China Medical Device Parts CNC Machining Factory - High-Quality Suppliers for Precision Components
Project Description
- Medical Actuating Device
- Material: Titanium alloy, PEEK and 316L stainless steel.
- Finishing: Polishing and sonicleaning.
- Parts machining process: CNC milling and turning, EDM, Surface finishing.
- Parts size: Medical Actuating Device around 320×280×165 mm.
Production Capability For Medical Devices Products CNC Machined Manufacturer
🏭 Own 5 sets 5-axis CNC machining centers and 8 sets 3+2 axis CNC milling machines.
⚙️ 2 sets slow-EDM, 2 sets larger Lathe, and 2 sets grinding machines under 0.005mm tight tolerance.
✨ Secondary finishing including anodizing, powder coating, chemical nickel-plating and more.
What's The Project Challenge For The Projects?
The main challenge is the product feature is very complex — we need to machine these surfaces one by one, and all parts need to be assembled and serve a functional purpose. The materials are very hard and not easy to machine. The single part special dimensional tolerance is under 0.01mm, requiring all parts to be assembled and fully functional.
Our engineering team uses extended cutting tools, 5-axis and 3+2 axis CNC milling machines to complete them. Parts include multi-angle holes (25 holes distributed across 10 different angles), microchannels (width of only 100 μm), and thin-walled structures (thickness of 0.55 mm). Five holes are undercut, and a series of grooves along the tapered holes require accurate concentricity and tolerance control.
Thin-walled parts are prone to deformation due to cutting force or clamping force. Therefore, flexible vise clamping and staged processing (coarse/semi-finish/finish machining carried out in stages) are required. For example, in the processing of aluminum alloy medical accessories, process optimization is needed to reduce the deformation rate from 5% to below 0.3%.
It is necessary to achieve full lifecycle data recording, including material batches, processing parameters, and test reports, to meet medical standards such as ISO 13485.
Customers often demand competitive prices including material and machining process. Creatingtec offers tailored suggestions to customers for review. High-precision processing takes a long time (e.g., total processing time for bone plates reaching 1 hour and 11 minutes), and efficiency is improved through automation solutions.
How To Understand and Make The Parts?
First, we conducted a careful design overview to understand the parts and suggest improvements when possible. Then, we applied Positive Material Identification (PMI) to test the composition of the alloys used in the tools and parts.
Fabricating The Prototypes
The first run of prototypes was CNC machined from aluminum in a 5-step process:
- CNC Program the Machines
- Engineering Review and Improve the Codes
- Mount the Workpiece on the Machine and Adjust the Setup
- Monitor Production and All Functions
- Do Adjustment to the Cutting Programs When Necessary
CNC milling process: the mainstream technology achieves complex surface shaping through 5-axis linkage. Curved surface finishing of the actuating support requires a 3mm tool.
Using the mirror EDM process for minor undercut features, as CNC milling cannot machine these areas.
Surface polishing is performed to meet the whole product assembly and appearance requirements.
Titanium alloy and stainless steel parts require sonicleaning after machining.
How To Develop and Manufacturing CNC Machining Medical Device Parts
Most medical device parts' CNC machining includes rapid prototyping and volume production. When making 2–4 prototypes, we consider using 5-axis CNC machines and turn-mill combination to manufacture them, followed by after-machining finishing processes.
Medical device parts require careful consideration of the whole process — from single part machining, surface coating, to assembly — making it a very complex workflow.
We are dedicated to rapid prototyping and low-volume production for medical device parts, providing fast feedback and on-time delivery with high quality. We can manufacture a wide range of medical device parts — whether you need 1 pc or 100+ pcs, we can meet your requirements.
When you have a medical device parts CNC machining inquiry or customized parts request, send your inquiry to our engineering team. We will discuss each production detail with you and provide the best cost-effective support. Tell us your requirement or expectation — our team will make it happen. You can start a new project now.
What's The Surface Finishing Can Be Done After CNC Machining?
After most medical device parts are CNC machined, we provide professional finishing services to meet both functional and aesthetic requirements:
For Actuating Device parts, after CNC milling, turning and EDM processes, we carry out polishing and sonicleaning to achieve the required aesthetic and cleanliness standards.
Customer's Feedback For Our Automotive Parts CNC Machined
We ship parts to our customers for assembling and testing, following each detail for parts function and testing requirements. We collect timely feedback for new parts improvement to make each subsequent production more perfect and smooth.
We aim to help our customers achieve the best effective products — good quality, controlled cost, and on-time delivery.
Exceeding Expectations in Parts Manufacturing
Creatingtec has the expertise and technology needed to bring your products to life accurately, quickly, and cost-effectively.
Whether you're in a rush or have a product with highly complex parts, submit your project drawings (including 2D and 3D drawings), and our sales and engineering team will get in touch and discuss what you need to achieve your goals.
You'll receive an affordable quote with no minimum volume requirements. Once accepted, our specialists will help optimize your project, produce the parts, and deliver them right to your doorstep.
Customer's Feedback
Creatingtec delivered these complex new products quickly and professionally. The prototypes met the high standard I demand from any supplier and are currently being fine-tuned before the applications for patent are submitted.




