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Jin-Shui Yang

Bio: Jin-Shui Yang is an academic researcher from Harbin Engineering University. The author has contributed to research in topics: Sandwich-structured composite & Materials science. The author has an hindex of 14, co-authored 27 publications receiving 711 citations. Previous affiliations of Jin-Shui Yang include Harbin Institute of Technology & RWTH Aachen University.

Papers
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TL;DR: In this article, the polyurethane foam filled pyramidal lattice core sandwich panel is fabricated in order to improve the energy absorption and low velocity impact resistance, based on the compression tests, a synergistic effect that the foam filled sandwich panels have a greater load carrying capacity compared to the sum of the unfilled specimens and the filled polyurehane block is found.

150 citations

Journal ArticleDOI
Jin-Shui Yang1, Jian Xiong1, Li Ma1, Bing Wang1, Guoqi Zhang1, Linzhi Wu1 
TL;DR: In this paper, the vibration and damping performances of hybrid carbon fiber composite pyramidal truss sandwich panels with viscoelastic layers embedded in the face sheets were investigated. And the numerical simulation results showed good agreement with the experimental tests.

114 citations

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TL;DR: In this paper, a series of all-composite axial and circular corrugated sandwich cylindrical shells is manufactured using a novel hot press molding method, and a finite element model combined with modal strain energy approach is developed.

91 citations

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TL;DR: In this article, the bending properties and failure modes of carbon fiber composite egg and pyramidal honeycomb beams were studied and presented in terms of face wrinkling, face crushing, core member crushing and debonding.

89 citations

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TL;DR: In this paper, a method for rapid fabrication and prototyping of low-density carbon fiber sandwich panel cores based on laser beam cutting (LBC) was presented, where lattice core constructions with oblique and vertical strut morphologies were fabricated from two fiber orientation architectures.

84 citations


Cited by
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TL;DR: In this article, the authors outline recent progress in the development of auxetic materials and structures, and their mechanical properties under quasi-static and dynamic loading are analysed and summarised.
Abstract: Different from conventional materials, materials with negative Poisson's ratios expand laterally when stretched longitudinally. Known as ‘auxetic’ materials, the effect means they possess particularly fascinating properties, which have recently attracted considerable attention in the literature. A range of auxetic materials has been discovered, theoretically designed and fabricated. Developments in additive manufacturing (AM) techniques enable fabrication of materials with intricate cellular architectures. This paper outlines recent progress in the development of auxetic materials and structures, and their mechanical properties under quasi-static and dynamic loading are analysed and summarised. Limited experimental studies on 3D printed auxetic materials and structures are given more attention, ahead of extensively finite element (FE) simulations. A special focus is dedicated to their large, plastic deformation behaviour and energy absorption performance, which should be stressed in their engineering applications; no review paper has yet been found regarding this. Finally, this paper provides an overview of current study limitations, and some future research is envisaged in terms of auxetic materials and structures, nano-auxetics and additive manufacturing.

214 citations

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TL;DR: A comprehensive review of the various research methods and theory calculation models that are employed in engineering to study the static and dynamic vibration characteristics of viscoelastic damping material (VDM) formed structures is presented in this article.

204 citations

Journal ArticleDOI
TL;DR: In this article, a review of PU and its utilization in structural and infrastructural applications comprehensively, in terms of engineering properties, protective coatings, utilization in composite applications, and in strengthening and retrofitting of structural elements with PU and their modified products.

183 citations

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TL;DR: A comprehensive review of the literature on corrugated structures can be found in this article, with applications ranging from traditional engineering structures such as Corrugated steel beams through to morphing aircraft wing structures.

182 citations

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TL;DR: This compilation of limitations and future work might provide a clearer understanding of technological and theoretical limitations regarding lattice structures, as well as highlighting areas of further research required in the design, design analysis, manufacturing, application and characterisation areas of lattice structure.
Abstract: A lattice structure is a space-filling unit cell that can be tessellated along any axis with no gaps between cells. These structures are an emerging solution to weight, energy and advanced manufact...

178 citations