# Software Search For mitcalc tolerances

• ## mitcalc tolerances in title

#### MITCalc - Tolerances 1.20

Calculation includes tables and calculat...

Size :1836
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#### MITCalc - Tolerance analysis 1.19

Two programs for the tolerance analysis ...

Size :3718
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#### MITCalc - Pinned couplings 1.19

Geometric design and strength check of c...

Size :1963
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## mitcalc tolerances in description

MITCalc - Tolerances 1.20

This calculation includes tables and calculations for easy option of fits of machine parts and determination of their dimensional tolerances and deviations. Application is developed in MS Excel, is multi-language, supports Imperial and Metric units and solves the following main tasks: - Selection of suitable fits of machine parts according to the international standard ISO 286. - Determination of ...dimensional tolerances and deviations of machine parts according to the international standard ISO 286. - Selection of preferred fits of machine parts and determination of their dimensional tolerances and deviations according to ANSI B4.1. - Determination of non-prescribed limit deviations of linear and angular dimensions according to ISO 2768. - Automatic design of a fit for the given clearance or fit interference respectively. The data, procedures, algorithms and specialized literature and standards ANSI, ISO, DIN and others were used in the calculations. Used standards: ANSI B4.1, ANSI B4.2, ISO 286, ISO 1829, ISO 2768, EN 20286, JIS B 0401This module is a part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others.

Size :1836K
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MITCalc - Tolerance analysis 1.19

Two programs for the tolerance analysis of linear, 2D and 3D dimensional chains 1) Tolerance analysis of linear dimensional chains. The program is designed for tolerance analysis of linear (1D) dimensional chains. The program solves the following problems: - Tolerance analysis, synthesis and optimization of a dimensional chain using the arithmetic "WC" (Worst case) method, possibly the statistical ..."RSS" (Root Sum Squares) method. - Analysis of a dimensional chain deformed as a result of temperature change. - Extended statistic analysis of dimensional chain using the "6 Sigma" method. - Tolerance analysis of a dimensional chain during selective assembly including optimization of the number of assembled products. All solved tasks enable work with standardized tolerance values, both in designing and in optimization of the dimensional chain. 2) Tolerance analysis of 2-D and 3-D dimensional chains The program is designed for the tolerance analysis of two-dimensional (2-D) and three-dimensional (3-D) dimensional chains. The program solves the following problems: - Tolerance analysis of a dimensional chain using the "Worst case" method. - Tolerance analysis of a dimensional chain using the "Monte Carlo" method. In designing a dimensional chain, the program enables work with standardized tolerance values. Data, methods, algorithms and information from professional literature and ANSI, ISO, DIN and other standards are used in calculation. List of standards: ANSI B4.1, ISO 286, ISO 2768, DIN 7186.Application is developed in MS Excel, is multi-language and supports Imperial and Metric units. This module is a part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, bearings, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others.

Size :3718K
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MITCalc - Force shaft connection 1.20

The calculation is intended for geometrical design and 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 fit working at specific service temperature. The calculation is based on data, procedures and algorithms from specialized literature and standards ANSI, ISO, DIN and others. List of standards: ANSI B4.1, ISO 286, DIN 7190. This module is a part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others.

Size :2403K
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MITCalc - Shafts Calculation 1.24

The calculation is designed for geometrical design and complex strength check of shafts. Application is developed in MS Excel, is multi-language, supports Imperial and Metric units and solves the following main tasks: - Simple definition of installed shafts, including hollow ones. - Options of definitions of necking-down, recesses, grooves and calculation of the relevant coefficients of stress concentration. ...- Simple definition of spatial shaft load. - Calculation of reactions, courses of forces, moments, stress, deflection and bending angle of the shaft and others. - Calculation of critical speed and safety coefficients. - Support of 2D and 3D CAD (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, BricsCAD, ZWCAD, ProgeCAD, Autodesk Inventor, SolidWorks, SolidEdge, Creo). The calculation is based on data, procedures, algorithms and data from specialized literature and standards AGMA, ISO, DIN and BS. List of standards (DIN 743).This module is a part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others.

