be adjusted, if necessary, to optimize production time and cost.

Here are some general tolerance guidelines:


General tolerances for CNC machining in metal and plastic.
Tolerances for plastic injection molding.
Reference charts for CNC machining of metals and plastic injection molding materials.
General tolerance for metal 3D printing is +/- 0.5mm.
A shrinkage rate of +/- 0.15% can be expected for vacuum casting.
All manufacturing and technical specifications must be clearly defined in the 2D drawings to

be followed accurately.


2. How does you ensure part quality?


Upon order confirmation, we conduct a comprehensive Design for Manufacturing (DFM) review

to identify and address any potential issues that could impact part quality.


We meticulously inspect and verify incoming materials using advanced testing equipment.
We provide final inspection reports prior to shipment.


Our real-time inspection data sharing capabilities allow us to collaborate with you in addressing

any quality concerns that may arise during production.


3. Advantages of CNC Machining


1. Fast and Repeatable
Quick removal of large amounts of metal material, parts ready as fast as 1 day


2. Accuracy
High-precision tolerances ranging from +/-0.005″ – 0.01″, depending on customer specs.


3. Wide Range of Materials
Choose from over 50 metal and plastic materials.


4. Scalable Volume
CNC Machining has scalable volumes for production of 1-100,000 parts.


5. Custom Surface Finishes
Suitable for many different kinds of substrates, make your parts just the same as real products.


6. Cost Saving
Low investment in tooling and preparation costs, economical for parts with simple structure.

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