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With the uniaxial tensile test and the three-point bending test, it is found that the conductor is cyclic stable without hardening or softening and its time dependence is slight below the loading frequency of 67 Hz.
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However, the strain amplification factor increased only slightly with the increasing loading magnitude for the same loading frequency and increased slightly with the increasing loading frequency for the same loading magnitude.
The maximum strain increased with increasing loading frequency and increasing loading magnitude (loading strain).
The study found that the strain amplification factor increased with loading frequency and increasing loading strain.
When t = 0.5 T, the strain amplification factor increased with loading frequency and with loading strain.
The loading magnitude, frequency and regime varied highly.
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We conclude that hand-held load suspensions should be designed to have a natural frequency below the half-stepping frequency of walking to minimize the peak forces and the musculoskeletal stress on the human body while carrying loads with one hand.
Carrying loads with a compliant pole or backpack suspension can reduce the peak forces of the load acting on the body when the suspension natural frequency is tuned below the stepping frequency.
The best possible field tunability occurs below the plasma frequency.
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