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The penetration depths of the SAC solder at the maximum load ranges from 1,740 to 2,450 nm, and that for SAC/0.05Ni-CNT sample ranges from 1,700 to 2,310 nm, indicating a more creep resistant for Ni-CNT than its monolithic counterpart [35].
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The drift of the specimens at the maximum load ranged from 1.13 to 2.11%.
The testing machine was operated with the maximum load range of 20 kN as the predicted load capacity [determined from Chen and Teng (2001) model] for control series was within this range.
Specifically, threshold behavior is examined for large through-thickness cracks >4 mm in length), short through-thickness cracks (~200 μm in length), and microstructurally-small surface cracks (10 50 μm in diameter) under combined mode I and mode II loading at load ratios (ratio of minimum to maximum load) ranging from 0.1 to 0.8.
Nanoindentation has been carried out on (111) single crystals of Ni3Al with the maximum applied load ranging from 800 to 8000 μN.
A median elongation of 5.95 mm was observed during maximum load of the allograft (range 3.83 7.57 mm) for LGA and 6.12 mm (range 4.68 7.51 mm) for CGA (p = 0.29) without statistical differences between the groups (p = 0.29) (Fig. 4).
Median stiffness calculated between 50 and 75%% of the maximum load applied was 57.86 N/mm (range 42.68 93.69 N/mm) in the LGA and 54.23 N/mm (range 36.66 61.02 N/mm) in the CGA with no statistical differences being observed between the groups (p = 0.2) (Fig. 5).
Linear regression calculated on a 50 75 % range of maximum load showed a high linearity (R2 > 0.98) in 36 out of 38 tests (94.4 %).
Immediately after the overload, the strain under maximum load is greatly reduced but the range of strain, between zero and maximum load, remains unchanged compared to the pre-overload values.
Apart from creep testing, the samples were measured with maximum load of 9800 μN at different constant loading rates ranging from 1 × 10-2 to 1 × 100/s without holding.
As a result, the index ranged from 0 17, with 17 representing the maximum load of risk factors.
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