Features :High temperature resistance, corrosion resistance, good thermal shock resistance
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Chemical Stability Oval Type Crucible Metal Melting Silicon Carbide Graphite High Volume Capacity
Introduction of Oval Type Crucible
Silicon carbide graphite crucibles are specifically engineered to offer a range of advantages for high-temperature applications such as metal smelting. These crucibles are composed of a combination of silicon carbide and graphite, which provides them with exceptional heat resistance and structural integrity.
Silicon carbide graphite crucibles are engineered to provide exceptional performance in high-temperature applications, such as metal smelting processes. These crucibles are crafted from a compound of silicon and carbon, which gives them their unique properties and makes them ideal for fusing materials like aluminum, copper, and brass.
One of the key features of silicon carbide crucibles is their chemical stability. They can resist most molten metals and metal oxides up to their maximum operating level, ensuring that the dissolved substance remains uncontaminated and the crucible undamaged.Furthermore, silicon carbide has one of the lowest thermal expansion coefficients, allowing the crucible to handle rapid heating and cooling cycles without cracking.
Oval type crucible suitable for automated operations withrobotic arms. A partition is added in the middleof the crucible, enabling simultaneous melting and working.
Features of Oval Type Crucible
Oval Type Crucible, also known as an oval-shaped ceramic crucible, is meticulously crafted to cater to high-temperature applications that necessitate an elongated vessel for the melting or heating processes of specific materials. These crucibles are particularly designed to optimize the heating efficiency and accommodate the shape and volume of materials being processed.
These crucibles offer good thermal conductivity and even heating, which are crucial for efficient melting processes. High graphite content in the carbon binder of some crucibles provides high thermal conductivity for fast melting, especially in gas-fired furnaces.
The construction of oval type crucibles with materials like isostatically pressed silicon carbide results in a random arrangement of the graphite in their structure, creating denser products that can withstand erosive and corrosive conditions more effectively.
Applications of Oval Type Crucible
Oval type crucibles are used in various industrial and laboratory settings, including the melting of metals, the synthesis of advanced materials, and high-temperature processes that require precise control over thermal conditions.