0.1 Mm To 3 Mm Ceramic Blasting Abrasive Low Dust Generation Engineered to Deliver Consistent Particle Size and Abrasive

Brand Name Fine-tech
Certification ISO9001
Model Number Z210
Minimum Order Quantity 500KG
Price Negotation
Packaging Details 25kg/barrel,25kg/bag,1t/pallet
Delivery Time 5-15work Days
Payment Terms L/C,T/T
Supply Ability 2000t Per Year
Product Details
Particle Range 0-850 μm Recycles 70-90
Production Technology Melting Method Dust Generation Low
Environmentalimpact Non-toxic And Environmentally Friendly Recyclability Reusable Up To 50 Times
Sizerange 0.1 Mm To 3 Mm Ture Density 3.86cm³
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ceramic blasting abrasive low dust

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engineered ceramic blasting media consistent size

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0.1mm to 3mm ceramic abrasive

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Product Description

Product Description:

Ceramic Blasting Media is a highly efficient and durable abrasive material widely used in various industrial applications. Crafted primarily from alumina oxide, this blasting media is designed to meet the rigorous demands of surface preparation, cleaning, and finishing processes across multiple industries. Its exceptional properties make it an ideal choice for those seeking reliable and consistent blasting performance, especially when working with industrial ceramic parts and silicon carbide ceramic parts.

One of the most notable features of Ceramic Blasting Media is its remarkable recyclability. This media can be reused up to 50 times without significant degradation in performance, making it an economical and environmentally friendly option for businesses. By recycling the media between 70% to 90%, companies can drastically reduce operational costs while minimizing waste generation. This high level of recyclability not only contributes to sustainability efforts but also ensures prolonged blasting efficiency, reducing the frequency of media replacement and downtime.

The underlying abrasive grain of this blasting media is alumina oxide, a material well-known for its hardness and durability. Alumina oxide grains provide superior cutting action and consistent abrasive performance, which is essential for achieving precise surface finishes on hard materials like industrial ceramic parts and silicon carbide ceramic parts. The abrasive nature of alumina oxide ensures that the blasting media can effectively remove contaminants, rust, paint, and other unwanted materials from surfaces, preparing them for further processing or coating applications.

Ceramic Blasting Media is also distinguished by its high melting point of 2050°C, which significantly enhances its thermal stability during blasting operations. This high melting point allows the media to withstand intense heat generated during high-velocity blasting without degrading or melting. As a result, it maintains its structural integrity and abrasive properties even under demanding conditions, ensuring consistent performance and longer service life. The ability to endure high temperatures also makes it suitable for use in processes involving heat-sensitive industrial ceramic parts and silicon carbide ceramic parts, where thermal damage must be avoided.

The commodity of Ceramic Blasting Media serves a critical role in improving the quality and efficiency of surface treatment procedures. Its robust composition and recyclability make it a preferred choice for manufacturers and maintenance professionals who require dependable blasting solutions. The media's compatibility with a wide range of materials, including metals, ceramics, and composites, further broadens its application scope. Whether it is used for cleaning, deburring, descaling, or surface texturing, Ceramic Blasting Media delivers precision and consistency with every use.

In summary, Ceramic Blasting Media is an advanced abrasive product that offers a blend of durability, recyclability, and high-performance characteristics. Its alumina oxide abrasive grain ensures effective and reliable blasting, while its ability to be recycled up to 50 times and retain 70-90% recyclability underscores its cost-effectiveness and environmental benefits. With a melting point of 2050°C, it stands out as a resilient media capable of handling even the most demanding industrial applications involving industrial ceramic parts and silicon carbide ceramic parts. For businesses seeking a sustainable and efficient blasting solution, Ceramic Blasting Media represents an excellent investment in quality and performance.


Features:

  • Ceramic Blasting Media offers excellent performance for cleaning and surface preparation.
  • Made from high-quality industrial ceramic components ensuring durability and efficiency.
  • Recycles between 70-90%, making it cost-effective and environmentally friendly.
  • Low energy consumption during operation, reducing overall processing costs.
  • Available in popular sizes: B40, B60, B120, and B205 to suit various blasting needs.
  • Size range from 0.1 mm to 3 mm for precise and versatile applications.
  • Reusable up to 50 times, maximizing the lifespan of the Ceramic Blasting Media.

