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Brief introduction & Application:
Wear resistant lining bricks, as the lining material of ball mills, have excellent wear resistance and can effectively extend the service life of ball mills. It is usually made of special ceramic materials with high hardness, strength, and wear resistance, which have advantages such as wear resistance, corrosion resistance, high temperature resistance, and impact resistance. There are also different types and specifications of wear-resistant lining bricks, which can be selected according to the needs of different ball mills.
Alumina ceramic lining is also known as alumina wear-resistant ceramic lining plate. It is made of high-purity aluminum oxide material and has excellent wear and corrosion resistance. Widely used in various industries, especially in situations where wear resistance, high temperature resistance, and corrosion resistance are required. Used to protect equipment from wear and corrosion.
Technical data:
Item | Data |
Al2O3 | ≥92 % |
Hardness | 9 Mohs |
Density | 3.65 g/cm3 |
In the fields of ore, coal mine, casting, etc., alumina ceramic lining plates can be used for lining grinding machines, conveying systems, furnace temperature control systems, etc. In addition, it can also be used for equipment lining in industries such as chemical, power, and steel.
1. High hardness: The alumina ceramic lining plate has high hardness and can effectively resist wear and impact.
2. Good wear resistance: It has excellent wear resistance and can be used for a long time in high wear environments.
3. Strong corrosion resistance: The alumina ceramic lining plate can withstand the corrosion of most chemical media and is suitable for working environments with various corrosive substances such as acids, alkalis, and salts.
4. High temperature resistance: It can maintain stable performance under high temperature conditions and is suitable for high-temperature working environments.
5. Lightweight materials: Alumina ceramic lining plates are lighter than metal materials, which can reduce the weight of equipment and improve its operational efficiency.
Sizes:
Brick Type | Length(mm) | Width1(mm) | Width2(mm) | Thickness(mm) |
Rectanglar Brick | 150 | 50 | 50 | 40,50,60,70,90 |
Trapezoidal Brick | 150 | 45 | 50 | 40,50,60,70,90 |
Half Rectangular Brick | 75 | 50 | 50 | 40,50,60,70,90 |
Half Trapezoidal Brick | 75 | 45 | 50 | 40,50,60,70,90 |
Flake Brick | 150 | 25 | 25 | 40,50,60,70,90 |
Packing:
Package Details | Type | carton with pallet |
Pallet size | 1m x 1m x 0.1m (pallet size) | |
Weight | 1000-1300kg per pallet 25-27 tons load in 1X 20'FCL 20 packages/20'FCL | |
Delivery time | Usually within two weeks after confirm the order, shipped by sea. |
Processing:
How to install 92% alumina lining bricks?
Firstly, it is necessary to remove dirt, cement residue, rust, welding slag, dust, and oil stains from the surface of the ball mill. A smooth surface can roughen up and improve the bonding effect.
The bonding of ceramic lining plates for ball mills generally uses white cement or wear-resistant ceramic structural adhesive. Construction starts from the end face of the ball mill, and all the end faces are installed together with straight bricks and straight half bricks. All the working faces of the lining bricks should face towards the ball mill, and the bricks should be tightly bonded. After installing a few lining bricks, gently tap with a rubber hammer or wooden hammer to evenly spread the adhesive between the bricks and the cylinder wall, Ensure bonding quality and strictly control the gap between bricks to be less than 1.5mm.
When installing the cylinder, calculate the number of straight and inclined bricks that need to be used, and install them alternately in proportion to ensure that the wear-resistant ceramic lining bricks are tightly bonded to the inner wall of the cylinder. The installed ceramic surface forms a smooth connection, and the gaps are sealed tightly with cement to ensure bonding strength. This ensures that the ceramics and equipment are tightly integrated, extending the service life of wear-resistant ceramics and reducing maintenance of ball mill equipment
Brief introduction & Application:
Wear resistant lining bricks, as the lining material of ball mills, have excellent wear resistance and can effectively extend the service life of ball mills. It is usually made of special ceramic materials with high hardness, strength, and wear resistance, which have advantages such as wear resistance, corrosion resistance, high temperature resistance, and impact resistance. There are also different types and specifications of wear-resistant lining bricks, which can be selected according to the needs of different ball mills.
Alumina ceramic lining is also known as alumina wear-resistant ceramic lining plate. It is made of high-purity aluminum oxide material and has excellent wear and corrosion resistance. Widely used in various industries, especially in situations where wear resistance, high temperature resistance, and corrosion resistance are required. Used to protect equipment from wear and corrosion.
Technical data:
Item | Data |
Al2O3 | ≥92 % |
Hardness | 9 Mohs |
Density | 3.65 g/cm3 |
In the fields of ore, coal mine, casting, etc., alumina ceramic lining plates can be used for lining grinding machines, conveying systems, furnace temperature control systems, etc. In addition, it can also be used for equipment lining in industries such as chemical, power, and steel.
1. High hardness: The alumina ceramic lining plate has high hardness and can effectively resist wear and impact.
2. Good wear resistance: It has excellent wear resistance and can be used for a long time in high wear environments.
3. Strong corrosion resistance: The alumina ceramic lining plate can withstand the corrosion of most chemical media and is suitable for working environments with various corrosive substances such as acids, alkalis, and salts.
4. High temperature resistance: It can maintain stable performance under high temperature conditions and is suitable for high-temperature working environments.
5. Lightweight materials: Alumina ceramic lining plates are lighter than metal materials, which can reduce the weight of equipment and improve its operational efficiency.
Sizes:
Brick Type | Length(mm) | Width1(mm) | Width2(mm) | Thickness(mm) |
Rectanglar Brick | 150 | 50 | 50 | 40,50,60,70,90 |
Trapezoidal Brick | 150 | 45 | 50 | 40,50,60,70,90 |
Half Rectangular Brick | 75 | 50 | 50 | 40,50,60,70,90 |
Half Trapezoidal Brick | 75 | 45 | 50 | 40,50,60,70,90 |
Flake Brick | 150 | 25 | 25 | 40,50,60,70,90 |
Packing:
Package Details | Type | carton with pallet |
Pallet size | 1m x 1m x 0.1m (pallet size) | |
Weight | 1000-1300kg per pallet 25-27 tons load in 1X 20'FCL 20 packages/20'FCL | |
Delivery time | Usually within two weeks after confirm the order, shipped by sea. |
Processing:
How to install 92% alumina lining bricks?
Firstly, it is necessary to remove dirt, cement residue, rust, welding slag, dust, and oil stains from the surface of the ball mill. A smooth surface can roughen up and improve the bonding effect.
The bonding of ceramic lining plates for ball mills generally uses white cement or wear-resistant ceramic structural adhesive. Construction starts from the end face of the ball mill, and all the end faces are installed together with straight bricks and straight half bricks. All the working faces of the lining bricks should face towards the ball mill, and the bricks should be tightly bonded. After installing a few lining bricks, gently tap with a rubber hammer or wooden hammer to evenly spread the adhesive between the bricks and the cylinder wall, Ensure bonding quality and strictly control the gap between bricks to be less than 1.5mm.
When installing the cylinder, calculate the number of straight and inclined bricks that need to be used, and install them alternately in proportion to ensure that the wear-resistant ceramic lining bricks are tightly bonded to the inner wall of the cylinder. The installed ceramic surface forms a smooth connection, and the gaps are sealed tightly with cement to ensure bonding strength. This ensures that the ceramics and equipment are tightly integrated, extending the service life of wear-resistant ceramics and reducing maintenance of ball mill equipment
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