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  2. Strain (mechanics) - Wikipedia

    en.wikipedia.org/wiki/Strain_(mechanics)

    The (infinitesimal) strain tensor (symbol ) is defined in the International System of Quantities (ISQ), more specifically in ISO 80000-4 (Mechanics), as a "tensor quantity representing the deformation of matter caused by stress. Strain tensor is symmetric and has three linear strain and three shear strain (Cartesian) components." [6]

  3. Shear stress - Wikipedia

    en.wikipedia.org/wiki/Shear_stress

    Shear stress (often denoted by τ, Greek: tau) is the component of stress coplanar with a material cross section. It arises from the shear force, the component of force vector parallel to the material cross section. Normal stress, on the other hand, arises from the force vector component perpendicular to the material cross section on which it acts.

  4. Shear modulus - Wikipedia

    en.wikipedia.org/wiki/Shear_modulus

    G = τ / γ = E / [2 (1 + ν )] Shear strain. In materials science, shear modulus or modulus of rigidity, denoted by G, or sometimes S or μ, is a measure of the elastic shear stiffness of a material and is defined as the ratio of shear stress to the shear strain: [1] where. = shear stress. is the force which acts. is the area on which the ...

  5. Deformation (physics) - Wikipedia

    en.wikipedia.org/wiki/Deformation_(physics)

    In physics and continuum mechanics, deformation is the change in the shape or size of an object. It has dimension of length with SI unit of metre (m). It is quantified as the residual displacement of particles in a non-rigid body, from an initial configuration to a final configuration, excluding the body's average translation and rotation (its rigid transformation).

  6. Newtonian fluid - Wikipedia

    en.wikipedia.org/wiki/Newtonian_fluid

    Newtonian fluids are named after Isaac Newton, who first used the differential equation to postulate the relation between the shear strain rate and shear stress for such fluids. Definition [ edit ] An element of a flowing liquid or gas will endure forces from the surrounding fluid, including viscous stress forces that cause it to gradually ...

  7. Pure shear - Wikipedia

    en.wikipedia.org/wiki/Pure_shear

    Pure shear. In mechanics and geology, pure shear is a three-dimensional homogeneous flattening of a body. [1] It is an example of irrotational strain in which body is elongated in one direction while being shortened perpendicularly. For soft materials, such as rubber, a strain state of pure shear is often used for characterizing hyperelastic ...

  8. Shear thinning - Wikipedia

    en.wikipedia.org/wiki/Shear_thinning

    Shear thinning is the most common type of non-Newtonian behavior of fluids and is seen in many industrial and everyday applications. [4] Although shear thinning is generally not observed in pure liquids with low molecular mass or ideal solutions of small molecules like sucrose or sodium chloride, it is often observed in polymer solutions and ...

  9. Plate theory - Wikipedia

    en.wikipedia.org/wiki/Plate_theory

    The shear strain, and hence the shear stress, across the thickness of the plate is not neglected in this theory. However, the shear strain is constant across the thickness of the plate. This cannot be accurate since the shear stress is known to be parabolic even for simple plate geometries.