Zirconia Ceramic Plate 100×100×7 mm White ATOMFAIR®

$80.00

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Research-grade zirconia ceramic plate, 100 mm x 100 mm x 7 mm, ZrO2 >=94%, white. High hardness, low absorption, 1600 °C service limit. Order now.

Zirconia Ceramic Plate, 100 mm x 100 mm x 7 mm, White

Product Type: Zirconia ceramic plate
Research-grade laboratory product

Product Overview

Zirconia ceramic plate combines ZrO2 content of at least 94%, electrical insulation, corrosion resistance, and high-temperature performance for technical ceramic use.

The plate is self-lubricating, has low water absorption, and provides thermal stability where dimensional retention and insulation are required.

Performance Features

  • ZrO2 content is at least 94% with low water absorption.
  • High hardness, high compressive strength, and strong flexural performance support demanding ceramic use.
  • Maximum service temperature reaches 1600 ?C.
  • Thermal conductivity is 3 W/(m?K), and volume resistivity is above 1 ? 10?? O?cm.

Technical Specifications

Parameter Specification / Available Values
Atomfair Model AF-ZR-100X100W007
Product Type Zirconia ceramic plate
Material Zirconia ceramic
Selected size 100 mm x 100 mm
Selected thickness 7 mm
Selected color White
Main composition ZrO2 =94%
Density 5.9
Water absorption 0%
Sintering temperature 1650 ?C
Hardness 1400 HV
4-point flexural strength >11000
Compressive strength 25,000 kgf/cm?
Maximum service temperature 1600 ?C
Thermal expansion coefficient 10 ? 10?6/?C
Thermal shock resistance 350 ?C
Thermal conductivity 3 W/(m?K)
Volume resistivity >1 ? 10?? O?cm
Dielectric breakdown strength 15 KT/m
Dielectric constant, 1 MHz 12.5
QUOTATION DETAILS: Confirm AF-ZR-100X100W007, 100 mm x 100 mm x 7 mm, and required quantity before quotation.
CONFIGURATION CONFIRMATION: Verify color, thickness, and pack format when matching the requested zirconia ceramic plate configuration.
OPTION MATCHING: Use the selected size and surface finish only as provided for quotation confirmation.
REQUEST DETAILS: Include the selected size, thickness, color or pack detail, and quantity when requesting quotation support.
LABORATORY PROCUREMENT SUPPORT
For model selection, accessory matching, platform compatibility or configuration confirmation, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR?

The plate is sintered at 1650 °C and exhibits a maximum service temperature of 1600 °C, with thermal shock resistance limited to 350 °C. Its high hardness (1400 HV) and compressive strength (25,000 kgf/cm²) require diamond tooling for any post-processing machining.

  • Thermal Management: Avoid rapid temperature changes exceeding 350 °C to prevent thermal shock fracture.
  • Machining Constraint: Use diamond-coated tools for cutting or grinding due to the material's high hardness and abrasion resistance.
  • Electrical Insulation: Maintain surface cleanliness to preserve volume resistivity above 1 × 10¹² Ω·cm and dielectric breakdown strength of 15 kV/mm.

Inspect the plate for cracks or chips before installation, as the material is brittle despite high compressive strength. Clean the surface with isopropyl alcohol and lint-free wipes to remove contaminants that could compromise electrical insulation.

Required Equipment: Diamond-coated cutting tool, Lint-free wipes, Isopropyl alcohol

  1. Inspect the plate
    Visually examine the zirconia ceramic plate for any cracks, chips, or surface defects before handling.
  2. Clean the surface
    Wipe the plate with isopropyl alcohol and a lint-free cloth to remove dust and organic residues.
  3. Mount the plate
    Secure the plate in a fixture using soft pads to avoid point loading that could induce fracture.
  4. Machine if needed
    Cut or grind the plate using a diamond-coated tool at low feed rates to prevent thermal shock.
  5. Verify dimensions
    Measure the final dimensions with a caliper to confirm they meet the required tolerances.

How does the thermal shock resistance of 350°C compare to the maximum service temperature of 1600°C for this zirconia ceramic plate?

The plate can withstand continuous service up to 1600°C but has a thermal shock resistance of only 350°C, meaning rapid temperature changes exceeding 350°C may cause cracking. This trade-off is typical for high-density zirconia ceramics with low thermal conductivity (3 W/(m·K)), which limits heat dissipation during thermal transients.

Is this zirconia ceramic plate suitable for electrical insulation at high frequencies?

Yes, with a volume resistivity above 1×10¹⁰ Ω·cm and a dielectric constant of 12.5 at 1 MHz, the plate provides effective electrical insulation at high frequencies. Its dielectric breakdown strength is 15 KT/m, supporting use in demanding insulation applications where dimensional stability and low water absorption (0%) are also critical.

What is the significance of the 0% water absorption for this zirconia ceramic plate?

The 0% water absorption indicates a fully dense, non-porous structure that prevents moisture ingress, which is essential for maintaining electrical insulation properties and dimensional stability in humid or wet laboratory environments. This property also contributes to the plate's corrosion resistance and long-term reliability at high temperatures up to 1600°C.

This 100 mm x 100 mm x 7 mm zirconia ceramic plate (≥94% ZrO2) provides high hardness (1400 HV), compressive strength of 25,000 kgf/cm², and a maximum service temperature of 1600 °C, making it suitable for demanding insulation and mechanical support applications in high-temperature or corrosive environments.

Positive

  • High-temperature stability and insulation: With a maximum service temperature of 1600 °C and volume resistivity above 1 × 10¹⁴ Ω·cm, this plate maintains electrical insulation and dimensional stability under extreme thermal loads.
  • Low water absorption and self-lubricating: Zero water absorption combined with self-lubricating properties reduces environmental degradation and wear in dry or humid lab conditions, supporting long-term structural integrity.

Trade-offs

  • Brittle fracture risk under impact: Despite high compressive strength (25,000 kgf/cm²), the ceramic's hardness (1400 HV) and low toughness characteristic of zirconia materials make it susceptible to cracking under sudden mechanical shock or point loading.
  • Moderate thermal shock resistance: A thermal shock resistance of 350 °C limits the allowable temperature gradient during rapid heating or cooling, requiring controlled thermal ramp rates to prevent fracture in service.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).