Advanced Structural Mechanics

Advanced Structural Mechanics

Advanced Structural Mechanics (ASM) is a multi-disciplinary engineering journal which mainly focuses on foster scientific understanding of mechanical aspects of advanced materials and structures. It publishes the highest quality and original works by analytical modeling, numerical simulation, and experimental observations in studying behaviour and application of advanced materials and substructures from nano to macro scales. Particular emphasis is placed on the inspection and development of mechanical constitutive response, design, dynamics, vibrations, control and also stability of metals, composites, polymers, shape-memory alloys, cellular structures, bio-materials, intelligent materials, actuator/sensor (smart) materials, nano/microstructured materials, etc.

ASM is encompassing all aspects of these fields from classical problems of structural analysis to mechanics of solids interacting with other media and including damage and fracture mechanisms, inelastic deformation, impact mechanics, topology optimization, wave propagation, thermal effects in solids and optimum design methods. Contributions may vary from new techniques to novel applications of the material and/or structural performance in advanced material systems drawing upon the different divisions of engineering science and the associated areas within applied mathematics, materials science and structural mechanic. Articles that outline combined analytical/ computational/ experimental methodologies are especially sought.

All submitted manuscripts to ASM should be concisely prepared and written in English. Authors are required to confirm that their paper has not been submitted to any other journal in English or any other language. After initial appraisal by the Editor, if found suitable for further consideration, manuscripts are subject to peer review by independent expert referees.

Keywords Cloud

  • Steel Structure
  • Modal Analysis
  • Composite
  • Strengthening
  • Free vibration
  • Modal analysis in the frequency domain
  • AHP
  • friction
  • Structural Bracing System
  • Finite element method
  • egg-box core
  • Time History Analysis
  • Crack propagation
  • FGM beams
  • Third Stage blades
  • steel plate
  • XFEM
  • hierarchical analysis
  • Disbonding
  • Large amplitude vibrations
  • stress singularity. Welded joint for aircraft structure
  • Numerical simulation
  • Vibration
  • Selective Laser Melting
  • Vibration Performance
  • surface geometry
  • Dissimilar welded joint
  • corrugated sandwich sheet
  • EDS
  • Constitutive equation
  • Hot-rolled steel strip
  • corrugated Sandwich Panel
  • structural bracing systems
  • Near and Far-Fault
  • Finite Element
  • high order sandwich panel theory
  • Two dimensional finite element modeling
  • PACO Engineering Company
  • Risk management
  • Free-surface modeling
  • piezoelectric
  • Modified couple stress theory
  • Abaqus Software
  • Eccentrically Braced Frame
  • Coated pipe
  • strength
  • energy absorption
  • emerging markets
  • Buckling
  • Surface defects
  • Asperity
  • Mathematical models
  • FEM
  • Flow curve
  • Pores Formation
  • Gate brace
  • Residual Stress
  • elastohydrodynamic
  • Vaporization
  • Lubrication
  • flexible core
  • Al-Mg alloy
  • variable load
  • couple stress theory
  • Ring reinforced holes
  • Element Deletion
  • SEM
  • Thickness
  • ANSYS (FEM)
  • Navier\' s solution
  • Mechanical experiments
  • Three-point Bending
  • Size effect
  • Experimental analysis
  • Smart Moment Frame
  • Sandwich Panel
  • Nonlinear natural frequency
  • Rhombus Brace
  • Inverted V brace
  • plasticity
  • Magnetic
  • Blast
  • Elastic foundation
  • Nano sandwich beam
  • Concentrically Brace
  • construction projects
  • Rough material
  • Mindlin nanoplate
  • 3D Structure
  • Nanocomposites
  • fluid conveying nanotube
  • Fatigue
  • Interface tracking
  • Level-set method
  • Tensile Test
  • Stress analysis
  • BRB system
  • Plane strain compression test
  • Artificial Intelligence
  • Moving boundaries
  • Link Beam
  • Epoxy
  • finite element model
  • Fractography
  • Deep Learning
  • Convolutional neural network
  • Guided Lamb wave
  • crushing behavior