The 3.5mm Self Tapping Orthopedic Cortical Screws 100 Pack are high-quality orthopedic implants developed to provide secure fixation in cortical bone during fracture repair, trauma surgery, reconstructive procedures, and internal fixation. Designed to meet the demanding requirements of modern orthopedic surgery, these precision-manufactured screws deliver excellent stability, reliable thread engagement, and dependable mechanical performance across a wide range of clinical applications.
The 3.5 mm self-tapping cortical screw is one of the most commonly used implant sizes in orthopedic surgery. Its self-tapping thread design eliminates the need for separate thread cutting in many surgical techniques, allowing the screw to create its own thread path within the prepared pilot hole. This feature helps improve surgical efficiency, reduces operative time, and provides secure fixation while maintaining excellent purchase within cortical bone.
Manufactured from premium medical-grade stainless steel or titanium alloy, these cortical screws offer exceptional strength, corrosion resistance, and long-term biocompatibility. Precision CNC machining ensures accurate thread geometry, consistent dimensional tolerances, and smooth insertion characteristics. The high-quality materials maintain structural integrity under physiological loading conditions and support reliable fracture stabilization throughout the healing process.
The carefully engineered thread profile provides strong cortical bone engagement, while the precision screw head is designed for secure engagement with compatible orthopedic screwdrivers. This combination allows controlled insertion, dependable torque transmission, and accurate implant placement during orthopedic procedures. The polished surface finish minimizes insertion resistance while maintaining the mechanical properties required for stable internal fixation.
The Orthopedic Cortical Screws – 3.5 mm Self-Tapping are widely used with 3.5 mm dynamic compression plates (DCP), limited contact dynamic compression plates (LC-DCP), locking compression plate (LCP) systems where appropriate, reconstruction plates, neutralization plates, and other compatible orthopedic fixation systems. They are suitable for fracture fixation involving the upper and lower extremities, including the humerus, radius, ulna, clavicle, tibia, fibula, pelvis, and other anatomical regions requiring cortical bone fixation.
This pack of 100 screws is ideal for hospitals, orthopedic departments, trauma centers, ambulatory surgical facilities, and medical distributors requiring a dependable inventory of commonly used orthopedic implants. The screws are individually precision-manufactured to ensure consistent quality and compatibility with standard orthopedic instrumentation and surgical techniques.
Designed for professional orthopedic use, these implants comply with strict manufacturing standards for dimensional accuracy and mechanical reliability. The Orthopedic Cortical Screws – 3.5 mm Self-Tapping (Pack of 100) provide orthopedic surgeons with dependable fixation performance for trauma, reconstructive surgery, and fracture management.
Key Features
- Premium 3.5 mm Self-Tapping Orthopedic Cortical Screws
- Pack contains 100 precision-manufactured screws
- Self-tapping thread design improves surgical efficiency
- Provides secure fixation in cortical bone
- Manufactured from premium medical-grade stainless steel or titanium alloy
- Precision CNC-machined threads for consistent performance
- Excellent mechanical strength and corrosion resistance
- Compatible with standard 3.5 mm orthopedic plating systems
- Smooth insertion with reliable torque transmission
- Suitable for trauma, fracture fixation, and reconstructive surgery
- Professional-quality implants for orthopedic surgical applications
- Precision-engineered for consistent clinical performance
Product Specifications Table
| Specification | Details |
|---|---|
| Product Name | Orthopedic Cortical Screws – 3.5 mm Self-Tapping (Pack of 100) |
| Implant Type | Cortical Bone Screw |
| Screw Diameter | 3.5 mm |
| Thread Type | Self-Tapping |
| Pack Size | 100 Screws |
| Material | Medical-Grade Stainless Steel or Titanium Alloy |
| Surgical Specialty | Orthopedic Surgery, Trauma Surgery |
| Primary Applications | Fracture Fixation, Internal Fixation, Bone Reconstruction |
| Plate Compatibility | 3.5 mm DCP, LC-DCP, LCP (where applicable), Reconstruction Plates |
| Sterility | Supplied according to manufacturer specifications |
| Intended Users | Orthopedic Surgeons and Trauma Specialists |
| Usage | Single-Use Orthopedic Implant |
FAQs
1. What are 3.5 mm self-tapping cortical screws used for?
These screws are used for internal fixation of cortical bone during fracture repair, trauma surgery, osteotomy, and reconstructive orthopedic procedures.
2. What is the advantage of a self-tapping cortical screw?
The self-tapping design allows the screw to form its own threads in the prepared pilot hole, reducing the need for separate tapping in many surgical techniques and improving procedural efficiency.
3. Which orthopedic plates are compatible with these screws?
These screws are commonly used with compatible 3.5 mm Dynamic Compression Plates (DCP), Limited Contact Dynamic Compression Plates (LC-DCP), Locking Compression Plate (LCP) systems where indicated, and reconstruction plates.
4. What materials are available for these screws?
Depending on the product configuration, the screws are manufactured from medical-grade stainless steel or titanium alloy, both offering excellent strength, corrosion resistance, and biocompatibility.
5. Are these orthopedic cortical screws reusable?
No. Orthopedic Cortical Screws – 3.5 mm Self-Tapping are single-use sterile implants intended for implantation in accordance with the manufacturer’s instructions and should not be reused.
6. What is included in the package?
The package contains 100 precision-manufactured 3.5 mm self-tapping cortical screws, making it suitable for hospitals, orthopedic surgery centers, medical distributors, and healthcare facilities that require a reliable inventory of commonly used orthopedic implants.

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