high durability
grinding efficiency
low contamination
high-temperature resistance
Nitride Silicon Grinding Balls: Enhancing Efficiency and Durability in High-Stress Milling
Nitride Silicon Grinding Balls stand as a pivotal ceramic grinding media, revolutionizing high-stress milling and grinding. Crafted from nitride silicon, these spheres epitomize durability, resilience against wear, abrasion, and corrosion. Their intrinsic robustness coupled with elevated hardness and resistance to high temperatures render them indispensable in the most demanding environments. Industries spanning mining, mineral processing, electronic materials manufacturing, and beyond rely on Nitride Silicon Grinding Balls for their unparalleled advantages: heightened grinding efficiency, minimal contamination, and an extended lifespan.
In mining and mineral processing, Nitride Silicon Grinding Balls assert dominance, optimizing grinding operations and ensuring superior productivity. Their robust nature withstands the rigors of these high-pressure environments, facilitating efficient comminution processes.
Leveraging their high-temperature resistance and exceptional durability, these balls play a pivotal role in electronic materials manufacturing. They guarantee precision and reliability, critical in this intricate sphere.
The ceramic and glass production industry benefits immensely from the prowess of Nitride Silicon Grinding Balls. Their enduring quality ensures precision shaping and finishing, elevating the overall quality of output.
In the aerospace sector, precision and durability reign supreme. Nitride Silicon Grinding Balls meet these stringent demands, enabling the machining of aerospace components with unparalleled accuracy and resilience.
The meticulous engineering of Nitride Silicon Grinding Balls is underlined by impressive specifications:
Item | Unit | Data |
---|---|---|
Si3N4 Content | % | 90 |
Density | g/cm3 | 3.20 |
Flexural Strength | MPa | RT: 700 |
1000℃: 460 | ||
Hardness (HV10) | 1390 | |
Impacting Strength | MPam | 5.5 |
Modulus of Elasticity | GPa | 280 |
Thermal Conductivity | X10(-6)/k | 400℃: 2.1 |
1000℃: 3.8 | ||
Coefficient of Thermal Expansion | W/(m . k) | 17 |
Heat Shock Resistance | △T℃ | 600 |
Standard sizes include φ5, φ10, φ15, φ20, and φ25mm, ensuring compatibility with various applications. Additionally, customization options cater to specific requirements, offering versatility and precision in diverse industrial settings.
Nitride Silicon Grinding Balls epitomize an amalgamation of durability, efficiency, and precision. Their versatile applications across multiple industries, coupled with robust technical specifications, substantiate their pivotal role in optimizing grinding and milling processes.
Health Rating: 0 – None
Flammability Rating: 0 – None
Reactivity Rating: 0 – None
Contact Rating: 0 – Slight
Possible irritation through abrasive friction.
Risk of slipping if the product (beads) is spread out on the floor.
Although the product should not cause inhalation problems, its utilization can generate dust.
Eyes: May be abrasive through friction; treat as a particle in the eye.
This product is not combustible or explosive and is compatible with all standard firefighting methods.
Isolate the area and sweep the floor to collect beads, preventing slipping by rolling.
Wear eye protectors and a dust mask.
For operations generating dust, wear a dust mask and eye protectors.
Due to its weight, adhere to security rules when stocking; use safety shoes for handling.
Appearance and Odor: Odorless white beads
Solubility in Water: Insoluble
Volatiles by Volume at 21°C: 0%
Boiling Point: NAIF
Melting Point: Over 1600°C
Items unsuitable for recovery or recycling should be managed in an appropriate waste disposal facility.
Dispose of packaging and unused contents in accordance with governmental and local requirements.
Not regulated.
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Silicon Nitride Grinding Balls
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Sanxin New Materials Co., Ltd. focus on producing and selling ceramic beads and parts such as grinding media, blasting beads, bearing ball, structure part, ceramic wear-resistant liners, Nanoparticles Nano Powder