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Project Description: C++ Industrial Gear Design & Lewis Stress Analyzer

This project features a high-precision computational tool developed in C++ to automate the geometric design and structural safety validation of industrial spur gears, built on an Object-Oriented Programming (OOP) architecture to ensure modularity and precision. By integrating the Lewis Bending Stress theory, the software performs automated calculations for essential engineering parameters—including Pitch Diameter, Addendum, and Dedendum—while dynamically assigning the Lewis Form Factor based on the specific tooth count. A standout feature of this analyzer is its intelligent decision-making capability, which evaluates the calculated stress levels to provide prioritized material recommendations, such as Cast Iron, Carbon Steel, or Alloy Steel, ensuring the designed components can withstand their intended operational loads. The system delivers a professional engineering report with real-time feedback and two-decimal accuracy, making it a reliable asset for rapid prototyping and industrial manufacturing readiness.

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