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Vadim V. Silberschmidt

Researcher at Loughborough University

Publications -  592
Citations -  10904

Vadim V. Silberschmidt is an academic researcher from Loughborough University. The author has contributed to research in topics: Machining & Finite element method. The author has an hindex of 44, co-authored 543 publications receiving 8619 citations. Previous affiliations of Vadim V. Silberschmidt include University of Rhode Island & Universities UK.

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Experimental and computational studies of poly-L-lactic acid for cardiovascular applications: recent progress

TL;DR: In this article, an overview of the recent studies investigating mechanical and computational performance of poly(l-lactic) acid and its use in stenting applications is presented, with the first polymer scaffold gaining FDA approval in 2016.
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Energy-Based Analysis of Ultrasonically Assisted Turning

TL;DR: In this article, the effects observed in ultrasonically-assisted turning (UAT) are analysed employing ideas of dynamic fracture mechanics, where the active stage of loading duration depends heavily on ultrasonic frequency and the cutting speed.
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Dry vs. wet: Properties and performance of collagen films. Part I. Mechanical behaviour and strain-rate effect.

TL;DR: From the identification of hyperelastic parameter of collagen film, it was found that the Ogden Model provides realistic results for future simulations and collagen exhibited a strain-rate-sensitive hardening behaviour with increasing strain rate.
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A framework for design and optimization of tapered composite structures. Part I: From individual panel to global blending structure

TL;DR: In this paper, a global shared-layer blending (GSLB) method is proposed to improve the blending properties of composite composite structures with multiple manufacturing constraints, with variables dealt with separately at different levels and manufacturing constraints divided and imposed in each step.
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Interaction of Matrix Cracking and Delamination in Cross-ply Laminates: Simulations with Stochastic Cohesive Zone Elements

TL;DR: In this article, a transverse crack is introduced in 90o layers of the cross-ply laminate, and the stresses and strains that arise due to tensile loading are analyzed.