CE ISO 2200C 2400C High Vaccum Advanced Ceramic Furnace Silicon Carbide Silicon Nitride Boron Nitride Ceramic Sintering Furnace

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Description

Overview of Boron Nitride Ceramic

Boron Nitride (BN) ceramic is a unique material renowned for its exceptional properties, making it highly valuable in various industrial applications. It exists in multiple forms, primarily hexagonal boron nitride (h-BN), cubic boron nitride (c-BN), and wurtzite boron nitride (w-BN). Hexagonal BN, the most common form, is often compared to graphite due to its lubricious and thermally conductive yet electrically insulating nature. Boron Nitride ceramics are synthesized under high temperatures and pressures, offering a rare combination of properties not found in many other materials.

Features of Boron Nitride Ceramic

Thermal Conductivity: Excellent thermal conductivity, especially in the hexagonal form, allowing efficient heat dissipation.

Electrical Insulation: Outstanding electrical insulation properties make it ideal for electrical applications requiring thermal management.

Chemical Stability: Highly resistant to chemical attacks, including strong acids and bases, ensuring durability in harsh environments.

Thermal Shock Resistance: Superior resistance to thermal shock, enabling it to withstand rapid temperature changes without cracking.

Mechanical Strength: Good mechanical strength at both room and elevated temperatures, although this can vary with the form of BN.

Lubricity: Self-lubricating property due to its layered structure, which reduces friction and wear in moving parts.

Non-Toxic: Safe to use in various settings, including medical and food processing industries, due to its non-toxic nature.

High-Temperature Performance: Maintains stability at extremely high temperatures, exceeding 1000°C in inert atmospheres, making it suitable for refractory applications.

CE ISO 2200C 2400C High Vaccum Advanced Ceramic Furnace Silicon Carbide Silicon Nitride Boron Nitride Ceramic Sintering Furnace

(CE ISO 2200C 2400C High Vaccum Advanced Ceramic Furnace Silicon Carbide Silicon Nitride Boron Nitride Ceramic Sintering Furnace)

Specification of CE ISO 2200C 2400C High Vaccum Advanced Ceramic Furnace Silicon Carbide Silicon Nitride Boron Nitride Ceramic Sintering Furnace

The CE ISO 2200C 2400C High Vacuum Cleaner Advanced Porcelain Furnace takes care of sintering procedures for silicon carbide, silicon nitride, and boron nitride porcelains. It fulfills CE and ISO standards, ensuring reliability and security. The heating system reaches temperatures as much as 2400 ° C, suitable for high-performance ceramic production. It runs under high vacuum cleaner conditions to prevent oxidation and contaminations throughout sintering. The chamber makes use of innovative insulation products to preserve temperature harmony. The heating elements are made from silicon carbide poles, supplying reliable warmth circulation. The heating system structure consists of boron nitride parts for thermal security and chemical resistance. A high-capacity vacuum cleaner system guarantees stress degrees listed below 10 ^ -3 Pa. The control system includes a programmable logic controller for exact temperature and pressure adjustments. Users can establish personalized sintering accounts through a touchscreen user interface. Real-time surveillance tracks temperature level, stress, and process time. The cooling system uses water and gas to minimize downtime between cycles. Safety and security mechanisms include over-temperature alarm systems and emergency closures. The heater layout reduces warm loss, reducing power usage. Upkeep is streamlined with modular elements and easy-access panels. It sustains batch handling for industrial-scale manufacturing. The small framework fits basic laboratory and factory setups. Technical support is readily available for installment and troubleshooting. This heating system is excellent for research institutions and makers needing high-precision ceramic sintering.

