Materials
Nitinol is a term for binary near equal-atom Ni-Ti alloys, and it is widely used in medical due to its unique super-elasticity. However, Ternary or other Nickel-Titanium alloys can be achieved for different properties. All incoming Nitinol raw materials are subjected to third party inspection to ensure they meet proprietary specifications for chemistry, transformation temperature, material homogeneity, and microstructure. To promote an exceptionally smooth and uniform surface finish quality, all wire and tube products utilize a high precision single and/or multi crystalline diamond drawing die technology to reach the final wire diameter.
Nitinol Round Wires
The ingredients are strictly subdivided to reduce phase change temperature fluctuations and make the functional performance of materials and devices more consistent.
As one of the key indicators of nickel-titanium alloy superelasticity, the actual action AfTemperature is often used to evaluate the effective performance of superelasticity. ASTM F2063-18 stipulates that the nickel content is 54.5~57.0mass%. However, since the actual action Af temperature is very sensitive to the composition, it is extremely important to subdivide the composition of the nickel-titanium alloy. Therefore, Pell Technology uses subdivided alloy codes to identify alloys.
Delivery Status
Straightening super elastic state (SE)
Cold working condition (CW), subsequent heat treatment is required
Wire shape
Nickel titanium round wire
NiTi flat wire, square wire
Nickel titanium rope
Silk surface condition
Black surface oxidation state
Light oxidation state (golden to brown)
Clean state
Bright state
Super bright state®
Grinding state
Wire packaging
I-shaped wheel: Per Technology will ensure that the nickel-titanium wire is evenly distributed on the packaging tray without breakage or random lines;
Fixed length: Pell Technology can cut to fixed length according to customer needs;
Wire diameter tolerance
Mechanical behavior
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