Professional industry ceramic supplier, silicon nitride, silicon carbide, aluminum nitride and any other kinds of ceramics.
PRODUCT PARAMETERS
Description
Overview of MgO Magnesia Ceramic Crucible
MgO Magnesia Ceramic Crucible 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 MgO Magnesia Ceramic Crucible
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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 MgO Magnesia Ceramic Crucible
This crucible makes use of magnesia. Magnesia is magnesium oxide, MgO. MgO offers it excellent properties. It deals with very heats well. These crucibles function progressively above 1800 ° C. Some grades can endure also higher warm. They withstand sudden temperature level modifications. This is thermal shock resistance. It suggests they will not break conveniently when heated up or cooled fast. They are chemically extremely steady. They withstand attack from many molten metals. This includes steels like iron, copper, and nickel. They additionally resist basic slags. Acidic slags can often harm them. These crucibles are literally solid. They have high mechanical strength. They additionally have good thermal conductivity. This assists heat spread evenly. They are thick. Low porosity is necessary. Reduced porosity stops the melt from soaking right into the crucible wall surfaces. This keeps your material pure. Requirement dimensions are offered. Sizes vary from little laboratory utilizes to larger industrial needs. Common shapes are round or cone-shaped. You discover them in labs. Metallurgy utilizes them often. They are good for melting rare-earth elements. They work well for melting non-ferrous alloys. They are also utilized in ceramic sintering procedures. Their high purity is vital for these tasks. They supply trustworthy efficiency under hard problems.
Applications of MgO Magnesia Ceramic Crucible
MgO magnesia ceramic crucibles take care of severe warm very well. They stand up to temperatures much over the majority of various other materials. This makes them ideal for hard commercial tasks. These crucibles excel in melting metals. Steel shops and light weight aluminum producers utilize them usually. The crucible holds molten steel safely without breaking down. Crystal growth needs constant high temperatures as well. MgO crucibles function well right here. They grow important crystals like semiconductors without contaminating them. Chemical processing includes nasty substances. Strong acids and responsive materials attack numerous containers. MgO withstands these chemicals properly. Labs utilize these crucibles for mixing and heating up aggressive chemicals securely. Study requires trusted tools. Scientists utilize MgO crucibles for experiments needing high warmth and chemical stability. They trust the material won’t interfere with their outcomes. These crucibles last a long period of time. Their durability means less replacements. This saves cash over time. Finding the right size and pureness matters. Various jobs require various crucible specs. MgO crucibles provide a reliable option for requiring high-temperature applications.
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 MgO Magnesia Ceramic Crucible
What’s the highest temperature MgO crucibles can handle?
MgO crucibles withstand extreme heat. They work well up to 2800°C. This makes them great for very high-temperature uses. Many other ceramics can’t match this. They melt or weaken much sooner.
Are MgO crucibles good with harsh chemicals?
Yes, they resist many chemicals well. Acids and bases don’t easily attack them. Alkaline materials are especially safe inside. This chemical toughness is a big plus. It means fewer problems during melts.
How long do MgO crucibles usually last?
Their lifespan depends heavily on use. How hot you run them matters. What chemicals are inside matters too. Frequent thermal cycling can shorten life. But handled right, they last many heating cycles. They outperform cheaper options often.
Can MgO crucibles crack from sudden temperature changes?
They can crack if heated or cooled too fast. This is thermal shock. MgO handles shock better than some ceramics. But you must be careful. Always heat and cool slowly. Avoid putting cold stuff into hot crucibles suddenly.
What are MgO crucibles mainly used for?
People use them to melt precious metals. Platinum and palladium are common examples. They also work for rare earth elements. High-purity ceramics need them sometimes. Any super hot process needing purity might use MgO.
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