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OEM CNC Machining Parts Stainless Steel 5 Axis CNC Turning Milling Service
  • OEM CNC Machining Parts Stainless Steel 5 Axis CNC Turning Milling Service
  • OEM CNC Machining Parts Stainless Steel 5 Axis CNC Turning Milling Service
  • OEM CNC Machining Parts Stainless Steel 5 Axis CNC Turning Milling Service
  • OEM CNC Machining Parts Stainless Steel 5 Axis CNC Turning Milling Service
  • OEM CNC Machining Parts Stainless Steel 5 Axis CNC Turning Milling Service

OEM CNC Machining Parts Stainless Steel 5 Axis CNC Turning Milling Service

Place of Origin Dongguan, China
Brand Name Yexin
Certification ISO9001:2015
Model Number SS44
Product Details
Application:
Industrial Equipment, Medical, Automotive, Aerospace, Consumer Electronics, Robotics & Automation, Etc.
Material:
Stainless Steel
Processing:
CNC Turning, Milling, Drilling, Etc.
Surface Finish:
Polishing, Anodizing, Painting, Etc.
Tolerance:
±0.01mm, ±0.005mm, Etc.
Drawing Format:
PDF,CAD, STEP, STP, IGES, IGS, SLDPRT, 3DM, SAT, Etc.
Micro Machining Or Not:
Micro Machining
Equipment:
CNC Machining Centers
Keyword:
CNC Lathe Parts
Highlight: 

OEM CNC Machining Parts

,

5 Axis CNC Machining Parts

Payment & Shipping Terms
Minimum Order Quantity
1 pcs
Price
Negotiable
Packaging Details
Standard Export Carton, Wooden Case, etc.
Delivery Time
3-12 work days
Payment Terms
L/C, D/A, D/P, T/T, Western Union, Paypal
Supply Ability
173000 pcs/month
Product Description

Custom OEM CNC Machining Stainless Steel CNC Turning Milling Machining

5 Axis CNC Milling Service

 

CNC machining, standing for computer numerical control machining, is a prevalent manufacturing

process that employs automated, high-speed cutting tools to shape designs from metal or plastic

stock. Standard CNC machines encompass 3-axis, 4-axis, and 5-axis milling machines, lathes,

and routers.

 

Variations exist in how CNC parts are cut, with possibilities such as the workpiece remaining

stationary while the tool moves, the tool staying in place while the workpiece is rotated and moved,

or both the cutting tool and workpiece moving together.

 

Product Details

 

We work with a diverse range of materials, including carbon alloys, aluminum, brass,

stainless steel, high nickel alloys, and engineered plastics.

 

If you are uncertain about the best material for your specific application, our expertise can guide

you in selecting the most suitable option, even if it happens to be a material not mentioned here.

 

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
Brass Versatile and highly attractive copper/zinc alloy with warm yellow color accommodates severe forming/drawing
Copper High ductility and high electrical and thermal conductivity; develops attractive blue-green surface patina over time
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
Steel Mild Low Carbon High machinability and weldability, high stiffness; good mechanical properties, machinability, and weldability at low cost
Titanium Excellent strength to weight ratio, used in aerospace, automotive, and medical industries
ABS Excellent impact resistance, good mechanical properties, susceptible to solvents
Nylon Excellent mechanical properties, high toughness, poor moisture resistance
POM High stiffness, excellent thermal & electrical properties, relatively brittle

 

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Post-processing and surface finishes for CNC machining

 

CNC-machined parts as they emerge from the machine often exhibit visible tool marks,

a feature that may not align with your specific part requirements.

 

Fortunately, there exists a multitude of post-processing techniques aimed at enhancing the

surface appearance and elevating attributes such as wear resistance, corrosion resistance,

and chemical resistance.

 

Methods like anodizing, bead blasting, and powder coating present viable options for refining

the final presentation of your custom parts, allowing you to achieve the desired surface

quality and performance characteristics.

 

Surface Finishes
Name Applicable to Machining marks
As machined Metals, Plastics Visible, light surface scratches
Smooth machining
Fine machining Metals Slightly visible
Polishing Metals Removed on primary surfaces
Bead blasting Metals Removed for non-cosmetic, removed on primary surfaces for cosmetic
Brushing Metals
Anodizing Type II Aluminum
Anodizing Type III Aluminum Visible under anodizing
Black oxide Copper, Stainless steel, Alloy steel, Tool steel, Mild steel Visible
Powder coating Metals Removed
Brushed + electropolishing Stainless steel Removed on Primary surfaces

 

Specialist Industries

 

CNC machining is a highly utilized subtractive manufacturing process employed across a multitude

of industries. It plays a crucial role in aerospace, automotive, aviation, transportation, and

numerous other integral sectors.

 

For instance, in the aerospace industry, the production of airplane components demands an

exceptional level of precision to ensure the seamless functionality of the entire aircraft.

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Company Profile

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FAQ's

 

1. What size of fillets are added when no specific fillet is specified by the 3D model

or drawing?

 

When no specific fillet radius is outlined in the 3D model or drawing, the machinist will incorporate

fillet radii at their discretion to optimize for easy machining. In instances where a particular fillet

radius is needed, explicit specification is encouraged.

 

As a rule of thumb, consider internal vertical edge radii exceeding 1/3 of the depth, while internal

horizontal edges may either remain sharp or be introduced with a radius ranging from 0.5mm to

1mm.

 

2. A quick guide to CNC machining parameters

 

Most machining parameters are established by the machine operator during the generation of

G-code.


Build Size of CNC Machines:

CNC machines offer a notably large build area, especially when compared to 3D printers.
CNC milling systems can handle parts with dimensions up to 2,000 x 800 x 100 mm (78” x 32” x 40”).
CNC turning systems can machine parts with a diameter of up to Ø 500 mm (Ø 20’’).


Accuracy and Tolerances:

CNC machining enables the production of parts with high accuracy and tight tolerances.
Tolerances achievable with CNC machines can be less than half the diameter of an average human

hair, reaching ± 0.025 mm or .001’’.
If tolerance is not specified in the technical drawing, the operator typically machines the part with an

accuracy of 0.125 mm (.005’’).


Key Takeaways:

CNC machines excel in both build size and precision, making them suitable for a wide range of

applications.
Operators have the flexibility to set machining parameters based on the specific requirements of

the project.
Understanding the build size and achievable tolerances is crucial for designing parts that meet

precision and accuracy standards.

 

3. What type of surface finishes does provide?

 

Our services encompass a wide array of finishing options to attain the desired appearance and

texture for your parts. We offer treatments for metal, texturing specifically for plastic injection

mold tools, and painting for both metal and plastic, among other choices.

Discover more about specifying your preferred surface texture in our blog.

Contact Us at Any Time

86--13712759809
Hengjiao Industry Zone, Hengjiao Village, Shijie Town, Dongguan, Guangdong, China
Send your inquiry directly to us