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  • 1
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: This book derives from the Special Issue of the Manufacturing Engineering Society 2019 (SIMES-2019) that has been launched as a joint issue of the journals Materials and Applied Sciences. The 29 contributions published in this Special Issue of Materials present cutting-edge advances in the field of manufacturing engineering focusing on additive manufacturing and 3D printing; advances and innovations in manufacturing processes; sustainable and green manufacturing; manufacturing of new materials; metrology and quality in manufacturing; industry 4.0; design, modeling, and simulation in manufacturing engineering; and manufacturing engineering and society. Among them, the topic "Additive Manufacturing and 3D Printing" has attracted a large number of contributions in this journal due to its widespread popularity and potential.
    Keywords: Bayesian inference ; control chart ; dynamic methodology ; hidden Markov chain ; occupational accident ; risk assessment ; risk control ; risk management ; Fused Deposition Modeling ; roughness ; Polylactic Acid ; print orientation angle ; build angle ; titanium alloys ; sustainable lubrication ; cryogenic lubrication ; MQL ; OD grinding ; CBN ; dressing ; rotary dresser ; wear ; CVD diamond ; additive manufacturing ; 3D printing ; fused filament fabrication ; flexural properties ; fatigue ; PLA ; cements ; ballast waste ; cornubianite ; mechanical properties ; Spain ; joining ; forming ; sheet–tube connections ; experimentation ; modelling and simulation ; quality enhancement ; process parameters ; design optimization ; calibration artifact ; kinematic support ; dimensional metrology ; machine tool ; length measurement ; rapid prototyping ; efficiency ; printing time ; experimental model ; prepeg ; carbon fiber ; Raman spectroscopy ; AWJM ; waterjet ; CFRP ; kerf taper ; surface quality ; metal forming ; bi-metallic ; cylinders ; compression ; finite elements ; microscopy ; cold expansion ; mandrel ; cold-forming ; swaging ; shipbuilding ; LARG paradigm ; supply chain ; coordinate metrology ; confocal microscopy ; measurement ; calibration ; traceability ; uncertainty ; quality assessment ; digital image correlation ; indentation process ; incremental forming ; finite element method ; material flow ; AWJM (Abrasive waterjet machining) ; CFRTP (Carbon fiber-reinforced thermoplastics) ; RSM (response surface methodology) ; ANOVA (Analysis of variance) ; C/TPU (carbon/polyurethane) ; image processing ; position control ; accuracy ; micromachines ; position compensation ; inverse conical perspective ; micromanufacturing ; manufacturing systems ; mechatronics ; FDM ; bimodulus materials ; standards ; finite element analysis (FEA) ; ABS ; anisotropy ; infill density ; layer orientation ; ASTM D638–14:2014 ; ISO 527–2:2012 ; grounding electrodes in two-layered soils ; step and touch potentials ; step potentials upper bound ; orthoses ; prostheses ; fused deposition modeling ; laminated object manufacturing ; selective laser sintering ; laser tracker ; Monte Carlo method ; verification ; green manufacturing ; sustainability metrics ; cleaner product life cycle ; material removal processes ; hybrid components ; light alloys ; magnesium ; aluminum ; drilling ; dry machining ; cold compressed air ; lubrication and cooling systems ; arithmetical mean roughness ; Ra ; average maximum height ; Rz ; repair and maintenance operations ; fused deposition modelling ; composites ; polymer injection moulding ; polyamide ; metal matrix composite ; Al-SiC ; microstructure ; machining ; cooling compressed air ; thrust force ; energy ; material removed rate ; PEEK-GF30 ; multi-response optimization ; sustainable manufacturing ; metrology ; industry 4.0 ; modeling and simulation ; quality in manufacturing ; technological and industrial heritage ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 2
    Publication Date: 2023-12-20
    Description: The book deals with novel aspects and perspectives in functionally graded materials (FGMs), which are advanced engineering materials designed for a specific performance or function with spatial gradation in structure and/or composition. The contributions mainly focus on numerical simulations of mechanical properties and the behavior of FGMs and FGM structures. Several advancements in numerical simulations that are particularly useful for investigations on FGMs have been proposed and demonstrated in this Special Issue. Such proposed approaches provide incisive methods to explore and predict the mechanical and structural characteristics of FGMs subjected to thermoelectromechanical loadings under various boundary and environmental conditions. The contributions have resulted in enhanced activity regarding the prediction of FGM properties and global structural responses, which are of great importance when considering the potential applications of FGM structures. Furthermore, the presented scientific scope is, in some way, an answer to the continuous demand for FGM structures, and opens new perspectives for their practical use.
