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Tabular Alumina
Product Code: Tabular Alumina
Availability: In Stock
Price: Rs.0.00This product has a minimum quantity of 25Available Options
* Price & Delivery Terms:
* Product Origin:
* CIF DELIVERY:
Tags: Refractory, DBM, Magnesite, Calcined Alumina, Aluminum Hydrate, Hydroxide, Aluminate, monolithic, Bricks, acidic, ramming mass, mortars Calcined Alumina (Metallurgical), Rotary Kiln Bauxite, Fused Alumina, Calcined Alumina, and Tabular Alumina, Nepheline Syenite, Dead Burned Magnesite, Calcined Magnesite, olivine, magnesia, kaolin, ground silica etc.TABULAR ALUMINA- SPECIFICATIONS
0-1 mm
1-3 mm
3-6 mm
-325 mesh
Al2O3
99.67 %
Al2O3
99.70 %
Al2O3
99.70 %
Al2O3
99.67 %
SiO2
0.02%
SiO2
0.02 %
SiO2
0.02 %
SiO2
0.04 %
Fe2O3
0.05 %
Fe2O3
0.06 %
Fe2O3
0.04 %
Fe2O3
0.04 %
Na2O
0.18 %
Na2O
0.17%
Na2O
0.18 %
Na2O
0.19 %
CaO
0.04 %
CaO
0.03 %
CaO
0.03 %
CaO
0.04 %
+1.4 mm
0 %
+4 mm
0%
+6.3 mm
3%
+325 Mesh
0.80 %
0.16 mm
10.50 %
-1 mm
0.20 %
-2 mm
0.20 %
-325 Mesh
99.20 %
Terms & Conditions
1. Prices will be Quoted as per Enquiry.
2. All materials will be packed in 1MT Jumbo Bags or in Bulk
3. Delivery immediate from factory after confirmation of Purchase Order and Payment.
4. Delivery on CIF or FOB Basis.
5. Calcined Alumina & Aluminum Hydrate will be supplied from Turkey and Tabular Alumina & Rotary Kiln Bauxite will be supplied from our China Plant.
6. Minimim Order Quantity will be 1 container.
7. Payment Terms is 100% TT or 100% LC at Sight.
8. Others Can be discussed.
Tabular Alumina
Tabular alumina is sintered Calcined alumina (See Business section). This high temperature process enables the alpha alumina crystals to grow into large grains, of a form resembling tablets, hence “tabular” alumina. Being a ceramic forming process it also causes the alumina, which has been shaped into spheres for firing, to shrink, resulting in a uniform microstructure with low residual porosity. The spheres are mainly crushed and ground into a range of particle size distributions. Properties are primarily those of alpha alumina with a purity of 99.8%: refractoriness, hardness, chemical inertness, thermal connectivity and dielectric rigidity at high temperature. It also has ceramic properties: high density, low open porosity, dimensional stability, creep and abrasion resistance, exceptional resistance to thermal shock, a surface coarseness which gives good bonding with matrices, and reproducible particle size distribution. These properties explain its development as a refractory
raw material (See Refractory market in Business section), and its use in steel making and in electric furnaces, especially in Japan. It can be used in ceramics as filters for molten metal, fillers for epoxy resins and polyester, inert catalyst supports and heat conductors
The Production Process
A pelletizer is used to form balls from fine Calcined alumina continuously ground to maximize the green strength and forming capability of the alumina. Use of an organic binder gives temporary cohesion. The addition of boron is possible to reduce soda during heating. The balls are dried before being loaded into the kiln. The key stage is the continuous sintering of the balls, with diameter from 6-26mm, at very high temperatures. In a 9m high vertical shaft kiln, for example, equipped with gas burners, temperatures can exceed 1900°C in the hottest zone. The balls take 15 hours to descend through the furnace, following a heating and cooling cycle. After sintering the balls have low residual porosity because they have shrunk by 20%. They are then crushed; ground, iron is removed magnetically, and finally screened into a range of grain size distributions from 45µm to 10mm
Properties
Tabular alumina is made up of grains of alpha alumina with a diameter of 50 to 300 µm, formed by crystalline growth during sintering. It is dense, >3.55g/cm-3, and only slightly porous, < 5%. Its spherical porosity is mainly closed - water absorption: 1.5% - preventing cracks from spreading. High purity tabular alumina can be produced (99.8% Al2O3, Na2O < 1000 ppm) aided by the absence of non-volatile mineral additions in the preparation of green balls. It is therefore very refractory and not subject to high temperature creep.
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