Stamping Nickel Silver Shielding Frames Aerospace-Grade Corrosion Resistance & High-Strength Composite Forming
Description Of Stamping Nickel Silver Shielding Frames Aerospace-Grade Corrosion Resistance & High-Strength Composite Forming
Stamping Nickel Silver Shielding Frames are precision-engineered components designed for aerospace applications, leveraging the unique properties of Nickel Silver alloy—a blend of nickel, silver, copper, and zinc—to deliver exceptional electromagnetic interference (EMI) shielding, corrosion resistance, and mechanical strength. Manufactured through advanced stamping and composite forming techniques, these frames are tailored to meet the rigorous demands of aerospace environments, where durability, weight efficiency, and reliability are paramount.
Material Of Stamping Nickel Silver Shielding Frames Aerospace-Grade Corrosion Resistance & High-Strength Composite Forming
| Material and Testing Report | ||
| Metal | Aluminum | Aluminum 2024 Aluminum 5052 Aluminum 6061-T6 |
| Aluminum 6063 Aluminum 7075 Aluminum MIC 6 | ||
| Stainlesss steel | SUS303, SUS304, SS316, SS316L | |
| UNS S32304 UNS S32003 UNS S31803 UNS S32205 | ||
| UNS S32760 UNS S32750 UNS S32550 UNS S32707 UNS S33207 | ||
| Steel | 12L14 4140 1018 1045 12L14 4130 4142 ,O1 tool steel, | |
| D2 tool steel,A36 1008 ,Alloy42 | ||
| Titanium | Grades 1-4 Grade 5 Grade 9 | |
| Brass | 260, C360, H59, H60, H62, H63, H65, H68, H70 | |
| Copper | ||
| Phosphor bronze | ||
| Bronze | C932 | |
| Carbon fiber | ||
| PTFE | Polytetrafluoroethylene (PTFE) | |
| Plastic | Acetal | (Polyoxymethylene (POM)) [Delrin] |
| PEEK | Polycarbonate | |
| Polystyrene | Polyether Ketone | |
| Nylon | ||
| ABS | ||
| PVC | ||
| Acrylic | ||
| G-10 Garolite Fiberglass | ||
| Finish Result | |
| As Machined | Sharp edge and burrs will be removed |
| Bead Blast | The part surface is left with a smooth, matte appearance |
| Anodized | Type II creates a corrosion-resistant finish. Parts can be anodized in different colors—clear, black, red, and gold are most common—and is usually associated with aluminum. |
Type III is thicker and creates a wear-resistant layer in addition to the corrosion resistance | |
| Powder Coat | This is a process where powdered paint is sprayed onto a part which is then baked in an oven. |
| Customized | Cotact us via email, skype, whatsapp. We will look into a finishing process for you. |
| Others | |
| Tolerance | +/-0.005mm |
| Lead Time | 1-2 weeks for samples, 3-4 weeks for mass production |
| Drawing Accepted | Solid Works, Pro/Engineer, AutoCAD(DXF, DWG), PDF |
| Payment Terms | TT/Paypal/WestUnion |
Industries Of Stamping Nickel Silver Shielding Frames Aerospace-Grade Corrosion Resistance & High-Strength Composite Forming
1. Aircraft parts
2. Automobile parts
3. Fixture parts
4. Medical parts
5. Petro chemical parts
6. Education parts
Features Of Stamping Nickel Silver Shielding Frames Aerospace-Grade Corrosion Resistance & High-Strength Composite Forming
1. High precision
2. Short processing time
3. Easier customized/personalized
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Our Advantages
Aerospace-Grade Corrosion Resistance: The Nickel Silver alloy resists pitting, crevice corrosion, and environmental degradation in harsh aerospace environments (e.g., salt spray, fuel vapors, and atmospheric pollutants), maintaining shielding effectiveness and structural stability over decades of service.
High Strength-to-Weight Ratio: The composite forming process combines Nickel Silver with high-strength materials (e.g., titanium or carbon fiber reinforcements) to create lightweight yet robust frames, reducing overall system weight without compromising mechanical performance—critical for fuel efficiency and payload capacity in aerospace applications.
Precision Stamping for Complex Geometries: Advanced stamping techniques enable the production of intricate, custom-fit shielding frames with tight tolerances, ensuring seamless integration into aerospace hardware (e.g., avionics enclosures, satellite components) while minimizing gaps or seams that could compromise EMI shielding.
Thermal and Mechanical Stability: The frames maintain dimensional stability and shielding performance across extreme temperature ranges (-60°C to 300°C) and under high mechanical stress (e.g., vibration, shock, and thermal cycling), ensuring reliability in launch, re-entry, and in-orbit operations.
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FAQ
Q1: Where can I get product & price information?
A1:Send us inquiry e-mail, we will contact you as we receive your mail.
Q2: How long can I get the sample?
A2:Depends on your specific items, within 3-7 days is required generally.
Q3: What kinds of information you need for quote?
A3:Kindly please provide the product drawing in PDF, and will be better you can provide in STEP or IGS.
Q4: What are the payment terms?
A4: We accept 50% as payment deposit, when the goods is done, we take photos for your check and you then pay the balance.
Q5: Are you a trading company or factory?
A5:We are direct factory with 10 experienced engineers and more than 650 employees as well approximate 2,000 square ft. workshop area.
Q6: What shall we do if we do not have drawings?
A6:Please send your sample to our factory, then we can copy or provide you better solutions. Please send us pictures or drafts with dimensions (Length, Hight, Width), CAD or 3D file will be made for you if placed order.