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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).
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.
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%).
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The most common mechanical properties are yield stress, elongation, hardness, and toughness.
The oriented toughened sheets from roll-drawing and die-drawing processes were characterized in terms of processing conditions (process and draw ratio), interfacial modification (GMA grafting), morphology (particle size and shape) and tensile mechanical properties (modulus, yield stress and toughness).
The developed models for the evaluation of mechanical and thermal conductivity properties yield accurate results for pristine graphene and acquired findings for amorphized graphene films are size independent.
Based on a statistical analysis of measured mechanical properties, main parameters (yield stress and yield strain, ultimate strength and ultimate strain, elongation after fracture, reduction of cross-sectional area, shear strength of welding, and bending capacity) are reported and discussed.
Therefore, new predictive equations were developed for the mechanical properties of yield strength and elasticity modulus at elevated temperatures.
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