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Fatigue tests are carried out to determine through-thickness fatigue life (N3) and an end of test fatigue life (N4).
At the end of test period, the temperatures of mixed medium and conventional in the lower convection were obtained at 75 °C and 71 °C, respectively.
Experimental results of transient heat flux show a quasi-static thermal equilibrium at the end of test run, which form the basis to successfully extract the steady-state TCC measurement with greater reliability.
An end of test failure criterion is chosen and shown to be a reliable method for obtaining fatigue data that can be used for producing design S N curves.
The ratio of the end of test fatigue life (N4) to the through-thickness fatigue life (N3) in the thin CHS-plate T-joints is found to fall within the range of N4/N3 found in previous research of both thick and thin-walled joints.
The creep coefficient at the end of test for the KF70 slabs was ϕ (247,64) = 1.62.
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The end-of-test nylon 6 and nylon 6/6 test pieces, the cycling test pieces, and the field parts were analyzed.
The procedure includes all necessary steps: crack initiation from an artificially generated surface defect, monitoring of crack growth, and specification of the end-of-test criterion.
The simulated pore water pressure in the rock, the pore water suction in the buffer and the earth pressure in the buffer were compared with data measured during the test and inferred from end-of-test water saturation measurements.
Therefore, when evaluating the end-of-test performance, two crucial parameters need to be considered: (1) the retention the Pt particles in the depletion zone within 0 ∼ 2 μm from the cathode/membrane interface and (2) the percentage of small Pt particles in the cathode at EOT.
Although the loss of electrochemical surface area for the Type II cathode was ∼80%, similar to that of the control cathode, the end-of-test performance (EOT) was improved by 50 100 mV, which can be attributed to the reduction of Pt loss in the Pt depletion zone (from 80% to 60%) as well as from 30% to 18% for the entire cathode.
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