Rare-earth element 66

Dysprosium

Can preserve magnetic performance at elevated temperatures in demanding motor and generator designs.

Reported MREO basket

Why it is used

The properties behind dysprosium applications.

01

High magnetic anisotropy

02

Useful neutron-absorption behaviour

Typical applications

Where dysprosium is commonly used.

01

Selected high-duty electric-motor designs

02

Certain generators and industrial-automation systems

03

Specialised neutron-control materials

Applications refer to suitable rare-earth materials, compounds or produced isotopes—not raw mineral material. Product designs and formulations vary.

Route to use

A head assay is several steps from an industrial material.

  1. 01Mineral-bearing material

    Geology and assays establish occurrence and distribution.

  2. 02Recovery and separation

    Testwork must establish what can be mobilised, recovered and purified.

  3. 03Application-grade material

    Oxides, metals, alloys or compounds must meet a controlled specification.

  4. 04Component or system

    Manufacturers design the material into a qualified product.

At Minas Americas

One of four elements at the centre of the project’s strategic focus.

Reported MREO basket

Dysprosium oxide forms part of the disclosed MREO sum at Minas Americas. Dysprosium can help selected permanent magnets retain performance at elevated temperatures. That analytical definition does not establish recovery, separation or a saleable product.

See the magnet-basket evidence →

Sources

Where the element and application information comes from.

Applications are representative rather than exhaustive. They describe industry uses of rare-earth materials, compounds or produced isotopes; they do not describe a product currently made by Magnes or establish that an element will be commercially recovered from Minas Americas.

Content review date · 2 August 2026