In today’s highly competitive manufacturing world, the demand for high precision customized mechanical parts is at an all-time high. Whether it’s in aerospace, medical devices, automotive systems, or industrial machinery, components must be tailored to exact specifications, exhibit exceptional performance, and maintain a high-quality surface finish. A winning combination that delivers on all these fronts is the use of EDM (Electrical Discharge Machining) and powder coated surfaces in the fabrication of custom mechanical parts.

The Need for High Precision Customized Mechanical Parts
High precision customized mechanical parts are critical for machines and systems that require tight tolerances, complex geometries, or unique material combinations. These parts are typically not available off the shelf and must be specifically designed and manufactured to meet the functional and dimensional needs of specialized equipment.
Applications include:
- Robotic arms and automation assemblies
- Aerospace actuator housings and linkages
- Medical device components
- Custom automotive performance parts
- Industrial tooling and dies
What sets these parts apart is not just their exact dimensions, but the processes behind them—particularly EDM machining and powder coating—which ensure their functionality, durability, and resistance to environmental factors.
The Role of EDM in High Precision Machining
EDM (Electrical Discharge Machining) is a non-traditional machining method that removes material from a workpiece by means of electrical discharges (sparks). It is particularly useful for machining hard materials or parts with intricate internal geometries that are difficult or impossible to machine using traditional techniques.
Benefits of EDM for Custom Mechanical Parts:
- Unmatched precision: EDM can achieve tolerances as tight as ±0.002 mm.
- Complex shapes: Ideal for intricate cavities, sharp internal corners, and fine features.
- No mechanical stress: Since it’s a non-contact process, there is no deformation caused by cutting forces.
- Material versatility: Can be used on hardened steel, titanium, Inconel, and conductive ceramics.
EDM is often used in conjunction with CNC milling or turning for parts that require both complex outer contours and internal precision features.
Powder Coated Surface: Performance and Protection
Once the part is machined to its precise dimensions, surface treatment becomes the next critical step. Powder coating is a dry finishing process that applies a protective and decorative layer of thermoplastic or thermoset polymer powder, which is then cured under heat to form a durable, high-quality finish.
Advantages of Powder Coated Surfaces:
- Superior corrosion resistance: Protects parts from rust and environmental degradation.
- Durability: Offers excellent resistance to impact, wear, and UV radiation.
- Aesthetic flexibility: Available in a wide range of colors, textures, and gloss levels.
- Eco-friendly: Emits fewer volatile organic compounds (VOCs) than liquid coatings.
When applied to high precision mechanical parts, powder coating not only enhances appearance but also extends service life—especially in harsh industrial environments.
Combining EDM and Powder Coating in Custom Manufacturing
By integrating EDM machining with powder coated surface finishing, manufacturers are able to produce customized mechanical parts that meet the highest standards of precision and durability. This hybrid approach is especially valuable for components that:
- Must fit tightly into assemblies without error
- Will be exposed to moisture, chemicals, or mechanical wear
- Need to meet aesthetic requirements for visibility in consumer-facing products
Example Use Case:
A manufacturer of robotic automation systems may require a complex, corrosion-resistant mounting bracket with sharp internal profiles for sensor housing. The bracket is first cut with CNC milling, refined using EDM for tight-tolerance features, and finally powder coated in matte black for corrosion protection and branding consistency.
Quality Assurance and Final Inspection
Given the high standards expected of these parts, quality control plays a central role:
- Coordinate Measuring Machines (CMMs) are used for dimensional accuracy.
- Surface inspection tools verify powder coating thickness and uniformity.
- Visual and mechanical testing ensures parts are free from defects and ready for end use.
| CNC Turning, CNC Milling, Laser Cutting, Bending, Spining, Wire Cutting, Stamping, Electric Discharge Machining (EDM), Injection Molding,3D Printing,Rapid Prototype,Moulds etc. |
| Aluminum: 2000 series, 6000 series, 7075, 5052, etc. |
Stainlesss steel: SUS303, SUS304, SS316, SS316L, 17-4PH, etc. |
Steel: 1214L/1215/1045/4140/SCM440/40CrMo, etc. |
Brass: 260, C360, H59, H60, H62, H63, H65, H68, H70, Bronze, Copper |
Titanium: Grade F1-F5 |
Plastic: Acetal/POM/PA/Nylon/PC/PMMA/PVC/PU/Acrylic/ABS/PTFE/PEEK etc. |
| Anodized, Bead Blasted, Silk Screen, PVD Plating, Zinc/Nickl/Chrome/Titanium Plating, Brushing, Painting, Powder Coated, Passivation, Electrophoresis, Electro Polishing, Knurl, Laser/Etch/Engrave etc. |
| ±0.002 ~ ±0.005mm |
| Min Ra 0.1~3.2 |
CERTIFICATE | ISO9001:2015,AS9100D,ISO13485:2016,ISO45001:2018,IATF16949:2016,ISO14001:2015,ROSH,CE etc. |





FAQ
1. Are you a manufacturer or a trading company?
We are a factory located in Shenzhen, China, with 20 years of rich experience,
covering 6000 square meters. Complete facilities, including 3D quality inspection equipment, ERP system and 40 machines. If necessary, we can provide you with material certificates, sample quality inspection and other reports.
2. How to get a quote?
Detailed drawings (PDF/STEP/IGS/DWG...), including quality, delivery date, materials, quality, quantity, surface treatment and other information.
3. Can I get a quotation without drawings?
Can your engineering team draw for my creativity? Of course, we are also glad to receive your samples, pictures or detailed size drafts for accurate quotation.
4. Can you provide samples before mass production?
Of course, the sample fee is necessary. If possible, it will be returned during mass production.
5. What is the delivery date?
Generally, the sample lasts for 1-2 weeks and the batch production lasts for 3-4 weeks.
6. How do you control quality?
(1) Material Inspection - Check material surfaces and approximate dimensions.
(2) First inspection of production - ensure
critical dimensions in mass production.
(3) Sampling inspection - check the quality before delivery to the warehouse.
(4) Preshipment inspection - 100% inspection by QC assistant before shipment.
7. After sales service team
If you have any problems after receiving the product, you can provide feedback through voice call, video conference, email, etc. within one month. Our team will provide you with solutions within a week.