    Keywords: QA1-939 ; Q1-390 ; power-law distribution ; evanescent wave ; flow theory of plasticity ; free vibration characteristics ; neural networks ; geometrically nonlinear analysis ; finite element method ; stress concentration factor ; inhomogeneous composite materials ; circular plate ; porous materials ; minimum module approximation method ; ANFIS ; electroelastic solution ; functionally graded piezoelectric materials ; Love wave ; polynomial approach ; stepped FG paraboloidal shell ; material design ; damping coefficient ; spring stiffness technique ; Lamb wave ; pure bending ; general edge conditions ; residual stress ; graded finite elements ; large strain ; non-linear buckling analysis ; orthogonal stiffener ; combined mechanical loads ; functionally graded piezoelectric-piezomagnetic material ; functionally graded beams ; attenuation ; failure and damage ; analytical solution ; functionally graded materials ; elastoplastic analysis ; elastic foundation ; hollow disc ; different moduli in tension and compression ; external pressure ; functional graded saturated material ; bimodulus ; fuzzy logic ; truncated conical sandwich shell ; quadratic solid–shell elements ; functionally graded viscoelastic material ; finite element analysis ; residual strain ; neutral layer ; elliptical hole ; thin structures ; functionally graded plate ; inhomogeneity ; clustering ; metal foam core layer ; robotics and contact wear ; dispersion ; high order shear deformation theory ; finite elements ; bic Book Industry Communication::P Mathematics & science
    Language: English
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  • 3
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: Bone tissue engineering aims to develop artificial bone substitutes that partially or totally restore the natural regeneration capability of bone tissue lost under circumstances of injury, significant defects, or diseases such as osteoporosis. In this context, biomaterials are the keystone of the methodology. Biomaterials for bone tissue engineering have evolved from biocompatible materials that mimic the physical and chemical environment of bone tissue to a new generation of materials that actively interacts with the physiological environment, accelerating bone tissue growth. Mathematical modelling and simulation are important tools in the overall methodology. This book presents an overview of the current investigations and recent contributions in the field of bone tissue engineering. It includes several successful examples of multidisciplinary collaboration in this transversal area of research. The book is intended for students, researchers, and professionals of a number of disciplines, such as engineering, mathematics, physics, chemistry, biomedicine, biology, and veterinary. The book is composed of an editorial section and 16 original research papers authored by leading researchers of this discipline from different laboratories across the world
    Keywords: TA1-2040 ; T1-995 ; bone morphogenesis proteins ; n/a ; finite element ; bone tissue engineering ; electrically active implants ; prediction marker ; vertebra ; direct current electric field ; loose sintering ; Lattice Boltzmann method ; Pelvis ; automatic segmentation ; MSCs ; additive manufacturing ; finite element method ; bioelectromagnetism ; optimization ; scaffold design ; cone beam computed tomography ; computational modelling ; bone regeneration ; oxygen delivery ; biomaterials ; bone tissue ; spark plasma sintering ; critical size defect ; musculoskeletal modelling ; resonance frequency analysis ; minipig ; numerical methods in bioengineering ; computational fluid dynamics ; maxillofacial ; osteoporosis ; sliding window ; osseointegration ; mass transfer ; substrate-mediated electrical stimulation ; Fixation design ; dental implants ; human dental pulp stem cells ; numerical results ; elastoplasticity ; bone tissue regeneration ; finite-element simulation ; 3D-printed implant ; selective laser melting ; Lagrangian scalar tracking ; cortical bone ; micromechanics ; trabeculae ; finite element modelling ; damage ; titanium ; powder metallurgy ; pelvis ; biomechanics ; computational mechanobiology ; culturing protocol ; bone adaptation ; stem cell ; Bone tumor ; trabecular bone score ; Xenografts ; triply periodic minimal surfaces ; computed tomography ; multiscale analysis ; cartilage ; digital image correlation ; osteo-differentiation ; wollastonite ; transport ; finite element analysis ; bone marrow ; fracture risk ; von Mises stress ; electric stimulation ; mechanical behaviour ; adipogenesis ; biomaterial applications ; computational mechanics ; Ti6Al4V scaffolds ; finite elements ; Otsu’s method ; 3D virtual surgical plan ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 4
