Alumina Ceramic Disc (Al₂O₃) for High-Temperature Insulation & Precision Fixturing

Dense alumina ceramic discs provide electrical insulation, high-temperature support, and stable flat contact for laboratory furnaces, high-voltage isolation, and precision fixturing applications. Select from 96%–99.7% Al₂O₃ grades, and specify OD, thickness, holes, chamfers, edge radii, flatness, surface finish, and operating conditions for engineering review.

Catalogue No. AT-DIS001
Material Al₂O₃
Purity 96%–99.7%
Thickness Range 0.1 mm–50 mm (±0.5–±0.25 mm tolerance)
Dimensions/Sizes Download PDF
Engineering RFQ Review
Small-Batch Custom Support
Factory-Direct Manufacturing
Drawing & Process Review

An alumina ceramic disc is a dense, sintered Al₂O₃ round component that forms a rigid, non-metallic interface between mating parts. Its disc geometry supports controlled contact, separation, or load distribution and distinguishes it from porous filter media, thin electronic substrates, and washer-style rings.

Alumina Ceramic Disc Benefits

Finished-part performance depends on the selected alumina grade, disc geometry, surface condition, operating environment, and agreed inspection method.

  • Thermal stability: Retains structural rigidity at elevated temperatures when the load, support method, atmosphere, and thermal cycle are properly specified.
  • Dimensional control: Flatness, parallelism, thickness, and surface finish can be defined for controlled contact, alignment, and fixture repeatability.
  • Electrical isolation: Provides nonconductive separation in electrical assemblies; actual performance depends on grade, thickness, surface cleanliness, edge condition, creepage, clearance, and test method.
  • Surface durability: The hard ceramic surface supports repeated contact and wear-resistant positioning in fixtures and mechanical assemblies.
  • Cleanable contact surface: Surface finish, cleaning, handling, and packaging can be specified for applications with controlled-contamination requirements.

 

Alumina Ceramic Disc Properties

Property Unit 96% Al₂O₃ 99% Al₂O₃ 99.5% Al₂O₃ 99.6% Al₂O₃ 99.7% Al₂O₃ 99.8% Al₂O₃ 99.9% Al₂O₃ 99.99% Al₂O₃
Alumina content % 96 99 99.5 99.6 99.7 99.8 99.9 99.99
Density g/cm³ 3.6-3.75 3.83 3.89 3.91 3.92 3.93 3.94 3.98
Color – white Ivory Ivory Ivory Ivory Ivory Ivory Ivory
Water absorption % 0 0 – 0 0 0 0 0
Young’s modulus (Elastic modulus) GPa 300 350 375 356 357 358 359 362
Shear modulus GPa – – 152 – – – – –
Bulk modulus GPa – – 228 – – – – –
Poisson’s ratio – – – 0.22 – – – – –
Compressive strength MPa 1910 2210 2500 2552 2554 2556 2558 2570
Flexural strength MPa 260 300 340 345 346 347 348 365
Fracture toughness MPa·m¹ᐟ² – – 4 – – – – –
Hardness GPa 14.5 17 17 23 24 25 26 30
Thermal conductivity W/m·K 20 31 31 31-33 31-33 31-33 31-35 31-35
Thermal shock resistance ΔT °C – – – 222 223 224 225 228
Maximum use temperature (no load) °C 1450 1680 ≤1750 1755 1760 1765 1770 1800
Coefficient of thermal expansion 10⁻⁶/°C 7.6 7.6 7.6 7.6 7.5 7.5 7.4 7.4
Volume resistivity Ω·cm >1×10¹⁴ >1×10¹⁴ >1×10¹⁴ >1×10¹⁴ >1×10¹⁴ >1×10¹⁴ >1×10¹⁴ >1×10¹⁴
Dielectric constant (relative permittivity) – 9.2 9.5 9.8 9.83 9.84 9.85 9.86 9.92
Dielectric strength kV/mm 15 19 16.9 23.2 23.4 23.6 23.8 24
Dissipation factor (loss factor @ 1 kHz) – – – 0.0002 – – – – –

Choose an Alumina Grade by Operating Requirement Select the grade after reviewing temperature, atmosphere, mechanical load, voltage, surface condition, cleanliness, geometry, and the required test method. Purity alone does not define finished-disc performance.

