Dongguan Yexin Intelligent Technology Co., Ltd.

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OEM CNC Milling Aluminium Parts Anodizing Polishing Processing

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Dongguan Yexin Intelligent Technology Co., Ltd.
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Province/State:guangdong
Country/Region:china
Contact Person:MrHafrey
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OEM CNC Milling Aluminium Parts Anodizing Polishing Processing

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Brand Name :Yexin
Model Number :CNC90-1
Certification :ISO9001:2015
Place of Origin :Dongguan, China
MOQ :1 pcs
Price :Negotiable
Payment Terms :T/T, Paypal, Western Union, L/C, D/A, D/P, T/T, MoneyGram
Supply Ability :200000 pcs/month
Delivery Time :3-12 work days
Packaging Details :Standard Export Carton, Wooden Case, etc.
Application :Medical, Construction, Agriculture, Aerospace, Manufacturing, Automotive,Firearms, Metalwork, etc.
Material :Stainless Steel, Aluminum, Brass, Plastic, Mild steel, Titanium, Wood, Copper, etc.
Processing :CNC Turning, CNC Milling, CNC Drilling, etc.
Surface Finish :Anodizing, Polishing, Painting, etc.
Tolerance :±0.01mm, ±0.005mm, etc.
Delivery :By Express, Air, Sea, etc.
Drawing Format :CAD, PDF, STEP, STP, IGES, IGS, SLDPRT, 3DM, SAT, etc.
Inspection :100% Inspection
Keyword :Custom CNC Milling Parts
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View Product Description

CNC Milling Aluminum Parts OEM CNC Milling Machining Service Aluminum

Machined Parts Turning Stainless Steel Parts

Our comprehensive CNC milling service includes 3-axis, 4-axis, and 5-axis milling, as well as

right-angle milling capabilities.

Whether you require straightforward linear designs or intricate geometric shapes, we have you

covered. With instant pricing, flexible lead times, and valuable design-for-manufacturability

insights, our CNC milling service caters to various industries.

Request your instant quote today.

Product Details

CNC lathe machining can produce high-quality parts with accuracy and precision in a variety of raw

materials.

The CNC turning process can be applied to most hard materials and metals such as:
Aluminum, Stainless Steel, Brass, Copper, Titanium, etc.

Common Materials for CNC Machining
Material Properties
Aluminum 2024: 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
Stainless Steel Excellent machinability and outstanding uniformity; good workability and weldability, high ductility and formability
Steel Alloy Mix of chromium, molybdenum, and manganese yields toughness, good torsional and fatigue strength
Brass Versatile and highly attractive copper/zinc alloy with warm yellow color accommodates severe forming/drawing
Titanium Excellent strength to weight ratio, used in aerospace, automotive, and medical industries
Copper High ductility and high electrical and thermal conductivity; develops attractive blue-green surface patina over time
ABS Excellent impact resistance, good mechanical properties, susceptible to solvents
PEEK High-performance thermoplastic, very high strength, thermal and chemical resistant
POM High stiffness, excellent thermal & electrical properties, relatively brittle

OEM CNC Milling Aluminium Parts Anodizing Polishing Processing

OEM CNC Milling Aluminium Parts Anodizing Polishing Processing

OEM CNC Milling Aluminium Parts Anodizing Polishing Processing

OEM CNC Milling Aluminium Parts Anodizing Polishing Processing

CNC Machining Tolerances

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.

CNC Milling Tolerances
Limits for nominal size Plastics Metals
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.

Common Applications of CNC Milling Parts


Industries that use CNC machining include aerospace, automotive parts manufacturing, medical

machine manufacturing, transportation, defense, and marine industries, along with oil and gas

industries and electronics.

CNC machining has allowed these industries to become more efficient at mass-producing

custom CNC parts.

OEM CNC Milling Aluminium Parts Anodizing Polishing Processing

Company Profile

OEM CNC Milling Aluminium Parts Anodizing Polishing ProcessingOEM CNC Milling Aluminium Parts Anodizing Polishing Processing

FAQ's

1. How long does it take to receive a quotation?


Typically, we aim to provide a response within one days upon receiving an RFQ.

If there is a delay in generating the quote, we will promptly inform you.

2. Is it possible to provide my own material for production?


Certainly, we accept customer-supplied materials as long as they are compatible with our

machine capabilities.

3. How does our pricing compare to other suppliers?


When it comes to pricing, we offer a competitive advantage. Typically, our prices for plastic injection

mold tools and CNC machined/turned parts are 25-45% lower than those of suppliers in North

America and Europe.

In contrast to Chinese suppliers, we do not compete solely on price. Instead, we prioritize delivering

the utmost quality, rapid responsiveness, and professional results to our clients.

4. Do you provide reverse engineering services or recommend cost-saving solutions?


Absolutely, we can extract design and engineering details from a wide range of manufactured

components. Our team can aid in part design, material selection, and optimizing machining processes

and finishing techniques.

With the intended application in focus, we frequently identify minor design adjustments, material

changes, or tolerance modifications that can lower your part's cost without compromising quality

or functionality.

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