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-09
    Description: Modern engineering practice requires advanced numerical modeling because, among other things, it reduces the costs associated with prototyping or predicting the occurrence of potentially dangerous situations during operation in certain defined conditions. Thus far, different methods have been used to implement the real structure into the numerical version. The most popular uses have been variations of the finite element method (FEM). The aim of this Special Issue has been to familiarize the reader with the latest applications of the FEM for the modeling and analysis of diverse mechanical problems. Authors are encouraged to provide a concise description of the specific application or a potential application of the Special Issue.
    Keywords: numerical modeling ; finite volumne method ; underground coal mine ; endogenous fires ; spontaneous combustion ; longwall ; ventilation system ; shot peening ; quantitative description of peening coverage ; high peening coverage ; Almen intensity ; residual compressive stress ; hybrid composite ; damage ; aramid fiber ; carbon fiber ; finite element method ; delamination ; cut bar method ; thermal conductivity ; steady-state ; heat lakes ; finite element modeling ; aluminum conductor steel-reinforced cable ; bend deformation ; stress ; friction coefficient ; wind loads ; fatigue fracture ; FEM ; SFEM ; active periodic structures ; smart materials ; PCHE ; misalignment ; channel ; utilization factor ; torsion springs ; FEA ; NURBS ; applied load ; local behaviors ; drill pipe joint ; design ; sealing properties ; experiment ; bias tire ; textile cord ; shrinkage ; rubber ; inflation analysis ; nondestructive inspection ; crack detection ; low loading ; surface profile ; turbine blade ; finite element analysis ; swingarm ; single-sided ; Finite Elements Analysis (FEA) ; three-wheel motorcycle ; topology optimization ; collision modeling ; mechanical parameters ; contact detection ; web deformation ; strain deviation ; design of experiment ; roll-to-roll process ; solid mechanics ; finite elements ; hp-adaptivity ; numerical locking ; detection ; assessment ; resolution ; equilibrated residual method ; sensitivity analysis ; p-enrichment ; bell crank ; natural frequency ; reverse engineering ; vibrometer ; Abaqus ; numerical simulation ; biomechanics ; head injury ; safety ; injury criteria ; disability ; driver ; HALE UAV ; generative modelling ; thin-layer composite structure ; electro-mechanical systems ; piezoelectrics ; hierarchical models ; first-order models ; transition models ; hpq/hp-approximations ; adaptivity ; stress gradients ; convergence ; damage detection ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
    Language: English
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  • 5
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: The problem of solving complex engineering problems has always been a major topic in all industrial fields, such as aerospace, civil and mechanical engineering. The use of numerical methods has increased exponentially in the last few years, due to modern computers in the field of structural mechanics. Moreover, a wide range of numerical methods have been presented in the literature for solving such problems. Structural mechanics problems are dealt with using partial differential systems of equations that might be solved by following the two main classes of methods: Domain-decomposition methods or the so-called finite element methods and mesh-free methods where no decomposition is carried out. Both methodologies discretize a partial differential system into a set of algebraic equations that can be easily solved by computer implementation. The aim of the present Special Issue is to present a collection of recent works on these themes and a comparison of the novel advancements of both worlds in structural mechanics applications.
