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In present work the simulation program is developed using Two Parameter Weibull Distribution and method of Maximum Likelihood Estimation (TPWDUMLE) to find the Weibull parameters for strength characterization in fiber and fibrous materials using experimental-reliability based novel approach.
Distribution parameters for strength gains indicated a strong clustering of men around the mean, while women ranged in a more normal distribution pattern, indicating that more women were higher or lower responders than men.
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The ratio of fractal dimension to capillary pore volume is addressed as the new parameter for strength model.
The analysis is carried out in the context of the finite elasticity theory by using a class of Ogden strain energy function augmented with unidirectional reinforcing that is characterized by a single additional constitutive parameter for strength of reinforcement.
This value can be considered as an important engineering parameter for strength and fracture assessment of materials and structural components in hydrogenous environments and also at the development of technology of hydrogen treatment of materials with the aim of improvement their service properties.
The purpose of this study was to estimate the relation of some noninvasively derived mechanical characteristics of radial bone including architectural parameters for bone strength to grip strength and muscle cross-section.
This model requires to input the parameters for compressive strength f' c, tensile strength f t, maximum strain ε co, and confinement factor k.
In the context of CZM, the shear fracture toughness (GIIC) is one of the most influential parameters for the strength prediction.
Furthermore, Taguchi results indicated that the optimum parameters for compressive strength and crack properties of structural lightweight concrete were found as 400 °C, 500 kg/m3 cement dosage and 20% fly ash.
The fraction of broken spheres as a function of the applied strain were computed from experimental values of the Weibull parameters for the strength of the spheres, and the local stress computed in the simulations.
It is also noticed that the value of empirical parameters for maximum strength, S0, was relatively similar irrespective of w/c ratios and reflected an intrinsic property of the hydration products.
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CEO of Professional Science Editing for Scientists @ prosciediting.com