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  2. Cable gland - Wikipedia

    en.wikipedia.org/wiki/Cable_gland

    A cable gland provides strain-relief and connects by a means suitable for the type and description of cable for which it is designed—including provision for making electrical connection to the armour or braid and lead or aluminium sheath of the cable, if any.

  3. Cable grommet - Wikipedia

    en.wikipedia.org/wiki/Cable_grommet

    Cable grommets. A cable grommet is a tube or ring through which an electrical cable passes. They are usually made of rubber or metal. [1]The grommet is usually inserted in holes in certain materials in order to protect, improve friction or seal cables passing through it, from a possible mechanical or chemical attack.

  4. Grommet - Wikipedia

    en.wikipedia.org/wiki/Grommet

    Tight fitting rubber grommets can also prevent the entry of dirt, air, water, etc. [6] The smooth and sometimes soft inner surface of the grommet shields the wire from damage. [6] Grommets are generally used whenever wires pass through punched or drilled sheet metal or plastic casings for this reason. [6]

  5. Strain insulator - Wikipedia

    en.wikipedia.org/wiki/Strain_insulator

    The series can support the same strain as a single insulator, but the series provides a much higher effective insulation. [2] If one string is insufficient for the strain, a heavy steel plate effectively bundles several insulator strings mechanically. One plate is on the "hot" end and another is located at the support structure.

  6. Strain gauge - Wikipedia

    en.wikipedia.org/wiki/Strain_gauge

    An unmounted resistive foil strain gauge. A strain gauge takes advantage of the physical property of electrical conductance and its dependence on the conductor's geometry. . When an electrical conductor is stretched within the limits of its elasticity such that it does not break or permanently deform, it will become narrower and longer, which increases its electrical resistance end-to-

  7. Residual stress - Wikipedia

    en.wikipedia.org/wiki/Residual_stress

    These techniques function using a "strain release" principle; cutting the measurement specimen to relax the residual stresses and then measuring the deformed shape. As these deformations are usually elastic, there is an exploitable linear relationship between the magnitude of the deformation and magnitude of the released residual stress. [ 4 ]

  8. Vibratory stress relief - Wikipedia

    en.wikipedia.org/wiki/Vibratory_stress_relief

    See references 4, 6, and 9. The effectiveness of vibratory stress relief is highly questionable. [3] In general, the strain amplitudes achieved during vibratory stress relief are too low to exceed the critical stress required to activate mechanical relaxation during the induced low amplitude high cycle fatigue excitation of the transducer ...

  9. Deformation (engineering) - Wikipedia

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

    This is not true since the actual area will decrease while deforming due to elastic and plastic deformation. The curve based on the original cross-section and gauge length is called the engineering stress–strain curve, while the curve based on the instantaneous cross-section area and length is called the true stress–strain curve. Unless ...

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