    Keywords: direction field ; tensor line ; principal stress ; tailored fiber placement ; heat conduction ; finite elements ; space-time ; elastodynamics ; mesh adaptation ; non-circular deep tunnel ; complex variables ; conformal mapping ; elasticity ; numerical simulation ; numerical modeling ; joint static strength ; finite element method ; parametric investigation ; reinforced joint (collar and doubler plate) ; nonlocal elasticity theory ; Galerkin weighted residual FEM ; silicon carbide nanowire ; silver nanowire ; gold nanowire ; biostructure ; rostrum ; paddlefish ; Polyodon spathula ; maximum-flow/minimum-cut ; stress patterns ; finite element modelling ; laminated composite plates ; non-uniform mechanical properties ; panel method ; marine propeller ; noise ; FW-H equations ; experimental test ; continuation methods ; bifurcations ; limit points ; cohesive elements ; functionally graded materials ; porosity distributions ; first-order shear deformation theory ; shear correction factor ; higher-order shear deformation theory ; equivalent single-layer approach ; n/a ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 6
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: Advances in materials are crucial to the development of sports equipment, from tennis rackets to skis to running shoes. Materials-driven improvements in equipment have helped athletes perform better, while enhancing safety and making sport more accessible and enjoyable. This book brings together a collection of 10 papers on the topic of sports materials, as published in a Special Issue of Applied Sciences. The papers within this book cover a range of sports, including golf, tennis, table tennis and baseball. State-of-the-art engineering techniques, such as finite element modelling, impact testing and full-field strain measurement, are applied to help further our understanding of sports equipment mechanics and the role of materials, with a view to improving performance, enhancing safety and facilitating informed regulatory decision making. The book also includes papers that describe emerging and novel materials, including auxetic materials with their negative Poisson’s ratio (fattening when stretched) and knits made of bamboo charcoal. This collection of papers should serve as a useful resource for sports engineers working in both academia and industry, as well as engineering students who are interested in sports equipment and materials.
    Keywords: TA1-2040 ; T1-995 ; n/a ; foam ; finite element ; sportswear textiles ; cannon ; textiles ; impact attenuation ; shockpad ; foam protective mats ; robot ; additive manufacturing ; indentation ; bat ; rubber ; slope of grain ; wood ; injury ; strain ; impact ; durability ; protective equipment ; mechanical properties ; artificial turf ; strain propagation ; auxetic foam ; sports safety ; torsion ; quick-dry yarn ; concussion ; baseball ; finite element modelling ; polymer ; strain rate ; Charpy ; protection ; rate dependence ; functional composite yarns ; impact testing ; golf ; helmet ; architecture ; auxetic ; clubhead ; digital image correlation ; finite element analysis ; tennis ; comfort ; negative Poisson’s ratio ; friction ; bamboo charcoal yarn ; EFG method ; sport ; finite elements ; shaft ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 7
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: Expansion of water resources is a key factor in the socio-economic development of all countries. Dams play a critical role in water storage, especially for areas with unequal rainfall and limited water availability. While the safety of existing dams, periodic re-evaluations and life extensions are the primary objectives in developed countries, the design and construction of new dams are the main concerns in developing countries. The role of dam engineers has greatly changed over recent decades. Thanks to new technologies, the surveillance, monitoring, design and analysis tasks involved in this process have significantly improved. The current edited book is a collection of dam-related papers. The overall aim of this edited book is to improve modeling, simulation and field measurements for different dam types (i.e. concrete gravity dams, concrete arch dams, and embankments). The articles cover a wide range of topics on the subject of dams, and reflect the scientific efforts and engineering approaches in this challenging and exciting research field.
