Stainless Steel Clad Copper: Inverted Architecture
1. 引言
与大多数双金属导体不同,SSCC将不锈钢置于外层。
创建SSCC结构示意图
MEDIA TODO2. 结构对比
创建传统vs反向结构对比图
MEDIA TODO3. 材料性能
4. 关键应用
SSCC广泛用于电阻焊电极。
5. 制造工艺
6. 结论
SSCC为需要耐磨、耐腐蚀和良好导电性的应用提供了独特的解决方案。
Frequently Asked Questions
What is the difference between SSCC and traditional copper clad steel?
Traditional copper clad steel (CCS) has copper outer layer cladding steel core, with conductive but easily worn surface. SSCC has stainless steel outer layer cladding copper core, with hard wear-resistant surface but conductive core. The structures are opposite, suitable for completely different applications: CCS for conductive applications, SSCC for wear-resistant conductive applications.
What are the main application fields for SSCC?
SSCC is mainly used for: resistance welding electrodes (utilizing wear resistance and conductivity), high-wear electrical contacts (hard surface reduces wear), grounding systems in corrosive environments (stainless steel corrosion resistance), high-end connectors (requiring hard surface). These applications all require combination of wear resistance, corrosion resistance, and good conductivity.
How is SSCC's conductivity performance?
SSCC's overall conductivity is 80-88% IACS, mainly contributed by copper core. Although stainless steel outer layer has very low conductivity (about 2.5% IACS), since current mainly transmits in copper core, SSCC still provides excellent conductivity performance, suitable for most conductive applications.
How is SSCC's manufacturing cost?
SSCC's manufacturing cost is higher than traditional bimetallic conductors, because precise inverted cladding process is required. However, considering its long service life (3-5×) and high reliability in specialized applications, total cost of ownership is competitive. Mainly used for high-end industrial applications with relatively low cost sensitivity.
Figures
创建SSCC结构示意图
创建传统vs反向结构对比图
Tables
| 方面 | 传统(Cu外) | 反向(SS外) |
|---|---|---|
| 表面导电率 | 高 | 较低 |
| 表面硬度 | 软 | 硬 |
| 表面耐腐蚀 | 易腐蚀 | 耐腐蚀 |
| 芯材导电 | 次要 | 主要 |
| 性能 | SSCC-15%SS |
|---|---|
| 密度 (g/cm³) | 8.5-8.6 |
| 导电率 (% IACS) | 80-88 |
| 表面硬度 (HV) | 150-200 |
| 应用 | 优势 |
|---|---|
| 焊接电极 | 耐磨+导电 |
| 电触点 | 硬表面+低接触电阻 |
| 接地(腐蚀) | 长期可靠性 |
References
- Welding Handbook American Welding Society (2020)