Technical Parameters:

Density 3.6-3.9 G/cm³
Melting Point 2050°C
Recycles 70-90
Dust Generation Low
Environmental Impact Non-toxic and Environmentally Friendly
Size Range 0.1 mm to 3 mm
Particle Range 0-850 μm
Abrasive Grain Alumina Oxide
Production Technology Melting Method
Energy Consumption Low

Applications:

The Fine-tech Ceramic Blasting Media, model number Z210, is an exceptional abrasive solution designed for a wide range of applications in the surface treatment industry. Certified with ISO9001, this product ensures consistent quality and reliability for professional use. With a minimum order quantity of 500KG and a supply ability of 2000 tons per year, Fine-tech meets the demands of large-scale industrial operations efficiently. The packaging options include 25kg barrels, 25kg bags, and 1-ton pallets, providing flexible delivery choices to suit different customer needs. Delivery times range between 5 to 15 working days, with payment terms available via L/C or T/T, ensuring convenient transaction processes.

Fine-tech’s Ceramic Blasting Media is primarily utilized in Ceramic Bead Blasting processes, where its alumina oxide abrasive grain plays a critical role in achieving superior surface finishes. The media's density of 3.6-3.9 g/cm³ provides optimal hardness and durability, making it ideal for delicate cleaning and finishing tasks without damaging the substrate. Its low dust generation characteristic enhances workplace safety and cleanliness, while its non-toxic and environmentally friendly composition aligns with stringent environmental regulations, making it an excellent choice for sustainable manufacturing practices.

This ceramic blasting media is particularly suitable for processing silicon carbide ceramic parts, which require gentle yet effective surface treatment to maintain structural integrity. Whether used for deburring, surface preparation, or polishing, Fine-tech Ceramic Blasting Media delivers consistent results that improve the quality and longevity of silicon carbide ceramic components. It is widely applied in industries such as electronics, automotive, aerospace, and precision engineering, where high-performance ceramic parts demand meticulous surface conditioning.

In summary, Fine-tech’s Ceramic Blasting Media offers an advanced abrasive solution tailored for Ceramic Bead Blasting applications, providing excellent performance with low environmental impact. Its robust properties, combined with versatile packaging and reliable supply, make it a preferred choice for manufacturers aiming to enhance their processes involving ceramic parts, especially silicon carbide ceramic components. Customers seeking effective and eco-friendly blasting media will find Fine-tech Z210 a valuable asset in achieving their production goals.


Customization:

Fine-tech offers customized Ceramic Blasting Media, model number Z210, designed to meet your specific industrial needs. Our Ceramic Blasting Abrasive is made from high-quality Alumina Oxide with a true density of 3.86 cm³ and a particle range of 0-850 μm, ensuring efficient and precise Ceramic Bead Blasting for various applications.

Certified with ISO9001, our Ceramic Blasting Media guarantees consistent quality and performance, ideal for cleaning and finishing industrial ceramic parts. We support bulk orders with a minimum order quantity of 500KG, and supply ability of 2000 tons per year to fulfill large-scale demands.

Packaging options include 25kg/barrel, 25kg/bag, and 1 ton per pallet, providing flexible solutions for your logistics. Our products are recyclable with a recycle rate of 70-90%, promoting sustainable usage in your operations.

Price is negotiable based on order quantity and customization requirements. Delivery time ranges from 5 to 15 work days, with payment terms available via L/C or T/T to facilitate smooth transactions.

Choose Fine-tech's Ceramic Blasting Media Z210 for reliable, high-performance abrasive blasting that enhances the quality and lifespan of your industrial ceramic parts.


Support and Services:

Our Ceramic Blasting Media is engineered for high performance and durability in surface preparation and finishing applications. To ensure optimal results and longevity of the product, please follow the recommended usage guidelines and maintenance procedures.

For best performance, use the Ceramic Blasting Media in accordance with your equipment manufacturer’s specifications. Regularly inspect the media for signs of wear or contamination, and replace it as needed to maintain blasting efficiency and surface quality.

Store the media in a dry, cool environment to prevent moisture absorption and contamination. Avoid mixing Ceramic Blasting Media with other types of abrasive materials to preserve its unique properties and effectiveness.

If you experience any technical issues or require assistance with product selection, application techniques, or troubleshooting, please consult our detailed product documentation or reach out to our technical support team for expert guidance.

We are committed to providing reliable support to help you maximize the benefits of our Ceramic Blasting Media in your specific blasting operations.