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Description
Introduction of High Purity Alumina Ceramic TGA / DSC / DTA Crucibles Sample Pan 1010mm
Industrial ceramic crucible is a high temperature resistant and corrosion resistant laboratory and industrial container, designed for metal smelting, chemical analysis and high temperature reaction. It is made of high purity ceramic material to ensure excellent thermal stability and chemical inertness.
Features of High Purity Alumina Ceramic TGA / DSC / DTA Crucibles Sample Pan 1010mm
Extreme high temperature resistance
Can withstand high temperature above 1600°C, suitable for high temperature processes such as molten metal and glass.
Excellent thermal shock resistance
Low thermal expansion coefficient, resists rapid cooling and heating, and reduces the risk of cracking.
High chemical stability
Resistant to acid, alkali and molten salt corrosion, ensuring the purity of experiments or production.
Low pollution & long life
The material is dense and non-porous, avoiding sample contamination and durable.
Diverse choices
Provide materials such as alumina, zirconium oxide, silicon carbide, etc., suitable for different application scenarios.
(High Purity Alumina Ceramic TGA / DSC / DTA Crucibles Sample Pan 1010mm)
Specifications of High Purity Alumina Ceramic TGA / DSC / DTA Crucibles Sample Pan 1010mm
These 10mm by 10mm crucibles are made from high purity alumina ceramic. This product takes care of severe warmth quite possibly. They are made for requiring thermal evaluation like TGA, DSC, and DTA. You require trusted devices for these sensitive dimensions. These crucibles deliver constant performance.
The alumina pureness is incredibly high. This minimizes disturbance with your sample reactions. Impurities can alter your information. High pureness alumina guarantees your outcomes truly reflect the example. You get precise mass modification and heat circulation readings.
These pans hold up against temperature levels surpassing 1600 ° C. They keep architectural honesty under extreme warm cycles. Thermal shock resistance is exceptional. Abrupt temperature changes won’t split them quickly. This longevity makes them ideal for repeated experiments.
Chemical inertness is one more major benefit. The alumina ceramic withstands assault from the majority of compounds. This protects against undesirable responses with your samples. Your evaluation focuses only on the product you are studying. The crucible itself remains neutral.
The accurate 10 10mm size fits conventional tool owners perfectly. Constant measurements guarantee reproducible positioning. This consistency is vital for comparing information throughout several runs. You prevent errors from variable crucible placement.
These crucibles feature a stable, level base. This advertises even warmth distribution. Great thermal contact with the sensor platform is important. The layout minimizes temperature level slopes across your sample. You accomplish more trustworthy thermal information.
Surface level of smoothness is enhanced. This decreases the threat of sample sticking. Easy cleansing after use is possible. Reusability uses good worth. Manage them meticulously for maximum life-span.
These high pureness alumina crucibles are necessary tools for precise thermal analysis job. They provide the security, inertness, and temperature level resistance required.
(High Purity Alumina Ceramic TGA / DSC / DTA Crucibles Sample Pan 1010mm)
Applications of High Purity Alumina Ceramic TGA / DSC / DTA Crucibles Sample Pan 1010mm
These alumina ceramic crucibles are necessary devices for thermal evaluation. They determine 10x10mm, a standard size for TGA, DSC, and DTA tools. Their high purity alumina ceramic material offers essential advantages.
High pureness means minimal contamination danger. This is vital for exact outcomes. Trace contaminations can skew weight management dimensions in TGA. They can additionally create undesirable responses or baseline drift in DSC/DTA. These crucibles keep your data clean.
The material withstands severe temperature levels conveniently. It manages regular evaluation approximately 1600 ° C and even 1750 ° C short-term. This stability is important. Samples decay or respond predictably. The crucible itself stays undamaged.
Alumina ceramic is chemically non-active. It withstands attack from many examples. Acids, bases, and aggressive substances create little reaction. This inertness ensures sample behavior comes only from the example itself. You see true thermal homes.
These crucibles give excellent thermal conductivity. Heat transfers effectively to your example. This causes sharp, well-defined tops in DSC/DTA curves. Precise shift temperature levels are simpler to identify. Reaction kinetics in TGA become clearer.
Their smooth surface area permits simple cleaning. Sample residue elimination is uncomplicated. Reuse is useful. Regular performance run after run saves costs. The crucibles provide excellent mechanical strength too. Careful handling prevents breakage.
Scientists use these crucibles throughout numerous fields. Drug advancement relies upon them for pureness checks and stability screening. Polymer researchers study melting points and condensation habits. Materials scientists examine decay temperature levels and stage changes. Quality assurance labs rely on them for set uniformity.
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 Purity Alumina Ceramic TGA / DSC / DTA Crucibles Sample Pan 1010mm
What are High Purity Alumina Ceramic Crucibles?
These crucibles are small containers made from nearly pure aluminum oxide ceramic. Scientists use them to hold samples during thermal analysis tests like TGA, DSC, and DTA. The crucibles sit inside the instrument’s furnace. They hold solid or powdered materials safely at high temperatures.
Why is high purity alumina used?
High purity alumina offers excellent chemical stability. It resists reacting with most sample materials during heating. This prevents contamination of your sample. It also prevents the crucible itself from affecting the test results. High purity ensures consistent performance test after test.
What is the benefit of the 1010mm size?
This specific size fits perfectly into many common thermal analysis instruments. It allows efficient heat transfer from the furnace to the sample. The small size works well with tiny sample quantities. This is important for getting accurate measurements. The standard size makes it easy to find compatible instrument holders.
Can these crucibles handle thermal shock?
Yes, they are designed for rapid temperature changes. Thermal shock resistance is critical. Instruments heat and cool samples quickly during analysis cycles. The ceramic material withstands these sudden shifts without cracking. This ensures reliable performance over many uses.
Are these crucibles reusable?
Generally, yes. Their high purity and chemical inertness make cleaning possible. After a test, carefully clean the crucible according to your lab’s procedures. Remove all sample residues. Inspect it for damage before using it again. Proper cleaning extends their lifespan significantly.
(High Purity Alumina Ceramic TGA / DSC / DTA Crucibles Sample Pan 1010mm)
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