Grade for Review Typical Starting Point Confirm Before Quotation
96% Al₂O₃ General support, spacer, and insulation duties Temperature, voltage, load, dimensions, and flatness
99%–99.5% Al₂O₃ Higher-purity electrical, wear, or clean-contact requirements Grade source, test method, surface condition, and environment
99.7% Al₂O₃ High-purity precision, high-temperature, or electrical review Availability, geometry, thermal cycle, load, voltage, and cleanliness

Specifications of Alumina Ceramic Disc

Alumina Disc
Item No. Diameter(mm) Thick(mm)
AT-DIS001 25 1.5
AT-DIS002 32 2
AT-DIS003 38 2
AT-D-42-2 42 2
AT-DIS004 51 2
AT-DIS005 64 3
AT-DIS006 76 3
AT-D-82-6 82 6
AT-DIS007 89 4
AT-DIS008 102 4
AT-DIS009 127 5
AT-DIS010 152 5

 

Alumina Ceramic Discs Packaging

  • Each disc is dust-wiped, separated by soft interlayers, and sealed in labelled clean bags. Rigid cartons with corner protection limit edge chipping.

Alumina Ceramic Discs Packaging

 

Alumina Ceramic Disc Applications

ADCERAX manufactures application-specific alumina ceramic discs for thermal support, electrical isolation, precision contact, and wear-resistant positioning. Product forms include solid discs, spacer discs, carrier discs, and drawing-based parts with controlled surfaces and finished edges.

Laboratory Heating & Sample Support

Ceramic Products We Make

  • Solid alumina support and separator discs
  • Flat sample carrier and cover discs
  • Discs with ground or polished contact surfaces
  • Discs with chamfered or radiused edges

Application Problems Addressed

  • Controlled flatness provides a stable support surface and helps prevent samples or containers from rocking.
  • Dense, cleanable alumina surfaces support applications where contact cleanliness and repeated use are important.
  • Suitable grade, thickness, and edge finishing help the ceramic disc retain its shape during repeated thermal cycles.
  • Finished edges help reduce chipping during handling, loading, and removal.

High-Voltage Insulating & Spacer Discs

Ceramic Products We Make

  • Solid electrical-insulation discs
  • Center-hole ceramic spacer discs
  • Multi-hole mounting and locating discs
  • Stepped discs with ground faces and finished edges

Application Problems Addressed

  • Dense alumina provides non-metallic separation between conductive components.
  • Controlled disc thickness helps maintain consistent spacing and alignment.
  • Ground contact faces provide stable seating between mating parts.
  • Smooth surfaces and finished edges help limit contamination, edge damage, and localized electrical stress.

Precision Fixturing, Lapping & Polishing

Ceramic Products We Make

  • Flat fixture and work-support discs
  • Lapping and polishing carrier discs
  • Wear-resistant locating and contact discs
  • Discs with holes, slots, pockets, steps, notches, or alignment features

Application Problems Addressed

  • Controlled flatness and parallelism help reduce rocking and uneven contact across the working surface.
  • Hard alumina contact surfaces resist wear during repeated positioning and abrasive processing.
  • Ground or polished faces can provide the required contact condition on one or both sides of the disc.
  • Integrated locating features help control part position and orientation without adding separate ceramic pieces.

Alumina Ceramic Discs Usage Instructions

  • Use

    1. Mount discs on clean, flat support surfaces to avoid rocking and uneven loading.
    2. Prevent point loading on thin discs; distribute load with smooth plates or compliant pads.
    3. Always re-check clamp torque after the first heat cycle, since initial shrink-fit or bow correction can shift load balance.
    4. For electrical insulation uses, verify that disc edges are free of micro-chips before assembly.

  • Storage

    1. Keep in sealed, dry bags with desiccant packs to prevent moisture absorption that could lower dielectric strength.
    2. Use interlayers (foam, soft paper, or plastic films) to prevent edge-to-edge contact.
    3. Store vertically on edge racks for discs thinner than 1 mm to minimize bowing or creep.
    4. Maintain storage areas below 40% relative humidity, away from corrosive vapors or vibration.

  • Cleaning

    1. Use non-metallic tools to avoid scratching or introducing conductive particles.
    2. Suitable methods: mild ultrasonic cleaning, isopropanol or ethanol wipe, or DI-water rinse with quick dry.
    3. Avoid hydrofluoric acid or strong alkalis (NaOH, KOH) that chemically attack Al₂O₃.
    4. After cleaning, handle discs with powder-free gloves to prevent finger oils that may cause hot spots or leakage.

