White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate

Product Details
Customization: Available
Application: Home Use, Medical, Refractory, High Hardness
Grain Size: <100nm
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  • White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate
  • White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate
  • White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate
  • White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate
  • White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate
  • White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate
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  • Overview
  • Product Description
  • Company Profile
  • Packaging & Shipping
  • FAQ
Overview

Basic Info.

Model NO.
alumina ceramic plate
Purity
95%
Type
Wear-Resistant
Size Transport Package
Paper Carton + Pallet
Density
3.6~3.7g/Cc
Color
Yellow
Compressive Strength
2000MPa
Fracture Toughness
4.5 MPa ·m1/2
Transport Package
Paper Carton+Pallet
Specification
Available and Customized Size
Trademark
YA JIN LONG
Origin
China
HS Code
6909120000
Production Capacity
5000ton/Year

Product Description

Product Description
White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate
1. Wear-Resistant Ceramic Tiles
 
  - Internal walls of pipelines, corner plates of equipment, and high-wear areas of conveyor systems.  

2. Alumina Ceramic Mosaics 
   - Linings for complex equipment such as elbows, small hoppers, and diverters.  
3. Alumina Ceramic Liners
   - Linings for silos, chutes, and guide troughs.  

Our
alumina ceramic plates are designed for superior wear resistance and versatility in various industrial applications. With exceptional hardness and abrasion resistance, these ceramic sheets provide long-lasting protection in even the most abrasive environments. The flexible nature of the ceramic board allows for easy customization to fit specific needs, whether it's for lining equipment or as a standalone protective layer. Available in a wide range of sizes and thicknesses, these ceramic plates can be tailored to meet the unique requirements of your machinery, offering an efficient and cost-effective solution for industries such as mining, metallurgy, and material handling.

White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate
White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate
White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate

 

White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate
White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate
White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate

 

Mechanical properties
Project Unit 95%Aluminum cramics 99%Aluminum cramics 99.5%Aluminum cramics
Color - White Yellow Yellow
Density g/cm³ 3.7 3.85 3.9
Hardness GPa 13.7 15.2 15.7
Compressive strength MPa 2000 2160 2350
Bending strength MPa 280 310 350
Fracture toughness MPa ·m1/2 3-4 3-4 4.5
 
Company Profile

White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square PlateWhite Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square PlateWhite Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate

Packaging & Shipping

White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate

FAQ

White Electrical Insulating 95% 96% 99% 99.7% Al2O3 Alumina Ceramic Square Plate

1. Product Selection and Procurement

Q1: How to choose the right technical ceramic products for my needs?

A1: When selecting the right technical ceramic products, it is necessary to consider the working environment, the required mechanical properties, thermal stability, electrical insulation, chemical resistance and other factors. If you are unsure, you can contact our technical support team and we will provide a customized solution based on your specific needs.

Q2: What are the specifications and sizes of technical ceramics?

A2: Our technical ceramic products are available in a variety of specifications and sizes, including round, square, resized head, special-shaped, and other styles, which you can customize according to your actual needs. If the standard specifications do not meet your requirements, please contact us and we will provide personalized customization services.


2. Product performance and characteristics

Q3: What are the advantages of technical ceramics?

A3: Industrial ceramics have the advantages of high hardness, wear resistance, high temperature resistance, good electrical insulation, corrosion resistance, etc., and are widely used in machinery, electronics, electric power, chemical and other industries. Compared to other materials, ceramics have a longer durability and service life, making them ideal for high-load, high-temperature, and high-corrosion environments.

Q4: What are the material types and technical parameters of ceramic products?

A4: Ceramic products are divided into alumina ceramics, zirconia ceramics, ZTA ceramics, silicon carbide ceramics, silicon nitride ceramics, aluminum nitride ceramics, etc There may be differences between different types of ceramic materials. For specific mechanical and chemical properties, please refer to the technical data sheet of the product, or ask us directly.

Q5: How to choose the right ceramic product materials?

A5: There are several factors to consider when choosing the right ceramic product material, including the application scenario, the working environment, the required physical and chemical properties, etc. Here's a guide to some common ceramic materials and their application scenarios:


1. Alumina ceramic (Al2O3)
-Features: high hardness, excellent wear resistance, high mechanical strength, good electrical insulation, high temperature resistance.
-Applicable scenario: suitable for general mechanical parts, electronic insulators, wear-resistant parts, chemical reactors, etc. It is widely used in electronics, machinery, chemical industry, aviation and other industries.
-Advantages: Cost-effective, suitable for most industrial applications.


2. Zirconia ceramics (ZrO2)
-Features: extremely high toughness, high wear resistance, high temperature resistance, good corrosion resistance.
-Applicable scenario: widely used in knives, seals, medical devices (such as dental restoration), gas turbines, etc.
-Advantages: It has excellent impact resistance, suitable for high-impact, high-load environments.


3. Zirconium-aluminum composite ceramics (ZTA)
-Features: Combines the advantages of alumina and zirconia to provide better toughness and wear resistance.
-Applicable scenario: suitable for environments that require high wear resistance and toughness, such as cutting tools, bearings, wear-resistant washers, etc.
-Advantages: Provides higher impact toughness and abrasion resistance than pure alumina.


4. Silicon Carbide Ceramics (SiC)
-Features: Extremely high hardness and abrasion resistance, excellent heat resistance, chemical stability and oxidation resistance.
-Applicable scenarios: widely used in high temperature and high corrosion environments, such as heat exchangers, automotive brake pads, abrasives, seals, etc.
-Advantages: Resistant to extremely high temperatures, suitable for use under extreme conditions, such as metallurgy, steel, aerospace and other fields.


5. Silicon nitride ceramics (Si3N4)
-Features: very high toughness and strength, excellent wear resistance, strong thermal shock resistance, good electrical insulation.
-Applicable scenarios: suitable for high-load, high-temperature, high-impact applications, such as engine parts, rolling bearings, pump parts, etc.
-Advantages: More resistant to thermal shock than many other ceramic materials, suitable for applications with large mechanical loads. 

After summarizing, we found that the key factors for choosing ceramic materials are: working environment temperature, wear resistance, corrosion resistance, impact resistance, bending resistance, thermal conductivity and electrical insulation, etc.

 

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