Alumina Fasteners

Alumina Fasteners

Alumina Fasteners

Purity: 95%, 96%, 99%, 99.5%, 99.7%, 99.95%

  • Custom sizes and standard sizes in stock
  • Quick Lead Time
  • Competitive Price

Alumina Fasteners are primarily made of high-purity aluminum oxide (Al2O3) through high-temperature sintering. They have excellent wear resistance, high-temperature stability, high hardness, and corrosion resistance. We can offer the standard types (e.g., flat head, hex head, pan head, hex socket, etc.). As a leading supplier and manufacturer of premium alumina products, Shanghai Yuepeng utilizes advanced machining centers to produce high-quality alumina fasteners for a wide range of applications.

Alumina Fasteners Data Sheet

Reference Code:HM1984
Purity:95%, 96%, 99%, 99.5%, 99.7%, 99.95%
Screw Head Type:Hex Head, Phillips Round Head, Hex Socket Head, Flat Hex Socket Head, Round Head, Flat Head, etc.
Color:White or Ivory
Density:3.7-3.98 g/cm3

Alumina Fasteners Description

Alumina Fasteners are made primarily from high-purity aluminum oxide with rare additives, sintered at a high temperature of 1700℃ to get a completely dense product. They have excellent wear resistance, high-temperature stability, chemical stability, and high hardness. They are commonly applied in large equipment parts, precision machinery parts, and semiconductor equipment etc. We can offer high-precision standard screws with matching washers and nuts. Shanghai Yuepeng can also supply customized solutions to meet diverse industrial and research requirements.

Alumina Fasteners Specifications

Type of HeadStandardLengthMaterial
Hex head Hexagonal Head ScrewAmerican Metric5mm~100mm95% Alumina
99.8% Alumina
Phillips pan headPhillips Round Head ScrewAmerican Metric5mm~100mm95% Alumina
99.8% Alumina
Socket cap headHex Socket Head Cap ScrewAmerican Metric5mm~100mm95% Alumina
99.8% Alumina
Flat socket headFlat Hex Socket ScrewAmerican Metric5mm~100mm95% Alumina
99.8% Alumina
Pan headRound Head ScrewAmerican Metric5mm~100mm95% Alumina
99.8% Alumina
Flat HeadFlat Head ScrewAmerican Metric5mm~100mm95% Alumina
99.8% Alumina

Alumina Fasteners Machining Capacity

Dimensional Accuracy:Up to 0.001 mm
Surface Roughness:Ra 0.05-3.2 μm
Concentricity:Up to 0.002 mm
Parallelism:≤0.01 mm
Bore Drilling Accuracy:Up to 0.01 mm
Cylindricity:Up to 0.02 mm
Threading:Minimum internal thread M2
Surface Treatment:Firing, glazing, grinding, polishing, metallization, etc.

Alumina Fasteners Advantages

  • Good stability at high temperatures
  • High hardness
  • High corrosion resistance
  • Good insulation
  • Long service life

Alumina Fasteners Applications

  • High-Temperature Equipment: Used in furnaces, kilns, and reactors where conventional metal fasteners fail due to heat exposure.
  • Semiconductor Manufacturing: Provides non-contaminating, corrosion-resistant fastening in wafer processing and cleanroom environments.
  • Electrical Insulation: Serves as a fastening solution in electronic devices and power systems, preventing short circuits and leakage currents.
  • Chemical Processing: Withstands aggressive acids, alkalis, and solvents, making them reliable in corrosive chemical plants.
  • Aerospace and Defense: Applied in lightweight, high-strength, and thermally stable assemblies where both mechanical strength and insulation are required.

Alumina Material Properties

MaterialUnit95%
Al2O3
96%
Al2O3
99%
Al2O3
99.5%
Al2O3
99.7%
Al2O3
99.95%
Al2O3
Densityg/cm33.73.73.853.93.953.98
Bending Strength (20℃)Mpa300300330360380500-600
Compressive Strength (20℃)Mpa200020002000235020003500
Young’s Modulus (20℃)Gpa270275370370380400
Fracture Toughness (20℃)MPam½3.53.54444.5
Poisson’s Ratio(20℃)\0.20.220.220.230.23
Mohs Hardness(20℃)HRA8.0-8.58.0-8.58.5-9.09.09.0-9.59.0-9.5
Vickers Hardness (HV1)kg/mm2160016001600165017501800

MaterialUnit95%
Al2O3
96%
Al2O3
99%
Al2O3
99.5%
Al2O3
99.7%
Al2O3
99.95%
Al2O3
Thermal Expansion Coefficient (25-300 ℃)10-6K-16.56.57.67.27.27.5
Thermal Conductivity (20℃)W/mk202527.5323245
Thermal Shock Resistance△T·℃200200200250400
Specific Heat CapacityJ/g·k0.790.780.790.80
Max Operating Temperature (Oxygen Condition)160016001650165017001750

