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The maximum tensile loads of all reinforcement layers at the wall failure predicted using FE analysis and LE method assuming uniform distribution of reinforced tensile loads were comparable.
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Stroke at maximum tensile load.
The wire deformed with constant volume until the maximum tensile load was applied to the wire.
These were 5, 10, and 20% of the maximum tensile load, respectively.
A weight of 600 g was applied to the 0.296-mm 0.296-mm wire, 5% of the maximum tensile loadiameter
Mechanical properties such as maximum tensile load, extension at break and charpy impact strength (notched) of the specimens were measured.
The deformation of the wire during tensile testing until maximum tensile load was applied to the wire could be supposed geometrically and theoretically verified.
The relationship between the maximum tensile load of the wire and the slope of the straight line is shown in Fig. 8.
The plots at 12 and 122 N of the maximum tensile load are for wires of 0.063 and 0.296 mm diameter, respectively.
The maximum tensile load decreased with the addition of the GnPs, while it increased when CBs were used.
The maximum tensile load of the T-joint calculated by FEM methods was 1854N, while the experimental value was 1862N.
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CEO of Professional Science Editing for Scientists @ prosciediting.com