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Use this tool to calculate the section modulus, second area moment, and neutral axis of many structural profiles, given their dimensions.
Section modulus is a geometric property for a given cross-section used in the design of beams or flexural members. Other geometric properties used in design include area for tension, radius of gyration for compression, and moment of inertia for stiffness.
Section modulus calculator for I beam, hollow rectangle, rectangle, C channel, T section, circular hollow section, round bar and unequal angle. Section modulus is the moment of inertia of the area of the cross section of a structural member divided by the distance from the neutral axis to the farthest point of the section; a measure of the ...
Calculating the section modulus is an interesting way to study the stress response of a beam to bending. With this tool, you'll be able to calculate the elastic and plastic section modulus of I-sections and many other common structural shapes.
Free tool to calculate section properties such as area, centroid, moment of inertia, section modulus, and radius of gyration.
Section Modulus Calculators. Use the calculators below to calculate the elastic section moduli of common shapes such as rectangles, I-beams, circles, pipes, hollow rectangles, and c-channels that undergo bending. Consistent units are required for each calculator to get correct results.
Calculate the section modulus for beams, ship components, and more with the Section Modulus Calculator. Master structural analysis today!
SkyCiv Moment of Inertia and Centroid Calculator helps you determine the moment of inertia, centroid, and other important geometric properties for a variety of shapes including rectangles, circles, hollow sections, triangles, I-Beams, T-Beams, angles and channels.
By understanding the section modulus calculation, you are one step closer to designing the most complex engineering elements. 🔥🔥 In this beginner’s guide, we’ll walk you through the process of determining the section modulus step-by-step.
Input the dimensions of the I-beam, including the flange width, flange thickness, web height, and web thickness, to find its section modulus. This calculation aids in understanding the beam’s resistance to bending forces, aiding in the design and selection process.