CE ISO 2200C 2400C High Vaccum Advanced Ceramic Furnace Silicon Carbide Silicon Nitride Boron Nitride Ceramic Sintering Furnace

(CE ISO 2200C 2400C High Vaccum Advanced Ceramic Furnace Silicon Carbide Silicon Nitride Boron Nitride Ceramic Sintering Furnace)

Applications of CE ISO 2200C 2400C High Vaccum Advanced Ceramic Furnace Silicon Carbide Silicon Nitride Boron Nitride Ceramic Sintering Furnace

The CE ISO 2200C 2400C High Vacuum Advanced Ceramic Furnace is developed for sintering high-performance ceramics like silicon carbide, silicon nitride, and boron nitride. It fulfills stringent CE and ISO standards, making certain dependability and safety and security. The heater runs at temperature levels up to 2400 ° C in high-vacuum conditions, making it optimal for advanced material processing.

This heating system is used in markets calling for accuracy and durability. Aerospace producers utilize it to generate heat-resistant elements for engines and turbines. Electronics firms rely on it to develop protecting components for semiconductors and circuit card. The energy sector applies it to create corrosion-resistant parts for atomic power plants and solar systems.

The high-vacuum setting prevents contamination during sintering. This ensures consistent material residential or commercial properties essential for high-stress applications. The furnace’s heating elements are constructed to withstand extreme temperatures, reducing wear and upkeep costs. Consistent temperature distribution warranties even sintering, boosting product top quality.

Silicon carbide parts made with this heater offer superior hardness and thermal conductivity. Silicon nitride parts display superb fracture resistance and thermal stability. Boron nitride items take advantage of low thermal growth and high electric insulation. These products are important in sectors where efficiency under extreme problems is non-negotiable.

The heater includes sophisticated temperature control systems for accurate changes. Safety and security systems like overheat security and stress monitoring stop functional hazards. Its modular design allows personalization to fulfill particular production demands. Users can integrate additional components for gas shot or rapid air conditioning.

Industrial laboratories and study institutions utilize this heating system for material growth. It sustains experiments on brand-new ceramic compounds and sintering techniques. The results help optimize making processes and decrease material waste.

The CE ISO 2200C 2400C High Vacuum Cleaner Advanced Porcelain Heater integrates sophisticated innovation with straightforward procedure. It deals with the needs of modern-day industries for efficient, top quality ceramic production. Its durable building and construction ensures lasting performance in demanding environments.


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 CE ISO 2200C 2400C High Vaccum Advanced Ceramic Furnace Silicon Carbide Silicon Nitride Boron Nitride Ceramic Sintering Furnace

The CE ISO 2200C 2400C High Vacuum Advanced Ceramic Furnace handles high-temperature sintering for materials like silicon carbide, silicon nitride, and boron nitride. Below are answers to common questions.

What temperatures can this furnace reach?
This furnace reaches 2400°C. It works for advanced ceramics needing extreme heat. The heating elements use silicon carbide rods. They handle rapid temperature changes without breaking.

Is the furnace certified?
Yes. It meets CE and ISO standards. These certifications confirm safety and performance. They ensure the furnace operates reliably in industrial or research settings.

What materials can it process?
It sinters silicon carbide, silicon nitride, and boron nitride. These materials need high heat and vacuum conditions. The furnace’s design prevents contamination during sintering. This keeps material properties consistent.

Why use a high-vacuum environment?
High vacuum removes oxygen and gases. This stops reactions that damage materials. It also improves density and strength in finished products. The vacuum system works for both research and production.

How safe is the furnace?
Safety features include automatic cooling and overheat alarms. The structure uses heat-resistant materials. Emergency shutdowns trigger if pressure or temperature goes too high. Regular maintenance checks keep risks low.

The furnace suits labs and factories. Its design focuses on precision and durability. Users get consistent results for advanced ceramic projects.

CE ISO 2200C 2400C High Vaccum Advanced Ceramic Furnace Silicon Carbide Silicon Nitride Boron Nitride Ceramic Sintering Furnace

(CE ISO 2200C 2400C High Vaccum Advanced Ceramic Furnace Silicon Carbide Silicon Nitride Boron Nitride Ceramic Sintering Furnace)

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