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Graphic Apps::CAD

Cheewoo Pipe Simulator 2.1.1005.1 in Cheewoo Engineering

Simulating and displaying CNC cutting path movement for checking it before real CNC cutting started. Supporting zoom-in, zoom-out, zoom-extent, rotation and NC block progress speed adjustment. Possible to add pipe radius and circular direction output mode in the NC file as a header for automatic setting. Requires Windows 2000 or above, RAM512 MB,10MB HDD or above.

Cheewoo Part Simulator 2.0.1006.1 in Cheewoo Engineering

Simulating and displaying CNC cutting path movement for checking it before real CNC cutting started. Supporting zoom-in, zoom-out, zoom-extent and NC block progress speed adjustment. Able to pause at any moment during simulation and also able to continue simulation again. Requires Windows 2000 or above, RAM512 MB,10MB HDD or above.

Cheewoo Split Print 2.0.1004.1 in Cheewoo Engineering

Supporting to make a full size big drawing by joining the multiple small size printed papers. Providing scale ratio adjustment setting. Providing preview of the each divided pages and boundary guide line feature. Requires Windows 2000 or above, RAM512 MB,10MB HDD or above.

MITCalc Rolling Bearings Calculation I 1.20 in MITCalc

Selection, calculation and check of rolling bearings of the company SKF. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units. Is based on SKF, ISO, ANSI, SAE standards and support many 2D and 3D CAD systems (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, BricsCAD, ZWCAD, ProgeCAD, Autodesk Inventor, SolidWorks, SolidEdge, Creo).

MITCalc Bevel Gear Calculation 1.20 in MITCalc

Geometric design and strength check of spur gear with straight, helical and curved toothing. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units. Is based on ANSI/AGMA and ISO/DIN standards and support many 2D and 3D CAD systems (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, BricsCAD, ZWCAD, ProgeCAD, Autodesk Inventor, SolidWorks, SolidEdge, Creo).

MITCalc V-Belts Calculation 1.22 in MITCalc

The calculation is designed for a geometrical design and strength check of belt transmissions using V-belts. Application contain a database of belts includes the 24 most frequently used types of v-belts, is developed in MS Excel, is multi-language and supports Imperial and Metric units. Is based on ANSI, RMA, ISO, DIN and BS standards and support many 2D and 3D CAD systems.

MITCalc Shafts Calculation 1.24 in MITCalc

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, BricsCAD, ZWCAD, ProgeCAD, Autodesk Inventor, SolidWorks, SolidEdge, Creo)

MITCalc 1.73 in MITCalc

MITCalc is the multi-language mechanical and technical calculation package. It includes solutions for gear, belt and chain drives, springs, beam, shaft, bolt connection, tolerances, welding, shaft connection and many others. The calculations are compatible with many 2D and 3D CAD systems (AutoCAD, Iventor, Solidworks...) and support both Imperial and Metric units and are processed according to ANSI, ISO, DIN, EN, BS, Japanese and other standards.

MITCalc Compression Springs 1.22 in MITCalc

The calculation is intended for the purposes of geometric and strength designs of helical compression cylindrical springs made of wires and rods of circular sections, cold formed, loaded with static or fatigue loading. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units. Is based on ANSI, ISO and DIN standards and support many 2D and 3D CAD systems.

MITCalc Tension Springs 1.22 in MITCalc

The calculation is intended for the purposes of geometric and strength designs of helical tension cylindrical springs made of wires and rods of circular sections, cold formed, loaded with static loading. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units. Is based on ANSI, ISO and DIN standards and support many 2D and 3D CAD systems.

MITCalc Timing Belts Calculation 1.21 in MITCalc

The calculation is designed for a geometrical design and strength check of toothed belt transmissions. Application contain a database of belts includes the 20 most frequently used types of toothed belts, is developed in MS Excel, is multi-language and supports Imperial and Metric units. Is based on ANSI, RMA, ISO, DIN and BS standards and support many 2D and 3D CAD systems.

MITCalc Slender strut buckling 1.20 in MITCalc

Calculation of the optimum cross-section of slender struts strained for buckling and calculation of the appropriate strength check according to Johnson, Tetmajer, Euler and Secant method. Simple definition of the strut type - 40 types of predefined cross sections.Used standards: DIN 1025, 1026, 1028, 1029, 1024, AISC W, S, C, L, LU

MITCalc Tolerance analysis 1.19 in MITCalc

Two programs for the tolerance analysis of linear, 2D and 3D dimensional chains, which in addition to the basic analysis (Worst case, Root Sum Squares, Monte Carlo...) also include a solution to some special matters, like analysis of a dimensional chain deformed as a result of temperature change and design of tolerances for a selective assembly. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units.

MITCalc Spur Gear Calculation 1.24 in MITCalc

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. Is based on ANSI/AGMA and ISO/DIN standards and support many 2D and 3D CAD systems (AutoCAD, AutoCAD LT, IntelliCAD, Ashlar Graphite, TurboCAD, BricsCAD, ZWCAD, ProgeCAD, Autodesk Inventor, SolidWorks, SolidEdge, Creo).

MITCalc Roller Chains Calculation 1.21 in MITCalc

Geometrical design and strength check of common chain transmissions using roller chains. The application works with many 2D and 3D CAD systems and includes corresponding databases of roller chains. The calculations use data, procedures and algorithms from ANSI/ASME, ACA (American Chain Association) ISO, DIN, BS and JIS. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units.

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