NITINOL Shape Memory Alloy Sheet

NITINOL Shape Memory Alloy Sheet

Item: NITINOL Shape Memory Alloy Sheet
Thickness: 1 mm
AF Temperature: 50-55°C

Product Introduction

Nitinol is a shape memory alloy made up of nickel and titanium. It goes through a phase of transformational change in its crystal structure depending on changing temperatures. When it is cooled from its high-temperature form austenite to the low-temperature one called martensite, it changes shape. Nitinol has several application areas. First, it is used as a thermal and electrical actuator such as a sensor and actuator in thermal valves for fluidics or autofocus actuators in action cameras. NITINOL shape memory alloy sheet also has widespread use in biomedicine. Nitinol is highly biocompatible so it is proper to use as medical material such as orthopedic implants, catheters, orthodontics for brackets and wires, and neurovascular interventions such as stroke thrombolysis. It also has a significant role in medicine as stents. Its collapsed form is inserted into an artery or vein and with body temperature, it returns to its original shape and improves blood flow. Furthermore, in structural engineering, superelastic nitinol is used in bridges and buildings. When concrete containing the nitinol wires is used in the construction, these wires can sense cracks and point out the cracks in macro sizes.

 

Introduction

1.0mm Thickness Shape Memory Alloy NITINOL Sheet is a cutting-edge product designed for a wide range of applications in various industries. With its exceptional shape memory properties and remarkable mechanical characteristics, this sheet offers unparalleled performance and reliability. Manufactured using state-of-the-art techniques, this NITINOL sheet provides engineers and researchers with a versatile material for their innovative designs and breakthrough developments.

 

Specifications

1cm x 1cm

2 cm x 2cm

5 cm x 5cm

10 cm x 10 cm

20 cm x 20 cm

 

Material

NITINOL Alloy

Thickness

1mm

Ni (Min)

70%-80%

Technique

Cold Rolled Hot Rolled or others

Surface

BA/2B/NO.1/NO.3/NO.4/8K/HL/2D/1D

 

For customization size, please contact us for quotes.

 

Features

1. Remarkable shape memory characteristics for precise and repeatable shape changes.

2. Super elasticity, allowing for large strain and returning to its original shape.

3. Temperature sensitivity, making it suitable for oral cavity applications.

4. Excellent corrosion resistance for long-term durability.

5. Anti-toxicity properties, ensuring safety in medical and dental applications.

6. Soft correction power for gradual and comfortable correction.

7. Good shock absorption characteristics for enhanced product performance.

 

Applications

Pipeline Connection and Automatic Control

 

The memory alloy in the casing eliminates the need for welding in pipeline connections. This innovative application provides a reliable and efficient alternative for seamless pipeline assembly while ensuring structural integrity.

 

Thermomechanical and Thermostatic Automatic Control

 

By utilizing the NITINOL Shape Memory Alloy Sheet, automatic opening and closing arms can be created for thermomechanical and thermostatic control systems. These systems enable the automatic opening of ventilation windows during sunny daytime hours and their automatic closure when the room temperature drops at night, ensuring optimal energy efficiency and comfort.

 

Medical Applications

The medical field presents exciting opportunities for shape memory alloy applications. NITINOL Sheet is extensively used in various medical devices, including bone plates for osteosynthesis, orthodontic wires for dentistry, long clips for ligating cerebral aneurysms and vas deferens, and braces for spine straightening. These devices are activated by body temperature after implantation, providing patients with tailored treatment and enhanced healing. Additionally, shape memory alloy is utilized in thrombus filters, a new and innovative product for preventing blood clots.

 

Artificial Muscle Fiber

Shape memory alloy-based muscle fibers can mimic the contraction movement of the ventricle when paired with an elastomer membrane. This application holds potential in the development of artificial muscles, offering opportunities for advancements in robotics and prosthetics.

NITINOL Shape Memory Alloy Sheet1
NITINOL Shape Memory Alloy Sheet3

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