Zirconia (ZrO2) – CeramaZirc™

Unlike traditional ceramics that tend to be hard and brittle, Zirconia offers high strength, wear resistance, and flexibility far beyond those of most other advanced ceramics. Zirconia is a very strong advanced ceramic with excellent properties in hardness, fracture toughness, and corrosion resistance; all without the most common property of ceramics – high brittleness. 

There are several grades of Zirconia available, the most common of which are Yttria Partially Stabilized Zirconia (Y-PSZ) and Magnesia Partially Stabilized Zirconia (Mg-PSZ). Both of these materials offer excellent properties, however, the operating environment and part geometry will dictate which grade may be suitable for specific applications (more on this below). Its unique resistance to crack propagation and high thermal expansion make it an excellent material for joining ceramics with metals like steel. Due to Zirconia’s unique properties it is sometimes referred to as the “ceramic steel”.

Material Advantages

  • Use temperatures up to 1000°C
  • Low thermal conductivity
  • Chemical inertness
  • Resistance to molten metals
  • Wear resistance
  • High fracture toughness
  • High hardness

Applications

  • High pressure equipment ball valve balls and seats
  • High density ball grinding media
  • Rollers and guides for metal forming
  • Thread and wire guides
  • Metal extrusion dies
  • Deep well down-hole valves and seats
  • Powder compacting dies
  • Pump seals and shaft bearings
  • Oxygen sensors
  • High temperature induction furnace susceptors
  • Fuel cell membranes

Material Grades

There are several different methods used to produce Zirconia. Each method produces materials with slightly differing properties.

CeramaZirc Ultra Tough

CeramaZirc Ultra Tough is an advanced zirconia based ceramic composite material based on partially stabilised zirconia and an enhanced crystal structure.

General Properties

  • Use temperatures up to 1500°C
  • Sintered to full density for a pore free structure and competitive price
  • No compromise between bending strength, hardness and fracture toughness
  • Remarkably high fracture toughness and impact resistance while maintaining above average values for bending strength and hardness
  • Toughening by crack deflection provided by a unique microstructure in a partially stabilised zirconia matrix
  • Increased resistance to hydrothermal ageing through Ceria partial stabilisation

Applications

  • High pressure equipment- ball valve balls and seats – particularly suitable for applications where mechanical shock, impacts and/or vibrations are present
  • Ultra high pressure pumping elements
  • Flow control devices for ultra-high pressure equipment – stems and seats for high pressure homogenisers
  • Deep well down-hole valves and seats
  • Rollers and guides for metal forming

Download Datasheet

CeramaZirc Ultra Tough HIP

CeramaZirc Ultra Tough HIP is an advanced zirconia based ceramic composite material based on partially stabilised zirconia and an enhanced crystal structure and is the latest and toughest composite to be introduced by Precision Ceramics.

General Properties

  • Use temperatures up to 1500°C
  • Hot isostatically pressed (HIP’ed) for superior strength and reliability
  • No compromise between bending strength, hardness and fracture toughness
  • Remarkably high fracture toughness and impact resistance while maintaining above average values for bending strength and hardness
  • Toughening by crack deflection provided by a unique microstructure in a partially stabilised zirconia matrix
  • Increased resistance to hydrothermal ageing through Ceria partial stabilisation

Applications

  • High pressure equipment- ball valve balls and seats – particularly suitable for applications where mechanical shock, impacts and/or vibrations are present
  • Ultra high pressure pumping elements
  • Flow control devices for ultra-high pressure equipment – stems and seats for high pressure homogenisers
  • Deep well down-hole valves and seats
  • Rollers and guides for metal forming

Download Datasheet

CeramaZirc 3YZ

High purity 3 mol.% Yttria Partially Stabilised Zirconia (3YSZ) has a finer grain structure that ensures higher mechanical properties. Increased grain size uniformity ensures better isotropy of properties

General Properties

  • Use temperatures up to 1000°C
  • Low thermal conductivity
  • Chemical inertness
  • Resistance to molten metals
  • Wear resistance
  • High fracture toughness
  • High hardness

