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[Various aspects of developing polyfunctional pins for external fixation equipment and devices]
Ortopediia Travmatologiia I Protezirovanie
|February 1, 1989
Summary
This study determined optimal cutting part designs for polyfunctional rods. Researchers established maximum axial force (10 kgf) and torque (10 kgf/cm) for hand-inserted rods.
Area of Science:
- Materials Science
- Mechanical Engineering
- Agricultural Engineering
Context:
- Investigating polyfunctional rods for diverse applications.
- Utilizing standard experimental equipment for comparative analysis.
- Focusing on the cutting part design for optimal performance.
Purpose:
- To determine comparative characteristics of different polyfunctional rod cutting parts.
- To select an optimal construction for the cutting component.
- To establish permissible operational limits for hand-inserted rods.
Summary:
- Experimental investigations were conducted on standard equipment to evaluate polyfunctional rod cutting parts.
- Comparative characteristics were obtained to identify the most effective design.
- Permissible axial force was found to be 10 kgf, and torque was 10 kgf/cm for hand insertion.
Impact:
- Provides crucial data for designing efficient and durable polyfunctional rods.
- Establishes safety and performance benchmarks for hand tool insertion.
- Contributes to the optimization of tools used in various fields requiring polyfunctional rods.