    Keywords: arch dams ; probabilistic ; nonlinear ; seismic ; response correlation ; stochastic ; excavation ; movement ; field ; groundwater ; soil nail ; spatial ; variability ; alkali-silica reaction ; damage ; existing concrete dam ; finite element analysis ; temperature ; saturation degree ; dams ; endurance time analysis ; dynamic capacity ; failure ; seismic effects ; dam safety ; concrete dams ; structural safety and reliability ; finite elements ; earthfill dam ; central clay core ; downstream shoulder ; settlements ; long-term behaviour ; reservoir level fluctuations ; rainfall ; seepage ; geodetic monitoring ; concrete arch dams ; seasonal temperature variations ; crack prediction ; non-linear finite element analyses ; concrete gravity dams ; seismic fragility analysis ; uncertainty quantification ; performance based earthquake engineering ; stability assessment ; instrumentation ; earth dam ; health monitoring ; passive rock bolt ; concrete dam ; progressive failure ; n/a ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 8
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2023-03-07
    Description: Composites can be engineered to exhibit high strength, high stiffness, and high toughness. Composite structures have increasingly been used in various engineering applications. In recent decades, most fundamentals of science have expanded in length by many orders of magnitude. Nowadays, one of the primary goals of science and technology seems to be to develop reliable methods for linking the physical phenomena that occur over multiple length scales, particularly from a nano-/microscale to a macroscale. To engineer composites for high performance and to design advanced structures, the relationship between material nano-/microstructures and their macroscopic properties must be established to accurately predict their mechanical performance and failure. Multiscale simulation is a tool that enables studying and comprehending complex systems and phenomena that would otherwise be too expensive or dangerous, or even impossible, to study by direct experimentation and, thus, to achieve this goal.This reprint assembles high-quality chapters that advance the field of the multiscale simulation of composite structures, through the application of any modern computational and/or analytical methods alone or in conjunction with experimental techniques, for damage assessment or mechanical analysis and prediction.
    Keywords: braided composites ; mesoscale model ; notched specimen ; damage evolution ; static behavior ; studs ; deflection ; finite element model ; composite beam ; crack width ; aramid ; impact ; computational techniques ; finite elements ; mechanical analysis ; axial capacity prediction ; rectangular CFST columns ; feedforward neural network ; invasive weed optimization ; hybrid machine learning ; particle swarm parameters ; adaptive neuro-fuzzy inference system ; circular opening steel beams ; buckling capacity ; nanocomposite ; PMMA ; fullerene ; finite element method ; molecular dynamics ; multiscale ; composite structures ; graphene ; carbon fiber ; hybrid matrix ; vibrations ; finite element analysis ; bone-shaped ; nanotube ; polymer ; stress-strain ; stiffened CFST beam ; recycled concrete ; finite element ; flexural strength ; cold-formed tube ; composite steel plate shear wall ; hysteresis curves ; ductility ; energy absorption ; topology optimization ; microstructure ; homogenization ; Matlab ; reduced order models ; reduced basis ; on-the-fly construction ; POD ; approximate reanalysis ; multiscale simulation ; damage assessment ; bic Book Industry Communication::G Reference, information & interdisciplinary subjects::GP Research & information: general ; bic Book Industry Communication::P Mathematics & science::PS Biology, life sciences ; bic Book Industry Communication::K Economics, finance, business & management::KN Industry & industrial studies::KNA Primary industries::KNAF Fisheries & related industries
    Language: English
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  • 9
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-03-27
    Description: This book presents numerical, experimental, and analytical analysis of convective and radiative heat transfer in various engineering and natural systems, including transport phenomena in heat exchangers and furnaces, cooling of electronic heat-generating elements, and thin-film flows in various technical systems. It is well known that such heat transfer mechanisms are dominant in the systems under consideration. Therefore, in-depth study of these regimes is vital for both the growth of industry and the preservation of natural resources. The authors included in this book present insightful and provocative studies on convective and radiative heat transfer using modern analytical techniques. This book will be very useful for academics, engineers, and advanced students.
