Non-Standard Precision Stamping Solutions - Difficult Parts Manufacturing
| Menşe yeri | Shenzhen, Çin |
|---|---|
| Marka adı | TF |
| Sertifika | lSO9001/IATF 16949 |
| Model numarası | TF-015 |
| Min sipariş miktarı | 1 |
| Fiyat | 0.07-0.23USD |
| Ambalaj bilgileri | Karton ambalaj 18*15*12cm (ambalaj müşterinin ürün gereksinimlerine göre özelleştirilebilir) |
| Teslim süresi | 3 gün/Başlangıç |
| Ödeme koşulları | T/T |
| Yetenek temini | 10000000 adet/ay |
| Çözüm türü | Ultra İnce Malzeme Damgalama / Ultra Sert Malzeme Damgalama / Mikro Özellikli Şekillendirme / Çok İş | İşlenebilir Malzemeler | Paslanmaz Çelik / Titanyum Alaşımı / Yüksek Sıcaklık Alaşımı / Berilyum Bakır / Molibden / Invar Ala |
|---|---|---|---|
| Malzeme Kalınlığı | 0,05-0,1 mm / 0,1-0,3 mm / 0,3-1,0 mm / 1,0-3,0 mm / 3,0-6,0 mm | Maks. Sertlik | HRC 30 / HRC 35 / HRC 40 / HRC 42 |
| Min. Özellik Boyutu | 0,2 mm / 0,3 mm / 0,5 mm / 0,8 mm | Süreç Zorlukları | Mikro Delikler / Derin Kör Delikler / İç Dişler / Yerel Kalınlaşma / Düzensiz Bükümler |
| Kalıp ömrü | 100K-300K döngü / 300K-500K döngü / 500K-1M döngü | Uygulama Endüstrisi | Robotik / Yapay Zeka Altyapısı / Akıllı Enerji / Med-Tech / İleri Ar-Ge |
| Sertifika | ISO 9001 / IATF 16949 | Çizim Formatı | PDF / STEP / DWG/DXF / IGES |
| Vurgulamak | custom precision stamping parts,difficult parts stamping solutions,non-standard metal stamping components |
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Tingfeng Hardware specializes in non-standard, precision stamping solutions, focusing specifically on parts recognized within the smart technology sector as being exceptionally challenging to manufacture. We undertake orders that other factories are either unwilling or unable to accept—including those involving ultra-thin materials (0.05mm), ultra-hard materials (HRC 42+), extreme tolerances (±0.005mm), and highly complex geometries.
With 15 years of accumulated technical expertise, we have transformed the ability to tackle "unmanufacturable" parts into our core competitive advantage. We provide advanced process engineering and problem-solving services for cutting-edge sectors such as robotics, AI computing, and smart energy.
Complex parts often entail high risk and elevated scrap rates. By employing systematic engineering analysis—including mold flow simulation and stress analysis—we proactively anticipate molding risks and utilize a phased mold validation strategy to systematically overcome technical challenges.
For multi-process parts, we have developed a "modular tooling" concept that allows for the rapid interchange of functional modules to accommodate different part revisions. Furthermore, we maintain a specialized team dedicated to researching extreme processing techniques, providing feasibility reports for challenging-to-machine materials such as titanium alloys and superalloys.
Our mission is to serve as a steadfast pillar of support for the R&D teams of intelligent enterprises.
| Feature | Advantage to You |
|---|---|
| Tackling Extreme Process Challenges | A specialized team researches difficult-to-machine materials and extreme dimensions, providing feasibility reports |
| Mold flow simulation | Predict wrinkling, cracking in advance, optimize die design, reduce trial cost |
| Stepped tryout | Quick validation of key features with soft tooling before investing in production dies, risk reduction |
| Special die materials | Powder metallurgy HSS, carbide for high-hardness materials |
| Failure case library | Share past failure experiences, help customers avoid similar design traps |
| Specification Item | Detail / Range | Remarks |
|---|---|---|
| Thinnest Material | 0.05 mm (Stainless / Cu) | Oil-free stamping required |
| Thickest Material | 10 mm (Al / mild steel) | Fine blanking / conventional |
| Max. Hardness | HRC 42 (stampable) | Special die materials |
| Min. Punchable Hole | Φ0.2 mm (0.1mm thick) | Evaluation needed |
| Highest Accuracy | ±0.005 mm (specific dimensions) | Wire EDM dies |
| Max. Complexity | 12 bends / multi-directional | Multi-slide / progressive |
| Die Life | ≥1 million strokes (normal) | High hardness material evaluated |
| Surface Roughness | Ra 0.2μm -- 1.6μm | Process dependent |
- Robotics: Ultra-thin flexible circuit supports for humanoid robots, high-hardness wear-resistant joint inserts, extreme-tolerance sensor bases
- AI Computing: Micro-channel plates for AI server liquid cooling systems, precision-stamped components using high-thermal-conductivity materials, ultra-compact heat sinks
- Smart Energy: Ultra-thin battery tabs, high-hardness charging pile terminals, extreme-tolerance core components for energy management systems
- Healthcare: Ultra-thin casings for implantable devices, high-precision surgical blades, core components for miniature medical instruments
- Frontier Research: Functional prototypes for specialized applications, extreme-condition test specimens, validation samples for novel materials

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