Crisol de grafito de carburo de silicio prensado isostáticamente con bico vertedor para procesamento industrial de cerámica e fusión de metais

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Visión xeral das cerámicas de carburo de silicio

As cerámicas de carburo de silicio (SiC) son coñecidas polas súas excelentes propiedades mecánicas, incluíndo a súa alta dureza, resistencia a temperaturas elevadas e excelente resistencia ao choque térmico. Estes materiais son fundamentais en aplicacións industriais de vangarda, desde abrasivos ata compoñentes aeroespaciais, debido á súa combinación única de propiedades.

Características das cerámicas de carburo de silicio

Alta dureza: excepcional resistencia ao desgaste.

Resistencia ao choque térmico: pode soportar cambios rápidos de temperatura.

Estabilidade química: resistente á maioría dos produtos químicos.

Alta condutividade térmica: disipación de calor eficiente.

Baixa densidade: lixeiro pola súa forza.

Crisol de grafito de carburo de silicio prensado isostáticamente con bico vertedor para procesamento industrial de cerámica e fusión de metais

(Isostatic Pressed Silicon Carbide Graphite Crucible with Pouring Spout for Industrial Ceramic Processing and Metal Melting)

Specification of Isostatic Pressed Silicon Carbide Graphite Crucible with Pouring Spout for Industrial Ceramic Processing and Metal Melting

The Isostatic Pushed Silicon Carbide Graphite Crucible with Pouring Spout is made for industrial ceramic processing and steel melting. It combines silicon carbide and high-purity graphite. The materials make sure high thermal conductivity and resistance to thermal shock. The crucible operates under severe temperatures up to 1650 ° C. The putting spout enables accurate control during metal transfer. This lowers splilling and enhances performance.

The production procedure uses isostatic pressing innovation. This guarantees uniform density throughout the structure. The result is boosted mechanical toughness and longer life span. The material mix withstands chemical erosion from molten metals and slag. It executes well in acidic or alkaline atmospheres. The crucible maintains structural honesty under fast temperature level adjustments.

This crucible suits applications in ceramics production and steel shops. It deals with light weight aluminum, copper, zinc, and precious metals. The design includes an enhanced rim and base. These functions prevent breaking during managing or thermal stress and anxiety. The smooth internal surface area reduces product adhesion. Cleaning in between usages becomes easier.

The pouring spout is formed for controlled flow. It reduces disturbance during steel transfer. This lessens oxidation and contamination. The crucible works with induction heaters and gas-fired arrangements. It fits conventional lifting devices for safe transportation. The lightweight layout decreases operator tiredness during repeated usage.

Durability is a crucial benefit. The isostatic pushing method eliminates powerlessness. The crucible resists contortion under heavy lots. It holds up against constant heating and cooling down cycles without deterioration. The high thermal security ensures consistent melting prices. This sustains constant commercial procedures.

Security features consist of low thermal development. The crucible remains steady during fast temperature level shifts. This reduces the threat of abrupt fractures. The products discharge marginal fumes at heats. This creates a much safer workspace. The item abides by commercial standards for refractory materials.

Upkeep requirements are very little. Normal evaluations for surface area fractures or wear are suggested. Proper handling stays clear of mechanical influences. Storage in completely dry problems avoids dampness absorption. The crucible works with most slag-removal tools. Replacement periods depend on usage intensity and material kinds processed.

The crucible offers industries like metallurgy, jewelry making, and aerospace. It is suitable for small-scale labs and large shops. Customized dimensions and spout configurations are offered. Efficiency continues to be dependable in both oxidizing and lowering ambiences. The item focuses on user security and functional efficiency.

