Nitinol Muscle Wire
OEM & ODM Services: Available
Weight: Custom
Tolerance:0.004mm
Smooth surface roughness:Ra0.6-3.2
Nitinol muscle wire, also known as shape memory alloy wire or SMA wire, is a type of wire made from a nickel-titanium (NiTi) alloy. It exhibits unique properties such as shape memory effect and superelasticity, which make it suitable for various applications, including robotics, aerospace, and medical devices. Here are some key features and uses of Nitinol muscle wire:
Shape Memory Effect: Nitinol muscle wire has the ability to "remember" its original shape and return to it when heated above its transformation temperature. This property allows it to be deformed into a new shape and then recover its original shape upon heating.
Superelasticity: Nitinol muscle wire also exhibits superelasticity, which means it can undergo large deformations and still return to its original shape when the external force is removed. This property makes it highly flexible and resilient.
Actuation and Control: Nitinol muscle wire is often used as an actuator or artificial muscle in various applications. By applying heat or electrical current to the wire, it can undergo shape changes, producing mechanical movements or generating forces.
Medical Applications: In the medical field, Nitinol muscle wire finds applications in areas such as minimally invasive surgery, orthopedics, and dentistry. It can be used in devices like stents, dental braces, surgical tools, and prosthetics to provide controlled and precise movements.
Robotics and Automation: Nitinol muscle wire is used in robotics and automation for actuation and control of robotic limbs, grippers, and other mechanisms. Its lightweight, compact size, and shape memory properties make it well-suited for these applications.
Aerospace and Engineering: Nitinol muscle wire is utilized in aerospace and engineering applications for tasks like valve actuation, vibration damping, and shape control in aerospace components, sensors, and other mechanical systems.
Research and Development: Nitinol muscle wire is also used in research and development projects to explore its unique properties and develop new applications in various fields.
It's worth noting that Nitinol muscle wire requires careful handling and control of the heat or electrical currents applied to it to achieve the desired shape changes and ensure its proper functionality. Therefore, specialized knowledge and expertise are often required when working with Nitinol muscle wire.
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China |
U.S. |
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TAD |
Titanium Iodide |
Grade1 |
No. 1 Pure Titanium |
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TA1 |
Industrial Pure Titanium |
Grade2 |
No.2 Pure Titanium |
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TA2 |
Industrial Pure Titanium |
Grade3 |
No. 3 Pure Titanium |
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TA3 |
Industrial Pure Titanium |
Grade4 |
No. 4 Pure Titanium |
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TA4 |
Ti-3Al |
Grade5 |
Ti-6AI-4V |
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TA5 |
Ti-4A1-0.005B |
Grade6 |
Ti-5AI-2.5V |
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TA6 |
Ti-5AI |
Grade7 |
Ti-0.2Pd |
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TA7 |
Ti-5AI-2.5Sn |
Grade9 |
Ti-3A1-2.5V |
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TA8 |
Ti-5A1-2.5Sn-3Cu-1.5Zr |
Grade10 |
Ti-11.5Mo-4.5Sn- 6Zr |
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TC1 |
Ti-2AI-1.5Mn |
Grade1 |
Ti-0.2Pd |
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TC2 |
Ti-3A1-1.5Mn |
Grade2 |
Ti-0.3Mo-0.75Ni |
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TC3 |
Ti-4A1-4V |
A-1 |
Ti-5A1-2.5Sn |
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TC4 |
Ti-6A1-4V |
A-3 |
Ti-6A1-2Nb-1Ta |
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TC6 |
Ti-6Al-1.5Cr-2.5Mo-0.5Fe- 0.3Si |
A-4 |
Ti-8A-1Mo-1V |
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TC7 |
Ti-6A1-0.6Cr-0.4Fe-0.4Si- 0.01B |
AB-1 |
Ti-6A1-4V |
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TC9 |
Ti-6.5A1-3.5Mo-2.5Sn-0.3Si |
AB-3 |
Ti6AI-6V-2Sn |
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TC10 |
Ti-6A1-6V-2Sn-0.5Cu-0.5Fe |
AB-4 |
Ti-6A-2Sn-4Zr-2Mo |
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TC11 |
Ti-6A1-3.5Mo-1.5Zr-0.3Si |
AB-5 |
Ti-3AI-2.5V |
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TB2 |
Ti-5Mo-5V-3Cr-3Al |
B-1 |
Ti-3A1-13V-11Cr |
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