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Description
Introduction to Quartz Ceramic Products
Quartz ceramic, also known as fused quartz ceramic or pure silicon ceramic, is an advanced ceramic material made of pure silicon dioxide (SiO₂). It is made by melting high-purity quartz sand at high temperature and then cooling and solidifying it. It has unique physical and chemical properties, making it an ideal choice for many high-tech applications. Quartz ceramic products are widely used in semiconductor manufacturing, optics, electronics, chemical industry and high-temperature industries.
Characteristics and advantages of quartz ceramics
Extremely high thermal stability: Quartz ceramics can remain stable under extreme temperature conditions. They are not only resistant to high temperatures, but also show excellent thermal shock resistance in rapid temperature changes.
Low thermal expansion coefficient: Due to its low thermal expansion coefficient, quartz ceramics have good dimensional stability when the temperature changes and are not easy to deform or crack.
Excellent electrical insulation: Provides excellent electrical insulation performance and is suitable for applications requiring high voltage isolation.
High transparency: It has good light transmittance in a wide band from ultraviolet to infrared, and is particularly suitable for applications such as optical windows and lenses.
Chemical stability: Excellent resistance to most acids, alkalis and other corrosive substances, and almost unaffected by other chemicals except hydrofluoric acid and phosphoric acid.
Mechanical strength: Although quartz ceramic is not as hard as some other types of ceramics, it still has enough mechanical strength to meet the needs of many application scenarios.
High UV transmittance: It has high transmittance in the ultraviolet region, which makes it very useful in UV curing equipment and UV spectrometers.
(Graphite Crucible with Quartz Sleeve for Induction , Used for High-temperature Hot Ceramics and Precious Metal Smelting)
Specifications of Graphite Crucible with Quartz Sleeve for Induction , Used for High-temperature Hot Ceramics and Precious Metal Smelting
This graphite crucible with a quartz sleeve is designed for high-temperature applications in hot ceramics and precious metal smelting. The crucible is made from high-purity graphite. It provides excellent thermal conductivity and resistance to extreme heat. The quartz sleeve works as a protective layer. It avoids straight get in touch with between the graphite and molten products. This arrangement minimizes contamination risks. It additionally prolongs the crucible’s lifespan.
The crucible deals with induction heating systems. It deals with temperatures up to 1800 ° C (3272 ° F). The quartz sleeve adds added thermal stability. It stands up to splitting under fast temperature changes. The mix of graphite and quartz makes certain even warm circulation. This is essential for consistent melting outcomes.
Numerous sizes are available. Common sizes range from 50mm to 200mm. Personalized dimensions can be created. The crucible suits small-scale labs and industrial operations. It works with gold, silver, platinum, and various other rare-earth elements. It additionally collaborates with advanced porcelains calling for accurate high-heat handling.
Upkeep is straightforward. Individuals should inspect the quartz sleeve regularly. Minor surface area splits do not impact performance. Replace the sleeve if deep fractures appear. The graphite core remains durable under typical use. Stay clear of unexpected air conditioning after heating. This stops thermal tension damages.
The design concentrates on performance and safety. The quartz sleeve minimizes material loss. It keeps thaws pure. The graphite structure stands up to oxidation at high temperatures. This decreases wear in time. Operators benefit from faster melting cycles. Energy usage stays low.
Industries like fashion jewelry making, aerospace, and research study labs use this product. It fulfills demands for dependability in duplicated high-heat jobs. The crucible is delivered all set for instant use. No pre-treatment is needed. Store it in a dry setting. Maintain it far from moisture prior to home heating.
Durability and efficiency make this crucible a practical option. It replaces standard ceramic or steel alternatives. These often deteriorate much faster under comparable problems. The quartz-graphite mix makes certain longer service life. It reduces substitute expenses.
