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The deformation measure for torsion is typically represented by the torsion angle, which quantifies how much a material twists about its longitudinal axis. In engineering and materials science, torsion is often analyzed using shear strain, specifically the angle of twist per unit length, which can be expressed in radians. This measure helps assess the material's response to twisting forces, allowing for the evaluation of its structural integrity and performance under torsional loads.

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What does it mean by hardness in torsion?

Hardness in torsion refers to the resistance a material has to deformation when subjected to torsional (twisting) forces. It is a measure of the material's ability to withstand twisting without undergoing plastic deformation. Hardness in torsion is important in applications where components are subject to torsional loading, as it indicates the material's resistance to structural failure under twisting forces.


Difference bw elastic and plastic torsion?

after the removal of load if the object regains its original position is called elastic deformation ....If the object cant regain its original position even after the removal of applied load is called plastic deformation...


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Static torsion refers to the twisting force experienced by a structure or material when it is subject to a static (unchanging) load. It occurs when one end of a material is fixed while the other end is twisted or rotated, resulting in stress and deformation within the material. Understanding static torsion is important in engineering and construction to ensure the structural integrity and stability of components.


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1. Elastic Deformation 2. neglect structural weight I'd explain more but have Mechanics of Materials final in a couple hours.


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Torsion is considered an internal force because it arises from the twisting of a material about its longitudinal axis. It is the result of moments applied to the ends of a structural element, creating shear stresses within the material. These internal forces act to resist deformation and failure under applied loads.


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Shear and torsion forces are a combination of bending stress. This stress characterizes the behavior of a structural object subjected to an external load, which is applied perpendicular to the axis of the object.


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Tension refers to the force that pulls or stretches an object, acting along the length of the material, such as when a rope is pulled from both ends. Torsion, on the other hand, involves twisting forces applied to an object, causing it to rotate around its axis, like when a screwdriver is turned. While tension results in elongation, torsion results in angular deformation. Both are important concepts in material science and engineering, affecting how structures respond to different forces.


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