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MITCalc Shells design and calculation | Miroslav Petele Software - 0 views

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    The calculation concerns solutions of pressure vessels and their components. The calculation solves deformations and curves of stress in rotational shells loaded with axial force, pressure, radial force, and a bending moment. This program is intended for homogeneous shells of identical thickness and a single material. The calculation also enables solutions for connecting two shells of different parameters (thickness, material, dimensions...). The program enables: Calculation of cylindrical, conical, and spherical thin-wall shells Calculation of cylindrical and spherical thick-wall shells Calculation of a round plate Selection of various loading methods (joint, force, moment, rotational, load with fluid...) Calculation of deformation, radial shift, moment, and stress in any point Visualisation of charts with curves of the calculated values
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MITCalc Shells design and calculation - Calculation of Deformation and stress of rotati... - 0 views

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    The calculation concerns solutions of pressure vessels and their components. The calculation solves deformations and curves of stress in rotational shells loaded with axial force, pressure, radial force, and a bending moment. This program is intended for homogeneous shells of identical thickness and a single material. The calculation also enables solutions for connecting two shells of different parameters (thickness, material, dimensions...). The program enables: Calculation of cylindrical, conical, and spherical thin-wall shells Calculation of cylindrical and spherical thick-wall shells Calculation of a round plate Selection of various loading methods (joint, force, moment, rotational, load with fluid...) Calculation of deformation, radial shift, moment, and stress in any point Visualisation of charts with curves of the calculated values
tech writer

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

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)
tech writer

Lam Sai Wing "TIET SIN KUEN" - 0 views

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    Provides a detailed description of the old Shaolin method of "Internal Training" - TIET SIN QI GONG. A master of the "Iron Thread" can withstand, with no consequences, the strongest of blows, including ones with heavy objects or cold steel arms, bend thick iron rods with his hands, and his "rooting power" is so strong that he cannot be displaced by a group of strong people. In addition, this wonderful method strengthens all internal organs, bones, muscles and sinews. The entire body thrives and rejuvenate.
tech writer

Lam Sai Wing "TIET SIN KUEN" - 0 views

  •  
    Provides a detailed description of the old Shaolin method of "Internal Training" - TIET SIN QI GONG. A master of the "Iron Thread" can withstand, with no consequences, the strongest of blows, including ones with heavy objects or cold steel arms, bend thick iron rods with his hands, and his "rooting power" is so strong that he cannot be displaced by a group of strong people. In addition, this wonderful method strengthens all internal organs, bones, muscles and sinews. The entire body thrives and rejuvenate.
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