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About Shape Memory Alloy Nitinol - Ver.1 Basic Knowledge

Explanation materials on the basic knowledge of Nitinol - Detailed explanation of phase transformation, measurement methods for transformation temperature, superelasticity, and shape memory effect, including the underlying principles.

Shape Memory Alloys (SMA) are unique metals that can return to their original shape when they reach a specific temperature. SAES's group company, memry, boasts the world's largest production capacity of Nitinol (Ni-Ti) and has nearly 30 years of experience in low-invasive medical devices such as stents, catheters, and guidewires. Nitinol often cannot directly apply the characteristics, design concepts, and manufacturing processes of conventional metal materials, requiring a wealth of knowledge and expertise in handling. Please utilize this document to expedite the learning process for companies and engineers who are using Nitinol alloys for the first time.

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Tohoku University Technology: Magnesium alloy exhibits superelastic effect: T15-071

Specific gravity is less than one third of Nitinol! The lightest superelastic alloy worldwide without allergic elements

Conventional superelastic and shape-memory alloys are generally composed of elements having high specific gravity, and the ones composed of lightweight elements have not been reported yet. Although superelastic and shape-memory alloys for medical applications are being intensely investigated, a typical TiNi alloy (Nitinol) is still difficult to apply to patients owing to allergic effect caused by nickel.  The present invention provides superelastic and shape-memory alloy having the specific gravity less than one third of Nitinol by using magnesium. As well known as the good biocompatibility of magnesium, the alloy is expected to be applied to medical field.

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[Prototype Development] Change your hairstyle with the push of a button!? (2003)

Using shape memory alloys allows for various applications with simple mechanisms!

Here is an introduction to the application examples of shape memory alloys. By utilizing shape memory alloys, it is possible to suddenly change hairstyles. First, shape memory alloys are embedded in the hair. When the model is walking and the switch is turned on with a remote control, electricity flows through the shape memory alloy, causing it to heat up. This heating changes the shape of the shape memory alloy, resulting in a change in hairstyle. I have heard that the show was a great success. Hair that was tied up can be released, and hair that was lying flat can stand up. By using shape memory alloys, simple mechanisms can operate silently, allowing for such applications. *For more details, please refer to the PDF materials or feel free to contact us.

  • Contract manufacturing
  • Prototype Services
  • Memory Alloy

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