Applications

  • High pressure equipment- ball valve balls and seats – particularly suitable for applications where mechanical shock, impacts and/or vibrations are present
  • Ultra high pressure pumping elements
  • Flow control devices for ultra-high pressure equipment – stems and seats for high pressure homogenisers
  • Deep well down-hole valves and seats
  • Rollers and guides for metal forming

Download Datasheet

CeramaZirc Nano HIP

Highest purity 3 mol.% Yttria Partially Stabilised Zirconia (3YSZ) with ultrafine grain structure ensures exceptional performance. Densified to full theoretical density through Hot Isostatic Pressing (HIP) for outstanding reliability

General Properties

  • Use temperatures up to 1000°C
  • Low thermal conductivity
  • Chemical inertness
  • Resistance to molten metals
  • Wear resistance
  • High fracture toughness
  • High hardness

Applications

  • High pressure equipment- ball valve balls and seats – particularly suitable for applications where mechanical shock, impacts and/or vibrations are present
  • Ultra high pressure pumping elements
  • Flow control devices for ultra-high pressure equipment – stems and seats for high pressure homogenisers
  • Deep well down-hole valves and seats
  • Rollers and guides for metal forming

Download Datasheet

Material Properties

General Properties

Composition
Unit
-
Ultra Tough
Yttria Stabilized
Ultra Tough HIP
Yttria Stabilized
3YZ
Yttria Stabilized
Nano-HIP
Yttria Stabilized
Color
Unit
-
Ultra Tough
Grey
Ultra Tough HIP
Light Brown / Orange
3YZ
Ivory
Nano-HIP
Grey

Mechanical Properties

Density
Unit
g/cm3
Ultra Tough
5.7
Ultra Tough HIP
5.7
3YZ
6.05
Nano-HIP
6.07
Youngs Modulus
Unit
GPa
Ultra Tough
200
Ultra Tough HIP
200
3YZ
200
Nano-HIP
200
Fracture Toughness
Unit
Mpa x m1/2
Ultra Tough
17
Ultra Tough HIP
17
3YZ
8
Nano-HIP
8
Poissons Ratio
Unit
-
Ultra Tough
0.30
Ultra Tough HIP
0.30
3YZ
0.30
Nano-HIP
0.30
Compressive Strength
Unit
MPa
Ultra Tough
2000
Ultra Tough HIP
2000
3YZ
2000
Nano-HIP
2100
Flexural Strength
Unit
MPa
Ultra Tough
1000
Ultra Tough HIP
1000
3YZ
1200
Nano-HIP
1400
Hardness HV0.5
Unit
GPa
Ultra Tough
13
Ultra Tough HIP
13
3YZ
13.5
Nano-HIP
14.5

Thermal Properties

Max Use Temp
Unit
°C
Ultra Tough
1500
Ultra Tough HIP
1500
3YZ
1000
Nano-HIP
1000
Coefficient of Expansion
Unit
10-6/°C
Ultra Tough
10
Ultra Tough HIP
10
3YZ
10
Nano-HIP
10
Thermal Conductivity, 25°C
Unit
W/mK
Ultra Tough
3
Ultra Tough HIP
3
3YZ
2
Nano-HIP
2
Thermal Shock Resistance ΔT
Unit
°C
Ultra Tough
250
Ultra Tough HIP
250
3YZ
250
Nano-HIP
250

** Coefficient of Thermal Expansion (CTE) describes how the size of an object changes with a change in temperature.

Disclaimer: The values presented are mean and typical of those resulted from test samples. They are provided as an indication only to serve as guidance in the design of ceramic components and are not guaranteed in any way. The actual values can vary according to the shape and size of the envisaged component.

Datasheets

Zirconia CeramaZirc Ultra Tough Material Brand

Zirconia

CeramaZirc Ultra Tough

Zirconia CeramaZirc Ultra Tough HIP Material Brand

Zirconia

CeramaZirc Ultra Tough HIP

Zirconia CeramaZirc 3YZ Material Brand

Zirconia

CeramaZirc 3YZ

Zirconia CeramaZirc Nano HIP Material Brand

Zirconia

CeramaZirc Nano HIP

Zirconia Machining

Zirconia can be machined in green, biscuit, or fully dense states. While in the green or biscuit form it can be machined relatively easily into complex geometries. However, the sintering process that is required to fully densify the material causes the Zirconia body to shrink approximately 20%. This shrinkage means that it is impossible to hold very tight tolerances when machining Zirconia pre-sintering.