Size :2157K
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MITCalc - Profiles Calculation 1.20

The calculation solves area characteristics of profiles created in a simple graphic editor and mass characteristics of solids created by extrusion or rotation of the profile. Application is developed in MS Excel, is multi-language, supports Imperial and Metric units and solves the following tasks: - Creation of a profile in a simple graphic editor. - Calculation of area characteristics (Ix, Sx) for ...main axes passing through the centre of gravity. - Calculation of area characteristics (Ix, Sx) for randomly turned axes passing through the centre of gravity, including a graph. - Calculation of characteristics for the turned axes which pass through a random point. - Calculation of volume and mass characteristics (V, m, Im) of solids created by extrusion or rotation of the profile. This module is a part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others

Size :1701K
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MITCalc - Roller Chains Calculation 1.21

The calculation is designed for a geometrical design and 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. - Support of 2D and 3D CAD (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, BricsCAD, ZWCAD, ProgeCAD, Autodesk Inventor, SolidWorks, SolidEdge, Creo). The application includes corresponding databases of roller chains. The calculations use data, procedures, algorithms and data from ANSI/ASME, ACA (American Chain Association) ISO, DIN, BS and JIS. Used standards: ANSI/ASME B29.1M (Dec2001), ANSI/ASME B29.3, DIN 8187, DIN 8181, DIN 8181, DIN 8164, DIN 8150, ISO R606, ISO 1275, BS 228, JIS B1801, JIS B1803. This module is a part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others

Size :2010K
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MITCalc - Multi pulley calculation 1.21

The calculation is developed for geometrical designs of belt and chain transmissions with more sprocket wheels (max. 15). Application is developed in MS Excel, is multi-language, supports Imperial and Metric units and solves the following main tasks: - Calculation of the necessary length of the belt (chain) using known positions and diameters of sprocket wheels - Achieving the desired (table) length ...of the belt / chain using a change in the position of the selected sprocket wheel. - Calculation of geometry (angles of wrapping, numbers of teeth in engagement, axis distances, etc.) - Calculation of the radial force acting on the sprocket wheel axis. - Support of 2D CAD systems (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, BricsCAD, ZWCAD). This module is a part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others

Size :1672K
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MITCalc Straight beams calculation 1.21

The application is designed for calculations of straight, maximum three times static indefinite beams with constant axis-symmetrical profiles. Application is developed in MS Excel, is multi-language, supports Imperial and Metric units and solves the following main tasks: - Simple definition of the type of beam and its loading with visual check. - Calculation of area characteristics of 20 types of ...cross sections. - Calculation of reactions in supports. - Calculation of minimum / maximum bending moment, stress and deflection of the beam. - Calculation and graphic illustration of the moment, stress, deflection and bending angle of the loaded beam. The application includes a table of materials and a table of area characteristics of W, S, C, L profiles acc. to ANSI/AISC and I, U, L a T profiles acc. to DIN/ISO. Used standards: DIN 1025, 1026, 1028, 1029, 1024, AISC W, S, C, L, LU This module is a part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others

Size :1892K
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MITCalc Slender strut buckling 1.20

The program is designed to calculate the optimum cross-section and perform strength check of slender struts strained for buckling. The program includes: - Selection of six basic types of buckling. - Calculation of area characteristics of 20 types of cross-sections. - Design of optimum profile accommodating the set load. - Strength check of the strut. - Calculation and graphical representation of permitted ...stress dependent on slenderness rate. - A table of materials and a table of area characteristics of W, S, C and L profiles according to ANSI/AISC and I, U, L and T profiles according to DIN/ISO. The calculation is based on data, procedures, algorithms (Johnson, Tetmajer, Euler, Secant) and data from specialized literature and AISC, ISO, DIN and BS standards. List of standards (DIN 1025, 1026, 1028, 1029, 1024, AISC W, S, C, L, LU ... ) This module is a part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connections, tolerances and many others

Size :1840K
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MITCalc - Technical Formulas 1.19

Solutions to dozens of basic formulas from physics, technology and mechanical engineering. Help, pictures as well as many selection tables with values of various coefficients and material properties are available for the formulas. The following matters are solved in the workbook: - Characteristics of solids (volume, surface, weight, inertia moment) - Rectilinear motion (speed, acceleration, trajectory, ...time, force, energy....) - Rotation motion (speed, acceleration, trajectory, time, force, energy....) - Thermal expansion (longitudinal, cubical) - Friction (shear, rolling, journal, rope, belt) - Design of engine capacity (pump, blower, hoist, crane) This module also includes a workbook with conversion of units and many technical tables. Application is developed in MS Excel, is multi-language, supports Imperial and Metric units and is a part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others.

