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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.

(High Temperature Corundum Mullite Ceramic Alumina Crucible)
Specification of High Temperature Corundum Mullite Ceramic Alumina Crucible
The High Temperature Diamond Mullite Porcelain Alumina Crucible is built for extreme heat and difficult conditions. It incorporates diamond and mullite ceramics. Both materials are recognized for strength and warmth resistance. The alumina web content is high, usually over 85%. This enhances thermal stability and chemical resistance. The crucible operates in temperatures as much as 1800 ° C. It deals with quick home heating or cooling without breaking. Thermal shock resistance is strong.
The material has reduced porosity. This avoids chemicals or liquified materials from leaking in. It withstands acids, alkalis, and steels. Rust is minimal also after repeated usage. The structure stays intact under tension. Mechanical toughness is high. This lowers wear over time.
Sizes range from little laboratory devices to big commercial containers. Usual capabilities are 50ml to 5000ml. Shapes include cylindrical, conical, and customized designs. Wall surfaces are thick for longevity. Surface areas are smooth to stay clear of contamination.
Applications cover labs, foundries, and factories. It thaws metals like gold, silver, and platinum. It refines glass, ceramics, and rare planet materials. Chemical labs utilize it for high-purity reactions. Industrial setups rely upon it for heater work.
Manufacturing utilizes sophisticated sintering. This makes certain uniform thickness and warmth circulation. Resources are pure. Pollutants are managed below 0.5%. The outcome corresponds efficiency.
Treatment is easy. Stay clear of abrupt temperature changes when first home heating. Tidy with non-abrasive tools. Shop in dry conditions. Minor surface area splits may appear after long usage. This does not affect function.
Custom options are readily available. Readjust dimensions, wall surface density, or alumina ratios. Orders ship with specifications for compatibility. Checking data is attended to safety checks.
The crucible lasts longer than common versions. Prices remain low gradually. Efficiency fits research and heavy sector. Reliability fulfills stringent criteria.

(High Temperature Corundum Mullite Ceramic Alumina Crucible)
Applications of High Temperature Corundum Mullite Ceramic Alumina Crucible
High-temperature corundum mullite ceramic alumina crucibles are extensively made use of in markets requiring severe warm resistance. These crucibles are made from a mix of diamond and mullite. This mix provides toughness and stability under high temperatures. They work well in settings where normal materials fall short.
These crucibles take care of temperatures approximately 1800 ° C. This makes them excellent for melting steels like gold, silver, and platinum. Jewelers and metalworkers count on them for regular performance. The crucibles stand up to thermal shock. Sudden temperature level modifications do not create fractures or breaks.
In labs, these crucibles are used for chemical evaluation. They do not react with a lot of acids or antacid. Samples stay pure throughout testing. Glass producers use them to melt raw materials. The crucibles protect against contamination. This guarantees top quality glass products.
The semiconductor sector benefits from these crucibles as well. They thaw materials for silicon wafer production. Their longevity decreases equipment downtime. Chemical plants use them for refining harsh compounds. The crucibles last much longer than choices like graphite or clay. This reduces substitute expenses.
High-temperature diamond mullite ceramic alumina crucibles are energy-efficient. Their heat retention cuts power use during long term heating. This conserves cash with time. Their smooth surface area makes cleansing easy. Deposit does not stick after melting.
These crucibles suit small workshops and big manufacturing facilities. They can be found in several dimensions. Custom-made forms are available for specialized tasks. Their reliability makes them a leading choice for vital applications. Users avoid regular replacements. This enhances productivity.
The product’s low porosity avoids leakages. Molten liquids stay contained. Workers manage hazardous products safely. Upkeep is basic. No unique treatments are required between uses. This lowers labor expenses.
Industries handling extreme heat count on these crucibles. Efficiency stays steady under anxiety. They meet rigorous high quality standards. Their style focuses on customer security. Warm does not warp or weaken them rapidly. This ensures lengthy life span.
High-temperature diamond mullite ceramic alumina crucibles are a practical financial investment. They exceed standard alternatives. Their convenience covers lots of industrial requirements. Users achieve constant results. Operational effectiveness boosts.
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 High Temperature Corundum Mullite Ceramic Alumina Crucible
High Temperature Corundum Mullite Ceramic Alumina Crucibles handle extreme heat and harsh conditions. Here are common questions and answers. What temperature can these crucibles withstand? They work up to 1750°C. This depends on the material mix and heating rate. Sudden temperature changes lower the limit. How long do they last compared to other crucibles? They outlast alumina or porcelain crucibles. Their strength comes from corundum and mullite. Proper care extends their life. Avoid rapid cooling or overheating. What chemicals can they resist? They handle acids, alkalis, and molten metals. Hydrofluoric acid and strong bases at high temperatures damage them. Check chemical compatibility before use. Can they crack from thermal shock? Yes. Quick temperature shifts cause cracks. Preheat crucibles slowly. Keep heating rates under 5°C per minute. Cooling should also be gradual. How do I know when to replace a crucible? Look for cracks, chips, or surface erosion. Thinning walls or color changes mean reduced strength. Replace worn crucibles to avoid failure during use.

(High Temperature Corundum Mullite Ceramic Alumina Crucible)
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