Density 010 gcm3, Purity 995 Boron Carbide Nano Powder, Color Black, CAS Number 12069-32-8
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₹ 13396.00
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1
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Technical Specifications
| Parameter | Value |
|---|---|
| Color | Black |
| Purity | 99.5% |
| Density | 0.10 g/cm3 |
| CAS Number | 12069-32-8 |
| Packaging Size | As per customer requirement |
| Country of Origin | Made in India |
| Usage/Application | Laboratory |
Product Description
Ultra-fine boron carbide particles consist of minuscule particles formed from nanoscale substances composed of carbon and boron b c atoms. Boron carbide stands as a ceramic material with a chemical formula of b4cIt serves as recognized for its substantial melting, Exceptional hardness, And one threshold-of-a-kind mix of lightweight and high strength. Boron carbide nanoparticles exhibit distinct properties and are utilized in diverse fields, Including armor materials, Nuclear engineering, Abrasive tools, And composite materials. Here constitute significant traits and features composed of 1 boron carbide nanoparticle Boron with exceptional hardness alongside protection from wear carbide-based nanoparticles consist of a top choice of most durable materials out surpassed only, There known by diamond and cubic boron nitride. They possess excellent wear strength, Allowing them to be perfect for applications where toughness and wear resistance resistance are critical, Including slicing tools, Abrasives together with armor materials. 2. Lightweight despite its boron carbide, Exceptional hardness is relatively lightweight. This property turns it into attractive for uses that demand elevated levels of strength and rigidity while such as, Minimizing weight lightweight armors or structural materials for aerospace and defense industries. 3. Boron carbide nanoparticles with a elevated melting point feature a very elevated melting temperature exceeding 2, 700 c. This high melting point allows for the incorporation of high, Temperature purposes like refractory materials, Crucibles, And thermal protection coatings. 4. Chemical inertness boron carbide nanometer-sized particles demonstrate a lack of chemical reactivity and exhibit strong resilience to chemical attack. They are stable in the existence of bases, Acids, And most making valuable, Corrosive agents for harsh chemical environments and as protective coatings. 5. Neutron absorption boron carbide has excellent neutron crafted specifically, Absorption properties for thermal neutrons. It is frequently utilized in nuclear engineering as neutron control rods, And neutron, Shielding materials detectors due to its high neutron capture cross, Section. 6. Electronic applications boron carbide-based nanoparticles feature potential applications in the realm of electronic devices and semiconductors. They possess a wide bandgap and serves as a a semiconductor material for high, Temperature electronic devices, Radiation detectors, Or functioning as a component in electronic ceramic composites. 7. Biocompatibility boron carbide Nanoparticles are widely recognized for their compatibility with biological systems indicating they are easily accepted by living organisms. This property renders them appropriate for certain like medication, Biomedical applications administration solutions bioimaging, Or as components in bone scaffolds. 8. Thermal conductivity boron carbide nanoparticles have comparatively elevated thermal electrical conductivity. This characteristic enables efficient heat transfer, Making them useful in the realm of heat regulation technologies, Such as heat sinks, Thermal interface materials, Or inside the fabrication of high, Performance composites. 9. Abrasive applications boron carbide nanoparticles are functioning as abrasives because of their hardness along with resistance to abrasion they have the potential to be incorporated into or polishing, Grinding wheels, Cutting tools compounds to elevate the efficiency and precision of material removal processes. 10. Composite materials boron carbide nanoparticles works well for use as reinforcement in composite materials, Enhancing their mechanical properties. Upon integration with matrices such as polymers, Metals, Or ceramics, They improve strength, Hardness, And wear resistance of the resulting composites. Boron carbide Nanoparticles possess exceptional features and promising applications thanks to their distinctive properties to their outstanding hardness, Lightweight nature, And thermal stability. Research efforts are consistently aimed at uncovering their particular applications, Refining their attributes, And expanding our knowledge of their actions in diverse environments and systems.
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Vedayukt India Private Limited
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Jharkhand, India
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2021
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