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PRODUCT PARAMETERS
Description
Overview of Corundum Crucible
Corundum crucibles, made from alumina (Al₂O₃), are highly valued for their exceptional thermal resistance and chemical stability. These crucibles are ideal for high-temperature applications, such as melting and annealing processes in laboratories and industrial settings. Corundum crucibles can withstand temperatures up to 1800°C and are resistant to most chemical reagents, making them indispensable in various scientific and manufacturing operations.
Features of Corundum Crucible
High Thermal Resistance: Can withstand temperatures up to 1800°C without degrading.
Chemical Stability: Resistant to most acids and alkalis, ensuring minimal contamination during experiments or production.
Durability: Extremely durable and long-lasting, even under harsh conditions.
Non-Reactive: Does not react with the materials being processed, preserving sample purity.
Versatility: Suitable for a wide range of applications including melting metals, glass, and ceramics.
Precision Engineering: Manufactured to tight tolerances for consistent performance and reliability.

(3ml–30000ml Corundum Ceramic Crucible for Smelting of Lead)
Specification of 3ml–30000ml Corundum Ceramic Crucible for Smelting of Lead
The 3ml– 30000ml Corundum Ceramic Crucible is created for smelting lead in high-temperature settings. The crucible is made from high-purity diamond ceramic. This material makes sure strong resistance to severe warmth. It can take care of temperatures as much as 1800 ° C without fracturing. The structure stays secure even under quick temperature adjustments. This makes it trustworthy for duplicated heating and cooling cycles.
Chemical resistance is a crucial function. Lead smelting typically entails destructive materials. The crucible stands up to chemical disintegration properly. This extends its life-span compared to conventional alternatives. Dimensions vary from 3ml for tiny laboratory examinations to 30000ml for industrial use. Multiple shapes are readily available. Common options include cylindrical and conical styles.
Production involves sophisticated high-pressure creating and sintering. These steps create a dense, non-porous surface. This stops lead or other metals from sticking. It additionally ensures even heat circulation. Individuals avoid hotspots that could harm samples or products. The smooth indoor streamlines cleansing. Deposit elimination calls for marginal effort.
Applications cover labs, metalworking factories, and precious jewelry workshops. It helps melting lead alloys, precious metals, or specialty products. Custom sizes or forms can be requested. This flexibility matches distinct task needs. The crucible’s toughness decreases replacement costs. It performs constantly under hefty use.
Safety and security is focused on. The thick wall surfaces prevent leakages during melting. The base layout keeps it consistent on home heating equipment. Heat spreads evenly to avoid accidents. No hazardous compounds launch at heats. This safeguards both users and materials.
In general, the crucible incorporates toughness, accuracy, and safety and security. It meets demands for efficiency in lead smelting. Users save time and sources. Efficiency remains reputable across small and industrial procedures.

(3ml–30000ml Corundum Ceramic Crucible for Smelting of Lead)
Applications of 3ml–30000ml Corundum Ceramic Crucible for Smelting of Lead
The 3ml– 30000ml Diamond Porcelain Crucible is developed for smelting lead in high-temperature settings. It is made from high-purity corundum ceramic. This material makes certain strong resistance to warm. The crucible deals with temperature levels up to 1800 ° C. It stays secure under severe conditions. This makes it excellent for thawing lead without cracking or deteriorating.
The crucible’s framework avoids chemical reactions with liquified lead. It prevents contamination of the metal. This is important for keeping lead purity in industrial processes. The smooth internal surface reduces slag buildup. It streamlines cleansing after usage. Customers conserve time and effort.
These crucibles work in multiple applications. They are utilized in lead smelting manufacturing facilities. They are also common in recycling plants for redeeming lead from batteries. Labs utilize smaller sized dimensions for screening alloy structures. Jewelers count on them for casting lead-based products. The toughness makes sure long service life despite frequent heating cycles.
Thermal shock resistance is a key attribute. The crucible withstands rapid temperature level changes. It does not break when moved from high warm to cooler environments. This minimizes replacement expenses. Operators reduce downtime during smelting jobs.
The dimension variety covers 3ml to 30000ml. This fits both small experiments and big manufacturing batches. Customized shapes are offered for customized equipment. The crucible fits typical furnaces and induction heating units. Compatibility with different arrangements improves operations adaptability.
High mechanical stamina avoids damage during handling. The product stands up to scrapes and impacts. It keeps architectural honesty even after prolonged use. This integrity decreases waste from crucible failings.
Lead smelting calls for regular efficiency. The diamond ceramic crucible supplies stable heat distribution. It avoids hot spots that might erratically melt the metal. This results in uniform lead quality. Users attain much better control over manufacturing standards.
The item is available in several qualities. Alternatives consist of basic and exceptional tiers. Each rate meets specific thermal and chemical demands. Customization sustains special industrial requirements.
Company Introduction
Welcome to Teen-Hot,a leading global supplier of high-quality crucibles designed for various industrial applications. We offer an extensive range of crucibles, including graphite, ceramic, and metal varieties, tailored to meet the needs of foundries, laboratories, and manufacturers. Our products are renowned for their durability, thermal resistance, and precision engineering, ensuring optimal performance in melting and heat treatment processes. With advanced manufacturing facilities and a commitment to excellence, we provide reliable, cost-effective solutions worldwide. Partner with us for your crucible needs and experience superior quality, expert support, and timely delivery.
If you have any questions, please feel free to contact us(nanotrun@yahoo.com).
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of 3ml–30000ml Corundum Ceramic Crucible for Smelting of Lead
What is the crucible made of? The crucible is made from high-purity alumina. This material gives it strong resistance to heat and chemicals. It works well for melting lead without breaking down. The structure stays stable even under high temperatures. This prevents contamination of the molten metal.
What temperature can it handle? It withstands temperatures up to 1800°C. This makes it suitable for most lead-smelting processes. Do not go over this limit. Overheating may cause cracks or damage. Check the furnace settings before use. Match them to the crucible’s rated temperature.
How long does it last? Lifespan depends on usage conditions. Regular exposure to lead and high heat causes wear over time. Handle it carefully to avoid impacts. Clean it after each use. Proper care extends its service life. Most users report months of reliable performance with daily use.
Which capacity should I choose? Pick a size based on your smelting needs. Small 3ml crucibles suit lab tests. Larger 30000ml versions handle industrial batches. Avoid filling beyond 80% capacity. Leave space for molten lead to expand. This prevents spills and uneven heating.
How do I maintain it? Let the crucible cool completely after heating. Clean residues with a soft brush or non-abrasive tools. Do not use harsh chemicals. Store it in a dry place away from moisture. Inspect for cracks before reuse. Replace it if damage is visible.

(3ml–30000ml Corundum Ceramic Crucible for Smelting of Lead)
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