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Aluminum Custom Machined Metal Parts CNC Milling Machining Turning

Categories CNC Machined Parts
Brand Name: Yexin
Model Number: CNC4
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: 200000 pcs/month
Delivery Time: 3-10 work days
Packaging Details: Standard Export Carton, Wooden Case, etc.
Application: Automation, Medical, Aerospace, Industrial Machinery, Consumer Electronics, Robotics & automation, etc.
Material: Aluminum, Stainless Steel, Brass, Plastic, Wood, Copper, etc.
Processing: CNC Turning, CNC Milling, CNC Drilling, etc.
Service: OEM, ODM, Customized
Surface Finish: Anodizing, Plating, Painting, etc.
Tolerance: ±0.01mm, ±0.001mm, etc.
Transportation: By Express, Air, Sea, etc.
Drawing Format: PDF, CAD, STEP, IGES, STP, IGS, SLDPRT, 3DM, SAT, etc.
Quality Control: 100% Inspection
Keywords: Milled Turned CNC Machined Parts
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  • Product Details
  • Company Profile

Aluminum Custom Machined Metal Parts CNC Milling Machining Turning

CNC Machined Part Manufactur CNC Milling Service Aluminum CNC Machining Turning Parts

Custom Percision Stainless Steel Aluminum Parts CNC Machining Milling Turning Parts

CNC Machined Parts CNC Machining Service


CNC machines function through automated cutting processes driven by a set of operator-provided

instructions known as G-code.


This G-code includes coordinates for specific part features, tool selections, recommended speeds

and feeds, and directives for coolant usage.


The machine control unit (MCU) translates this G-code into instructions for different servo motors

and spindles, enabling the production of the desired part.


Product Details


The advantage of CNC technology is its achievable mechanical properties.


By cutting away from bulk material, rather than thermally transforming it as in injection-molding

or additive manufacturing, all desirable mechanical properties of the metal or plastic of choice are

retained.


More than 50 industrial-grade metals, alloys, and plastics can be machined using CNC milling

and turning.


This selection includes aluminum, brass, bronze, titanium, stainless steel, PEEK, ABS, and zinc.


The only material requirement for CNC machining is that the part has an adequate hardness to be f

ixtured and cut.


Here is a comprehensive overview of the most popular materials.


The Most Popular Materials
NameCharacteristics
Aluminum 6061Good strength-to-weight ratio, excellent machinability, low hardness
Stainless Steel 304

Excellent mechanical properties, resistant to corrosion & acid,

relatively difficult to machine

Brass C360High ductility, excellent machinability, good corrosion resistance
ABSExcellent impact resistance, good mechanical properties, susceptible to solvents
Nylon (PA6 & PA66)Excellent mechanical properties, high toughness, poor moisture resistance
POM (Delrin)High stiffness, excellent thermal & electrical properties, relatively brittle

Surface Finishes
NameApplicable toMachining marks
As machinedMetals, PlasticsVisible, light surface scratches
Smooth machining
Fine machiningMetalsSlightly visible
PolishingMetalsRemoved on primary surfaces
Bead blastingMetals

Removed for non-cosmetic,

removed on primary surfaces for cosmetic

BrushingMetals
Anodizing Type IIAluminum
Anodizing Type IIIAluminumVisible under anodizing
Black oxideCopper, Stainless steel, Alloy steel, Tool steel, Mild steelVisible
Powder coatingMetalsRemoved
Brushed + electropolishingStainless steelRemoved on Primary surfaces

Specialist Industries


The following industries gain the most from CNC machining:


1. Medical 2. Electronics 3. Publishing
4. Transportation 5. Woodwork 6. Construction
7. Agriculture 8. Aerospace 9. Manufacturing
10. Automotive 11. Firearms 12. Metalwork

Company Profile


How To Reduce CNC Machining Costs?


Achieving cost reduction in CNC machining requires a comprehensive approach that optimizes

various aspects of the manufacturing process.


By implementing the following cost-saving strategies, manufacturers can enhance efficiency and

maximize their cost-optimization efforts:


1. Supplier Collaboration:


Collaborating with CNC machine suppliers is valuable for exploring cost-saving opportunities.

Engage with suppliers to negotiate favorable pricing, especially for bulk material purchasing.


Optimize supply chain logistics, improve delivery times, and reduce transportation costs through

strong supplier relationships.


Collaborative efforts can lead to innovative solutions and cost-saving recommendations based on

suppliers' expertise.


2. Design Optimization:


Designing parts for manufacturability is crucial to reduce CNC machining costs.
Streamline the machining process by simplifying geometry, minimizing tight tolerances, and reducing

the number of operations.


Collaborate with design engineers to optimize part designs for CNC machining, reducing production

time, tooling requirements, and overall costs.


3. Material Selection and Standardization:


Careful material selection and standardization can yield significant cost savings.
Choose cost-effective materials that meet specifications to reduce material expenses.


Standardize material options across product lines to simplify procurement, minimize waste, and

enhance machining efficiency.


4. Process Optimization:


Optimize the machining process by evaluating and refining various aspects of production.
Focus on toolpath optimization, minimizing setup time, improving machine utilization, and implementing

lean manufacturing principles.


Increase productivity and lower costs by optimizing toolpaths, reducing unnecessary movements,

and implementing efficient work holding and tool change strategies.


Implement lean manufacturing techniques such as 5S, value stream mapping, and continuous

improvement initiatives.


5. Automation and Robotics:


Integrating automation and robotics into CNC machining processes enhances efficiency and reduces

labor costs.


Automated systems handle repetitive tasks, allowing skilled operators to focus on complex operations.
Robotics facilitate precise and consistent machining, resulting in higher-quality parts and reduced scrap.


Embrace automation and robotics to increase throughput, lower labor expenses, and improve process

control.


By implementing these cost-saving strategies, manufacturers can effectively reduce CNC machining

expenses while maintaining high-quality production, ultimately gaining a competitive edge in the market

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