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Utilization of micromechanical tests for coatings provides information about their fracture toughness and rupture strength.
As the temperature increases and the pressure remains constant, the creep rupture strength decreases.
The larger the hole, the larger increase in the rupture strength can be achieved.
The rupture strength of peanut and kernel decreased as moisture content increased.
The nanobeam can start fracturing from the highest stress locations when the maximum stress on the nanobeam exceeds the transverse rupture strength.
It was found that the specimen heated with higher heating-rate possesses lower rupture strength.
The recommended prestress level for the concrete beams was ≤50% of the CFRP rupture strength.
The transverse rupture strength (TRS) of the specimens was assessed by a three-point bending test.
The 100 MPa-stress creep lifetime and 105 h creep rupture strength were estimated between 600 and 650 °C.
The transverse rupture strength is promoted with the carbon contents increased, and its stability is also increased.
Its rupture strength is tested and compared with that of the conventional one with the holes drilled.
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