  • Common mistakes & fixes

    1. Edge chipping during handling → specify discs with chamfer or radius; handle with trays or vacuum pick-up tools.
    2. Uneven heating marks → confirm required flatness grade (e.g., ≤0.1 mm/100 mm) and ensure uniform support; avoid three-point clamping that causes hot spots.
    3. Electrical leakage spikes → check for surface moisture or contamination; pre-bake at 150–200 °C to remove absorbed water before hipot testing.
    4. Warping of thin discs → store vertically and clamp evenly; for long cycles above 1200 °C, specify reinforced support or lower bow tolerance.
    5. Surface contamination during polishing → cover discs with protective film until ready for use; request clean-room level packaging if used in sensitive assemblies.

 

Alumina Ceramic Discs FAQ

  1. What is the melting point of an alumina disc?
    The melting point of alumina is approximately 2050°C, but this should not be treated as the service temperature of a finished disc. Usable temperature depends on alumina grade, disc geometry, mechanical load, support method, atmosphere, and thermal cycle.
  2. How is an alumina disc different from a washer, substrate, or porous disc?
    An alumina ceramic disc is a dense, flat Al₂O₃ round component used for insulation, high-temperature support, wear-resistant contact, or precision fixturing. A washer or ring is defined by its through-hole, a substrate is generally a thin electronic base, and a porous disc is designed for gas or liquid flow.
  3. Do you supply standard-size alumina ceramic discs?
    Several diameter and thickness combinations are available as current size references. Availability and shipment timing are confirmed according to the required grade, dimensions, tolerances, surface condition, and quantity.
  4. What dimensions and features can be customized?
    ADCERAX can review OD, thickness, center or patterned holes, slots, countersinks, counterbores, chamfers, edge radii, reliefs, and pockets from a drawing. Critical tolerances, flatness, parallelism, surface finish, quantity, and mating-part conditions are reviewed before quotation.
  5. Which grade should I choose: 96%, 99%, 99.5%, or 99.7% alumina?
    A 96% grade is often considered for general support, spacer, and insulation duties, while higher-purity grades may suit stricter electrical, wear, temperature, or cleanliness requirements. Final selection depends on temperature, atmosphere, load, voltage, surface condition, and the required test standard.
  6. Can an alumina disc be used for high-voltage insulation?
    Dense alumina can provide strong electrical insulation, but finished-part performance depends on grade, thickness, surface cleanliness, edge condition, creepage, clearance, temperature, surface humidity, and the test method. A dielectric or hipot pass result should not be assumed from the material name alone.

Request an Alumina Disc Engineering Review

Send your drawing or sample information together with the operating conditions.
The more complete the input, the faster ADCERAX can review the grade, geometry, manufacturability, inspection, and packaging requirements.RFQ Checklist:

  •  Drawing, sketch, or sample photo
  • Alumina grade or purity requirement
  • Outside diameter and thickness
  • Holes, slots, countersinks, counterbores, chamfers, edge radii, reliefs, or pockets
  • Dimensional tolerances, flatness, and parallelism
  • Surface finish and functional-surface requirement
  • Continuous and peak temperature, thermal cycle, and atmosphere
  • Mechanical load, support, mounting, and mating materials
  • Working voltage, creepage/clearance, and dielectric or hipot test requirement
  • Cleanliness, inspection report, labeling, and packaging needs
  • Prototype and production quantity
customize size

Custom Alumina Ceramic Disc Options

1. Geometry & Tolerance

  • Outer diameter (OD) and thickness: e.g., Ø5–Ø200 mm and 0.3–10 mm. Select OD and thickness tolerances according to the part dimensions.
  • Flatness and parallelism: define the required limit, measurement method, support condition, and functional surface.
  • Concentricity and runout can be specified for hole-to-OD or stepped features used with rotating fixtures.
  • For thin discs, specify the allowable bow according to the disc diameter, thickness, and support condition.

2. Machined Features

  • Holes and slots: specify hole diameter, pitch circle diameter (P.C.D.), quantity, countersink or counterbore dimensions, and slot geometry.
  • Reliefs and pockets: specify the location, profile, and depth of each recess, step, or pocket.
  • Alignment features: add notches or flats when orientation control is required in a jig or assembly.

3. Edges & Corners

  • Specify chamfers, edge radii, or other edge profiles on the drawing to support assembly and reduce chipping risk.
  • Define any special edge-finishing or handling requirements before quotation.

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An alumina ceramic disc is a dense, sintered Al₂O₃ round component that forms a rigid, non-metallic interface between mating parts. Its disc geometry supports controlled contact, separation, or load distribution and distinguishes it from porous filter media, thin electronic substrates, and washer-style rings.

