Precision CNC Machining Backed by Real Manufacturing Capacity
Real manufacturing capacity | better control | and stable quality from drawing to delivery.




Our Factory Capacity
Since 2001, we have specialized in high-precision CNC machining and the custom manufacturing of complex precision components.
We are not a loose supplier network or a resource-integration company. We are an integrated manufacturing enterprise with our own production system, combining direct factory capacity with project coordination, engineering support, and quality control under one structure.
Today, we operate 3 major manufacturing factories, 4 specialized production workshops, and 2 office areas, covering approximately 5,000 m². With more than 180 advanced machining units, we have built a strong and directly managed manufacturing system that allows better supervision, tighter process control, and more reliable project execution from drawing review to final delivery.
pieces of equipment, including CNC punch presses, CNC lathes, and more.
% Product Qualification Rate,Manufactured in compliance with ISO standards
The average lead time for standard orders is approximately 7 days. Trustworthy


CNC Machined Parts
CNC machining is a versatile process, whether you need a single prototype or thousands of precision production parts. At Daxin CNC, we provide custom CNC milling, turning, EDM, and sheet metal services across a wide range of materials. Browse our products below and switch between the tabs to see the details of each category.

Finished bracket

Cylindrical part

Clear molded part

Plastic bracket

Precision insert

Complex cavity part

Ring housing

Flange ring

Threaded base

Square flange

Valve body

Flange valve part

Bracket valve part

Angled valve body
Our CNC Manufacturing Capabilities
We provide a full range of precision manufacturing services, from CNC machining to surface finishing.
With advanced equipment and experienced engineers, we deliver high-quality components for industries worldwide.
Core Capability
CNC Milling
Precision milled housings, brackets, plates and complex aluminum or steel components.
Turning
CNC Turning
Shafts, bushings, threaded parts and tight-tolerance cylindrical components.
Complex Geometry
5-Axis Machining
Multi-face machining for complex prototypes, fixtures and precision parts.
Tolerances
Precision Machining
Engineering review, controlled datums, inspection support and repeatable batches.
Small Parts
Swiss-Type CNC
Small, slender and high-volume precision components with stable repeatability.
CNC Machining Industry
We serve customers in industries such as automotive, electronics, medical, and industrial equipment, operating under a certified ISO 9001:2015 quality management system to ensure consistent manufacturing quality.
DAXIN Certificates
Triple Management System Certified. Our operations are governed by ISO quality management standards, with controlled inspection procedures and documented traceability across all production stages.
Our ordering process
We serve customers in industries such as automotive, electronics, medical, and industrial equipment, operating under a certified ISO 9001:2015 quality management system to ensure consistent manufacturing quality.
01
Submit Drawing
Send your CAD file or project request.
02
Quote & Review
Receive quotation and process evaluation.
03
Production with Full Supervision
We arrange production and supervise the whole process.
04
Inspection & Delivery
Parts are inspected, packed, and shipped.
Customer Success Story
- A DAXIN CNC case study on robotics aluminum housing CNC machining, covering circular cavities, flange holes, concentricity, deburring, surface protection, and batch consistency.
- A practical DAXIN guide on how CNC machining supports conveyor systems with shafts, bearing seats, mounting plates, brackets, and transmission parts.
- A customer-witnessed quality review for a high-end automotive wheel component project, covering CMM inspection, coating thickness measurement, material analysis, and 480-hour salt spray testing.
- This is a custom-machined metal frame, manufactured through multi-axis CNC machining combined with meticulous deburring and precise positional control; it is suitable for use as a module support frame, an internal mounting skeleton, or a cantilevered structural mounting component.
- This is a custom aluminum alloy structural bracket, manufactured via CNC milling and featuring controlled deburring and a consistent surface finish, suitable for use as a module support frame, adjustable mounting base, or structural connector.
- This is a custom-machined circular flange base, manufactured through a combination of turning and milling processes, and featuring meticulous deburring and consistent thread quality; it is suitable for use as a rotary interface, connecting flange, mounting hub, or precision assembly component.
- This is a custom CNC-machined aluminum alloy base, manufactured through a multi-stage CNC milling process combined with controlled deburring and precise feature management; it is suitable for use as a module base, lower housing, or cavity-style mounting platform.
- This is a precision-customized annular flange, manufactured through a combined turning and milling process, and featuring precise hole positioning control and meticulous post-processing. It is ideally suited for use as a mounting flange, interface ring, end cap base, or critical structural support component within an assembly.
- This is a custom aluminum alloy dual-port connector designed for fluid control, automotive, and industrial applications, featuring precise port alignment, reliable sealing performance, and a stable mounting structure. Manufactured using combined turning and milling processes—integrated with controlled deburring and internal cleaning—it is ideally suited for dual-channel interface modules, fluid transition bases, and compact sealing assemblies.
