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PRODUCT PARAMETERS
Description
Overview of Boron Nitride Ceramic
Boron Nitride (BN) ceramic is a unique material renowned for its exceptional properties, making it highly valuable in various industrial applications. It exists in multiple forms, primarily hexagonal boron nitride (h-BN), cubic boron nitride (c-BN), and wurtzite boron nitride (w-BN). Hexagonal BN, the most common form, is often compared to graphite due to its lubricious and thermally conductive yet electrically insulating nature. Boron Nitride ceramics are synthesized under high temperatures and pressures, offering a rare combination of properties not found in many other materials.
Features of Boron Nitride Ceramic
Thermal Conductivity: Excellent thermal conductivity, especially in the hexagonal form, allowing efficient heat dissipation.
Electrical Insulation: Outstanding electrical insulation properties make it ideal for electrical applications requiring thermal management.
Chemical Stability: Highly resistant to chemical attacks, including strong acids and bases, ensuring durability in harsh environments.
Thermal Shock Resistance: Superior resistance to thermal shock, enabling it to withstand rapid temperature changes without cracking.
Mechanical Strength: Good mechanical strength at both room and elevated temperatures, although this can vary with the form of BN.
Lubricity: Self-lubricating property due to its layered structure, which reduces friction and wear in moving parts.
Non-Toxic: Safe to use in various settings, including medical and food processing industries, due to its non-toxic nature.
High-Temperature Performance: Maintains stability at extremely high temperatures, exceeding 1000°C in inert atmospheres, making it suitable for refractory applications.
(Lithium Battery HBN Boron Nitride Powder Ceramic Coating Lubricant Boron Nitride)
Specification of Lithium Battery HBN Boron Nitride Powder Ceramic Coating Lubricant Boron Nitride
Lithium Battery HBN Boron Nitride Powder Ceramic Finish Lubricant Boron Nitride is a specialized material created for lithium-ion battery applications. This item enhances battery efficiency by dealing with thermal management and electric insulation obstacles. The powder consists of hexagonal boron nitride (hBN), a ceramic product understood for high thermal conductivity and chemical security. It works as a protective coating layer on battery parts, improving security and performance.
The key requirements consist of a purity level going beyond 99%, ensuring minimal contaminations. The bit size varies between 1-10 microns, allowing consistent finish application. It operates efficiently across temperature levels from -50 ° C to 900 ° C, making it appropriate for extreme atmospheres. The product’s thermal conductivity gets to 30-50 W/m · K, efficiently dissipating heat generated throughout battery operation. Its dielectric strength surpasses 35 kV/mm, avoiding electric leak and brief circuits.
This boron nitride powder is chemically inert. It resists responses with acids, antacid, and organic solvents. This residential or commercial property makes certain lasting security within hostile battery chemistries. The lubricating nature of hBN lowers friction between electrode layers, reducing wear throughout charge-discharge cycles. The powder is compatible with typical layer approaches like splashing, cleaning, or dip-coating. It sticks well to metals, polymers, and porcelains utilized in battery manufacturing.
Applications include finishing battery separators, cathodes, anodes, and present collectors. The ceramic layer serves as a barrier versus dendrite growth, a typical reason for battery failing. It boosts thermal harmony, reducing hotspots that deteriorate battery life. The material’s lightweight nature prevents including considerable mass to battery systems.
Storage requires maintaining the powder in a dry, amazing environment. Wetness exposure need to be decreased to stop clumping. Managing complies with basic safety and security protocols for great powders, consisting of utilizing masks and ventilation.
The item fulfills market requirements for lithium battery products. It is without heavy steels and unsafe unstable compounds. Customized particle sizes and purity levels are offered for particular demands.
(Lithium Battery HBN Boron Nitride Powder Ceramic Coating Lubricant Boron Nitride)
Applications of Lithium Battery HBN Boron Nitride Powder Ceramic Coating Lubricant Boron Nitride
Lithium battery HBN boron nitride powder ceramic covering lube serves multiple functions in contemporary power storage systems. This product improves battery efficiency. It enhances thermal administration. Batteries create heat throughout operation. Overheating minimizes effectiveness. HBN boron nitride finishes dissipate warmth effectively. This avoids thermal runaway. Battery life expectancy prolongs as a result.
The powder functions as a ceramic covering for electrodes. It produces a protective layer. This layer decreases direct get in touch with in between electrodes and electrolytes. Chain reaction decrease. Destruction decreases. Battery stability improves. Cost cycles increase. Individuals experience consistent power output with time.
HBN boron nitride works as a completely dry lubricating substance. It reduces friction in between battery parts. Relocating parts run efficiently. Mechanical wear minimizes. Upkeep expenses decrease. Power loss from rubbing lessens. Efficiency increases. This is essential for high-demand applications like electrical lorries.
The material withstands high temperatures. It withstands harsh chemical environments. Deterioration dangers reduced. Safety and security hazards lower. Batteries work reliably under severe problems. This makes HBN appropriate for aerospace and industrial tools.
Makers benefit from easy application. The powder incorporates flawlessly into existing production processes. No major equipment upgrades are needed. Costs stay workable. Scaling manufacturing remains feasible.
HBN boron nitride is eco stable. It does not release hazardous materials. Disposal problems reduce. Governing compliance simplifies. Lasting battery designs straighten with worldwide green power objectives.
The product sustains thinner battery styles. Space-saving advantages emerge. Tools come to be lighter. Portability boosts. Applications broaden to wearables and small electronic devices.
Research remains to check out brand-new uses. Innovations focus on higher energy thickness. Future batteries might last longer. Billing rates could raise. HBN boron nitride stays an essential material ahead of time battery technology.
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 Lithium Battery HBN Boron Nitride Powder Ceramic Coating Lubricant Boron Nitride
Lithium Battery HBN Boron Nitride Powder Ceramic Coating Lubricant improves battery performance. Below are common questions about it.
What is HBN Boron Nitride Powder Ceramic Coating Lubricant?
This is a high-performance material. It coats parts inside lithium batteries. The powder is ceramic-based. It boosts thermal conductivity. It reduces friction between components. This helps batteries last longer.
How does HBN Boron Nitride Powder work in batteries?
The powder forms a thin layer on surfaces. It acts like a shield. Heat spreads evenly because of its thermal properties. Parts move smoothly. This prevents overheating. It stops wear from friction.
Is this coating safe for lithium batteries?
Yes. Boron nitride is chemically stable. It does not react with battery materials. It handles high temperatures well. No corrosion happens. Batteries stay efficient. No safety risks come from the coating.
How is the powder applied to battery parts?
Mix the powder with a solvent first. Spray or brush the mixture onto surfaces. Let it dry. Heat it to bond the coating. The process is simple. No special tools are needed. It sticks well to metals and ceramics.
What makes this coating better than others?
Traditional coatings lack thermal management. They wear off faster. Boron nitride lasts longer under stress. It keeps batteries cooler. It needs less maintenance. Costs stay low over time. Performance stays consistent.
These points explain the basics of HBN Boron Nitride Powder Ceramic Coating Lubricant. Users see improved battery life. They avoid overheating issues. The product suits high-demand applications.
(Lithium Battery HBN Boron Nitride Powder Ceramic Coating Lubricant Boron Nitride)
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