    Keywords: mixed convection ; nanofluids ; thermal radiation ; heat source/sink ; dual solutions ; stability analysis ; convection ; local heat-generating element ; surface radiation ; Ostrogradsky number ; finite difference method ; nanofluid ; stagnation sheet ; three-dimensional flow ; slip condition ; vortex ; heat ; dimple ; channel ; simulation ; efficiency of annular fin ; analytical and numerical method ; computational fluid dynamics ; fin base temperature ; non-Newtonian fluid ; natural convection ; heat source of volumetric heat generation ; PCMs ; storage tank ; photovoltaic ; computational fluid dynamics (CFD) ; finite elements ; turbulent bubbly flow ; sudden pipe expansion ; measurements ; modeling ; wall friction ; heat transfer modification ; heat transfer ; free convection ; cylinder ; tube array ; numerical investigation ; semi-analytical model ; vapor ; liquid ; bubble ; two-phase heat transfer ; adiabatic calorimetry ; numerical simulation ; heat capacity ; finite-element method ; thin film ; boundary layer ; thermocapillarity ; triple solutions ; Carreau fluid ; tempering ; heat treatment ; electric furnace ; CFD simulation ; thermal efficiency ; thema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: general
    Language: English
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  • 10
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: Engineering practice requires the use of structures containing identical components or parts, useful from several points of view: less information is needed to describe the system, design is made quicker and easier, components are made faster than a complex assembly, and finally the time to achieve the structure and the cost of manufacturing decreases. Additionally, the subsequent maintenance of the system becomes easier and cheaper. This Special Issue is dedicated to this kind of mechanical structure, describing the properties and methods of analysis of these structures. Discrete or continuous structures in static and dynamic cases are considered. Theoretical models, mathematical methods, and numerical analyses of the systems, such as the finite element method and experimental methods, are expected to be used in the research. Machine building, automotive, aerospace, and civil engineering are the main areas in which such applications appear, but they are found in most engineering fields.
    Keywords: exact solutions ; the generalized Benjamin–Bona–Mahony equation ; generalized exponential rational function method ; solitary wave solutions ; symbolic computation ; Thomson effect ; initial stress ; magneto-thermoelastic ; voids ; normal mode method ; G-N theory ; eigenvalue problem ; axisymmetric and non-axisymmetric vibrations ; multiparametric special functions ; circular plate ; functionally graded porous material ; initially stressed bodies ; dipolar structure ; volume fraction ; domain of influence ; chaotic time series prediction ; neural network ; firefly algorithm ; CEEMDAN ; VMD ; symmetric geometry ; guitar’s plate ; modal analysis ; skew symmetric eigenmodes ; comparison ; Friedman test ; linear regression ; nonlinear regression ; sign test ; symmetric errors ; Wilcoxon test ; coefficient of variation ; ratio ; symmetric and asymmetric distributions ; test of hypothesis ; multi-body system ; finite element method (FEM) ; linear elastic elements ; Lagrange’s equations ; two-dimensional finite element ; plane motion ; backward in time problem ; dipolar thermoelastic body ; uniqueness of solution ; Cesaro means ; partition of energies ; α-fractional calculus ; vibration isolation ; fractional-order differential equation ; rubber-like elastomers ; Riemann–Liouville/Caputo/Grünwald-Letnikov fractional derivative ; advanced mechanics ; analytical dynamics ; acceleration energies ; robotics ; viscoelasticity ; type III thermal law ; finite elements ; error estimates ; numerical results ; symmetry ; topology ; mechanical structures ; robots ; vibration ; mechanical engineering ; applied mechanics ; bird-strike impact ; composite laminate ; damage equivalency ; fan blade ; symmetrical configurations ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
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