MITCalc Rolling Bearings I (SKF)

Product Review: MITCalc Rolling Bearings I (SKF)

MITCalc Rolling Bearings I (SKF) is a comprehensive software program designed for the selection, calculation, and checking of rolling bearings from the renowned company SKF. With a database of approximately 10,000 different rolling bearings in all basic types and designs, this program offers a wide range of solutions for engineers and designers working with bearings.

Strengths of MITCalc Rolling Bearings I (SKF)

  • Selection and check of a suitable bearing
  • Calculation of basic bearing parameters such as life and static safety
  • Calculation of adjusted bearing life according to the new ISO 281 methodology
  • Support for 2D CAD and 3D CAD in full calculation package
  • Includes auxiliary calculations for lubricant operational viscosity, mean loads, permitted bearing speed, and more
  • Utilizes data, procedures, and algorithms from specialized literature and standards

Who Should Use MITCalc Rolling Bearings I (SKF)

This software is ideal for mechanical engineers, design engineers, and anyone working with rolling bearings in various industries such as automotive, aerospace, machinery, and more. It is suitable for both beginners and experienced professionals looking to streamline the bearing selection and calculation process.

When to Use MITCalc Rolling Bearings I (SKF)

MITCalc Rolling Bearings I (SKF) should be used whenever there is a need to accurately select, calculate, and check rolling bearings for a specific application. Whether designing a new system or optimizing an existing one, this software provides the necessary tools and calculations to ensure the bearings meet the required performance criteria.

Overall, MITCalc Rolling Bearings I (SKF) is a valuable tool for engineers and designers seeking a reliable and efficient solution for working with rolling bearings from SKF. With its extensive database, advanced calculations, and support for CAD software, this program is a must-have for anyone involved in bearing design and selection.

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