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Some transmission electron microscope observations are presented of the effects of stress in gold thin films, at moderately elevated temperatures.
Titanium alloys as lightweight structure materials have been shown more interest in the use at moderately elevated temperatures.
However, it proved unsuitable for many applications, because devices made of the material exhibited high leakage currents at only moderately elevated temperatures.
Numerical predictions of punch force, draw-in and shape deviation are compared with data from separate forming experiments performed at moderately elevated temperatures.
This study explores the practical means of post-curing CFRP/concrete systems at moderately elevated temperatures, namely at 60 °C, using bonding adhesive under specific operating conditions.
Moreover, CNT-epoxy can provide a significant increase (about two fold) of bond strengths at moderately elevated temperatures when compared with neat epoxy.
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The failure mechanism of LiCoO2 electrode at moderately elevated temperature (70 °C) is examined.
Cross sectional SEM images show very little change in the anode and cathode materials indicating that the material is stable under typical cycling conditions and at moderately elevated temperature (55 °C).
It demonstrated that the incorporation of CNTs into the bond adhesive could allow better exploiting the potential of CFRP system in strengthening of steel structures at moderately elevated temperature.
Thiol-acetoacetate-acrylate ternary dual-curing thermosets were prepared by a sequential process consisting of thiol-Michael addition to acrylates at room temperature followed by Michael addition of acetoacetates to acrylates at moderately elevated temperature.
The bond characteristics of double strap joints between carbon fibre reinforced polymer (CFRP) laminates and steel with carbon nanotubes (CNTs) modified epoxy, under moderately elevated temperature (23 70 °C) were studied.
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