| Payment Terms | L/C,D/A,D/P,T/T,Western Union, |
| Supply Ability | 500 tons per month |
| Delivery Time | 5-8 Days |
| Thermal Expansion | 13-17 µm/mK |
| Wall Tolerance | ±3-5% |
| Alloy Or Not | Alloy |
| Standard Size | 1220mm*2440mm*3mm/4mm/5mm/6mm |
| Size | 5 to 250 mm |
| Elongation | 30-60% |
| Thermal Conductivity | 9.8 W/m·K |
| Ultimate Strength | 620-790 MPa |
| High Temperature Performance | Maintains strength and oxidation resistance at high temperatures |
| Nickel Content | 72% (Min) |
| Surface Treatment | Anodized,Brushed,Mill Finished,Polished |
| Tensile Strength Rm | 965 N/mm² |
| Hs Code | 7507120000 |
| Advantage | Fast Delivery Time |
| Tensile Strength | 760-1030 MPa |
| Brand Name | DLX |
| Model Number | Nickel Titanium Alloy Wire |
| Certification | CE |
| Place of Origin | China |
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Product Specification
| Payment Terms | L/C,D/A,D/P,T/T,Western Union, | Supply Ability | 500 tons per month |
| Delivery Time | 5-8 Days | Thermal Expansion | 13-17 µm/mK |
| Wall Tolerance | ±3-5% | Alloy Or Not | Alloy |
| Standard Size | 1220mm*2440mm*3mm/4mm/5mm/6mm | Size | 5 to 250 mm |
| Elongation | 30-60% | Thermal Conductivity | 9.8 W/m·K |
| Ultimate Strength | 620-790 MPa | High Temperature Performance | Maintains strength and oxidation resistance at high temperatures |
| Nickel Content | 72% (Min) | Surface Treatment | Anodized,Brushed,Mill Finished,Polished |
| Tensile Strength Rm | 965 N/mm² | Hs Code | 7507120000 |
| Advantage | Fast Delivery Time | Tensile Strength | 760-1030 MPa |
| Brand Name | DLX | Model Number | Nickel Titanium Alloy Wire |
| Certification | CE | Place of Origin | China |
| High Light | Superelastic Nitinol wire for stents ,Nitinol alloy biomedical guidewires ,Nitinol wire with superelastic properties | ||
| Attribute | Value |
|---|---|
| Thermal Expansion | 13-17 µm/mK |
| Wall Tolerance | ±3-5% |
| Alloy Composition | Nickel-Titanium Alloy |
| Standard Size | 1220mm*2440mm*3mm/4mm/5mm/6mm |
| Available Sizes | 5 to 250 mm |
| Elongation | 30-60% |
| Thermal Conductivity | 9.8 W/m·K |
| Ultimate Strength | 620-790 MPa |
| High Temperature Performance | Maintains strength and oxidation resistance at high temperatures |
| Nickel Content | 72% (Min) |
| Surface Treatment | Anodized, Brushed, Mill Finished, Polished |
| Tensile Strength Rm | 965 N/mm² |
| Hs Code | 7507120000 |
| Key Advantage | Fast Delivery Time |
| Tensile Strength | 760-1030 MPa |
Superelastic Nitinol wire represents a significant advancement in nickel-titanium alloy technology, combining exceptional flexibility with remarkable durability. This specialized wire features unique shape memory properties that allow it to stretch and return to its original form without permanent deformation, making it particularly valuable for biomedical applications such as stents and guidewires.
With a balanced composition of approximately 50% nickel and 50% titanium, our Nitinol wire offers superior corrosion resistance and biocompatibility, meeting the stringent requirements of medical device applications. Our production process ensures strict adherence to ASTM F2063 standards, guaranteeing reliable performance in critical medical and industrial environments.
Our superelastic Nitinol wire is manufactured with precision-controlled materials:
| Grade | Chemical Composition | Transformation Temperature (Af) Range | Tensile Strength (MPa) | Elongation (%) | Main Applications |
|---|---|---|---|---|---|
| NiTi-01M (Superelastic) | Ni: 54.5-57.0%, Ti: Balance | -25~35°C | 800-1100 | 10-20 | Medical orthodontic wires, root canal files, vascular stents |
| NiTi-02 | Ni: 55.0-56.5%, Ti: Balance | 0~80°C | 700-1000 | 8-15 | Shape memory alloys, temperature control devices |
| CuNiTi (Ternary Alloy) | Ni: 54.0-56.0%, Cu: 0.5-2.0%, Ti: Balance | -25~35°C | 850-1200 | 12-25 | Medical guidewires, sutures, staplers |
| NiTiFe | Ni: 54.5-57.0%, Fe: 0.1-2.0%, Ti: Balance | -50~20°C | 900-1300 | 10-18 | Low-temperature applications, aerospace components |
| NiTiCr | Ni: 54.5-57.0%, Cr: 0.1-0.5%, Ti: Balance | -20~40°C | 1000-1400 | 8-15 | High-strength medical devices, bone fixation devices |
Superelastic Nitinol wire serves critical functions across multiple industries:
Our 12,000㎡ ISO 9001-certified facility features complete capabilities for research, production, testing, and packaging, with an annual output of 1,200 tons. All products undergo rigorous simulated environment testing including high temperature, high pressure, and corrosion tests before dispatch.
We provide comprehensive multilingual after-sales support and technical consulting to ensure optimal product performance and application success.
A nickel-titanium alloy wire with exceptional flexibility and shape recovery, ideal for biomedical applications like stents and guidewires.
Approximately 50% nickel and 50% titanium, with trace amounts of carbon (<0.05%) and oxygen controlled for biocompatibility and performance.
Superelastic grades are tuned for high elasticity, with variations in transition temperatures (-20°C to 40°C) for specific biomedical or industrial uses.
Used in stents, guidewires, orthodontic wires, catheter components, and surgical tools due to its flexibility and biocompatibility.
Its titanium-rich oxide layer provides excellent resistance to bodily fluids, saline, and chemical environments, ensuring long-term implant safety.
Typically ranges from 800-1500 MPa, offering high strength and elasticity for demanding biomedical applications.
Company Details
Business Type:
Manufacturer,Seller
Year Established:
2002
Total Annual:
1000000-120000000+
Employee Number:
100~150
Ecer Certification:
Verified Supplier
Changzhou DLX Alloy Co., Ltd. was established in 2002 and has passed ISO9001 international quality management system certification and SGS certification.We initially focused on the production of resistance alloys. Over the past 20 years, we have continued to conduct research and development and now ... Changzhou DLX Alloy Co., Ltd. was established in 2002 and has passed ISO9001 international quality management system certification and SGS certification.We initially focused on the production of resistance alloys. Over the past 20 years, we have continued to conduct research and development and now ...
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