- This is a slotted clamping component designed for medical equipment, featuring reliable locking, stable positioning, and a precision turn-mill structure. Manufactured through CNC turning, milling, slotting, and controlled post-processing, it is suitable for clamping, positioning, and connecting shafts, rods, tubes, and other cylindrical mating components.
- This is a precision aluminum alloy housing designed for applications involving engines, fluid control, and high-performance equipment, featuring integrated cavities, precise interface positioning, and reliable sealing surfaces. Manufactured through multi-stage CNC machining—combined with controlled deburring and internal cleaning processes—it is ideally suited for use as manifold bodies, valve housings, and custom fluid distribution structures.
- This is a complex turn-milled component designed for applications in the medical, automation, and precision equipment sectors. It features precise alignment, stable assembly characteristics, and an intricate combined turning-milling structure. Manufactured through CNC turning, multi-axis milling, and controlled post-processing, it is ideally suited for use in high-end assemblies involving support, positioning, guidance, and motion-related mechanisms.
CNC Machining FAQs
If you need additional information, our team will be happy to assist you.
1. What information do you need for a CNC machining quotation?
To provide an accurate quote, we typically require 2D/3D drawings (STEP, STP, IGES, or PDF), material specifications, quantity, surface treatment requirements, and tolerance details.
2. Are you a trading company or a direct manufacturer?
We are a direct CNC machining manufacturer, not a trading company.
All critical machining processes are completed in-house to ensure process stability and consistent quality.
For surface treatments and certain special processes, we work with long-term qualified partners under our full quality control system.
3. What makes your company different from sourcing platforms or supplier networks?
Unlike sourcing platforms that mainly coordinate external suppliers, we operate our own manufacturing system with directly managed production resources. This gives us better visibility into process control, closer quality supervision, and a more reliable path from drawing review to final delivery.
4. Why does direct manufacturing control matter for CNC projects?
Direct manufacturing control helps reduce communication layers, improve process consistency, and strengthen project supervision. For customers, this means fewer coordination risks, more stable quality, and smoother execution, especially for complex precision parts and repeat orders.
5. Can you support both prototype and volume production?
Yes. Our manufacturing system is built to support prototype parts, small-batch production, and larger-volume orders. With over 180 machines and specialized workshops, we can handle different production stages under a more controlled and consistent system.
6. How do you manage quality consistency across batches?
We focus on process control, inspection planning, and stable production execution. With centralized management and directly supervised manufacturing resources, we are able to maintain tighter control over dimensions, quality consistency, and batch repeatability.
7. Are you suitable for complex precision parts?
Yes. We are especially well suited for complex precision components that require more than just machining capacity. Projects involving tighter tolerances, multiple processes, stable repeatability, or stronger engineering coordination benefit from our integrated manufacturing structure and controlled execution.
8. What is your typical lead time for CNC machined parts?
Lead time depends on part complexity and order quantity. Prototypes are usually completed within 3–7 working days, while mass production orders may take 2–4 weeks.
9. What materials can you machine?
We work with a wide range of materials, including aluminum, stainless steel, brass, copper, carbon steel, titanium, and engineering plastics such as POM, PTFE, and nylon.
10. What surface finishing options do you offer?
We provide multiple finishing processes such as anodizing, powder coating, sandblasting, polishing, plating, heat treatment, and passivation to meet different application requirements.
11. What tolerances can your CNC machining process achieve?
Our standard machining tolerance is typically ±0.01 mm, depending on material and geometry. Tighter tolerances can be achieved based on project requirements.
12. Do you support prototype machining and low-volume production?
Yes. We support rapid prototyping, small-batch production, and large-scale manufacturing, allowing customers to move efficiently from design validation to mass production.
13. How do you ensure the quality of machined parts?
Quality control includes incoming material inspection, in-process inspection, and final inspection, supported by precision measurement equipment to ensure consistency and accuracy.
14. Can you manufacture parts based on custom drawings?
Yes. We specialize in custom CNC machining and manufacture parts strictly according to customer drawings or technical specifications.
15. What industries do you typically serve?
Our CNC machining services support industries such as automotive, aerospace, electronics, medical equipment, and industrial machinery.
16. How are CNC machined parts packaged and shipped?
Parts are carefully cleaned, inspected, and packaged with protective materials before shipment to prevent damage during transportation.



