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Alumina ceramic heating element holder provides superior heat resistance and durability compared to other materials. It also helps reduce energy loss and extends the lifespan of your heating element.
item no. :
CS-A-42-7Color :
White90% 92% 95% 99.5% 99.7% 99%
Material : Alumina ceramic
Shape : OEM
Size : OEM
1. Alumina ceramic heating element holder is resistant to corrosion and oxidation, making it highly durable and dependable.
2. It provide excellent thermal conduction and require minimal insulation, allowing for efficient energy use.
3. Lightweight and easily customizable, allowing for flexibility in design.
4. Cost-effective and can be used in a variety of applications.
5. High temperature resistance, 1600℃ in long use,1800℃ in short use (Al2O3≥99%).
1. The alumina ceramic heating element holder is an essential tool for safely and securely holding your heating elements.
2. It is made from durable, heat-resistant alumina ceramic.
3. This alumina ceramic heating element holder is a high-temperature resistant component perfect for use in a variety of laboratory and industrial applications.
Item | Unit | 95% Al2O3 | 96% Al2O3 | 99% Al2O3 | |
Physical Characteristics | Heat resistance | ℃ | 1450 | 1500 | 1600 |
Bulk density | g/cm3 | 3.6 | 3.6 | 3.9 | |
Water absorption | % | 0 | 0 | 0 | |
Mechanical Characteristics | Flexural strength | Mpa | 320 | 340 | 360 |
Hardness vickers | Gpa | 12.2 | 13.5 | 15.6 | |
Elastic modulus | Gpa | 280 | 320 | 370 | |
Poisson’s ratio | 0.22 | 0.23 | 0.23 | ||
Thermal Characteristics | Linear expansion coefficient | (20-500℃)10-6/℃ | 7.1 | 7.2 | 8 |
Thermal conductivity | w/(m.k) | 16 | 24 | 32 | |
Specific Heat | *10-3J/(kg*K) | 0.78 | 0.78 | 0.9 | |
Electrical Characteristics | Dielectric constant (1MHZ) | - | 9 | 9.4 | 9.9 |
Dielectric loss angle | *10-4 | 15 | 5 | 1 | |
Dielectric strength | *106V/m | 12 | 15 | 15 | |
Processing technology | |||||
Process range (mm) | |||||
Outside Diameter | 1---300 | ||||
Inside Diameter | 0.5---300 | ||||
Length | 0.5---600 | ||||
Accuracy of working (mm) | |||||
Perpendicularity | 0.001 | ||||
Concentricity | 0.001 | ||||
Roundness | 0.0005 | ||||
Straightness | 0.005 | ||||
Parallelism | 0.01 | ||||
Planeness | 0.005 | ||||
Roughness | 0.005 | ||||
Fit clearance | 0.005 |
1. Industrial Heating Applications: It can be used for large-scale industrial heating applications, such as for evaporators, dryers, ovens, and other industrial equipment.
2. Automotive Applications: It can be used to provide heating for automotive components, such as engines, transmissions, and radiators.
3. Medical Applications: Used to provide precise temperature control for medical equipment and instruments. The even heat distribution of alumina ceramic ensures that the equipment is heated evenly and without any hot spots, which can cause damage to delicate medical equipment.
4. Electronics Applications: Used to heat delicate electronics components, such as integrated circuits.
5. Laboratory Applications: Used to provide precise temperature control for laboratory equipment and experiments.
Q1. What information should we supply to get a quote?
Please offer the specification of alumina ceramic heating element holder, such as shape, dimension, quantity, application etc.
Q2. What are the benefits of using an alumina ceramic heating element holder?
An alumina ceramic heating element holder provides superior heat resistance and durability compared to other materials. It also helps reduce energy loss and extends the lifespan of your heating element.
Q3. How do I install an alumina ceramic heating element holder?
Installing an alumina ceramic heating element holder is typically a straightforward process. First, you will need to prepare the surface where it will be installed. Then you will need to secure the holder in place using screws or bolts.
Q4. What types of heating elements can be used with an alumina ceramic heating element holder?
Nearly any type of heating element can be used, as long as it is designed to fit the holder. Common heating elements include resistors, thermistors, and thermocouples.
1. First, wipe the alumina ceramic heating element holder with a damp cloth to remove dust and dirt.
2. Use a soft bristle brush and a mild detergent solution to scrub the alumina ceramic heating element holder.
3. Wash the alumina bushing ceramic insulator with clean water, and then dry it with a soft cloth.
4. Ensure that the alumina bushing ceramic insulator is dry when used next time.
1. Visual inspection of the alumina ceramic heating element holder for any signs of damage or irregularities.
2. Measurement the dimensions of the alumina ceramic heating element holder to check for accuracy.
3. Checking for any pinhole defects in the alumina ceramic heating element holder.
4. Verification of the material and chemical composition of the alumina ceramic heating element holder.
1. We supply personalized and customized services to contact your personal needs.
2. We are experienced professionals with a good record of success.
3. We provide superior client service and promptly respond to all inquiries.
4. We provide militant prices and strive to ensure that your funds receive the best value.
5. We use the latest technologies and tools to ensure that your project is completed to the highest standards.
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