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The principles for toughening BMG through designed artificial defects are proposed; accordingly, some strategies for designing future porous BMG materials with high mechanical performance were presented.
Quantification of degenerative changes within small cerebral vessels occurring during older age or caused by genetic defects are proposed to explain the progression of WM changes, resulting in leukoencephalopathy in both sporadic and monogenic SVDs.
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A theory to predict the strength of microstructures with defects is proposed and compared with experimental results.
A high speed tandem gas tungsten arc welding process involving an assistant arc following the main arc to suppress the formation of undercut and humping defects is proposed.
A tentative mechanism for obtained microstructures with controlled density of defects is proposed based on structural and morphological characterization of the synthesized material.
An atomistic-based progressive fracture model for simulating the mechanical performance of carbon nanotubes by taking into account initial topological and vacancy defects is proposed.
A remedy for these defects is proposed here: the trace of the Cauchy stress is assumed linear in both volume change and fibre stretch.
A novel method for accurately calculating BPFs based on a complete dynamic model of rolling ball bearings with localized surface defects is proposed.
With the aid of 1H MAS NMR examination, the addition of protons into the niobate by acid treatment was convinced and its projected structure of [RuO6] plus [NbO6] octahedra with some defects was proposed.
The mobile defects were proposed to be associated with certain point defects (e.g., oxygen vacancies) which were contained in the as-grown nanowires.
Yang, et al. [26], believed that some complex shapes in the rolling process of an ultra-wide strip cannot be described by quartic orthogonal polynomials, thus, a vector extraction method of typical shape defects was proposed.
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CEO of Professional Science Editing for Scientists @ prosciediting.com