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Tensile coupon tests were conducted to obtain their post-fire stress strain curves and associated mechanical properties (yield strength, elastic modulus, ultimate strength and elongation).
Among them, Si0.4 alloy exhibits excellent comprehensive mechanical properties, yield stress of 1481 MPa, fracture strength of 2444 MPa and plastic strain of 13.38%, respectively.
The newly obtained mechanical properties yield seven different full stress strain curves for nine specific locations on the steel cross-section.
Tensile coupon tests were conducted to obtain their post-fire stress strain curves and associated mechanical properties (yield stress, Young׳s modulus, ultimate strength and ductility).
The combination of transformation induced plasticity (TRIP) effect and nano-sized precipitation strengthening contributed to excellent mechanical properties (yield strength > 700 MPa, tensile strength > 800 MPa, the uniform elongation > 16% and the total elongation > 30%).
Artificial neural network (ANN) models, correlating the mechanical properties (yield strength, tensile strength, %elongation and ¯r) of the cold rolled interstitial free (IF) steel sheets with compositional and processing parameters, are used to find the importance of different variables.
The high-throughput technique of diffusion multiples has been utilized to unveil the effect of solutes on the mechanical properties (yield strength, elastic modulus, hardness), as well as on slip activity, in β (bcc) quaternary Ti alloys.
Neither a higher hardness nor higher mechanical properties (yield strength, ultimate tensile strength, impact energy, and %elongation) appear to be exclusive or even reliable criteria for predicting the ballistic performance of martensitic armour steels, as shown in our previous work [K. Maweja, W.E. Stumpf, Mater. Sci. Eng. A (February), submitted for publication].
The effect of reinforcement particle size (3 and 14 μm), matrix-to-reinforcement particle size ratio (PSR) ranging from 2.9 to 12.9 and volume fraction of the reinforcement (0 20 vol.%) on microstructure and mechanical properties (yield stress, tensile strength, elongation to fracture and Young's modulus) is investigated for Al 6Cu 0.4Mn⧹SiCp composites manufactured by the powder metallurgy route.
As a result, the present work uses MD simulation for detailed discussions of the mechanical properties (yield stress and Young's modulus) and the deformation behavior of ZnO nanowires under uniaxial tension.
Tensile tests were conducted on these butt weld specimens to obtain the force displacement curves and relevant mechanical properties (yield and ultimate strengths) at various temperatures.
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