Silicon Aluminium Barium Calcium Alloy
Silicon Aluminium Barium Calcium Alloy
|
Si(%) |
Al(%) |
Ba(%) |
Ca(%) |
Size |
|
≥45 |
≥6 |
≥15 |
≥8 |
10-60 |
|
≥45 |
≥8 |
≥18 |
≥7 |
10-60 |
|
≥40 |
≥8 |
≥12 |
≥8 |
10-60 |
| We can also produce products according to customers' special requirements | ||||
Product Introduction
Silicon aluminium barium calcium alloy is a high-strength, corrosion-resistant metal alloy suitable for the manufacture of electronic components and structural parts.
Product Usage
Steelmaking Deoxidation Applications
Silicon aluminum barium calcium alloy reacts rapidly with oxygen in molten steel to form stable oxide inclusions, effectively reducing the oxygen content in the steel and minimizing defects such as porosity and cracks.
Steelmaking Desulfurization Process Optimization
The calcium and barium elements in this alloy combine with sulfur in molten steel to form high-melting-point, low-solubility sulfides, which easily float and separate, significantly reducing the sulfur content in the steel and improving hot cracking resistance and weldability.
Casting Material Improvement
Adding this alloy to cast iron or steel production can refine grain size, optimize graphite morphology, and suppress the effects of harmful elements, thereby improving the strength, hardness, and overall mechanical properties of the casting.
Why We Are the Leading Manufacturer of Silicon Aluminium Barium Calcium Alloy
Extensive Industry Experience
Since its establishment in 2003, UNG Group has specialized in the production of recarburizers for the steel industry, with over 20 years of professional experience.
Professional Customer Service
We provide professional services throughout the entire process, from demand communication, quotation, and order confirmation to production, packaging, and shipping.
ISO9001 Certified
UNG Group is ISO9001 certified and has established a strict quality management system to ensure that its products meet international standards.
Complete Product Range
We offer a wide range of products, including carbon and graphite recarburizers, calcium aluminum, calcium aluminate, calcined bauxite, mullite, ferroalloys, inoculants, spheroidizers, black silicon carbide, and steel shot.
FAQs
Q: What precautions should be taken when processing the alloy?
A: Cutting speeds and temperatures should be controlled during processing to avoid overheating that could cause grain coarsening or surface cracking.
Q: How should silicon aluminum barium calcium alloy be stored?
A: It should be stored in a dry, well-ventilated area, away from moisture and strong acids and alkalis to maintain stable alloy properties.
Q: What is the alloy's thermal conductivity?
A: The alloy has medium thermal conductivity, providing good heat dissipation in applications such as heat exchange and electronic cooling.
Q: Can the alloy be welded?
A: It can be welded, but appropriate welding materials and temperatures must be selected to avoid localized overheating that could cause structural damage.
Q: What processing methods are suitable for the alloy?
A: Milling, turning, stamping, and other processing methods are acceptable, but cutting speeds and cooling measures must be controlled.
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