Crisol de grafito de carburo de silicio prensado isostáticamente con bico vertedor para procesamento industrial de cerámica e fusión de metais

(Isostatic Pressed Silicon Carbide Graphite Crucible with Pouring Spout for Industrial Ceramic Processing and Metal Melting)

Applications of Isostatic Pressed Silicon Carbide Graphite Crucible with Pouring Spout for Industrial Ceramic Processing and Metal Melting

Isostatic pressed silicon carbide graphite crucibles with pouring spouts serve critical functions in commercial ceramic handling and metal melting. These crucibles are made using sophisticated isostatic pressing technology. This approach compacts silicon carbide and graphite powders under high stress. The result is a thick, consistent framework. This framework ensures high thermal conductivity and mechanical strength. The enhancement of a putting spout permits exact control during molten product transfer. It lowers spills and waste. This design improves safety in high-temperature environments.

These crucibles handle extreme temperatures approximately 1650 ° C. They withstand thermal shock far better than typical clay or ceramic crucibles. Fast heating or air conditioning does not trigger cracks. This resilience prolongs their life span. They also stand up to chemical rust from molten steels like light weight aluminum, copper, and alloys. This makes them perfect for foundries and steel spreading operations.

In ceramic handling, the crucibles are used to melt basic materials like silica and alumina. They keep pureness by avoiding contamination. Their non-reactive surface area guarantees consistent ceramic high quality. For steel melting, the putting spout makes it possible for smooth, controlled pours right into mold and mildews. This reduces defects in finished products.

Industries benefit from decreased downtime. The crucibles need very little upkeep. Their wear resistance cuts replacement expenses. Power performance is another advantage. High thermal conductivity accelerate melting. This lowers energy intake.

These crucibles are utilized in aerospace, vehicle, and electronic devices manufacturing. They satisfy needs for precision and integrity. Their layout supports both small workshops and huge industrial operations. Performance remains steady under constant usage. This reliability makes them a recommended option for demanding applications.


Introdución da compañía

Advanced Ceramics, fundada o 17 de outubro de 2014, é unha empresa de alta tecnoloxía comprometida coa investigación e desenvolvemento, produción, procesamento, vendas e servizos técnicos de materiais e produtos cerámicos. Desde a súa creación en 2014, a empresa comprométese a ofrecer aos clientes os mellores produtos e servizos e converteuse nun líder na industria a través da innovación continua e rigorosa xestión tecnolóxica da calidade.

Os nosos produtos inclúen, entre outros, produtos cerámicos de carburo de silicio, produtos cerámicos de carburo de boro, produtos cerámicos de nitruro de boro, produtos cerámicos de carburo de silicio, produtos cerámicos de nitruro de silicio, produtos cerámicos de dióxido de circonio, produtos de cuarzo, etc. Non dubide en contactar connosco.(nanotrun@yahoo.com)

Formas de pago

T/T, Western Union, Paypal, tarxeta de crédito, etc.

Métodos de envío

Por aire, por mar, por expreso, segundo o soliciten os clientes.

5 FAQs of Isostatic Pressed Silicon Carbide Graphite Crucible with Pouring Spout for Industrial Ceramic Processing and Metal Melting

1. What makes isostatic pressed silicon carbide graphite crucibles better than traditional ones?
The crucible uses isostatic pressing. This method compacts material evenly. It creates a dense structure. The structure resists cracks. It handles extreme heat better. Traditional crucibles break faster under stress.

2. What temperature can this crucible handle?
It works up to 1650°C. It resists sudden temperature changes. Rapid heating or cooling won’t damage it. This suits metal melting. It also works for ceramic processing.

3. Why include a pouring spout?
The spout controls liquid flow. It prevents spills. Workers pour molten metal safely. It reduces waste. The design fits industrial setups.

4. How long does the crucible last?
It lasts longer than clay-graphite crucibles. It resists chemical corrosion. It doesn’t react with metals. Proper care extends its life. Users replace it less often.

5. Can it melt all metals?
It melts aluminum, copper, and alloys. It works for precious metals like gold. Avoid metals with high iron content. Iron reacts with silicon carbide. Check compatibility first.

Crisol de grafito de carburo de silicio prensado isostáticamente con bico vertedor para procesamento industrial de cerámica e fusión de metais

(Isostatic Pressed Silicon Carbide Graphite Crucible with Pouring Spout for Industrial Ceramic Processing and Metal Melting)

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