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Strength Check

MITCalc - Timing Belts Calculation 1.14

MITCalc - Timing Belts Calculation 1.14: Geometric design and strength check of timing belt transmission strength check of toothed belt transmissions. Application is developed in MS Excel, is multi-language, supports Imperial and Metric units and solves the following main tasks: - Selection of the type of belt with a suitable output power. - Selection of an optimum transmission alternative in view of power, geometry and weight. - Option of designing a non-standard transmission. - Calculation of all necessary strength and geometrical parameters. - Calculation






MITCalc - Roller Chains Calculation 1.14: Design and strength check of roller chain transmission
MITCalc - Roller Chains Calculation 1.14

strength check of common chain transmissions using roller chains. Application is developed in MS Excel, is multi-language, supports Imperial and Metric units and solves the following tasks: - Selection of a power suitable type of chain. - Selection of an optimum transmission alternative regarding power, geometry and weight. - Calculation of geometric, strength, safety and operational parameters. - Calculation of power parameters and axis loads. -

chain transmission, ansi asme b29 3, strength check, din 8187, design, chain, ansi asme b29 1m, din 8164, din 8181, roller chain





MITCalc - Shafts Calculation 1.16: Geometrical design and complex strength check of shafts
MITCalc - Shafts Calculation 1.16

The calculation is designed for geometrical design and complex strength check of shafts. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units. Is based on AGMA, ISO and DIN standards and support many 2D and 3D CAD systems (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, Autodesk Inventor, SolidWorks, SolidEdge, Pro/E)

shaft, deflection, shafts, critical speed, strength check, design, din 743, bending angle, stress concentration, safety coefficients



MITCalc - Compression Springs 1.15: Geometric and strength designs of helical compression cylindrical springs
MITCalc - Compression Springs 1.15

strength designs of helical compression cylindrical springs made of wires and rods of circular sections, loaded with static or fatigue loading. Application is developed in MS Excel, is multi-language, supports Imperial and Metric units and solves the following main tasks: - Automatic design of a spring. - Selection of an optimal alternative of spring design in view of strength, geometry and weight. - Static and dynamic strength check. - Support for

dynamic strength check, springs, compression spring, static strength check, din 2095, cylindrical spring, spring, helical spring, en 13906 1, din 2089 1



MITCalc - Tension Springs 1.15: Geometric and strength designs of helical tension cylindrical springs
MITCalc - Tension Springs 1.15

strength designs of helical tension cylindrical springs made of wires and rods of circular sections, loaded with static loading. . Application is developed in MS Excel, is multi-language, supports Imperial and Metric units and solves the following main tasks: - Automatic design of the spring. - Selection of an optimal alternative of the spring design in view of strength, geometry and weight. - Strength check of the spring. - Support for Cold formed

en 13906 2, dynamic strength check, din 2089 2, springs, static strength check, cylindrical spring, spring, tension spring, helical spring, din 2097



MITCalc - Torsion Springs 1.15: Geometric and strength designs of spiral cylindrical torsion springs
MITCalc - Torsion Springs 1.15

strength designs of spiral cylindrical torsion springs made of wires and rods in circular sections, cold formed, loaded with a static or cyclic loading. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units and solves the following main tasks: - Automatic design of the spring. - Selection of the optimal design of the spring with respect to strength, geometry and weight. - Static and dynamic strength tests. -

en 13906 2, dynamic strength check, torsion spring, spiral spring, springs, static strength check, din 2088, cylindrical spring, spring



MITCalc - Force shaft connection 1.14: Designs and strength checks of force couplings of shafts with hubs
MITCalc - Force shaft connection 1.14

strength check of force couplings of shafts with hubs with a cylindrical contact area (Interference fit, clamping connection). The application provides solutions for the following tasks: - Design of force fits, possibly shrink fits. - Design of clamping connections with separated, or one-side cut hub. - Strength check of designed couplings. - Check of interference fit strained by additional radial force with bending moment. - Check of interference

connection, shaft, force couplings, ansi b4 1, iso 286, clamping connection, interference fit, din 7190


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