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Elastic adhesives can withstand large levels of deformation at failure and are therefore very useful to compensate movements coming from crash, fatigue or thermal loadings which can weaken the surrounding structure.
Test results showed that compressive strength and axial deformation at failure of concrete confined with GFRP tubes increased by an average of 2.85 and 5.57 times these of unconfined concrete, respectively.
The CNT reinforced polymers (CNTRP) showed a remarkable enhancement of their tensile strength (2.25 times over the host matrix) and deformation at failure (3.27 times over the host matrix).
In these conditions (i) if the overheating is applied to an as-received material, the residual life of the material remains unchanged compared with the isothermal creep life; and (ii) when applied to a pre-crept material, surprisingly, the longer the overheating at 1200 °C, the longer the residual life and the larger the deformation at failure at 1050 °C.
The high deformation at failure is 0.8%% for the unidirectional carbon fibre fabric.
The deformation at failure was obtained directly from the point corresponding to 85%% of the peak load from the graph.
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This behavior is related to low deformations at failure, which makes predicting failure difficult.
The simulations of the dynamic tests predicted appreciably higher force levels and weld deformations at failure than those obtained in the corresponding experiments.
The plastic deformations at failure of the triangular beams were higher than that of the T-beam.
Xradia Ultra Load Stage explores a new critical length scale for in situ materials characterization, enabling researchers to observe internal features such as nanoscale cracks and voids that ultimately lead to deformation and failure at the macroscale.
The tensile strength, engineering strain at failure and deformation mode of the submicron-sized MG wires depend on the diameter of the wires.
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CEO of Professional Science Editing for Scientists @ prosciediting.com