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MITCalc Springs (15 types) | Miroslav Petele Software - 0 views

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    MITCalc - Springs (15 types) - Geometrical and strength design of metal springs of various types and designs, subjected to static or cyclic loads. 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. The program performs the following tasks: 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 and bars. - Helical cylindrical torsion springs made of rectangular wires and bars. - Torsion bar springs with round section. - Torsion bar springs with rectangular sections. - Leaf springs with a constant profile. - Leaf springs with a parabolic profile. - Laminated leaf springs. Automatic proposal (finding) of spring with suitable dimensions. 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.
tech writer

MITCalc Springs (15 types) - Geometrical and strength design of metal springs of variou... - 0 views

  •  
    MITCalc - Springs (15 types) - Geometrical and strength design of metal springs of various types and designs, subjected to static or cyclic loads. 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. The program performs the following tasks: 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 and bars. - Helical cylindrical torsion springs made of rectangular wires and bars. - Torsion bar springs with round section. - Torsion bar springs with rectangular sections. - Leaf springs with a constant profile. - Leaf springs with a parabolic profile. - Laminated leaf springs. Automatic proposal (finding) of spring with suitable dimensions. 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.
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CutLogic 2D Professional Edition - Rectangular nesting software - panel cutting optimiz... - 0 views

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    CutLogic 2D Professional Edition - Rectangular nesting software - panel cutting optimization. CutLogic 2D is an universal rectangular cutting optimization software with extensive cutting options. CutLogic 2D automatically finds the optimal cutting layouts with minimal waste and saves your material, time and money.
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MITCalc Plates design and calculation | Miroslav Petele Software - 0 views

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    This calculation deals with the deflection, stress, and variation of forces in the loaded flat plates. The calculation is designed for plates that are flat, homogeneous, with the same thickness, and made from one material. The plates may be circular, annular circular, and rectangular. The plates may be loaded evenly (unevenly) on the whole surface (or its part) or they may be loaded by the force distributed on the circle. The program enables: - Selection from circular, annular circular, or rectangular plates. - Selection of various types of loading (distributed, forced...). - Calculation of deflection, slope, moment, and stress in a random point. - Display of graphs of the shape of the figures calculated. - Calculation of safety coefficient. - Calculation of the minimum plate thickness or maximum loading The calculation uses the data, procedures, algorithms, and information from the professional literature (Roark formulas, Machinery's Handbook 26th, Teorie desek a skořepin [doc. Ing. Ladislav Šubrt, CSc.] and others)
tech writer

CutLogic 2D Professional Edition - 0 views

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    CutLogic 2D Professional Edition - Rectangular nesting software - panel cutting optimization. CutLogic 2D is an universal rectangular cutting optimization software with extensive cutting options. CutLogic 2D automatically finds the optimal cutting layouts with minimal waste and saves your material, time and money.
tech writer

MITCalc Plates design and calculation - 0 views

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    This calculation deals with the deflection, stress, and variation of forces in the loaded flat plates. The calculation is designed for plates that are flat, homogeneous, with the same thickness, and made from one material. The plates may be circular, annular circular, and rectangular. The plates may be loaded evenly (unevenly) on the whole surface (or its part) or they may be loaded by the force distributed on the circle. The program enables: - Selection from circular, annular circular, or rectangular plates. - Selection of various types of loading (distributed, forced...). - Calculation of deflection, slope, moment, and stress in a random point. - Display of graphs of the shape of the figures calculated. - Calculation of safety coefficient. - Calculation of the minimum plate thickness or maximum loading The calculation uses the data, procedures, algorithms, and information from the professional literature (Roark formulas, Machinery's Handbook 26th, Teorie desek a skořepin [doc. Ing. Ladislav Šubrt, CSc.] and others)
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