Silicon Carbide Crucible for Copper Melting - Round Shape, 1650°C Maximum Temperature, 50% Longer Lifespan
Price:
Negotiable
MOQ:
1pcs
Delivery Time:
Negotiable
Brand:
Baidun/J&J
Product Description
Silicon Carbide Crucible for Copper Melting
Our Silicon Carbide (SiC) Crucibles are specifically engineered for demanding copper and copper alloy processing applications. Designed to operate at 1650°C with superior thermal shock resistance, these round-shaped crucibles deliver exceptional performance in copper foundries, electrical component manufacturing, and high-purity copper refining facilities.
Key Advantages for Copper Processing
Enhanced Performance & Durability
- 50% longer lifespan compared to graphite and clay-graphite alternatives
- 20% faster melting cycles due to optimized thermal conductivity
- Superior resistance to copper oxide buildup and slag corrosion
Sustainability & Cost Efficiency
- Fully recyclable SiC material supports circular economy initiatives
- Minimized slag adherence reduces material loss and cleanup costs
Industrial Applications
- Electrical industry: copper wires, cables, and busbars
- Electronics manufacturing: PCBs and semiconductor components
- Alloy production: bronze, brass, and beryllium-copper casting
- Recycling facilities: efficient scrap copper recovery
Technical Specifications
| Material | Silicon Carbide (SiC) |
|---|---|
| Maximum Temperature | 1650°C |
| Shape | Round |
| Primary Application | Copper & Copper Alloy Melting |
Support Services
Free Technical Consultation: Our engineering team analyzes your furnace setup and recommends optimal crucible configurations.
Sample Program: Test our crucibles with a no-obligation trial order.
Sample Program: Test our crucibles with a no-obligation trial order.
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Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.
Company
Qingdao Baidun Special Ceramics Technology Co., Ltd.
Location
No.128, Zhonghuan Road, Fuan Industrial Zone, Jiaozhou, Qingdao, P.R.C.
Contact Person
Yana Gao