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  2. 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-

  3. Load cell - Wikipedia

    en.wikipedia.org/wiki/Load_cell

    Since the change in resistance measured by a single strain gauge is extremely small, it is difficult to accurately measure changes. Increasing the number of strain gauges applied collectively magnifies these small changes into something more measurable. A set of 4 strain gauges set in a specific circuit is an application of a Wheatstone bridge.

  4. Talk:Wheatstone bridge - Wikipedia

    en.wikipedia.org/wiki/Talk:Wheatstone_bridge

    A very important aspect of the Wheatstone bridge is that, when the bridge is at balance, the condition is independent of the precise voltage source applied. In practical terms, especially with technology available at the time, it was far easier to create relatively stable and well-known resistors than it was to create a stable voltage source.

  5. Wheatstone bridge - Wikipedia

    en.wikipedia.org/wiki/Wheatstone_bridge

    A Wheatstone bridge is an electrical circuit used to measure an unknown electrical resistance by balancing two legs of a bridge circuit, one leg of which includes the unknown component. The primary benefit of the circuit is its ability to provide extremely accurate measurements (in contrast with something like a simple voltage divider ). [ 1 ]

  6. Gauge factor - Wikipedia

    en.wikipedia.org/wiki/Gauge_factor

    Gauge factor (GF) or strain factor of a strain gauge is the ratio of relative change in electrical resistance R, to the mechanical strain ε. The gauge factor is defined as: [ 1 ] G F = Δ R / R Δ L / L = Δ R / R ε = 1 + 2 ν + Δ ρ / ρ ε {\displaystyle GF={\frac {\Delta R/R}{\Delta L/L}}={\frac {\Delta R/R}{\varepsilon }}=1+2\nu +{\frac ...

  7. Was there 'necking' on bridge rods and should it have been ...

    www.aol.com/necking-bridge-rods-caught-ridot...

    In the July 2023 photos, the rods appeared stressed and stretched way beyond allowable engineering design, he said. And even at that point, before the rods were visibly broken, the necking was ...

  8. Talk:Strain gauge - Wikipedia

    en.wikipedia.org/wiki/Talk:Strain_gauge

    MicroMeasurements makes strain gauges as short as 0.008 inches and Omega makes a 6 inch long strain gauge. The "typical" length depends entirely on the application. Measurements on concrete and other heterogeneous materials require a very long gauge length, but measurements of strains at local stress concentrations require a very short gauge ...

  9. Carey Foster bridge - Wikipedia

    en.wikipedia.org/wiki/Carey_Foster_bridge

    The two remaining arms are the nearly equal resistances P and Q, connected in the inner gaps of the bridge. A standard Wheatstone bridge for comparison. Points A, B, C and D in both circuit diagrams correspond. X and Y correspond to R 1 and R 2, P and Q correspond to R 3 and R X. Note that with the Carey Foster bridge, we are measuring R 1 ...

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