MITCalc Epicyclic Gear Design Review
If you are in need of a reliable and efficient tool for the geometric and strength design of epicyclic gearing, look no further than MITCalc Epicyclic Gear Design. This powerful calculation software is packed with features that make it a must-have for engineers and designers working in the field of mechanical engineering.
Features:
- Calculation of helical and straight toothing
- Automatic design of a transmission with minimal input requirements
- Design for entered coefficients of safety
- Calculation of complete geometric parameters, including corrected toothing
- Optimization of toothing through proper correction techniques
- Calculation of strength parameters and safety checks
- Supplementary calculations for existing gear parameters, shaft design, and dimension checks
- Support for 2D CAD (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD) and 3D CAD (Autodesk Inventor, SolidWorks)
- Drawings of accurate tooth shapes with X, Y coordinates
Standards:
The calculations in MITCalc Epicyclic Gear Design are based on procedures, algorithms, and data from various industry standards, including ISO 6336, ISO 1328, DIN 867, DIN 3960, DIN 3990, ISO 6336-5, and others. This ensures that your designs are in line with established best practices and industry guidelines.
Benefits:
With MITCalc Epicyclic Gear Design, you can streamline your design process and ensure the reliability and efficiency of your epicyclic gearing systems. The software’s advanced features and support for popular CAD platforms make it a versatile tool for mechanical engineers and designers.
Conclusion:
Overall, MITCalc Epicyclic Gear Design is a comprehensive and user-friendly software solution for the design and analysis of epicyclic gearing systems. Whether you are working on a new design or optimizing an existing one, this software has everything you need to get the job done efficiently and accurately.
Reliability | Strength parameters | DIN 3990 | Gear parameters | Safety checks | Efficiency | Correction techniques | 2D CAD | Transmission design | MITCalc | Mechanical engineering | Shaft design | Epicyclic Gear Design | Analysis | Industry standards | Best practices | Calculation software | Straight toothing | DIN 867 | ISO 6336 | AutoCAD | ISO 1328 | CAD platforms | Helical toothing | SolidWorks | Geometric parameters | DIN 3960 | Dimension checks | 3D CAD