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Description
Overview of Silicon Nitride Ceramics
Silicon Nitride Ceramics are high-performance materials known for their excellent mechanical properties, including strength, toughness, and resistance to wear, corrosion, and thermal shock, making them ideal for demanding applications in various industries.
Features of Silicon Nitride Ceramics
Exceptional hardness and wear resistance.
Superior mechanical strength and fracture toughness.
Excellent thermal stability and resistance to thermal shock.
High corrosion resistance in aggressive environments.
Low density contributing to lightweight components.
(Full Ceramic Si3N4 Silicon Nitride Ceramic Ball Bearings 6200 6201 6202 6203 6204 6205)
Specifications of Full Ceramic Si3N4 Silicon Nitride Ceramic Ball Bearings 6200 6201 6202 6203 6204 6205
Full Ceramic Si3N4 Silicon Nitride Ceramic Round Bearings (designs 6200, 6201, 6202, 6203, 6204, 6205) are engineered for high-performance applications. These bearings make use of silicon nitride (Si3N4) for both internal and outer rings and ceramic rounds. This material ensures exceptional resilience and resistance to extreme conditions.
The bearings run effectively in temperature levels from -40 ° C to 800 ° C. They withstand corrosion from chemicals, water, and solvents. Unlike steel bearings, they do not corrosion. Their non-conductive nature prevents electric arcing. This makes them ideal for atmospheres with electrical currents or electromagnetic fields.
These ceramic bearings are lightweight. They lower rotational inertia. This improves efficiency in high-speed applications. Usual uses consist of aerospace parts, clinical equipment, industrial equipment, and precision tools. They do well in vacuum problems. They call for no lubrication. This gets rid of contamination threats in cleanrooms or food-processing settings.
The complete ceramic design decreases rubbing. It prolongs life span even under hefty tons or quick rotations. They exceed steel bearings in severe environments. Maintenance demands are reduced. Downtime is reduced.
Technical specs for each and every design are as complies with:
– Model 6200: Internal size 10mm, outer size 30mm, width 9mm.
– Model 6201: Internal diameter 12mm, outer size 32mm, size 10mm.
– Model 6202: Internal size 15mm, outer diameter 35mm, size 11mm.
– Design 6203: Inner size 17mm, external diameter 40mm, size 12mm.
– Version 6204: Internal diameter 20mm, outer diameter 47mm, size 14mm.
– Design 6205: Inner size 25mm, outer size 52mm, size 15mm.
All bearings fulfill ISO requirements. Tolerances line up with ABEC-5 or greater precision grades. Custom-made setups are readily available. Options consist of different guards or seals for particular environmental needs. These bearings fit applications requiring integrity, rate, and resistance to use.
(Full Ceramic Si3N4 Silicon Nitride Ceramic Ball Bearings 6200 6201 6202 6203 6204 6205)
Applications of Full Ceramic Si3N4 Silicon Nitride Ceramic Ball Bearings 6200 6201 6202 6203 6204 6205
Complete ceramic Si3N4 silicon nitride ceramic round bearings in sizes 6200 6201 6202 6203 6204 6205 are used extensively in industries requiring high performance. These bearings take care of extreme conditions better than steel. They function well in high-speed motors, medical tools, aerospace systems, and vehicle parts. Their full ceramic structure gives advantages like low rubbing, high-temperature resistance, and deterioration resistance. Silicon nitride porcelains are lighter than steel.
This decreases power loss in rotating systems. Machines run smoother and last much longer. These bearings manage temperatures as much as 800 ° C without losing toughness. Steel bearings fall short under such warm. They stand up to chemicals and wetness. This makes them suitable for rough atmospheres like chemical plants or aquatic applications. The 6200-6205 series fits typical machinery.
They change steel bearings straight. No layout changes are required. Electric vehicles use them in electric motors for higher effectiveness. Wind turbines use them in generators to minimize maintenance. Semiconductor producing requirements tidy, non-magnetic components. Ceramic bearings meet these demands. Complete ceramic bearings prevent lubrication.
Steel bearings require oil. This gets rid of contamination dangers. Food processing and pharmaceutical sectors benefit. Dusty or vacuum settings utilize them. Conventional bearings put on faster in these settings. Silicon nitride has high hardness.
It lasts longer under heavy loads. High-speed applications like CNC pins or turbochargers rely on them. Competing cars and trucks make use of ceramic bearings to enhance speed and sturdiness. They execute much better under anxiety. Resonance and noise decline significantly. These bearings set you back more in advance. They save money in time.
Much less downtime and replacement balance preliminary expenses. Their dependability makes them chosen for important systems. Complete ceramic Si3N4 bearings suit advanced modern technology demands.
They press efficiency restrictions. Industries embrace them for effectiveness and longevity. Their function grows in automation, robotics, and renewable resource. Engineers trust them for accuracy and lasting stability.
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 Full Ceramic Si3N4 Silicon Nitride Ceramic Ball Bearings 6200 6201 6202 6203 6204 6205
What makes Full Ceramic Si3N4 bearings different from steel bearings? Full Ceramic Si3N4 bearings use silicon nitride ceramic for all parts. This material is harder than steel. It resists wear better. Ceramic does not rust. Steel bearings rust in wet or chemical environments. Ceramic handles high heat better. Steel bearings fail faster under high temperatures. Ceramic is lighter. This reduces friction. Machines run smoother and last longer.
Where are Full Ceramic Si3N4 bearings commonly used? These bearings work in extreme conditions. Examples include high-speed machine tools, dental drills, and aerospace equipment. They suit chemical pumps. Liquids or gases that damage steel do not harm ceramic. Electric motors with frequent speed changes benefit. Medical devices use them for reliability and cleanliness. They perform well in vacuum environments. Steel bearings cannot match this in many cases.
What advantages do Full Ceramic Si3N4 bearings offer? They last longer than steel under stress. Ceramic’s hardness prevents surface damage. Less friction means less energy loss. Machines using them stay cooler. They resist corrosion completely. No lubrication is needed in many cases. Steel bearings need regular grease. Ceramic bearings reduce maintenance costs. They operate quietly. Vibration is minimal. Precision applications gain accuracy.
Do Full Ceramic Si3N4 bearings need special maintenance? No. They require less care than steel. Ceramic does not corrode. Washing with water or chemicals is safe. Lubrication is optional. It depends on the application. Dust or debris can still cause issues. Regular cleaning helps. Inspect for cracks or chips. Installation errors cause most problems. Follow guidelines to avoid damage. No special tools are needed for upkeep.
What temperature limits do Full Ceramic Si3N4 bearings have? They handle up to 800°C continuously. Short-term exposure to 1200°C is possible. Steel bearings degrade above 150°C. Thermal shock resistance is high. Rapid temperature changes cause less stress. Cooling systems are simpler. Extreme cold does not affect performance. Ceramic stays stable across wide ranges. Steel expands and contracts more. This makes ceramic ideal for unstable environments.
(Full Ceramic Si3N4 Silicon Nitride Ceramic Ball Bearings 6200 6201 6202 6203 6204 6205)
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