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Description
Introduction to Alumina Ceramics
Alumina ceramics are known for their high hardness, wear resistance, corrosion resistance, good electrical insulation and high temperature stability. According to the different alumina content, it can be divided into different grades, such as 95 porcelain, 99 porcelain, etc., among which 99 porcelain refers to ceramic materials with an alumina content of 99%. As the alumina content increases, its mechanical strength and electrical insulation properties will also increase accordingly.
Characteristics of Alumina Ceramics
High Hardness: Alumina ceramics have extremely high hardness, which makes it very wear-resistant and suitable for manufacturing abrasive tools and parts that require wear resistance.
Wear resistance: Due to its high hardness, alumina ceramics show excellent wear resistance and are suitable for manufacturing parts for long-term use.
Corrosion resistance: Alumina ceramics have good resistance to most acids and alkalis, making them widely used in the chemical industry.
Good electrical insulation: As an excellent electrical insulating material, alumina ceramics are widely used in electronic and electrical products.
High temperature stability: Ability to withstand extremely high temperatures without significant physical or chemical changes, which makes it an ideal choice for applications in high temperature environments.
Biocompatibility: In the medical field, certain grades of alumina ceramics are used to make medical devices such as artificial joints due to their good biocompatibility.
(High Temperature 99 Alumina Ceramic Small Crucible / Sample Pan for Tga with D6.5mm and D6.8mm)
Specifications of High Temperature 99 Alumina Ceramic Small Crucible / Sample Pan for Tga with D6.5mm and D6.8mm
The High Temperature 99 Alumina Porcelain Small Crucible/Sample Frying Pan for TGA is made for precise thermal evaluation applications. It is made from 99% alumina ceramic. This material makes sure superb thermal stability. The item runs dependably in temperatures up to 1650 ° C. It suits requiring atmospheres like thermogravimetric analysis (TGA). Two diameter alternatives are readily available: D6.5 mm and D6.8 mm. Both sizes fulfill common instrument needs. The compact layout enables easy handling. It fits most basic TGA devices.
The crucible includes high pureness. It reduces contamination risks throughout testing. The smooth surface avoids example adhesion. This makes sure accurate weight measurements. The material withstands chemical rust. It continues to be secure when subjected to acids or alkalis. Thermal shock resistance is strong. Quick temperature changes do not trigger fracturing. This prolongs the item’s life expectancy.
Sturdiness is an essential advantage. The ceramic structure withstands duplicated home heating cycles. Customers save prices by avoiding frequent replacements. The crucible is recyclable after appropriate cleansing. It preserves efficiency consistency over time. Its light-weight layout reduces heat inertia. This enhances temperature control precision during experiments.
The item is excellent for laboratories analyzing polymers, steels, or pharmaceuticals. It supports precise decomposition research studies. The measurements are firmly managed. This assures compatibility with sample owners. Each crucible is machined to specific resistances. Defects like irregular edges or porosity are gotten rid of.
Testing shows minimal thermal development. Outcomes continue to be stable under severe warm. The alumina ceramic does not launch gases. Sample stability remains undamaged. Data accuracy boosts dramatically.
This crucible is a useful alternative to platinum frying pans. It provides similar performance at reduced costs. Industries like aerospace, products scientific research, and quality assurance benefit. Researchers accomplish reliable information without devices compatibility issues.
The item ships in protective packaging. Damage during transportation is stopped. Each device is evaluated prior to distribution. Requirements meet international requirements for laboratory tools. Personalized dimensions or bulk orders can be fit.
(High Temperature 99 Alumina Ceramic Small Crucible / Sample Pan for Tga with D6.5mm and D6.8mm)
Applications of High Temperature 99 Alumina Ceramic Small Crucible / Sample Pan for Tga with D6.5mm and D6.8mm
High-temperature 99 alumina ceramic tiny crucibles and sample pans with diameters of 6.5 mm and 6.8 mm are made for specific thermal analysis applications. These crucibles act as reliable tools in thermogravimetric evaluation (TGA), an approach made use of to determine changes in material weight under controlled temperature level problems. The 99% alumina composition guarantees exceptional thermal security, making them suitable for usage in extreme temperatures approximately 1650 ° C. Their resistance to chemical deterioration permits constant efficiency when subjected to hostile materials during testing.
The compact dimension of these crucibles makes them suitable for dealing with tiny sample quantities. Laboratories working with limited materials benefit from their exact dimensions, which make certain exact dimension repeatability. The 6.5 mm and 6.8 mm diameters cater to certain instrument needs, fitting most common TGA devices without alteration. Their consistent shape advertises even warmth distribution, lowering speculative errors caused by temperature incongruities.
These alumina ceramic crucibles outperform options like platinum or lower-grade ceramics. They stay clear of contamination dangers typical with steel crucibles, specifically when analyzing responsive samples. Their high pureness eliminates disturbance with test outcomes, a crucial factor in study and quality control. The product’s reduced thermal growth coefficient decreases splitting during rapid temperature adjustments, expanding product life-span.
Industries such as drugs, polymers, and metallurgy rely upon these crucibles for material characterization. Researchers use them to study disintegration temperatures, oxidation rates, and moisture content basically. Producers use them to validate product security under heat, making certain compliance with security criteria. The reusability of premium alumina crucibles reduces long-term costs contrasted to disposable alternatives.
Appropriate handling ensures optimal performance. Users need to clean up crucibles extensively between examinations to avoid residue accumulation. Preventing mechanical shock during placement and removal protects structural stability. Compatibility with usual lab equipment enhances workflow, minimizing setup time. The mix of resilience, accuracy, and adaptability makes these crucibles a functional option for requiring thermal analysis tasks.
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 High Temperature 99 Alumina Ceramic Small Crucible / Sample Pan for Tga with D6.5mm and D6.8mm
High Temperature 99 Alumina Ceramic Small Crucible / Sample Pan for TGA (D6.5mm and D6.8mm) – FAQs
1. What is this crucible made of?
The crucible is made of 99% alumina ceramic. This material ensures high thermal stability. It resists extreme temperatures. It also resists chemical corrosion. This makes it reliable for repeated use in labs.
2. What temperature can it handle?
The crucible works in temperatures up to 1700°C. It keeps its shape under heat. It resists thermal shock. This means it won’t crack fast when heated or cooled suddenly.
3. What sizes are available?
Two sizes are available: 6.5mm and 6.8mm in diameter. These fit most TGA instruments. Custom sizes can be made if needed. The small size is ideal for precise sample testing.
4. Is it compatible with all TGA machines?
Yes. The design suits standard TGA equipment. The dimensions match common sample holders. Check your machine’s manual to confirm size requirements. Most users report no issues.
5. How do I clean and maintain it?
Clean the crucible after each use. Use mild solvents or ultrasonic cleaners. Avoid abrasive materials. Proper care extends its lifespan. Store it in a dry place to prevent contamination.
The crucible is chemically inert. It won’t react with most samples. This ensures accurate test results. Its high purity reduces interference in experiments.
The smooth surface prevents sample sticking. This makes measurements more consistent. The lightweight design simplifies handling.
Repeated use is possible if handled carefully. Inspect for cracks or wear regularly. Replace it if damage is visible. This prevents errors during high-temperature testing.
These crucibles are widely used in labs. They work for TGA, DSC, and other thermal analysis. Researchers trust their durability. Industries like aerospace and materials science rely on them.
The product ships with protective packaging. This prevents breakage during transit. Bulk orders are available for frequent users. Contact suppliers for pricing details.
(High Temperature 99 Alumina Ceramic Small Crucible / Sample Pan for Tga with D6.5mm and D6.8mm)
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