MaterialUnit95%
Al2O3
96%
Al2O3
99%
Al2O3
99.5%
Al2O3
99.7%
Al2O3
99.95%
Al2O3
Volume Resistivity (20℃)Ω·cm101410141014101410141014
Dielectric StrengthKV/mm101010151516
Dielectric Constant (1 MHz, 25℃)\999.19.99.99.9
Dielectric Loss Tangent (1MHz, 20℃)tanδ3*10-42*10-43*10-41*10-41*10-41*10-4

Alumina Material Grades

It has a very high purity (99.95%) grade of Alumina (Aluminum Oxide) exhibiting an exceptional combination of mechanical and electrical properties. It features very high hardness, exceptional electrical resistivity, high-temperature mechanical stability and strength in addition to corrosion resistance and bio/chemical inertness.
Its high-temperature stability and electrical stability make it particularly suitable for high-temperature applications such as high voltage/frequency insulators, heating elements supports, etc

Physical Properties:
  • Color: White
  • Density: 3.98 g/cm3
Applications:
  • High-temperature electrical insulators
  • Very high voltage/frequency insulators
  • Machine components where high wear resistance
    is required in an oxidizing environment
  • Precision shafts in high-wear condition
  • Unlubricated (vacuum) or gas/water lubricated
    high speed sliding bearings
  • Shot blast nozzles
  • Abrasive flow deflector plates/cones
  • Valve seats
  • Wire guides

It’s a high-purity grade of Alumina (Aluminum Oxide) and one of the high-performance grades in this range of materials. It features a 99.7% purity Alumina base material that provides a superior set of mechanical and electrical properties while maintaining a reasonable cost. It is a very hard-wearing technical ceramic offering and is ideally suited to a wide range of industrial applications where mechanical and electrical performance is of the essence and the material needs to perform adequately in aggressive environments.
It can be machined in the “green state”- that is before sintering takes place, thus ensuring a large variety of shapes and sizes. It can also be diamond ground to tight tolerances in the fully sintered state using diamond grinding.

Physical Properties:
  • Color: Ivory
  • Density: 3.9 g/cm3

Applications:

  • Electronic components & substrates
  • High-temperature electrical insulators
  • High voltage insulators
  • Laser tubes
  • Machined components
  • Mechanical seals
  • Precision shafts and axles in high-wear environments
  • Roller and ball bearings
  • Seal rings
  • Semiconductor parts
  • Shot blast nozzles
  • Thermocouple tubes
  • Tap plates
  • Valve seats
  • Wear components
  • Wire and thread guides
  • Ballistic Armor

99.5% Purity Alumina is a high-performance engineering material with exceptional mechanical strength, high-temperature resistance, and excellent electrical insulation properties. It is widely used in industrial equipment, electronic components, medical devices, and aerospace applications.

Physical Properties:
  • Color: Ivory
  • Density: 3.9 g/cm3
Applications:
  • Electronic components & substrates
  • High-temperature electrical insulators
  • High voltage insulators
  • Laser tubes
  • Machined components
  • Mechanical seals
  • Precision shafts and axles in high-wear environments
  • Roller and ball bearings
  • Seal rings
  • Semiconductor parts
  • Shot blast nozzles
  • Thermocouple tubes
  • Tap plates
  • Valve seats
  • Wear components
  • Wire and thread guides
  • Ballistic Armor

99% Purity Alumina Is a premium industrial ceramic material with excellent mechanical properties, ultra-high hardness, high-temperature resistance, and insulation performance. It can maintain stable chemical and physical properties even in extreme environments, making it widely used in semiconductors, electronic components, laser technology, and aerospace.

Physical Properties:
  • Color: Ivory
  • Density: 3.85 g/cm3
Applications:
  • Electronic components & substrates
  • High-temperature electrical insulators
  • High voltage insulators
  • Laser tubes
  • Machined components
  • Mechanical seals
  • Precision shafts and axles in high-wear environments
  • Roller and ball bearings
  • Seal rings
  • Semiconductor parts
  • Shot blast nozzles
  • Thermocouple tubes
  • Tap plates
  • Valve seats
  • Wear components
  • Wire and thread guides
  • Ballistic Armor

It is a regular purity grade Alumina (Aluminum Oxide) and it is one of the workhorses of the technical ceramics industry. It features a 96% purity Alumina base material providing a balanced “cost to quality” ratio. It is a hard-wearing technical ceramic offering an excellent combination of both mechanical and electrical properties and is ideally suited to a wide range of industrial applications where cost is of the essence, but the material still needs to perform adequately from a mechanical and electrical standpoint.
It can be machined in the “green state”- that is before sintering takes place, thus ensuring a large variety of shapes and sizes. It can also be diamond ground to tight tolerances in the fully sintered state using diamond grinding.