Alumina Ceramic Disc Benefits

Finished-part performance depends on the selected alumina grade, disc geometry, surface condition, operating environment, and agreed inspection method.

  • Thermal stability: Retains structural rigidity at elevated temperatures when the load, support method, atmosphere, and thermal cycle are properly specified.
  • Dimensional control: Flatness, parallelism, thickness, and surface finish can be defined for controlled contact, alignment, and fixture repeatability.
  • Electrical isolation: Provides nonconductive separation in electrical assemblies; actual performance depends on grade, thickness, surface cleanliness, edge condition, creepage, clearance, and test method.
  • Surface durability: The hard ceramic surface supports repeated contact and wear-resistant positioning in fixtures and mechanical assemblies.
  • Cleanable contact surface: Surface finish, cleaning, handling, and packaging can be specified for applications with controlled-contamination requirements.

 

Alumina Ceramic Disc Properties

Property Unit 96% Al₂O₃ 99% Al₂O₃ 99.5% Al₂O₃ 99.6% Al₂O₃ 99.7% Al₂O₃ 99.8% Al₂O₃ 99.9% Al₂O₃ 99.99% Al₂O₃
Alumina content % 96 99 99.5 99.6 99.7 99.8 99.9 99.99
Density g/cm³ 3.6-3.75 3.83 3.89 3.91 3.92 3.93 3.94 3.98
Color – white Ivory Ivory Ivory Ivory Ivory Ivory Ivory
Water absorption % 0 0 – 0 0 0 0 0
Young’s modulus (Elastic modulus) GPa 300 350 375 356 357 358 359 362
Shear modulus GPa – – 152 – – – – –
Bulk modulus GPa – – 228 – – – – –
Poisson’s ratio – – – 0.22 – – – – –
Compressive strength MPa 1910 2210 2500 2552 2554 2556 2558 2570
Flexural strength MPa 260 300 340 345 346 347 348 365
Fracture toughness MPa·m¹ᐟ² – – 4 – – – – –
Hardness GPa 14.5 17 17 23 24 25 26 30
Thermal conductivity W/m·K 20 31 31 31-33 31-33 31-33 31-35 31-35
Thermal shock resistance ΔT °C – – – 222 223 224 225 228
Maximum use temperature (no load) °C 1450 1680 ≤1750 1755 1760 1765 1770 1800
Coefficient of thermal expansion 10⁻⁶/°C 7.6 7.6 7.6 7.6 7.5 7.5 7.4 7.4
Volume resistivity Ω·cm >1×10¹⁴ >1×10¹⁴ >1×10¹⁴ >1×10¹⁴ >1×10¹⁴ >1×10¹⁴ >1×10¹⁴ >1×10¹⁴
Dielectric constant (relative permittivity) – 9.2 9.5 9.8 9.83 9.84 9.85 9.86 9.92
Dielectric strength kV/mm 15 19 16.9 23.2 23.4 23.6 23.8 24
Dissipation factor (loss factor @ 1 kHz) – – – 0.0002 – – – – –

Choose an Alumina Grade by Operating Requirement Select the grade after reviewing temperature, atmosphere, mechanical load, voltage, surface condition, cleanliness, geometry, and the required test method. Purity alone does not define finished-disc performance.

Grade for Review Typical Starting Point Confirm Before Quotation
96% Al₂O₃ General support, spacer, and insulation duties Temperature, voltage, load, dimensions, and flatness
99%–99.5% Al₂O₃ Higher-purity electrical, wear, or clean-contact requirements Grade source, test method, surface condition, and environment
99.7% Al₂O₃ High-purity precision, high-temperature, or electrical review Availability, geometry, thermal cycle, load, voltage, and cleanliness

Specifications of Alumina Ceramic Disc

Alumina Disc
Item No. Diameter(mm) Thick(mm)
AT-DIS001 25 1.5
AT-DIS002 32 2
AT-DIS003 38 2
AT-D-42-2 42 2
AT-DIS004 51 2
AT-DIS005 64 3
AT-DIS006 76 3
AT-D-82-6 82 6
AT-DIS007 89 4
AT-DIS008 102 4
AT-DIS009 127 5
AT-DIS010 152 5

 

Alumina Ceramic Discs Packaging

  • Each disc is dust-wiped, separated by soft interlayers, and sealed in labelled clean bags. Rigid cartons with corner protection limit edge chipping.

Alumina Ceramic Discs Packaging

 

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