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CNC Lathe Metal Part Custom OEM Stainless Steel Milling CNC Machining Service Fabrication

Dongguan Yexin Intelligent Technology Co., Ltd.

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Address: Hengjiao Industry Zone, Hengjiao Village, Shijie Town, Dongguan, Guangdong, China

Contact name:Hafrey

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CNC Lathe Metal Part Custom OEM Stainless Steel Milling CNC Machining Service Fabrication

Country/Region china
City & Province dongguan guangdong
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Product Details

CNC Lathe Metal Part Custom OEM Stainless Steel Milling CNC Machining

Service Fabrication


We possess extensive CNC machining capabilities, crafting a diverse range of parts, from

straightforward "as machined" workholdings to intricate geometries. Our manufacturing facilities

are equipped with a variety of CNC mills and turning centers, and upon request, we can utilize

EDM and grinders.

 

Embracing precision, we provide tolerances as tight as 0.05 mm (0.0020 in), coupled with swift

lead times starting from just one business day.

 

Product Details

 

CNC machining encompasses a wide variety of materials, each requiring specific machining parameters

for optimal performance. The most common materials include:

 

1. Metal:
Metal is the predominant material in CNC machining, with the ability to cut various types, from brass

to nickel superalloys like Inconel. Applications range from injection molds to shafts and gears.

 

2. Plastic:
While injection molding is common for plastic parts, CNC machining is used for specific components

like ABS, nylon, and polycarbonate. Applications include valve bodies, bushings, and injection

molding prototypes.

 

3. Wood:
CNC routers are frequently employed for wood cutting, especially for decorative purposes like furniture,

window frames, and ornamental panels.

 

4. Foam:
Polyurethane foam, both closed and open-cell, finds application in CNC machining for creating

secure packaging, such as foam used in toolboxes for tool transportation.

 

5. Composites:
CNC machines are essential for processing abrasive composite materials like aramid, fiberglass,

and carbon fiber, commonly used in aerospace and marine components.

 

Common Materials
NameDescription
AluminumHigh machinability and ductility, good strength-to-weight ratio.
Stainless steelHigh tensile strength, corrosion and temperature resistant.
Mild steelHigh machinability and weldability, high stiffness.
BrassLow friction, excellent electrical conductivity, golden appearance.
CopperExcellent thermal and electrical conductivity.
TitaniumExcellent strength to weight ratio, used in aerospace, automotive and medical industries.
ABSCommon thermoplastic, impact resistant, easy to machine.
NylonExcellent mechanical properties, thermal, chemical and abrasion resistant.
POMHigh stiffness, high accuracy, low friction, easy to machine.

 

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

 

CNC milling machines stand out as a pinnacle of precision in manufacturing, allowing for the

creation of intricate designs with exceptional accuracy. Here's an extensive overview of the diverse

parts that can be produced using CNC milling machines:


1. Aerospace Components: Crafting landing gear components and fuselage structures with utmost

precision, meeting the rigorous standards of the aerospace industry.


2. Automotive Components: Production of control panels, axles, and car molds, contributing to the

efficiency and innovation in the automotive sector.


3. Consumer Electronics: Manufacturing components like enclosures for consumer electronic

devices, maintaining a delicate balance between functionality and aesthetic appeal.


4. Medical Components: Precision machining of surgical instruments and orthotics, adhering to the

high standards of quality and accuracy in the medical field.


5. Oil and Gas Machine Parts: Crafting essential components such as valves, rods, and pins for the oil

and gas industry, ensuring resilience in challenging operational environments.


6. Prototyping and Modeling: Swift prototyping and modeling for product development, facilitating

efficient testing and iteration of designs.


7. Sculptures: Transforming digital artistic designs into tangible sculptures, showcasing the artistic

possibilities of CNC milling.


8. Furniture: Precision crafting of components for furniture, ensuring consistency and quality in the

production of intricate designs.


9. Woodworking: Facilitating precision woodworking for the creation of detailed and finely finished

wooden components.


From critical components in aerospace to artistic endeavors like sculptures, CNC milling machines

play a crucial role in diverse industries, offering unparalleled accuracy and versatility.

Company Profile

FAQ's

 

1. What type of design files does We accept for quoting?

 

To ensure accuracy and efficiency in quoting, we exclusively welcome 3D CAD files in STL, STEP,

or IGES format. For 2D drawings with reference dimensions, kindly provide them in PDF format.

 

Complete manufacturing information must be included in the technical documentation for a

thorough assessment. Please note that informal communication via Whatsapp, email, etc.,

will not be acknowledged for manufacturing purposes.

 

2. How long does a quotation take?

 

Our usual practice is to provide a response to Requests for Quotation (RFQ) within a few days of

receiving them. If, for any reason, there is a delay in the quotation process, we will notify you at

the earliest opportunity.

 

3. What tolerances can achieve?

 

Tolerances are not universally defined and vary based on factors such as part size, design geometry,

the number and size of features, material selection, surface finish, and the manufacturing process.

 

After order confirmation, we conduct a comprehensive Design for Manufacturing review to identify

areas for potential modification to enhance manufacturability. It is advantageous if you can specify

critical tolerance areas in your design, allowing for adjustments to optimize production time and

costs.

 

General tolerance guidelines are provided for CNC machining in metal and plastic, plastic injection

molding, CNC metals and plastic injection molding materials, metal 3D printing (+/- 0.5mm),

and an expected shrinkage rate of +/- 0.15% for vacuum casting. Clear specifications in the 2D

drawings are essential for precise adherence to manufacturing and technical requirements.

 

4. How does you ensure the quality of my parts?

 

Upon confirmation of your order, a comprehensive Design for Manufacturing (DFM) review is

conducted to identify any potential issues that could impact the quality of your parts.

 

All incoming materials undergo thorough inspection and verification using a suite of testing equipment.

Final inspection reports are generated before shipment. Additionally, we offer real-time sharing of

inspection data, fostering collaboration to address any quality concerns that may arise during production.

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