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Two series of single edge notched specimens with different notch depths and notch configurations are manufactured.
Tensile testing of round specimens and Charpy impact testing of single edge notch bend specimens was conducted at different temperatures.
Mode I fracture behavior of single edge notched composite specimens were investigated using three-point bending (TPB) tests.
Extensive growth of single edge cracks under mode I loading is achieved in a purpose build test set-up.
Critical elastic-plastic strain energy release rates of single edge notch bend (SENB) specimens with variable crack-tip/laminae orientations were compared.
The split-disk tensile tests of single edge notched and un-notched ±[55]6 filament wound BFR/Epoxy ring composite specimens were conducted to determine the mechanical properties and mode I fracture toughness.
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This paper describes a numerical framework to simulate the fatigue crack growth of single edge-notched steel elements patched with shape memory alloy (SMA)/fiber reinforced polymer (FRP) composite patches.
The paper is structured as follows: in Section 2, necessary background from location referencing, road network matching, map conflation, and a geometry-based approach to matching of single edges between maps is given.
The graphical representation of recombination between taxa are parallel edges leading to strains instead of single edges in the absence of recombination.
In the same way, the loads of single edges at the interfaces can also be calculated as a random walk-betweenness taking into account weights.
The question arises whether this sensitivity of single edges also results in a highly responsive overall network response of the closed loop feedback system and which of the key players determines the operating state of the endogenous system.
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CEO of Professional Science Editing for Scientists @ prosciediting.com