Size :1557K
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MITCalc 1.73

Size :50168K
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MITCalc - Spur Gear Calculation 1.24

Geometric design and strength check of spur gear with straight and helical toothing. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units and solves the following main tasks: - Calculation of helical and straight toothing. - Automatic design of a transmission with the minimum number of input requirements. - Design for entered coefficients of safety (static, ...dynamic). - Calculation of complete geometric parameters (including corrected toothing). - Optimization of toothing by use of proper correction (balancing specific slips, miminizing specific slips, strength...). - Calculation of strength parameters, safety check. - Design of gearing for exact axis distance. - Complete calculation of tolerances in accordance with ISO 1328 (ANSI/AGMA 2015-1-A01) - Simple defining of the new materials according ISO 6336-5 (ANSI/AGMA 2001--D04) - Comprehensive theoretical part in the documentation. - Supplementary calculations (calculation of parameters of the existing gear, temperature rise, design of shafts, check dimensions). - Drawings of an accurate tooth shape including data (X,Y coordinates). - Support of 2D and 3D CAD systems. (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, BricsCAD, ZWCAD, ProgeCAD, Autodesk Inventor, SolidWorks, SolidEdge, Creo). The calculations use procedures, algorithms and data from standards ANSI, ISO, DIN, BS and specialized literature. Used standards: ISO 6336-1:2006; ISO 6336-2:2006; ISO 6336-3:2006; ISO 6336-5:2006, ISO 1265; ISO 1328-1:1997; ISO 1328-2:1997; ISO 1122-1:1998, ANSI/AGMA 2001-D04 , AGMA 908-B89, ANSI/AGMA 2015- 1-A01, ANSI/AGMA 2015-2-A06 This module is a standalone part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others.

Size :4834K
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MITCalc - Internal Spur Gear Calculation 1.21

Geometric design and strength check of internal spur gear with straight and helical toothing. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units and solves the following main tasks: - Calculation of helical and straight toothing. - Automatic design of a transmission with the minimum number of input requirements. - Design for entered coefficients of safety ...(static, dynamic). - Calculation of complete geometric parameters (including corrected toothing). - Optimization of toothing by use of proper correction (balancing specific slips, miminizing specific slips, strength...). - Calculation of strength parameters, safety check. - Design of gearing for exact axis distance. - Complete calculation of tolerances in accordance with ISO 1328 (ANSI/AGMA 2015-1-A01) - Simple defining of the new materials according ISO 6336-5 (ANSI/AGMA 2001--D04) - Comprehensive theoretical part in the documentation. - Supplementary calculations (calculation of parameters of the existing gear, temperature rise, design of shafts, check dimensions). - Drawings of an accurate tooth shape including data (X,Y coordinates). - Support of 2D and 3D CAD systems. (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, BricsCAD, ZWCAD, ProgeCAD, Autodesk Inventor, SolidWorks, SolidEdge, Creo). The calculations use procedures, algorithms and data from standards ANSI, ISO, DIN, BS and specialized literature. Used standards: ISO 6336-1:2006; ISO 6336-2:2006; ISO 6336-3:2006; ISO 6336-5:2006, ISO 1265; ISO 1328-1:1997; ISO 1328-2:1997; ISO 1122-1:1998, ANSI/AGMA 2001-D04 , AGMA 908-B89, ANSI/AGMA 2015- 1-A01, ANSI/AGMA 2015-2-A06 This module is a standalone part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others.

Size :4903K
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MITCalc - Planet Gear Calculation 1.17

