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This is the highest gage factor reported in the literature.
The gage factor of cement based composite is almost 2600 times the gage factor of metal strain gages which has a gage factor of 2. The variations of electrical resistance, gage factor, linearity, correlation coefficient of best fit line to the electrical resistance change versus strain data, with respect to fiber volume fraction were discussed.
The absolute value of the gage factor decreases with the increase of the carbon nanotube content.
This elastic gage factor is about half the value of the ones encountered in the strain-hardening range.
The performance measures of gage factor and linearity for a strain sensor were investigated for the cement based composites.
The gage factor of CNFs was found to vary from 1.96 to 2.55, not correlating with nanofiber diameter.
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Gage factors as high as 5195 were obtained.
The gage factors of the piezoresistance curves were determined.
Table 2 Gage factors of ECC based on 4-point DC probe measurement.
The cross gage factors were higher than the gage factors which were explained by mechanisms on variations of electron transfer cross sections.
It should be noted that these gage factors are well above those associated with traditional metal foil strain gages which typically have gage factors of 2 to 3 proposed by Perry and Lissner [9].
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