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Nitinol Kirschner Wires Market – 0.02mm Black Nitinol Wire

Product Attributes
Surface state:Black oxidized state
Packaging:I-shaped wheel:no breakage,no  disordered lines,customizable ruler length
Delivery:1 – 7 days

 

Category: Tags: , , Product ID: 24685

Description

Nitinol Kirschner Wires Market Solution: 0.02mm Black Oxidized Nitinol Microfilament

Step confidently into the nitinol kirschner wires market with our 0.02mm Black Oxidized State Nickel Titanium Microfilament. Precision-engineered for advanced medical applications, this ultra-fine wire empowers your devices with exceptional flexibility, fatigue resistance, and biocompatibility. More than a material, it’s an enabling component for breakthrough surgical tools.


Engineered Nitinol Alloy: Superelasticity with Stability

Rather than relying on standard materials, we use premium medical-grade Nickel Titanium. The material demonstrates outstanding superelastic characteristics, permitting large strains while maintaining complete shape recovery.Consequently, the wire resumes its original form even after complex physiological stresses. Furthermore, its proven biocompatibility ensures long-term patient safety. Importantly, the alloy demonstrates excellent fatigue resistance, maintaining performance over thousands of cycles. For engineers seeking mechanical reliability and design freedom, this Nitinol is a top-tier solution.


Black Oxide Finish: Enhanced Control in Surgical Environments

We apply a black oxide coating using a controlled thermal oxidation process. As a result, the wire features a matte, glare-reducing surface ideal for high-precision procedures. In addition, this finish improves scratch resistance, increases surface hardness, and enhances lubricity, making tissue passage smoother. These qualities not only support surgical efficiency but also extend device life in demanding environments.


Ultra-Fine Diameter: Unlocking Minimally Invasive Access

With a core diameter of 0.02mm, this microfilament is tailored for delicate surgical tasks. Tight dimensional tolerances ensure high performance, even under extreme spatial constraints. Therefore, it enables accurate navigation through narrow anatomical pathways, such as small vessels or cranial bones. In addition to reducing trauma, the exceptional straightness and precise spooling simplify integration into high-precision devices.


Unlocking Multi-Use Potential in the Nitinol Kirschner Wires Market

This ultra-fine wire supports a wide range of demanding medical applications:

  • Micro-Kirschner Wires (K-wires): Offers fixation for small bone fragments with responsive superelasticity.

  • Guidewires: Provides torqueability and pushability for navigating tortuous vascular networks.

  • MIS Tools: Enables actuation in next-gen arthroscopic and endoscopic tools.

  • Orthodontics: Delivers controlled force through superelastic archwires.

  • MEMS Devices: Powers microscale actuation and sensing mechanisms.

  • Fine Sutures & Loops: Serves as the base for surgical loops with shape memory response.

Notably, these use cases demand consistent mechanical behavior, fatigue strength, and biocompatibility—all strengths of our microfilament.


Conclusion: Driving Innovation in the Nitinol Kirschner Wires Market

Whenever surgical accuracy is non-negotiable, this microfilament stands out as the gold standard.By combining ultra-fine dimensions with premium material and optimized surface finish, it supports the evolution of less invasive, higher-performing surgical technologies. As a result, medical innovators gain more control, more flexibility, and better outcomes. Let us help bring your next-generation devices to life—with wire designed for performance without compromise.

Diameter & Tolerance
Diameter(mm)
Tolerance(mm)
Diameter(mm)
Tolerance(mm)
Diameter(mm)
Tolerance(mm)
4.000-2.000
±0.025
0.350-0.260
±0.010
0.08-0.050
±0.005
2.000-1.000
±0.020
0.260-0.150
±0.007
0.050-0.025
±0.005
1.000-0.350
±0.010
0.150-0.080
±0.005
0.025-0.018
±0.003

 

•Mechanical properties
Max force(N)
Tensile(MPa)
Elongation %
Upper stress(MPa)
Residual strain(WT%)
At temp
Base on diam
≥1000 (1350)
≥10 (15)
≥400 (460)
<0.5 55.96
(10±10)
Base on diam
≥1000 (1350)
≥10 (15)
≥400 (460)
<0.5 56.1
(-30±10)
Base on diam
≥1000 (1350)
≥10 (15)
≥400 (460)
<0.5 50.0
(60±10)

▸ Expert Guidance: 24/7 support via nitinolwire.com

▸ Linkedin account:Ben Xiang | LinkedIn

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