Solid Alumina Ceramic Rods
High-purity solid alumina rods for electrical insulation, wear-resistant shafts, guides, supports, and positioning components.
Alumina Ceramic Rods
Precision 99% alumina ceramic rods offering high hardness, wear resistance, electrical insulation, and elevated-temperature stability. Custom diameters, lengths, tolerances, and surface finishes are available.
High-purity solid alumina rods for electrical insulation, wear-resistant shafts, guides, supports, and positioning components.
Single-bore alumina tubes customized for electrical insulation, high-temperature supports, and equipment protection applications.
Wear-resistant alumina bushings and sleeves manufactured with custom dimensions, tolerances, and surface finishes.
Typical Specifications
|
Parameter |
Typical Specification |
|
Product |
High-purity alumina ceramic rod |
|
Material |
Alumina ceramic |
|
Alumina Content |
≥99% Al₂O₃ |
|
Product Form |
Solid round rod or custom profile |
|
Diameter |
3–50 mm, customizable |
|
Length |
Up to 2500 mm, subject to diameter and straightness requirements |
|
Color |
White or ivory |
|
Surface Finish |
As-fired, precision ground, lapped, or polished |
|
Machining Options |
Cutting, grinding, drilling, slotting, chamfering, and polishing |
|
Dimensional Tolerance |
According to drawing and component geometry |
|
Straightness |
Specified according to diameter and length |
|
Maximum Service Temperature |
Application-dependent; confirmation required |
High-Purity 99% Alumina Ceramic Rods
TecCera supplies precision ceramic rods manufactured from high-purity alumina containing at least 99% Al₂O₃. These rods combine high hardness, excellent wear resistance, electrical insulation, dimensional stability, and reliable performance at elevated temperatures.
Compared with many conventional metal components, alumina ceramic rods provide electrical insulation, corrosion resistance, and reduced wear without requiring protective coatings. They are widely used as insulating supports, wear-resistant shafts, plungers, guides, positioning pins, and structural components in electrical, mechanical, semiconductor, laboratory, and thermal-processing equipment.
Custom diameters, lengths, profiles, tolerances, and surface finishes are available according to customer drawings or samples.
Key Features
High Hardness and Wear Resistance
With a Mohs hardness of approximately 9, high-purity alumina offers excellent resistance to abrasion and surface wear. Precision-ground or polished rods are suitable for shafts, plungers, guides, sliding components, and other applications requiring long-term dimensional stability.
Elevated-Temperature Stability
Alumina retains useful mechanical and electrical properties at elevated temperatures and has a relatively low coefficient of thermal expansion. Depending on the material grade, applied load, atmosphere, and operating cycle, the maximum service temperature may reach approximately 1700°C.
Rapid heating and cooling should be avoided unless the component has been specifically designed and validated for thermal cycling.
Excellent Electrical Insulation
High-purity alumina provides high electrical resistivity, good dielectric strength, and low dielectric loss. It is suitable for insulating rods, electrode supports, heater supports, feedthrough components, and high-voltage electrical equipment.
Chemical and Oxidation Resistance
Alumina resists oxidation and many commonly used chemicals, making it suitable for laboratory, chemical-processing, and industrial equipment. Compatibility should be evaluated separately for concentrated acids, strong alkalis, molten salts, and high-temperature corrosive media.
Precision Machining and Customization
Ceramic rods can be manufactured with controlled diameter, length, straightness, dimensional tolerance, and surface roughness. Available finishing operations include precision grinding, cutting, drilling, slotting, chamfering, lapping, and polishing.
Typical Applications
Semiconductor and Electronics
High-Temperature Equipment
Mechanical Engineering
Chemical and Laboratory Equipment
Frequently Asked Questions
1. What is the maximum service temperature of a 99% alumina ceramic rod?
Depending on the alumina grade, applied load, atmosphere, component dimensions, and heating cycle, the maximum service temperature may reach approximately 1700°C.
Continuous operating temperature is normally lower than the maximum short-term temperature. Please provide your actual operating conditions so that the appropriate material grade can be evaluated.
2. Can 99% alumina ceramic rods be custom machined?
Yes. We support custom diameters from 3 to 50 mm and lengths up to 2500 mm, subject to the required diameter, straightness, tolerance, and transportation conditions.
Available machining services include precision grinding, cutting, drilling, slotting, chamfering, lapping, and polishing. Please provide a drawing or sample for manufacturability review and quotation.
3. Can alumina rods be manufactured with axial holes?
Yes, depending on the dimensions and required geometry. However, components with continuous axial holes are generally classified as alumina ceramic tubes rather than solid ceramic rods.
Single-hole, multi-hole, and special-profile ceramic components can be evaluated according to customer drawings.
4. What is the difference between alumina and zirconia ceramic rods?
Alumina ceramic rods generally provide higher hardness, excellent electrical insulation, good high-temperature stability, and lower material cost.
Zirconia ceramic rods provide greater fracture toughness and resistance to mechanical impact. Alumina is typically preferred for insulation, hardness, wear resistance, and high-temperature applications, while zirconia is more suitable for components exposed to impact, bending, or higher mechanical stress.
5. What information is required for a quotation?
Please provide:
Send us your drawing or application requirements for material evaluation, manufacturability review, and quotation.