Titanium Zirconium Molybdenum (TZM) Coarse Forged Rod

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Description

Molybdenum is transformed into TZM (Titanium-Zirconium-Molybdenum) by using small quantities of tiny, extremely fine carbides. TZM is stronger than pure molybdenum and possesses a higher recrystallization temperature and better creep resistance.

This material data has been provided by Plansee.

"Typical" values were obtained via a literature search. "Predicted" values were imputed via artificial intelligence technology. While we have placed significant efforts in ensuring data accuracy, "typical" and "predicted" data should be considered indicative and verified by appropriate material testing. Please do contact us if additional information on the the predicted data method is required.
All metrics apply to room temperature unless otherwise stated. SI units used unless otherwise stated.
Equivalent standards are similar to one or more standards provided by the supplier. Some equivalent standards may be stricter whereas others may be outside the bounds of the original standard.

Ashby charts

Properties

General

PropertyTemperatureValue

Density

23.0 °C

10 g/cm³

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Dimension

PropertyValue

Diameter

100 - 120 mm

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Length

100 - 3000 mm

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Dimensions

Available dimensions (diameter x length, mm x mm): 100 x 100-3000; 120 x 100-2000

Mechanical

PropertyTemperatureValue

Elongation

23.0 °C

5 %

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Hardness, Vickers

23.0 °C

235 - 285 [-]

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Tensile strength

23.0 °C

585 MPa

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Yield strength Rp0.2

23.0 °C

515 MPa

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Chemical properties

PropertyValue

Aluminium

1E-4 %

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Cadmium

1E-4 %

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Chromium

3E-4 %

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Copper

2E-4 %

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Iron

5E-4 %

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Molybdenum

balance

Nickel

1E-4 %

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Nitrogen

5E-4 %

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Oxygen

0.01 %

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Potassium

6E-4 %

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Silicon

2E-4 %

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Titanium

0.4 - 0.55 %

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Tungsten

0.02 %

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Zirconium

0.06 - 0.12 %

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Technological properties

Property
Application areas

TZM is used in high-temperature applications involving demanding mechanical loads, for example in forging tools or as rotating anodes in X-ray tubes. The recommended temperatures of use are between 700 and 1400 °C.