Physical Properties:
  • Color: White
  • Density: 3.75 g/cm3

Applications:

  • Electronic components & substrates
  • High-temperature electrical insulators
  • High voltage insulators
  • Laser tubes
  • Machined components
  • Mechanical seals
  • Precision shafts and axles in high-wear environments
  • Roller and ball bearings
  • Seal rings
  • Semiconductor parts
  • Shot blast nozzles
  • Thermocouple tubes
  • Tap plates
  • Valve seats
  • Wear components
  • Wire and thread guides
  • Ballistic Armor

95% Purity Alumina is an economical and practical engineering material. Its slightly lower alumina content reduces production costs while maintaining decent wear resistance and processing flexibility. It is commonly used in mechanical parts, electrical insulators, and wear-resistant bushings, offering an excellent cost-performance balance.

Physical Properties:
  • Color: White
  • Density: 3.7 g/cm3
Applications:
  • Electronic components & substrates
  • High-temperature electrical insulators
  • High voltage insulators
  • Laser tubes
  • Machined components
  • Mechanical seals
  • Precision shafts and axles in high-wear environments
  • Roller and ball bearings
  • Seal rings
  • Semiconductor parts
  • Shot blast nozzles
  • Thermocouple tubes
  • Tap plates
  • Valve seats
  • Wear components
  • Wire and thread guides
  • Ballistic Armor

Alumina Ceramic Machining

Alumina Ceramic Machining
Alumina Ceramic Machining

Advanced ceramics are formed using methods such as injection molding, die pressing, isostatic pressing, slip casting, and extrusion. After sintering and densification, machining requires diamond grinding. Shanghai Yuepeng applies advanced green and biscuit machining to achieve complex shapes beyond traditional methods. Our machining center offers drilling, grinding, milling, polishing, sawing, tapping, threading, and turning, enabling the production of alumina ceramic components with high precision and complexity. During machining, the following precautions should be observed:

  • Shrinkage Control: Alumina ceramics shrink by about 20% during sintering, requiring dimensional adjustments in the green body stage.
  • Tolerance Control: Precise tolerances are unachievable in the green or pre-sintered state; fine machining should follow sintering.
  • Diamond Grinding: Post-sintering, high-hardness alumina requires diamond grinding, as conventional methods fall short.
  • Tool Selection: Diamond-coated tools or grinding wheels are essential to handle ceramic hardness and prevent tool damage.
  • Temperature Control: Strict temperature management during sintering prevents cracking or deformation.
  • Stress Management: Excessive stress during machining must be avoided to prevent brittle failure.
  • Cutting Speed and Feed Rate: Controlled speeds and feeds ensure quality and extend tool life.
  • Surface Treatment: Post-machining polishing removes defects, enhancing performance and appearance.

Alumina Ceramic Packaging

Alumina Ceramic products are typically packaged in vacuum-sealed bags to prevent moisture or contamination and wrapped with foam to cushion vibrations and impacts during transport, ensuring the quality of products in their original condition.

ceramic packing

Get A Quote

We will check and get back to you in 24 hours.

To customize your alumina fasteners, please provide the following details:

  1. Dimensions: Specify the required length, diameter, and thread specifications.
  2. Types: Bolts, screws, nuts, washers, studs, etc.
  3. Shapes: Describe any special shapes or features (e.g., hex head, flat head, custom threading) if not standard.
  4. Purity of the material (95%, 96%, 99%, 99.7%, 99.95%, etc.)
  5. Tolerances: Specify the required tolerances.
  6. Surface Finishes: Polished, rough, etc.
  7. Quantity of the fasteners you need
  8. Alternatively, you can provide a drawing with your specifications.

Once we have these details, we can provide you with a quote within 24 hours.

We carry a wide variety of alumina products in stock, and for these, there is generally no minimum order requirement. However, for custom orders, we typically set a minimum order value of $200. The lead time for stock items is usually 1-2 weeks, while custom orders usually take 3-4 weeks, depending on the specifics of the order.

Unlike metals, alumina fasteners resist corrosion, maintain strength at very high temperatures, and provide excellent electrical insulation, making them ideal for specialized applications.

Absolutely. Alumina fasteners resist most acids, alkalis, and solvents, making them suitable for aggressive chemical environments.

Shanghai Yuepeng Tech, established in 2022 in Shanghai, China, is a specialized supplier and manufacturer of alumina products. With extensive expertise in supply and export, we offer competitive pricing and customized solutions tailored to specific requirements, ensuring outstanding quality and customer satisfaction. As a professional provider of refractory metals, specialty alloys, spherical powders, and various advanced materials, we serve the research, development, and large-scale industrial production needs of the scientific and industrial sectors.

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