Product Details
Place of Origin: China
Brand Name: JIA SHAN
Payment & Shipping Terms
Minimum Order Quantity: 10pcs
Price: 0.05-0.12USD
Packaging Details: Plastic Bag+Chipboard Carton+Plywood Pallet Pallet with Belt&Plastic Film.
Delivery Time: 15days
Payment Terms: T/T, L/C
Supply Ability: carbon steel, stainless steel,aluminum,titanium,nickel,alloy steel
Name: |
CNC Wire EDM Parts |
Material: |
Carbon Steel, Stainless Steel,aluminum,titanium,nickel,alloy Steel |
Hardness: |
HRC 58-62 |
Mainly Process: |
Centerless Grinding And Mitsubishi EDM |
Key Processes: |
PG Machining,WEDM, EDM, Surface Grinding |
Accuracy For Grinding: |
0.001mm |
Mian Machining: |
Grinding, EDM, WEDM And So On |
Tolerance: |
±0.005mm |
Edm Accurac: |
0.002m |
Quality Control: |
100% Inspection |
Oem Service: |
Yes |
Name: |
CNC Wire EDM Parts |
Material: |
Carbon Steel, Stainless Steel,aluminum,titanium,nickel,alloy Steel |
Hardness: |
HRC 58-62 |
Mainly Process: |
Centerless Grinding And Mitsubishi EDM |
Key Processes: |
PG Machining,WEDM, EDM, Surface Grinding |
Accuracy For Grinding: |
0.001mm |
Mian Machining: |
Grinding, EDM, WEDM And So On |
Tolerance: |
±0.005mm |
Edm Accurac: |
0.002m |
Quality Control: |
100% Inspection |
Oem Service: |
Yes |
Attribute | Value |
---|---|
Name | CNC wire EDM Parts |
Material | Carbon steel, stainless steel, aluminum, titanium, nickel, alloy steel |
Hardness | HRC 58-62 |
Main Process | Centerless Grinding and Mitsubishi EDM |
Key Processes | PG machining, WEDM, EDM, Surface Grinding |
Accuracy For Grinding | 0.001mm |
Main Machining | Grinding, EDM, WEDM |
Tolerance | ±0.005mm |
EDM Accuracy | 0.002mm |
Quality Control | 100% inspection |
OEM Service | Yes |
Wire-cut discharge machining is a versatile precision machining process capable of manufacturing complex shapes and geometries. This process is particularly valuable in aerospace and medical industries where strict tolerances are required, and can be used for both prototype hand plates and mass-produced parts.
Electrical discharge wire cutting (wire EDM) is an electrothermal production process that removes material from workpieces using electrical discharge. As an improvement on traditional EDM methods, it works with nearly all conductive materials and can produce complex designs with exceptional precision.
The automotive industry relies on wire-cut EDM for parts with complex shapes and high precision requirements. This process is ideal for creating precise holes and cavities in custom automotive components.
With its extremely tight tolerances, wire-cut machining is preferred for aerospace components. The process excels at manufacturing parts that cannot withstand the stresses of traditional cutting methods, including engine components, turbine blades, and landing gear parts.
Wire EDM's ability to process complex parts with micron-level precision makes it indispensable for medical device manufacturing. The process can add microscopic features to critical components like dental implants and syringe parts without compromising structural integrity.
While aluminum offers excellent thermal and electrical conductivity, its soft nature requires careful handling during wire EDM to prevent gelatinous buildup and ensure clean cuts.
EDM machining is particularly suited for titanium alloys. The process effectively handles the material's viscosity and requires deionized water to control heat generation during processing.
Wire EDM is often preferred for complex steel features that would be challenging for CNC machining. Special precautions are needed to manage the significant heat generated during processing.
While brass machines easily due to its high tensile strength, slower cutting speeds are recommended to account for its soft metal properties.
Beyond Wire EDM, other variants include drilling EDM (using tubular electrodes for fine, deep holes) and sinker EDM (using shaped conductive metal electrodes).
Laser cutting employs a high-power thermal beam, while wire EDM uses electrical discharge between the wire and workpiece for material removal.
Deionized water serves as an effective coolant with low carbon properties, helping regulate dielectric temperature during the machining process.