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  2. Dislocation creep - Wikipedia

    en.wikipedia.org/wiki/Dislocation_creep

    Each time a dislocation moves through a crystal, part of the crystal shifts by one lattice point along a plane, relative to the rest of the crystal. The plane that separates the shifted and unshifted regions along which the movement takes place is the slip plane. To allow for this movement, all ionic bonds along the plane must be broken. If all ...

  3. Dislocation - Wikipedia

    en.wikipedia.org/wiki/Dislocation

    The movement of mobile dislocations allow atoms to slide over each other at low stress levels and is known as glide or slip. The movement of dislocations may be enhanced or hindered by the presence of other elements within the crystal and over time, these elements may diffuse to the dislocation forming a Cottrell atmosphere. The pinning and ...

  4. Creep (deformation) - Wikipedia

    en.wikipedia.org/wiki/Creep_(deformation)

    [7] = where ε is the creep strain, C is a constant dependent on the material and the particular creep mechanism, m and b are exponents dependent on the creep mechanism, Q is the activation energy of the creep mechanism, σ is the applied stress, d is the grain size of the material, k is the Boltzmann constant, and T is the absolute temperature.

  5. Kink (materials science) - Wikipedia

    en.wikipedia.org/wiki/Kink_(materials_science)

    Kinks facilitate the movement of dislocations along its glide plane under shear stress, and is directly responsible for plastic deformation of crystals. When a crystal undergoes shear force, e.g. cut with scissors, the applied shear force causes dislocations to move through the material, displacing atoms and deforming the material.

  6. Deformation mechanism - Wikipedia

    en.wikipedia.org/wiki/Deformation_mechanism

    These mechanisms can overlap in the brittle-ductile settings. Deformation mechanisms are commonly characterized as brittle, ductile, and brittle-ductile. The driving mechanism responsible is an interplay between internal (e.g. composition, grain size and lattice-preferred orientation) and external (e.g. temperature and fluid pressure) factors.

  7. Grain boundary sliding - Wikipedia

    en.wikipedia.org/wiki/Grain_boundary_sliding

    This mechanism is the primary cause of ceramic failure at high temperatures due to the formation of glassy phases at their grain boundaries. [8] A simple schematic of grain boundary sliding in a polycrystalline sample (adapted from [9]). When a tensile load is applied to the materials, the grains stretch along that direction.

  8. Motion - Wikipedia

    en.wikipedia.org/wiki/Motion

    Brownian motion – the random movement of very small particles; Circular motion; Rotatory motion – a motion about a fixed point. (e.g. Ferris wheel). Curvilinear motion – It is defined as the motion along a curved path that may be planar or in three dimensions. Rolling motion – (as of the wheel of a bicycle) Oscillatory – (swinging ...

  9. Kinematics - Wikipedia

    en.wikipedia.org/wiki/Kinematics

    Generally speaking, a higher pair is a constraint that requires a curve or surface in the moving body to maintain contact with a curve or surface in the fixed body. For example, the contact between a cam and its follower is a higher pair called a cam joint. Similarly, the contact between the involute curves that form the meshing teeth of two ...