Professional industry ceramic supplier, silicon nitride, silicon carbide, aluminum nitride and any other kinds of ceramics.
PRODUCT PARAMETERS
Description
Overview of Industrial Ceramic Crucible for Metal Melting and Casting
Industrial Ceramic Crucible for Metal Melting and Casting are specialized containers designed for withstanding extremely high temperatures in laboratory and industrial settings. They are essential for processes such as melting, calcining, and heat-treating a wide variety of materials, including metals, glasses, and chemicals. Our crucibles are engineered for superior thermal stability and chemical resistance, ensuring purity and reliability in the most demanding applications.
Features of Industrial Ceramic Crucible for Metal Melting and Casting
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Exceptional Thermal Shock Resistance: Withstands rapid temperature changes without cracking, ensuring durability and a long service life.
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High-Temperature Stability: Maintains structural integrity at extreme temperatures, often exceeding 1500°C.
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Excellent Chemical Inertness: Resists corrosion and reaction with molten metals, acids, and aggressive chemical fluxes.
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High Purity & Low Contamination: Manufactured from premium materials to prevent sample contamination during sensitive processes.
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Optimized Thermal Properties: Designed for efficient heat transfer and consistent performance in furnace environments.
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Robust Mechanical Strength: Offers good resistance to physical impact and abrasion during handling and use.
Specifications of Industrial Ceramic Crucible for Metal Melting and Casting
Industrial ceramic crucibles deal with severe heat in steel melting and casting. They are made from special products. Alumina prevails for general usage. Silicon carbide offers exceptional warmth transfer. Zirconia works for very responsive metals. These materials resist melting themselves. They stand up to temperature levels over 1800 degrees Celsius. This is much hotter than most steels melt.
Crucible wall surfaces are thick. This supplies toughness against the heavy molten metal. The shape is usually a deep mug. Some have a putting spout integrated in. This layout makes pouring the liquid metal easier. Crucibles come in many dimensions. Little ones hold a few ounces. Big ones take care of numerous extra pounds. You choose the size based upon your heating system and steel batch.
Thermal shock resistance is crucial. Crucibles heat up quick in the furnace. They cool down swiftly when gotten rid of. Excellent crucibles don’t crack from this unexpected adjustment. Chemical resistance matters also. The ceramic should not react with the liquified metal. This maintains the metal pure. It likewise makes the crucible last longer.
Resilience is vital for commercial work. A strong crucible makes it through bumps and everyday use. Long life reduces replacement costs. Crucibles must rest consistent in the heating system. A secure base avoids tipping crashes. Always check the crucible’s maximum temperature level rating. Never surpass it. Suit the crucible material to your details steel. This makes sure safety and excellent performance. Manage crucibles meticulously. Evaluate them routinely for fractures or put on. Proper treatment extends their functioning life significantly.
Applications of Industrial Ceramic Crucible for Metal Melting and Casting
Industrial ceramic crucibles deal with severe warm in metal melting and casting. They are crucial tools across several markets. These crucibles hold liquified metal safely. They endure temperatures far more than many steels thaw at. This makes them best for foundries and precious jewelry workshops. Workers utilize them daily.
Silver and gold smelting depends greatly on ceramic crucibles. Jewelers need pure precious metals. Ceramic crucibles avoid contamination. They do not respond with the liquified silver or gold. This ensures the final steel remains pure. The crucible product doesn’t include pollutants. Purity is crucial for high-value steels.
Light weight aluminum foundries likewise depend on these crucibles. Aluminum melts at reduced temperatures than steel. Ceramic crucibles conveniently handle this warmth. They last a long time under consistent use. Workers pour molten aluminum right into mold and mildews straight from the crucible. This is efficient for making parts. Crucibles resist the corrosive nature of liquified light weight aluminum well.
Copper and brass manufacturing utilizes ceramic crucibles too. These metals melt at medium-high temperatures. Ceramic offers the essential warm resistance. Crucibles maintain the metal’s structure during melting. This is essential for alloy uniformity. Factories produce cable, poles, and sheets by doing this.
Steel and iron factories require crucibles for special alloys. They melt smaller sized batches for testing or specialty parts. Ceramic crucibles tolerate the intense warm of liquified steel. They offer a regulated environment for exact alloying. Researchers establish brand-new steel solutions utilizing them.
The vital advantage is warmth resistance. Ceramic manages extreme heat without splitting. Crucibles also resist thermal shock. Employees can warm and cool them continuously. This resilience conserves money with time. Crucibles resist chemical attack from molten metal. They maintain the steel clean. Crucibles come in numerous sizes. This matches various melting work. Proper treatment extends their life significantly. Avoid unexpected temperature level modifications. Handle them meticulously when warm. Tidy them completely after each usage.
Company Profile
Tanki New Materials Co.Ltd. focus on the research and development, production and sales of ceramic products, serving the electronics, ceramics, chemical and other industries. Since its establishment in 2015, the company has been committed to providing customers with the best products and services, and has become a leader in the industry through continuous technological innovation and strict quality management.
Our products includes but not limited to Aerogel, Aluminum Nitride, Aluminum Oxide, Boron Carbide, Boron Nitride, Ceramic Crucible, Ceramic Fiber, Quartz Product, Refractory Material, Silicon Carbide, Silicon Nitride, ect. please feel free to contact us.

Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of Industrial Ceramic Crucible for Metal Melting and Casting
What are industrial ceramic crucibles made of?
These crucibles typically use high-alumina ceramics or silicon carbide. These materials handle extreme heat well. They resist chemical reactions with molten metals. This prevents contamination.
How hot can ceramic crucibles get?
Quality crucibles withstand temperatures over 1600°C (2912°F). Specific limits depend on the exact ceramic material. Always check the manufacturer’s rating for your metal. Exceeding this risks cracking.
Why choose ceramic over graphite crucibles?
Ceramic lasts longer under intense heat. It resists oxidation better than graphite. Ceramic handles sudden temperature changes better. This means less cracking during rapid heating or cooling. It’s often better for repeated, high-temperature use.
What metals can I melt in a ceramic crucible?
Ceramic crucibles work for many common metals: aluminum, brass, bronze, copper, gold, silver. Avoid highly reactive metals like titanium or zirconium. These can damage the ceramic. Check the crucible specs for your specific alloy.
How do I care for a ceramic crucible?
Inspect for cracks before each use. Heat and cool it gradually. Avoid thermal shock. Never put cold metal into a hot crucible. Clean out slag and residue after melting. Store it dry and protected from impacts. Replace it if you see deep cracks or thinning walls.
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