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Custom CNC Parts Fabrication Services Stainless Steel Parts Milling CNC Machined Part

Dongguan Yexin Intelligent Technology Co., Ltd.
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Custom CNC Parts Fabrication Services Stainless Steel Parts Milling CNC Machined Part

Brand Name : Yexin

Model Number : SM17

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

Supply Ability : 160000 pcs/month

Delivery Time : 3-15 work days

Packaging Details : Standard Export Carton, Wooden Case, etc.

Application : Aerospace, Automotive, Industrial, Medical, Consumer Electronics, Robotics & automation, etc.

Material : Aluminum, Stainless Steel, Brass, Plastic, Wood, Copper, etc.

Processing : CNC Turning, Milling, Drilling, etc.

OEM/ODM : Acceptable

Surface Finish : Polishing, Painting, Anodizing, etc.

Tolerance : ±0.01mm, ±0.005mm, etc.

Drawing Format : PDF, STEP, STP, IGES, IGS, SLDPRT, 3DM, SAT, etc.

Keyword : CNC Custom Parts

Micro Machining or not : Micro Machining

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Custom CNC Parts Fabrication Services Stainless Steel Parts Milling CNC

Machined Part

We possess the capability to CNC machine a wide array of parts, ranging from uncomplicated

"as-machined" workholdings to intricate geometries.

Our manufacturing facilities are well-equipped with a diverse range of CNC mills and turning

centers, and upon request, we can also incorporate EDM and grinders into the process.

We offer precision with tolerances reaching as tight as 0.05 mm (0.0020 in), ensuring efficient

lead times, and providing delivery options within just 1 business days.

Product Details

Common Metal Materials for CNC Machining
Metal 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
Copper High ductility and high electrical and thermal conductivity; develops attractive blue-green surface patina over time
Titanium Excellent strength to weight ratio, used in aerospace, automotive, and medical industries
Steel Mild Low Carbon High machinability and weldability, high stiffness; good mechanical properties, machinability, and weldability at low cost

Custom CNC Parts Fabrication Services Stainless Steel Parts Milling CNC Machined PartCustom CNC Parts Fabrication Services Stainless Steel Parts Milling CNC Machined PartCustom CNC Parts Fabrication Services Stainless Steel Parts Milling CNC Machined Part

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

CNC Machining Applications

CNC machining is a prevalent subtractive manufacturing process, and its utilization is extensive

across various industries. Some of the industries that heavily rely on CNC machining include:

1. Aerospace:
The aerospace industry extensively utilizes CNC machining for the production of precise and

complex components used in aircraft and spacecraft.

2. Automotive:
In the automotive sector, CNC machining plays a crucial role in manufacturing high-precision

components for vehicles, ensuring efficiency and reliability.

3. Aviation:
The aviation industry relies on CNC machining for the production of components that require

exceptional precision and adherence to strict quality standards.

4. Transportation:
The transportation industry, encompassing various modes such as trains and ships, utilizes

CNC machining for the fabrication of critical components for smooth and reliable operation.

Custom CNC Parts Fabrication Services Stainless Steel Parts Milling CNC Machined Part

Company Profile

Custom CNC Parts Fabrication Services Stainless Steel Parts Milling CNC Machined PartCustom CNC Parts Fabrication Services Stainless Steel Parts Milling CNC Machined Part

FAQ's

1. How long does delivery time and quotation take?

The delivery time for parts is categorized based on complexity:

Low-complexity parts: 2-3 days
Moderate-complexity parts: 2-5 days
High-complexity parts: 5-15 days
Quoting time is dependent on the design complexity:

Simple designs: 1 business day or faster
Moderate to complex designs: 3+ business days
For an assessment and quote on your design, please contact our team.

2. How much does CNC machining cost?

The cost of CNC machining is influenced by factors such as complexity, quantity, and lead time.

For an accurate assessment, the best approach is to submit a 3D CAD model, allowing us to

provide an interactive quote along with design for manufacturability (DFM) feedback.

Notably, our use of proprietary software and automated fixturing processes eliminates upfront

non-recurring engineering (NRE) costs. This streamlined approach makes purchasing quantities

as low as 1 to 200 parts cost-effective.

While prices may be comparable to or slightly higher than 3D printing, CNC machining offers

superior material properties and surface finishes.

3. What's the general surface texture of CNC milled and turned parts?

In the realm of CNC machining, the general surface texture of as-machined milled parts typically

exhibits a roughness of approximately 3.2μm (1.6μm for relatively new machines).

On the other hand, turned parts can achieve a finer surface with a roughness of 0.8μm.

Notably, this level of surface quality is attained without the need to adjust the machining speed.


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