Customization: | Available |
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Application: | Industrial Roller Shaft |
certification: | IATF16949 |
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The Surgical Robot Carbon Fiber Arm is a high-performance robotic arm specifically designed for modern surgical robots. Manufactured using advanced carbon fiber composite materials, it features lightweight construction, high strength, and exceptional precision. This arm is widely used in minimally invasive surgery, orthopedic surgery, neurosurgery, and other fields, significantly enhancing surgical accuracy and operational flexibility.
Lightweight Design: Made from carbon fiber composite materials, it is lightweight, reducing the overall load on the surgical robot and improving operational flexibility.
High Strength: Carbon fiber materials offer exceptional strength, ensuring stability and durability in complex surgical environments.
High Precision: Precision manufacturing ensures high-accuracy operations during surgery, minimizing errors and improving success rates.
Corrosion Resistance: Carbon fiber materials exhibit excellent corrosion resistance, making them suitable for various sterilization and cleaning environments, thereby extending service life.
Biocompatibility: The materials meet medical-grade standards, ensuring biocompatibility with human tissues and reducing post-operative complications.
Material: High-strength carbon fiber composite
Weight: 30%-50% lighter than traditional metal arms
Load Capacity: Maximum load capacity of 5kg
Precision: Operational accuracy of up to 0.1mm
Temperature Range: -20°C to 120°C
Sterilization Methods: Supports high-temperature high-pressure sterilization, chemical sterilization, and other methods.
Minimally Invasive Surgery: Suitable for laparoscopic surgery, thoracoscopic surgery, and other minimally invasive procedures, reducing patient trauma and recovery time.
Orthopedic Surgery: Used in joint replacement, spinal surgery, and other procedures, providing high-precision operational support.
Neurosurgery: Offers stable and precise operations in delicate brain and nervous system surgeries.
Other Surgical Fields: Applicable to cardiac surgery, urology, and other complex surgeries.
Improved Surgical Efficiency: Lightweight and high-precision design significantly enhances surgical efficiency and success rates.
Reduced Surgeon Fatigue: The lightweight arm reduces the operational burden on surgeons, minimizing fatigue during prolonged surgeries.
Extended Equipment Lifespan: Corrosion resistance and high-strength materials extend the arm's service life and lower maintenance costs.
Enhanced Patient Safety: High-precision operations and biocompatible materials reduce surgical risks and improve patient safety.
With continuous advancements in medical technology, the application of surgical robots is expanding globally. As a core component of surgical robots, the demand for carbon fiber arms is expected to grow steadily. In the coming years, the global surgical robot market is projected to maintain rapid growth, with the market share of carbon fiber arms also increasing.
The Surgical Robot Carbon Fiber Arm, with its lightweight, high-strength, and high-precision features, is becoming an indispensable component of modern surgical robots. It not only improves surgical accuracy and efficiency but also provides greater safety and comfort for both surgeons and patients. As technology continues to advance, carbon fiber arms will play an even more significant role in the future of medical fields.
For more detailed information or customized solutions, please contact our sales and technical support team.
Item No. | R1211 | Carbon Yarn | Toray 3K/T700 |
weight | 24g/piece | Material | 100% Carbon Fiber |
diameter | 10mm or Customized | density | 1.65g/cm³ |
Length | 0.5M or Customized | HS. Code | 6815120000 |
Transport Package | Bubble Bag and Carton | Package | 100 pieces/carton |
Origin | Jiangsu/China | Production Capacity | 40,000 a year |
Loding Port | Shanghai | Leadtime | 20-40days |
Material property test | |
Typical Properties | Detection value |
0°Tensile Strength | 1800 Mpa |
0°Tensile Modulus | 155 Gpa |
0°Tensile Strain | 1.18% |
90°Tensile Strength | 85Mpa |
90°Tensile Modulus | 9Gpa |
0°Flexural Strength | 1600Mpa |
0°Flexural Modulus | 120Gpa |
Interlaminer Shear Strength | 80Mpa |
±45°In-Plane Shear Strength | 90Mpa |
±45°In-Plane Shear Modulus | 5Gpa |
Test laboratory: we has passed CNAS laboratory accreditation certificate.The testing center covers an area of about 3,100 square meters and has a control system covering all processes from raw materials to products. The testing scope covers mechanical properties, weather resistance, physical properties and chemical analysis and other types of testing. The main items include tensile test, compression test, bending test, fatigue test, composite wire tensile test, glass transition temperature, fiber content, resin acid number and epoxy equivalent test.