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MITCalc Compression springs Free Download

MITCalc Compression Springs Review

Introduction

MITCalc Compression Springs is a comprehensive software designed for the geometric and strength designs of helical compression cylindrical springs. These springs are typically made of wires and rods of circular sections, cold formed, and can be loaded with static or fatigue loading.

Main Features

This application, developed in MS Excel, is a powerful tool that supports both Imperial and Metric units. It offers a wide range of functionalities to assist engineers and designers in their spring design process, including:

  • Automatic design of a spring
  • Selection of an optimal alternative of spring design considering strength, geometry, and weight
  • Static and dynamic strength checks
  • Calculation of working forces of a spring with known production and installation dimensions
  • Calculation of installation dimensions based on known loading and production parameters
  • A table of commonly used spring materials according to ISO, ASTM/SAE, DIN, BS, JIS, and others
  • Support for 2D and 3D CAD software such as AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, Autodesk Inventor, and SolidWorks

Technical Details

The calculation process of MITCalc Compression Springs is based on data, procedures, algorithms, and standards from specialized literature such as EN 13906-1, DIN 2089-1, and DIN 2095. This ensures accuracy and reliability in the design and analysis of compression springs.

Benefits

Engineers and designers can benefit greatly from using MITCalc Compression Springs in their projects. The software provides a user-friendly interface, precise calculations, and detailed reports to help optimize spring designs for various industrial applications.

Conclusion

In conclusion, MITCalc Compression Springs is a valuable tool for anyone involved in the design and analysis of helical compression cylindrical springs. With its advanced features and support for multiple CAD platforms, this software streamlines the design process and ensures the reliability and efficiency of spring designs.

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