In order to achieve very tight tolerances, fully sintered material must be machined/ground with diamond tools.  In this process a very precise diamond coated tool/wheel is used to abrade away the material until the desired form is created. Due to the inherit toughness and hardness of the material, this can be a time consuming and costly process.

Precision Ceramics is your Zirconia machining specialist for your advanced ceramic prototyping & manufacturing needs; we are always happy to use our many years of advanced ceramics experience to provide advice on materials, design, and application. If you would like to buy Zirconia plates, rods, tubes or custom machined components, please contact us and one of our experts will be happy to assist you.

CeramaZirc Ultra Tough

CeramaZirc Ultra Tough is an advanced zirconia-based ceramic composite material based on partially stabilized zirconia and alumina platelets and is the latest and toughest composite to be introduced by Precision Ceramics. 

Frequently Asked Questions

  • image/svg+xmlimage/svg+xml
    What can Zirconia ceramic be used for?
    • Wire forming/drawing dies
    • Insulating rings in thermal processes
    • Precision shafts and axles in high wear environments
    • Furnace process tubes
    • Wear resistance pads
    • Thermocouple protection tubes
    • Sandblasting nozzles
    • Refractory material
    • Extrusion dies
    • Bushings and caps
    • Kiln furniture crucible
    • Fiber optic ferrules and sleeves
    • Knives and blades
    • Fuel cell parts
    • Bearings & rollers
    • Welding nozzles & pins
    • Laser parts
    • Gas igniters
    • Electric insulator
    • Ceramic guiders
    • Oxygen sensors
    • Medical and surgical component
    • Mechanical seals
    • Pumps, pistons, and liners
  • image/svg+xmlimage/svg+xml
    What's the difference between Yttria vs. Magnesia Zirconia?

    While Y-PSZ is excellent for demanding mechanical applications, it may not be suitable for very high temperature applications because it suffers from grain boundary sliding; this occurs when prolonged exposure to heat causes the material to transform form the strong tetragonal phase to the weaker monoclinic phase. Similarly, it may not be suitable for warm and moist conditions since its properties deteriorate when it is exposed to water vapor. YSZ is therefore best suited when it is operating in dry and moderate temperature conditions. For more information on hydrothermal aging of Zirconia please contact us.
    M-PSZ has better temperature and moisture resistant properties because it does not suffer from phase migration. M-PSZ maintains its strength even in moist high temperature environments where YSZ mechanical properties begin to deteriorate.

  • image/svg+xmlimage/svg+xml
    What are the properties of Zirconia?

    The following are some general properties of Zirconia ceramic. For a full list and comparison of Zirconia properties, see our Zirconia properties comparison table.

    • High density – up to 6.1 g/cm^3
    • High flexural strength and hardness
    • Excellent fracture toughness – impact resistant
    • High maximum use temperature
    • Wear resistant
    • Good frictional behavior
    • Electrical insulator
    • Low thermal conductivity – aprox. 10% of Alumina
    • Corrosion resistance in acids and alkalis
    • Modulus of elasticity similar to steel
    • Coefficient of thermal expansion similar to iron
  • image/svg+xmlimage/svg+xml
    What is Zirconia ceramic?

    Zirconia is a very strong advanced ceramic with excellent properties in hardness, fracture toughness, and corrosion resistance; all without the most common property of ceramics – high brittleness. Unlike traditional ceramics that tend to be hard and brittle, Zirconia offers high strength, wear resistance, and flexibility far beyond those of most other advanced ceramics.


    There are several grades of Zirconia available, the most common of which are Yttria Partially Stabilized Zirconia (Y-PSZ) and Magnesia Partially Stabilized Zirconia (Mg-PSZ). Both of these materials offer excellent properties, however, the operating environment and part geometry will dictate which grade may be suitable for specific applications (more on this below). Its unique resistance to crack propagation and high thermal expansion make it an excellent material for joining ceramics with metals like steel. Due to Zirconia’s unique properties it is sometimes referred to as the “ceramic steel”.

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