Geometric design and strength check of planetary gearing with straight and helical toothing. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units and solves the following main tasks: - Calculation of helical and straight toothing. - Automatic design of a transmission with the minimum number of input requirements. - Design for entered coefficients of safety ...(static, dynamic). - Calculation of complete geometric parameters (including corrected toothing). - Optimization of toothing by use of proper correction (balancing specific slips, miminizing specific slips, strength...). - Calculation of strength parameters, safety check. - Design of gearing for exact axis distance. - Complete calculation of tolerances in accordance with ISO 1328 (ANSI/AGMA 2015-1-A01) - Simple defining of the new materials according ISO 6336-5 (ANSI/AGMA 2001--D04) - Comprehensive theoretical part in the documentation. - Supplementary calculations (calculation of parameters of the existing gear, temperature rise, design of shafts, check dimensions). - Drawings of an accurate tooth shape including data (X,Y coordinates). - Support of 2D and 3D CAD systems. (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, BricsCAD, ZWCAD, ProgeCAD, Autodesk Inventor, SolidWorks, SolidEdge, Creo). The calculations use procedures, algorithms and data from standards ANSI, ISO, DIN, BS and specialized literature. Used standards: ISO 6336-1:2006; ISO 6336-2:2006; ISO 6336-3:2006; ISO 6336-5:2006, ISO 1265; ISO 1328-1:1997; ISO 1328-2:1997; ISO 1122-1:1998, ANSI/AGMA 2001-D04 , AGMA 908-B89, ANSI/AGMA 2015- 1-A01, ANSI/AGMA 2015-2-A06 This module is a standalone part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others.

Size :3972K
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MITCalc Gear rack design 1.11

Geometric design and strength check of gear rack with straight and helical toothing. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units and solves the following main tasks: - Calculation of helical and straight toothing. - Automatic design of a transmission with the minimum number of input requirements. - Design for entered coefficients of safety (static, ...dynamic). - Calculation of complete geometric parameters (including corrected toothing). - Optimization of toothing by use of proper correction (balancing specific slips, miminizing specific slips, strength...). - Calculation of strength parameters, safety check. - Design of gearing for exact axis distance. - Complete calculation of tolerances in accordance with ISO 1328 (ANSI/AGMA 2015-1-A01) - Simple defining of the new materials according ISO 6336-5 (ANSI/AGMA 2001--D04) - Comprehensive theoretical part in the documentation. - Supplementary calculations (calculation of parameters of the existing gear, temperature rise, design of shafts, check dimensions). - Drawings of an accurate tooth shape including data (X,Y coordinates). - Support of 2D and 3D CAD systems. (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, BricsCAD, ZWCAD, ProgeCAD, Autodesk Inventor, SolidWorks, SolidEdge, Creo). The calculations use procedures, algorithms and data from standards ANSI, ISO, DIN, BS and specialized literature. Used standards: ISO 6336-1:2006; ISO 6336-2:2006; ISO 6336-3:2006; ISO 6336-5:2006, ISO 1265; ISO 1328-1:1997; ISO 1328-2:1997; ISO 1122-1:1998, ANSI/AGMA 2001-D04 , AGMA 908-B89, ANSI/AGMA 2015- 1-A01, ANSI/AGMA 2015-2-A06 This module is a standalone part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others.

Size :5128K
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MITCalc - Tension Springs 1.22

Size :3219K
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MITCalc - Springs - 15 types 1.17

The calculation is to be used for geometrical and strength design of metal springs of various types and designs, subjected to static or cyclic loads. Application is developed in MS Excel, is multi-language, supports Imperial and Metric units and solves the following main tasks: 1) Geometrical design and calculation of working cycle parameters for metal springs of the following types and designs: - ...Helical cylindrical compression springs of round wires and bars - Helical cylindrical compression springs of rectangular wires and bars - Helical conical compression springs of round wires and bars - Helical conical compression springs of rectangular wires and bars - Belleville springs - Helical cylindrical tension springs of round wires and bars - Helical cylindrical tension springs of rectangular wires and bars - Spiral springs - Helical cylindrical torsion springs made of round wires a bars - Helical cylindrical torsion springs made of rectangular wires and bars - Torsion bar springs with round section - Torsion bar springs with rectangular section - Leaf springs with constant profile - Leaf springs with parabolic profile - Laminated leaf springs 2) Automatic proposal (finding) of a spring with suitable dimensions. 3) Static and dynamic strength check. The application includes a table of commonly used spring materials according to EN, ASTM/SAE, DIN, BS, JIS, UNI, SIS, CSN and others. The calculation is based on data, procedures, algorithms and data from specialized literature and standards EN 13906, DIN 2088, DIN 2089, DIN 2090, DIN 2091, DIN 2092, DIN 2093, DIN 2095, DIN 2096, DIN 2097. This module is a part of MITCalc - Calculation Package for gear, belt and chain drives, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others.

Size :2876K
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MITCalc - Rolling Bearings Calculation II 1.20

Size :2933K
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MITCalc - Compression Springs 1.22

Size :2956K
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MITCalc - Bevel Gear Calculation 1.20