CNC Precision Turned Components
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CNC Precision Turned Components

Providing CNC precision turning services for various metal materials, ranging from miniature precision components to medium-sized structural parts, supporting rapid prototyping through large-scale mass production.
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Product Introduction

CNC Precision Turned Components

 

Core Business:

 

Providing CNC precision turning services for various metal materials, ranging from miniature precision components to medium-sized structural parts, supporting rapid prototyping through large-scale mass production.

 

Processing Equipment:

 

High-rigidity CNC lathes, Swiss-type lathes, and turning-milling composite machining centers.

 


 

Key Features of CNC Precision Turned Components:

 

High Precision and Superior Surface Finish:
Tolerances of up to ±0.005 mm, surface roughness of Ra 0.4 μm or better, ensuring high roundness, concentricity, and end-face perpendicularity.

 

Efficient Mass Production and Cost Optimization:
Automated equipment supports 24/7 continuous production, standardized processes, and stable quality at low cost in mass production.

 

Multi-Material Processing:
Capable of processing various metals, including stainless steel, aluminum alloys, brass, copper alloys, and carbon steel.

 

Integrated Machining of Complex Parts:
Turning-milling composite machining completes turning, milling, drilling, and tapping in a single setup, eliminating errors caused by secondary clamping.

product-800-800

 


 

Main Application Fields of CNC Precision Turned Components:

 

Automotive industry, fluid control and hydraulic systems, electronic and communication equipment, general machinery and automation, consumer goods and instruments, optics, and precision instruments.

 

product-1200-600

 


 

CNC Precision Turned Components – Frequently Asked Questions (FAQ)

 

Q1: What are the main differences between CNC turning and CNC milling?

A: The key difference lies in the movement of the workpiece and the tool. In turning, the workpiece rotates while the tool remains stationary, making it suitable for cylindrical or disc-shaped parts. In milling, the workpiece is fixed while the tool rotates, which is suitable for prismatic parts and complex contours. Turning-milling composite machining combines the advantages of both processes.

Q2: What are the minimum turning diameter and maximum length you can handle?

A: The minimum machining diameter for Swiss-type lathes is 0.5 mm. The standard maximum turning diameter is 80 mm, with a maximum length of 300 mm. Larger sizes can be accommodated through multi-axis turning or secondary processing solutions.

Q3: How do you ensure consistent quality during mass production?

A: We establish a multi-level quality control system, including first-article inspection, statistical process control (SPC), automated online inspection, and regular full-dimensional inspections.

Q4: How long does it generally take from drawing submission to sample delivery?

A: For parts made from standard materials with moderate complexity, prototype samples are typically delivered within 3–7 business days after drawing confirmation. The exact timeframe depends on part complexity, material availability, and the production schedule.

Q5: Besides turning, do you offer subsequent processing services?

A: Yes. We provide one-stop post-processing services, including deburring, heat treatment, electroplating, anodizing, laser marking, and simple assembly.

 

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