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As the controls were younger than cases in the Finnish samples, age at diagnosis/enrollment (as a continuous variable) was included in the regression models in the Finnish analysis for OR adjustment.
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The results were compared for the elastic modulus (E) and hardness (H) of a non-aged sample and the samples aged at 200 °C and 350 °C during a short period of 60 s, in order to experimentally simulate the thermal conditions of drilling.
Optical microscopy revealed matrix cracking in samples aged at 80 °C for 112 days.
Nevertheless, activity of samples aged at 1370 K was nearly independent of composition.
Physical aging was observed for the samples aged at 60 and 80°C after having been quenched from 190°C.
Because of higher density and very fine continuous precipitation, the microhardness and tensile strength of a sample aged at 475 °C was up to 22% higher than samples aged at other temperatures (e.g. 170 °C, 410 °C, 580 °C, and 680 °C).
On the other hand, the curves of the samples aged at 80°C changed within the whole temperature range.
The crystallinity (XRD-wc) for samples aged at ambient temperature showed that prolonged exposure to A. paraffineus resulted in decreasing value of wc.
TEM observations on samples aged at 150 °C reveal the formation mechanism of the bco-β′ structure by the ordering of monoplanar DO19-β″ precipitates.
TTR samples aged at a short period of time that contain only native tetramers and dimers were concentrated at pH 7.4 to investigate the formation of oligomers from the dimers (Fig. 1b).
The phase, microstructure, mechanical and corrosion properties of as-deposited alloy as well as samples aged at temperatures of 600 °C, 800 °C, 1000 °C and 1200 °C for 168 h have been investigated.
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