(Graphite Crucible with Quartz Sleeve for Induction , Used for High-temperature Hot Ceramics and Precious Metal Smelting)
Applications of Graphite Crucible with Quartz Sleeve for Induction , Used for High-temperature Hot Ceramics and Precious Metal Smelting
The graphite crucible with quartz sleeve manages high-temperature procedures like warm porcelains and rare-earth element smelting. It incorporates graphite’s conductivity with quartz’s protective high qualities. Graphite withstands extreme heat and transfers power successfully. The quartz sleeve serves as an obstacle. It stops responses in between liquified materials and the crucible. This keeps melted steels pure. Induction home heating relies upon products that carry out power. Graphite works well below. Its framework enables quick warmth transfer. Quartz includes high thermal security. It holds up against temperatures past 2000 ° C. This pairing suits demanding commercial settings.
The crucible benefits melting non-ferrous metals like gold and platinum. These products need contamination-free conditions. The quartz sleeve prevents graphite from interacting with steels. This ensures consistent pureness. Precious jewelry manufacturers and metal refiners count on this feature. The configuration also sustains sophisticated porcelains. Products like zirconia and alumina need secure containers. Graphite’s thermal shock resistance protects against breaking during quick temperature level modifications. The quartz layer includes insulation. This reduces warm loss. Power performance improves.
Induction systems gain from the crucible’s style. It heats products rapidly and uniformly. Operators conserve time and power. The crucible fits basic induction setups. No modifications are needed. Its durability decreases replacement prices. Thermal cycling triggers minimal wear. Upkeep remains simple. Labs and manufacturing facilities utilize it for duplicated tasks. Efficiency continues to be trustworthy.
The crucible suits industries such as aerospace and electronics. These markets need high-purity ceramics and steels. The quartz sleeve’s chemical inertness issues below. It stops unwanted reactions during smelting. Customers attain accurate results. The product’s durability makes it affordable. It manages everyday use without degrading. This lowers downtime. Constant high quality satisfies strict sector criteria.
The design concentrates on practicality. It combines durable materials with useful engineering. Users obtain a device that simplifies high-temperature processing. Efficiency and integrity specify its function in contemporary production.
Company Introduction
Advanced Ceramics founded on October 17, 2014, is a high-tech enterprise committed to the research and development, production, processing, sales and technical services of ceramic relative materials and products.. Since its establishment in 2014, 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 Silicon carbide ceramic products, Boron Carbide Ceramic Products, Boron Nitride Ceramic Products, Silicon Carbide Ceramic Products, Silicon Nitride Ceramic Products, Zirconium Dioxide Ceramic Products, Quartz Products, etc. 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 Graphite Crucible with Quartz Sleeve for Induction , Used for High-temperature Hot Ceramics and Precious Metal Smelting
What materials make up the graphite crucible with a quartz sleeve?
The crucible uses high-purity graphite for the main body. A quartz sleeve wraps around it. Graphite handles extreme heat. Quartz adds protection against contamination. Both materials work together for durability in high-temperature settings.
Why include a quartz sleeve in the design?
The quartz sleeve acts as a barrier. It stops molten metals or ceramics from touching the graphite directly. This prevents chemical reactions. Quartz resists thermal shock. It keeps the crucible stable during rapid temperature changes. The sleeve also extends the crucible’s lifespan.
What temperatures can this crucible withstand?
It operates between 1800°C and 2500°C. The exact limit depends on the graphite grade and quartz thickness. This range suits smelting precious metals like platinum. It also works for firing advanced ceramics. Avoid exceeding the maximum temperature to prevent damage.
How do I maintain the crucible for long-term use?
Clean it after each use. Remove leftover residues with non-abrasive tools. Check for cracks or wear before heating. Store it in a dry place to avoid moisture absorption. Never cool it rapidly after heating. Let it return to room temperature slowly.
Is this crucible compatible with all induction furnaces?
Yes. The graphite body conducts electricity efficiently. The quartz sleeve is thin enough to not interfere with induction fields. Ensure the crucible size matches your furnace’s coil dimensions. Verify the temperature settings align with the crucible’s limits.
(Graphite Crucible with Quartz Sleeve for Induction , Used for High-temperature Hot Ceramics and Precious Metal Smelting)
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