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High-Purity Nitinol Wire for Medical Devices ASTM F2063

High-Purity Nitinol Wire for Medical Devices ASTM F2063

Наименование марки: DLX
Номер модели: провод nitinol
МОК: 5 кг
Условия оплаты: L/C, D/A, D/P, T/T, Western Union, Moneygram
Подробная информация
Место происхождения:
Китай Цзянсу
Сертификация:
CE
Форма:
Круглый, квадратный, бесшовный, сварный
Сплав тип:
Утюг хромия никеля
Преимущество:
Быстрый срок поставки
Высокая температурная стойкость:
До 1093 °C
Модуль эластичности:
205 ГПа
Размер:
6~500mm
Поверхностная обработка:
Анодированный, почищенный щеткой, законченная мельница, отполировала
Техника:
горячекатаный, горячий ковать, холодный - нарисованный
Низкая температурная сопротивление:
До -196 ° C
Торговая марка:
Хуона
Удельное тепло:
448 J/kg-°C
Магнитная проницаемость:
1,0011
Содержание титана:
20,25-2,75%
Марка No:
Сплавы 625 NS3306 NO6625 2.4856
Механизм:
Хороший
Выделить:

ASTM F2063 Nitinol wire

,

medical grade Nitinol wire

,

high-purity Nitinol alloy wire

Характер продукции
High-Purity Nitinol Wire: Trends, Grades, and Medical Device Applications
Product Specifications
Attribute Value
Shape Round, Square, Seamless, Welded
Alloy Type Nickel Chromium Iron
Advantage Fast Delivery Time
High Temperature Resistance Up to 1093 °C
Modulus Of Elasticity 205 GPa
Size 6~500mm
Surface Treatment Anodized, Brushed, Mill Finished, Polished
Technique Hot Rolled, Hot Forged, Cold Drawn
Low Temperature Resistance Up to -196 °C
Trademark HUONA
Specific Heat 448 J/kg-°C
Magnetic Permeability 1.0011
Titanium Content 2.25-2.75%
Brand No Alloys 625 NS3306 NO6625 2.4856
Machinability Good
Product Overview
High-Purity Nitinol Wire for Medical Devices ASTM F2063 0

High-purity Nitinol wire is a premium alloy revolutionizing medical devices with its exceptional shape memory and superelastic properties. Composed of an ultra-clean nickel-titanium blend with over 99.9% purity, this wire delivers superior performance with minimal impurities that could compromise functionality. Its lightweight, corrosion-resistant, and biocompatible characteristics make it ideal for implants and tools requiring flexibility and durability within the human body.

Technical Specifications by Grade
Grade Chemical Composition (Main Elements, Balance Ti) 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
Material Composition & Properties

Our high-purity Nitinol wire begins with approximately 50% nickel and 50% titanium, sourced from premium suppliers to maintain carbon levels below 0.02% and ultra-low oxygen content. This exceptional purity enhances biocompatibility and reduces fatigue, enabling the wire to endure millions of cycles without failure. Rigorous testing, including spectrometry, ensures each batch meets the stringent 99.9% purity standard.

Key Advantages
  • Superior shape memory and superelastic properties
  • Exceptional corrosion resistance with minimal pitting
  • Reduced nickel leaching for safer long-term implants
  • Customizable transition temperatures (-20°C to 100°C)
  • Available in diameters from 0.05mm to 3mm
  • FDA-compliant for medical applications
Medical Applications

High-purity Nitinol wire excels in medical device applications including vascular stents that expand precisely within arteries, flexible guidewires for minimally invasive procedures, orthodontic wires for gentle tooth movement, and surgical clips requiring precision. Its biocompatibility and corrosion resistance make it particularly valuable for implants like heart valves and blood clot filters.

High-Purity Nitinol Wire for Medical Devices ASTM F2063 1 High-Purity Nitinol Wire for Medical Devices ASTM F2063 2 High-Purity Nitinol Wire for Medical Devices ASTM F2063 3
Industry Trends

The Nitinol medical device market reached approximately $4.1 billion in 2024, with high-purity wire specifically projected to grow from $600 million in 2025 to $1.5 billion by 2033 at a 9% CAGR. This growth is driven by increasing demand for minimally invasive surgical procedures, advancements in medical robotics, and expanding applications in electric vehicle thermal management systems.

Manufacturing Capabilities

Our 12,000㎡ ISO 9001-certified facility boasts 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 to ensure they meet exacting customer specifications.

High-Purity Nitinol Wire for Medical Devices ASTM F2063 4 High-Purity Nitinol Wire for Medical Devices ASTM F2063 5 High-Purity Nitinol Wire for Medical Devices ASTM F2063 6 High-Purity Nitinol Wire for Medical Devices ASTM F2063 7
Frequently Asked Questions
What is high-purity Nitinol wire?

High-purity Nitinol wire is a nickel-titanium alloy wire with over 99.9% purity, renowned for its shape memory, superelasticity, and biocompatibility in medical devices.

What materials are used in high-purity Nitinol wire?

It's composed of approximately 50% nickel and 50% titanium, with ultra-low impurities like carbon (<0.02%) and oxygen to ensure superior performance and corrosion resistance.

What are the key grades of high-purity Nitinol wire?

Grades include superelastic (high elasticity) and shape memory (heat-activated), optimized for medical applications with precise transition temperatures.

What are the main medical device applications of high-purity Nitinol wire?

It's used in stents, guidewires, orthodontic wires, catheter components, and surgical implants due to its flexibility and biocompatibility.

How does high-purity Nitinol wire resist corrosion?

Its titanium-rich oxide layer provides exceptional resistance to bodily fluids, saline, and acids, making it ideal for long-term medical implants.

What are the industry trends for high-purity Nitinol wire?

The market is growing at a 9% CAGR, driven by minimally invasive medical devices, robotics, and EVs, with emphasis on sustainable sourcing and high-purity standards.

What is the tensile strength of high-purity Nitinol wire?

Superelastic grades range from 900-1600 MPa, offering high strength and elasticity for medical applications.

What is the transition temperature range for high-purity Nitinol wire?

It varies from -20°C to 40°C for superelastic and 0°C to 100°C for shape memory grades, tailored for body temperature activation in medical devices.