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PRODUCT PARAMETERS
Description
Overview of Zirconium Dioxide Ceramics
Zirconium Dioxide Ceramics, known for their toughness and ability to withstand extreme temperatures, are widely used in medical, automotive, and industrial applications due to their unique properties.
Features of Zirconium Dioxide Ceramics
Exceptional fracture toughness
High thermal expansion
Excellent resistance to wear and corrosion
Biocompatibility for medical implants
(Stabilized Zro2 Zirconia Zirconium Oxide Ceramic Sheet for Sinter)
Specifications of Stabilized Zro2 Zirconia Zirconium Oxide Ceramic Sheet for Sinter
Maintained ZrO2 Zirconia Zirconium Oxide Porcelain Sheets for Sinter give high-performance solutions for industrial applications. The material consists of zirconium oxide stabilized with yttrium oxide (Y2O3) or magnesium oxide (MgO). This stablizing process guarantees solid thermal security and resistance to stage changes throughout sintering. The sheets include a density of 6.0-6.1 g/cm six and pureness levels over 99%. These residential or commercial properties make them ideal for high-temperature settings.
The ceramic sheets reveal excellent thermal resistance. They run reliably at temperatures as much as 2000 ° C. Their reduced thermal conductivity lowers warmth loss in thermal insulation setups. The product additionally resists thermal shock. Rapid temperature level adjustments do not cause cracking or structural damages. This sturdiness extends the product’s life span sought after problems.
Mechanical toughness is a crucial advantage. The sheets have a flexural toughness of 800-1000 MPa. High crack toughness prevents breakage under anxiety. This makes them appropriate for load-bearing applications. Surface coating alternatives consist of polished or as-sintered appearances. Smooth surfaces lower friction and put on in relocating parts. Tight dimensional resistances ensure accurate fit in assemblies.
Readily available densities vary from 0.5 mm to 50 mm. Basic sheet dimensions are 100×100 mm to 500×500 mm. Custom shapes and sizes can be produced based upon needs. The material is compatible with CNC machining. Post-sintering procedures like boring or grinding are attainable without compromising integrity.
Applications consist of heating system cellular linings, crucibles, and thermal barriers in aerospace, metallurgy, and electronics. The sheets function as elements in strong oxide fuel cells and oxygen sensing units. Their chemical inertness withstands rust from acids, antacid, and molten metals.
Quality control adheres to stringent methods. Each batch goes through thickness, solidity, and microstructure screening. X-ray diffraction (XRD) and scanning electron microscopy (SEM) verify stage security and grain uniformity. Qualifications comply with international criteria for industrial porcelains.
Personalization options cover structure adjustments, surface area therapies, and dimensional specs. Technical support is offered for product selection and layout optimization. The item meets the needs of high-precision, high-temperature industrial processes.
(Stabilized Zro2 Zirconia Zirconium Oxide Ceramic Sheet for Sinter)
Applications of Stabilized Zro2 Zirconia Zirconium Oxide Ceramic Sheet for Sinter
Stabilized ZrO2 zirconia zirconium oxide ceramic sheets are important in sintering procedures. These sheets handle extreme heat and anxiety. They maintain their form and stamina at heats. This makes them excellent for commercial applications.
One vital usage remains in high-temperature furnaces. The sheets act as thermal barriers. They secure heating system components from damages. They ensure even heat circulation. This enhances sintering quality. Aerospace elements take advantage of this. Wind turbine parts and thermal barrier made with ZrO2 sheets last longer.
Medical devices additionally utilize these ceramic sheets. They are biocompatible. They function well in oral implants and bone replacements. Their resistance to use keeps surgical tools sharp. This reduces the need for replacements.
The vehicle industry depends on ZrO2 sheets. They are utilized in oxygen sensing units. These sensors check exhaust gases. The sheets’ ion conductivity assists measure oxygen levels properly. Engine parts made with ZrO2 stand up to thermal shock. This boosts engine efficiency.
Electronic devices producing needs steady products. ZrO2 sheets work as substrates for circuits. They deal with high warmth during manufacturing. Their low electric conductivity avoids interference. This is crucial for dependable digital parts.
Industrial equipment uses ZrO2 sheets for wear-resistant components. Reducing tools and seals made from these sheets last much longer. They reduce downtime. This decreases maintenance prices.
Stabilized zirconia sheets adapt to many areas. Their strength and warmth resistance make them functional. They satisfy the demands of innovative manufacturing. Industries trust them for consistent performance.
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 Stabilized Zro2 Zirconia Zirconium Oxide Ceramic Sheet for Sinter
1. What is Stabilized ZrO2 Zirconia?
Stabilized ZrO2 Zirconia is a ceramic material made from zirconium oxide. It is chemically stabilized to improve performance. This process stops unwanted phase changes during heating or cooling. The result is a material with high strength, toughness, and thermal resistance. Common stabilizers include yttria, creating materials like Y-TZP (Yttria-Tetragonal Zirconia Polycrystal). These sheets are ideal for demanding industrial applications.
2. Where are these ceramic sheets used?
These sheets are used in high-temperature processes like sintering. They serve as support plates, setters, or spacers in furnaces. Industries like aerospace, medical devices, and electronics rely on them. They work well for shaping metal, ceramic, or composite parts. Their stability prevents warping or reacting with materials being sintered.
3. What temperatures can they withstand?
Stabilized ZrO2 sheets handle temperatures up to 1500°C or higher. Exact limits depend on the stabilizer type and material grade. They stay strong under repeated heating. This makes them better than many ceramics. Their low thermal conductivity also helps distribute heat evenly.
4. How are the sheets handled before sintering?
Handle the sheets carefully before sintering. They are fragile in their pre-sintered “green” state. Avoid impacts or bending. Store them flat in dry conditions to prevent moisture absorption. Wear gloves to keep oils or dirt off the surface. Contaminants can affect sintering results.
5. Can the sheets be customized for specific needs?
Yes. Manufacturers offer customization for size, thickness, and shape. Tolerances and surface finishes can be adjusted. Special stabilizers or additives are available for unique thermal or mechanical needs. Discuss requirements with suppliers to ensure the sheets match your process.
(Stabilized Zro2 Zirconia Zirconium Oxide Ceramic Sheet for Sinter)
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