
( Part Type: Plate )
Experience unparalleled precision and durability with our Fused Alumina (AL2O3) Sapphire Microscope Plate, a versatile and robust solution designed for various microscopic applications. This plate, measuring an impressive 110mm x 42mm x 5mm, is crafted from high-quality sapphire material, renowned for its exceptional hardness and chemical inertness.
The sapphire plate is fused aluminum oxide (AL2O3), ensuring a uniform and dense structure that withstands the rigors of daily use. Its superior optical properties, such as a high refractive index and low thermal expansion coefficient, make it an ideal substrate for a variety of microscopic studies, including fluorescence, polarization, and electron microscopy.
The plate's large dimensions offer ample space for sample preparation, while its thinness allows for deep focus and clear imaging. The 5mm thickness provides adequate rigidity for handling and manipulation, yet it remains lightweight for easy transportation between laboratories.
This AL2O3 sapphire microscope plate is an excellent choice for scientists, researchers, and microscopists seeking a dependable and long-lasting substrate for their experiments. Its exceptional quality, combined with its versatility and durability, ensures that your results will be accurate, reproducible, and of the highest standard.
Invest in our Fused Alumina (AL2O3) Sapphire Microscope Plate today and elevate your microscopic research to new heights of precision and reliability.
1. High Thermal Stability: Sapphire, being a corundum mineral, has a high thermal conductivity, making it an excellent choice for applications that require temperature stability.
2. Chemical Inertness: AL2O3 (aluminum oxide) is highly resistant to chemical reactions, ensuring the plate maintains its structural integrity in various laboratory environments.
3. Scratch Resistance: Sapphire's exceptional hardness makes it highly resistant to scratching, ensuring the plate's surface remains smooth and unaltered over time.
4. Transparency: Sapphire is transparent across a wide spectrum of light, making it suitable for various optical applications, including microscopy.
5. Long-lasting: Sapphire's durability ensures the plate has a long lifespan, making it a cost-effective option in the long run.
Cons:1. High Cost: Sapphire is a valuable and rare mineral, making products made from it generally more expensive than those made from common materials.
2. Brittleness: While sapphire is strong, it is also brittle. This means it can shatter or crack under significant impact, which should be considered during handling.
3. Difficult to Cut and Polish: Due to its hardness, sapphire can be challenging to work with, especially when cutting or polishing the material. This can lead to higher costs for fabrication.
4. Limited Availability: Not all suppliers may carry this specific size and type of sapphire plate, which could limit purchasing options.
Conclusion:The AL2O3 110x42x5mm fused microscope sapphire plate offers several advantages, including high thermal stability, chemical resistance, scratch resistance, transparency, and long-lasting durability. However, its high cost, brittleness, difficulty in cutting and polishing, and limited availability are significant drawbacks.
Recommendation:If the application requires a material with the properties of sapphire and the specific dimensions are crucial, it may be worth investing in the AL2O3 110x42x5mm fused microscope sapphire plate. However, if the cost is a significant concern, it might be worth considering alternatives with similar properties but different materials or dimensions. Always ensure to research various suppliers to find the best price and availability for the needed product.
Great for microscope stage dissecting surface. Very high quality refractory material. First quality ceramic material without air bubbles or defects.
First quality fused aluminum oxide AL2O3 white plate 110mm x 42mm x 5mm sapphire scratch resistant and durable. This is invaluable when a scratch proof working surface is required in a lab environment.